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Articles 271 - 300 of 796
Full-Text Articles in Medical Specialties
Interpreting The Biological Effects Of Protons As A Function Of Physical Quantity: Linear Energy Transfer Or Microdosimetric Lineal Energy Spectrum?, Fada Guan, Lawrence Bronk, Matthew Kerr, Yuting Li, Leslie A Braby, Mary Sobieski, Xiaochun Wang, Xiaodong Zhang, Clifford Stephan, David R Grosshans, Radhe Mohan
Interpreting The Biological Effects Of Protons As A Function Of Physical Quantity: Linear Energy Transfer Or Microdosimetric Lineal Energy Spectrum?, Fada Guan, Lawrence Bronk, Matthew Kerr, Yuting Li, Leslie A Braby, Mary Sobieski, Xiaochun Wang, Xiaodong Zhang, Clifford Stephan, David R Grosshans, Radhe Mohan
Faculty, Staff and Student Publications
The choice of appropriate physical quantities to characterize the biological effects of ionizing radiation has evolved over time coupled with advances in scientific understanding. The basic hypothesis in radiation dosimetry is that the energy deposited by ionizing radiation initiates all the consequences of exposure in a biological sample (e.g., DNA damage, reproductive cell death). Physical quantities defined to characterize energy deposition have included dose, a measure of the mean energy imparted per unit mass of the target, and linear energy transfer (LET), a measure of the mean energy deposition per unit distance that charged particles traverse in a medium. The …
Interpreting The Biological Effects Of Protons As A Function Of Physical Quantity: Linear Energy Transfer Or Microdosimetric Lineal Energy Spectrum?, Fada Guan, Lawrence Bronk, Matthew Kerr, Yuting Li, Leslie A Braby, Mary Sobieski, Xiaochun Wang, Xiaodong Zhang, Clifford Stephan, David R Grosshans, Radhe Mohan
Interpreting The Biological Effects Of Protons As A Function Of Physical Quantity: Linear Energy Transfer Or Microdosimetric Lineal Energy Spectrum?, Fada Guan, Lawrence Bronk, Matthew Kerr, Yuting Li, Leslie A Braby, Mary Sobieski, Xiaochun Wang, Xiaodong Zhang, Clifford Stephan, David R Grosshans, Radhe Mohan
Faculty, Staff and Student Publications
The choice of appropriate physical quantities to characterize the biological effects of ionizing radiation has evolved over time coupled with advances in scientific understanding. The basic hypothesis in radiation dosimetry is that the energy deposited by ionizing radiation initiates all the consequences of exposure in a biological sample (e.g., DNA damage, reproductive cell death). Physical quantities defined to characterize energy deposition have included dose, a measure of the mean energy imparted per unit mass of the target, and linear energy transfer (LET), a measure of the mean energy deposition per unit distance that charged particles traverse in a medium. The …
Interpreting The Biological Effects Of Protons As A Function Of Physical Quantity: Linear Energy Transfer Or Microdosimetric Lineal Energy Spectrum?, Fada Guan, Lawrence Bronk, Matthew Kerr, Yuting Li, Leslie A Braby, Mary Sobieski, Xiaochun Wang, Xiaodong Zhang, Clifford Stephan, David R Grosshans, Radhe Mohan
Interpreting The Biological Effects Of Protons As A Function Of Physical Quantity: Linear Energy Transfer Or Microdosimetric Lineal Energy Spectrum?, Fada Guan, Lawrence Bronk, Matthew Kerr, Yuting Li, Leslie A Braby, Mary Sobieski, Xiaochun Wang, Xiaodong Zhang, Clifford Stephan, David R Grosshans, Radhe Mohan
Faculty, Staff and Student Publications
The choice of appropriate physical quantities to characterize the biological effects of ionizing radiation has evolved over time coupled with advances in scientific understanding. The basic hypothesis in radiation dosimetry is that the energy deposited by ionizing radiation initiates all the consequences of exposure in a biological sample (e.g., DNA damage, reproductive cell death). Physical quantities defined to characterize energy deposition have included dose, a measure of the mean energy imparted per unit mass of the target, and linear energy transfer (LET), a measure of the mean energy deposition per unit distance that charged particles traverse in a medium. The …
Interpreting The Biological Effects Of Protons As A Function Of Physical Quantity: Linear Energy Transfer Or Microdosimetric Lineal Energy Spectrum?, Fada Guan, Lawrence Bronk, Matthew Kerr, Yuting Li, Leslie A Braby, Mary Sobieski, Xiaochun Wang, Xiaodong Zhang, Clifford Stephan, David R Grosshans, Radhe Mohan
Interpreting The Biological Effects Of Protons As A Function Of Physical Quantity: Linear Energy Transfer Or Microdosimetric Lineal Energy Spectrum?, Fada Guan, Lawrence Bronk, Matthew Kerr, Yuting Li, Leslie A Braby, Mary Sobieski, Xiaochun Wang, Xiaodong Zhang, Clifford Stephan, David R Grosshans, Radhe Mohan
Faculty, Staff and Student Publications
The choice of appropriate physical quantities to characterize the biological effects of ionizing radiation has evolved over time coupled with advances in scientific understanding. The basic hypothesis in radiation dosimetry is that the energy deposited by ionizing radiation initiates all the consequences of exposure in a biological sample (e.g., DNA damage, reproductive cell death). Physical quantities defined to characterize energy deposition have included dose, a measure of the mean energy imparted per unit mass of the target, and linear energy transfer (LET), a measure of the mean energy deposition per unit distance that charged particles traverse in a medium. The …
Impact Of Pik3ca Gain And Pten Loss On Mantle Cell Lymphoma Biology And Sensitivity To Targeted Therapies, Nardjas Bettazova, Jana Senavova, Kristyna Kupcova, Dana Sovilj, Anezka Rajmonova, Ladislav Andera, Karla Svobodova, Adela Berkova, Zuzana Zemanova, Lenka Daumova, Vaclav Herman, Alexandra Dolníkova, R Eric Davis, Marek Trneny, Pavel Klener, Ondrej Havranek
Impact Of Pik3ca Gain And Pten Loss On Mantle Cell Lymphoma Biology And Sensitivity To Targeted Therapies, Nardjas Bettazova, Jana Senavova, Kristyna Kupcova, Dana Sovilj, Anezka Rajmonova, Ladislav Andera, Karla Svobodova, Adela Berkova, Zuzana Zemanova, Lenka Daumova, Vaclav Herman, Alexandra Dolníkova, R Eric Davis, Marek Trneny, Pavel Klener, Ondrej Havranek
Faculty, Staff and Student Publications
Besides many other mutations in known cancer driver genes, mantle cell lymphoma (MCL) is characterized by recurrent genetic alterations of important regulators of the phosphoinositol-3-kinase (PI3K) cascade including PIK3CA gains and PTEN losses. To evaluate the biological and functional consequences of these aberrations in MCL, we have introduced transgenic expression of PIK3CA (PIK3CA UP) and performed knockout/knockdown of PTEN gene (PTEN KO/KD) in 5 MCL cell lines. The modified cell lines were tested for associated phenotypes including dependence on upstream B-cell receptor (BCR) signaling (by an additional BCR knockout). PIK3CA overexpression decreased the dependence of the tested MCL on prosurvival …
Yap1 Status Defines Two Intrinsic Subtypes Of Lcnec With Distinct Molecular Features And Therapeutic Vulnerabilities, C Allison Stewart, Lixia Diao, Yuanxin Xi, Runsheng Wang, Kavya Ramkumar, Alejandra G Serrano, Azusa Tanimoto, B Leticia Rodriguez, Benjamin B Morris, Li Shen, Bingnan Zhang, Yan Yang, Samera H Hamad, Robert J Cardnell, Alberto Duarte, Moushumi Sahu, Veronica Y Novegil, Bernard E Weissman, Michael Frumovitz, Neda Kalhor, Luisa Solis Soto, Pedro Da Rocha, Natalie Vokes, Don L Gibbons, Jing Wang, John V Heymach, Bonnie Glisson, Lauren Averett Byers, Carl M Gay
Yap1 Status Defines Two Intrinsic Subtypes Of Lcnec With Distinct Molecular Features And Therapeutic Vulnerabilities, C Allison Stewart, Lixia Diao, Yuanxin Xi, Runsheng Wang, Kavya Ramkumar, Alejandra G Serrano, Azusa Tanimoto, B Leticia Rodriguez, Benjamin B Morris, Li Shen, Bingnan Zhang, Yan Yang, Samera H Hamad, Robert J Cardnell, Alberto Duarte, Moushumi Sahu, Veronica Y Novegil, Bernard E Weissman, Michael Frumovitz, Neda Kalhor, Luisa Solis Soto, Pedro Da Rocha, Natalie Vokes, Don L Gibbons, Jing Wang, John V Heymach, Bonnie Glisson, Lauren Averett Byers, Carl M Gay
Faculty, Staff and Student Publications
Purpose: Large cell neuroendocrine carcinoma (LCNEC) is a high-grade neuroendocrine malignancy that, like small cell lung cancer (SCLC), is associated with the absence of druggable oncogenic drivers and dismal prognosis. In contrast to SCLC, however, there is little evidence to guide optimal treatment strategies, which are often adapted from SCLC and non-small cell lung cancer approaches.
Experimental design: To better define the biology of LCNEC, we analyzed cell line and patient genomic data and performed IHC and single-cell RNA sequencing of core needle biopsies from patients with LCNEC and preclinical models.
Results: In this study, we demonstrate that the presence …
Cdk12 Loss Drives Prostate Cancer Progression, Transcription-Replication Conflicts, And Synthetic Lethality With Paralog Cdk13, Jean Ching-Yi Tien, Jie Luo, Yu Chang, Yuping Zhang, Yunhui Cheng, Xiaoju Wang, Jianzhang Yang, Rahul Mannan, Somnath Mahapatra, Palak Shah, Xiao-Ming Wang, Abigail J Todd, Sanjana Eyunni, Caleb Cheng, Ryan J Rebernick, Lanbo Xiao, Yi Bao, James Neiswender, Rachel Brough, Stephen J Pettitt, Xuhong Cao, Stephanie J Miner, Licheng Zhou, Yi-Mi Wu, Estefania Labanca, Yuzhuo Wang, Abhijit Parolia, Marcin Cieslik, Dan R Robinson, Zhen Wang, Felix Y Feng, Jonathan Chou, Christopher J Lord, Ke Ding, Arul M Chinnaiyan
Cdk12 Loss Drives Prostate Cancer Progression, Transcription-Replication Conflicts, And Synthetic Lethality With Paralog Cdk13, Jean Ching-Yi Tien, Jie Luo, Yu Chang, Yuping Zhang, Yunhui Cheng, Xiaoju Wang, Jianzhang Yang, Rahul Mannan, Somnath Mahapatra, Palak Shah, Xiao-Ming Wang, Abigail J Todd, Sanjana Eyunni, Caleb Cheng, Ryan J Rebernick, Lanbo Xiao, Yi Bao, James Neiswender, Rachel Brough, Stephen J Pettitt, Xuhong Cao, Stephanie J Miner, Licheng Zhou, Yi-Mi Wu, Estefania Labanca, Yuzhuo Wang, Abhijit Parolia, Marcin Cieslik, Dan R Robinson, Zhen Wang, Felix Y Feng, Jonathan Chou, Christopher J Lord, Ke Ding, Arul M Chinnaiyan
Faculty, Staff and Student Publications
Biallelic loss of cyclin-dependent kinase 12 (CDK12) defines a metastatic castration-resistant prostate cancer (mCRPC) subtype. It remains unclear, however, whether CDK12 loss drives prostate cancer (PCa) development or uncovers pharmacologic vulnerabilities. Here, we show Cdk12 ablation in murine prostate epithelium is sufficient to induce preneoplastic lesions with lymphocytic infiltration. In allograft-based CRISPR screening, Cdk12 loss associates positively with Trp53 inactivation but negatively with Pten inactivation. Moreover, concurrent Cdk12/Trp53 ablation promotes proliferation of prostate-derived organoids, while Cdk12 knockout in Pten-null mice abrogates prostate tumor growth. In syngeneic systems, Cdk12/Trp53-null allografts exhibit luminal morphology and immune checkpoint blockade sensitivity. Mechanistically, Cdk12 inactivation …
Atr Inhibition Radiosensitizes Cells Through Augmented Dna Damage And G2 Cell Cycle Arrest Abrogation, Scott J Bright, Mandira Manandhar, David B Flint, Rishab Kolachina, Mariam Ben Kacem, David Kj Martinus, Broderick X Turner, Ilsa Qureshi, Conor H Mcfadden, Poliana C Marinello, Simona F Shaitelman, Gabriel O Sawakuchi
Atr Inhibition Radiosensitizes Cells Through Augmented Dna Damage And G2 Cell Cycle Arrest Abrogation, Scott J Bright, Mandira Manandhar, David B Flint, Rishab Kolachina, Mariam Ben Kacem, David Kj Martinus, Broderick X Turner, Ilsa Qureshi, Conor H Mcfadden, Poliana C Marinello, Simona F Shaitelman, Gabriel O Sawakuchi
Faculty, Staff and Student Publications
Ataxia telangiectasia and Rad3-related protein (ATR) is a key DNA damage response protein that facilitates DNA damage repair and regulates cell cycle progression. As such, ATR is an important component of the cellular response to radiation, particularly in cancer cells, which show altered DNA damage response and aberrant cell cycle checkpoints. Therefore, ATR's pharmacological inhibition could be an effective radiosensitization strategy to improve radiotherapy. We assessed the ability of an ATR inhibitor, AZD6738, to sensitize cancer cell lines of various histologic types to photon and proton radiotherapy. We found that radiosensitization took place through persistent DNA damage and abrogated G2 …
An Iron-Rich Subset Of Macrophages Promotes Tumor Growth Through A Bach1-Ednrb Axis, Ian W Folkert, William A Molina Arocho, Tsun Ki Jerrick To, Samir Devalaraja, Irene S Molina, Jason Shoush, Hesham Mohei, Li Zhai, Md Naushad Akhtar, Veena Kochat, Emre Arslan, Alexander J Lazar, Khalida Wani, William P Israel, Zhan Zhang, Venkata S Chaluvadi, Robert J Norgard, Ying Liu, Ashley M Fuller, Mai T Dang, Robert E Roses, Giorgos C Karakousis, John T Miura, Douglas L Fraker, T S Karin Eisinger-Mathason, M Celeste Simon, Kristy Weber, Kai Tan, Yi Fan, Kunal Rai, Malay Haldar
An Iron-Rich Subset Of Macrophages Promotes Tumor Growth Through A Bach1-Ednrb Axis, Ian W Folkert, William A Molina Arocho, Tsun Ki Jerrick To, Samir Devalaraja, Irene S Molina, Jason Shoush, Hesham Mohei, Li Zhai, Md Naushad Akhtar, Veena Kochat, Emre Arslan, Alexander J Lazar, Khalida Wani, William P Israel, Zhan Zhang, Venkata S Chaluvadi, Robert J Norgard, Ying Liu, Ashley M Fuller, Mai T Dang, Robert E Roses, Giorgos C Karakousis, John T Miura, Douglas L Fraker, T S Karin Eisinger-Mathason, M Celeste Simon, Kristy Weber, Kai Tan, Yi Fan, Kunal Rai, Malay Haldar
Faculty, Staff and Student Publications
We define a subset of macrophages in the tumor microenvironment characterized by high intracellular iron and enrichment of heme and iron metabolism genes. These iron-rich tumor-associated macrophages (iTAMs) supported angiogenesis and immunosuppression in the tumor microenvironment and were conserved between mice and humans. iTAMs comprise two additional subsets based on gene expression profile and location-perivascular (pviTAM) and stromal (stiTAM). We identified the endothelin receptor type B (Ednrb) as a specific marker of iTAMs and found myeloid-specific deletion of Ednrb to reduce tumor growth and vascular density. Further studies identified the transcription factor Bach1 as a repressor of the iTAM transcriptional …
Cd28 Costimulation Augments Car Signaling In Nk Cells Via The Lck/Cd3Ζ/Zap70 Signaling Axis, Sunil Acharya, Rafet Basar, May Daher, Hind Rafei, Ping Li, Nadima Uprety, Emily Ensley, Mayra Shanley, Bijender Kumar, Pinaki P Banerjee, Luciana Melo Garcia, Paul Lin, Vakul Mohanty, Kun H Kim, Xianli Jiang, Yuchen Pan, Ye Li, Bin Liu, Ana K Nunez Cortes, Chenyu Zhang, Mohsen Fathi, Ali Rezvan, Melisa J Montalvo, Sophia L Cha, Francia Reyes-Silva, Rejeena Shrestha, Xingliang Guo, Kiran Kundu, Alexander Biederstädt, Luis Muniz-Feliciano, Gary M Deyter, Mecit Kaplan, Xin R Jiang, Enli Liu, Antrix Jain, Janos Roszik, Natalie W Fowlkes, Luisa M Solis Soto, Maria G Raso, Joseph D Khoury, Pei Lin, Francisco Vega, Navin Varadarajan, Ken Chen, David Marin, Elizabeth J Shpall, Katayoun Rezvani
Cd28 Costimulation Augments Car Signaling In Nk Cells Via The Lck/Cd3Ζ/Zap70 Signaling Axis, Sunil Acharya, Rafet Basar, May Daher, Hind Rafei, Ping Li, Nadima Uprety, Emily Ensley, Mayra Shanley, Bijender Kumar, Pinaki P Banerjee, Luciana Melo Garcia, Paul Lin, Vakul Mohanty, Kun H Kim, Xianli Jiang, Yuchen Pan, Ye Li, Bin Liu, Ana K Nunez Cortes, Chenyu Zhang, Mohsen Fathi, Ali Rezvan, Melisa J Montalvo, Sophia L Cha, Francia Reyes-Silva, Rejeena Shrestha, Xingliang Guo, Kiran Kundu, Alexander Biederstädt, Luis Muniz-Feliciano, Gary M Deyter, Mecit Kaplan, Xin R Jiang, Enli Liu, Antrix Jain, Janos Roszik, Natalie W Fowlkes, Luisa M Solis Soto, Maria G Raso, Joseph D Khoury, Pei Lin, Francisco Vega, Navin Varadarajan, Ken Chen, David Marin, Elizabeth J Shpall, Katayoun Rezvani
Faculty, Staff and Student Publications
Multiple factors in the design of a chimeric antigen receptor (CAR) influence CAR T-cell activity, with costimulatory signals being a key component. Yet, the impact of costimulatory domains on the downstream signaling and subsequent functionality of CAR-engineered natural killer (NK) cells remains largely unexplored. Here, we evaluated the impact of various costimulatory domains on CAR-NK cell activity, using a CD70-targeting CAR. We found that CD28, a costimulatory molecule not inherently present in mature NK cells, significantly enhanced the antitumor efficacy and long-term cytotoxicity of CAR-NK cells both in vitro and in multiple xenograft models of hematologic and solid tumors. Mechanistically, …
Novel Ox40 And 4–1bb Derived Spacers Enhance Cd30 Car Activity And Safety In Cd30 Positive Lymphoma Models, Lindsay Kua, Chee Hoe Ng, Jin Wei Tan, Hwee Ching Tan, Cheah Chen Seh, Fiona Wong, Richard Ong, Cliona M Rooney, Joel Tan, Qingfeng Chen, Ivan D Horak, Kar Wai Tan, Lionel Low
Novel Ox40 And 4–1bb Derived Spacers Enhance Cd30 Car Activity And Safety In Cd30 Positive Lymphoma Models, Lindsay Kua, Chee Hoe Ng, Jin Wei Tan, Hwee Ching Tan, Cheah Chen Seh, Fiona Wong, Richard Ong, Cliona M Rooney, Joel Tan, Qingfeng Chen, Ivan D Horak, Kar Wai Tan, Lionel Low
Faculty, Staff and Students Publications
The chimeric antigen receptor (CAR) derived from the CD30 specific murine antibody, HRS-3, has produced promising clinical efficacy with a favorable safety profile in the treatment of relapsed or refractory CD30-positive lymphomas. However, persistence of the autologous CAR-T cells was brief, and many patients relapsed a year after treatment. The lack of persistence may be attributed to the use of a wild-type immunoglobulin (Ig)G1 spacer that can associate with Fc receptors. We first identified the cysteine-rich domain (CRD) 5 of CD30 as the primary binding epitope of HRS-3 and armed with this insight, attempted to improve the HRS-3 CAR functionality …
Synergic Activity Of Fgfr2 And Mek Inhibitors In The Treatment Of Fgfr2-Amplified Cancers Of Unknown Primary, Andrea Cavazzoni, Irene Salamon, Claudia Fumarola, Giulia Gallerani, Noemi Laprovitera, Francesco Gelsomino, Mattia Riefolo, Karim Rihawi, Elisa Porcellini, Tania Rossi, Martina Mazzeschi, Maria Naddeo, Salvatore Serravalle, Elisabetta Broseghini, Federico Agostinis, Olivier Deas, Roberta Roncarati, Giorgio Durante, Ilaria Pace, Mattia Lauriola, Ingrid Garajova, George A Calin, Massimiliano Bonafè, Antonia D'Errico, Pier Giorgio Petronini, Stefano Cairo, Andrea Ardizzoni, Gabriele Sales, Manuela Ferracin
Synergic Activity Of Fgfr2 And Mek Inhibitors In The Treatment Of Fgfr2-Amplified Cancers Of Unknown Primary, Andrea Cavazzoni, Irene Salamon, Claudia Fumarola, Giulia Gallerani, Noemi Laprovitera, Francesco Gelsomino, Mattia Riefolo, Karim Rihawi, Elisa Porcellini, Tania Rossi, Martina Mazzeschi, Maria Naddeo, Salvatore Serravalle, Elisabetta Broseghini, Federico Agostinis, Olivier Deas, Roberta Roncarati, Giorgio Durante, Ilaria Pace, Mattia Lauriola, Ingrid Garajova, George A Calin, Massimiliano Bonafè, Antonia D'Errico, Pier Giorgio Petronini, Stefano Cairo, Andrea Ardizzoni, Gabriele Sales, Manuela Ferracin
Faculty, Staff and Student Publications
Patients with cancer of unknown primary (CUP) carry the double burden of an aggressive disease and reduced access to therapies. Experimental models are pivotal for CUP biology investigation and drug testing. We derived two CUP cell lines (CUP#55 and #96) and corresponding patient-derived xenografts (PDXs), from ascites tumor cells. CUP cell lines and PDXs underwent histological, immune-phenotypical, molecular, and genomic characterization confirming the features of the original tumor. The tissue-of-origin prediction was obtained from the tumor microRNA expression profile and confirmed by single-cell transcriptomics. Genomic testing and fluorescence in situ hybridization analysis identified FGFR2 gene amplification in both models, in …
Synergic Activity Of Fgfr2 And Mek Inhibitors In The Treatment Of Fgfr2-Amplified Cancers Of Unknown Primary, Andrea Cavazzoni, Irene Salamon, Claudia Fumarola, Giulia Gallerani, Noemi Laprovitera, Francesco Gelsomino, Mattia Riefolo, Karim Rihawi, Elisa Porcellini, Tania Rossi, Martina Mazzeschi, Maria Naddeo, Salvatore Serravalle, Elisabetta Broseghini, Federico Agostinis, Olivier Deas, Roberta Roncarati, Giorgio Durante, Ilaria Pace, Mattia Lauriola, Ingrid Garajova, George A Calin, Massimiliano Bonafè, Antonia D'Errico, Pier Giorgio Petronini, Stefano Cairo, Andrea Ardizzoni, Gabriele Sales, Manuela Ferracin
Synergic Activity Of Fgfr2 And Mek Inhibitors In The Treatment Of Fgfr2-Amplified Cancers Of Unknown Primary, Andrea Cavazzoni, Irene Salamon, Claudia Fumarola, Giulia Gallerani, Noemi Laprovitera, Francesco Gelsomino, Mattia Riefolo, Karim Rihawi, Elisa Porcellini, Tania Rossi, Martina Mazzeschi, Maria Naddeo, Salvatore Serravalle, Elisabetta Broseghini, Federico Agostinis, Olivier Deas, Roberta Roncarati, Giorgio Durante, Ilaria Pace, Mattia Lauriola, Ingrid Garajova, George A Calin, Massimiliano Bonafè, Antonia D'Errico, Pier Giorgio Petronini, Stefano Cairo, Andrea Ardizzoni, Gabriele Sales, Manuela Ferracin
Faculty, Staff and Student Publications
Patients with cancer of unknown primary (CUP) carry the double burden of an aggressive disease and reduced access to therapies. Experimental models are pivotal for CUP biology investigation and drug testing. We derived two CUP cell lines (CUP#55 and #96) and corresponding patient-derived xenografts (PDXs), from ascites tumor cells. CUP cell lines and PDXs underwent histological, immune-phenotypical, molecular, and genomic characterization confirming the features of the original tumor. The tissue-of-origin prediction was obtained from the tumor microRNA expression profile and confirmed by single-cell transcriptomics. Genomic testing and fluorescence in situ hybridization analysis identified FGFR2 gene amplification in both models, in …
Superior Antitumor Immune Response Achieved With Proton Over Photon Immunoradiotherapy Is Amplified By The Nanoradioenhancer Nbtxr3, Yun Hu, Sébastien Paris, Narayan Sahoo, Qi Wang, Qianxia Wang, Hampartsoum B Barsoumian, Ailing Huang, Jordan Da Silva, Célia Bienassis, Claudia S Kettlun Leyton, Tiffany A Voss, Fatemeh Masrorpour, Thomas Riad, Carola Leuschner, Nahum Puebla-Osorio, Saumil Gandhi, Quynh-Nhu Nguyen, Jing Wang, Maria Angelica Cortez, James W Welsh
Superior Antitumor Immune Response Achieved With Proton Over Photon Immunoradiotherapy Is Amplified By The Nanoradioenhancer Nbtxr3, Yun Hu, Sébastien Paris, Narayan Sahoo, Qi Wang, Qianxia Wang, Hampartsoum B Barsoumian, Ailing Huang, Jordan Da Silva, Célia Bienassis, Claudia S Kettlun Leyton, Tiffany A Voss, Fatemeh Masrorpour, Thomas Riad, Carola Leuschner, Nahum Puebla-Osorio, Saumil Gandhi, Quynh-Nhu Nguyen, Jing Wang, Maria Angelica Cortez, James W Welsh
Faculty, Staff and Student Publications
Recent findings suggest that immunoradiotherapy (IRT), combining photon radiotherapy (XRT) or proton radiotherapy (PRT) with immune checkpoint blockade, can enhance systemic tumor control. However, the comparative efficacy of XRT and PRT in IRT remains understudied. To address this, we compared outcomes between XRT + αPD1 and PRT + αPD1 in murine αPD1-resistant lung cancer (344SQR). We also assessed the impact of the nanoparticle radioenhancer NBTXR3 on both XRT + αPD1 and PRT + αPD1 for tumor control and examined the tumor immune microenvironment using single-cell RNA sequencing (scRNAseq). Additionally, mice cured by NBTXR3 + PRT + αPD1 were rechallenged with …
Dual Targeting Macrophages And Microglia Is A Therapeutic Vulnerability In Models Of Pten-Deficient Glioblastoma, Yang Liu, Junyan Wu, Hinda Najem, Yiyun Lin, Lizhi Pang, Fatima Khan, Fei Zhou, Heba Ali, Amy B Heimberger, Peiwen Chen
Dual Targeting Macrophages And Microglia Is A Therapeutic Vulnerability In Models Of Pten-Deficient Glioblastoma, Yang Liu, Junyan Wu, Hinda Najem, Yiyun Lin, Lizhi Pang, Fatima Khan, Fei Zhou, Heba Ali, Amy B Heimberger, Peiwen Chen
Faculty, Staff and Student Publications
Tumor-associated macrophages and microglia (TAMs) are critical for tumor progression and therapy resistance in glioblastoma (GBM), a type of incurable brain cancer. We previously identified lysyl oxidase (LOX) and olfactomedin like-3 (OLFML3) as essential macrophage and microglia chemokines, respectively, in GBM. Here, single-cell transcriptomics and multiplex sequential immunofluorescence followed by functional studies demonstrate that macrophages negatively correlate with microglia in the GBM tumor microenvironment. LOX inhibition in PTEN-deficient GBM cells upregulates OLFML3 expression via the NF-κB-PATZ1 signaling pathway, inducing a compensatory increase of microglia infiltration. Dual targeting macrophages and microglia via inhibition of LOX and the CLOCK-OLFML3 axis generates potent …
Pkmyt1 Is A Marker Of Treatment Response And A Therapeutic Target For Cdk4/6 Inhibitor-Resistance In Er+ Breast Cancer, Anran Chen, Beom-Jun Kim, Aparna Mitra, Craig T Vollert, Jonathan T Lei, Diana Fandino, Meenakshi Anurag, Matthew V Holt, Xuxu Gou, Jacob B Pilcher, Matthew P Goetz, Donald W Northfelt, Susan G Hilsenbeck, C Gary Marshall, Marc L Hyer, Robert Papp, Shou-Yun Yin, Carmine De Angelis, Rachel Schiff, Suzanne A W Fuqua, Cynthia X Ma, Charles E Foulds, Matthew J Ellis
Pkmyt1 Is A Marker Of Treatment Response And A Therapeutic Target For Cdk4/6 Inhibitor-Resistance In Er+ Breast Cancer, Anran Chen, Beom-Jun Kim, Aparna Mitra, Craig T Vollert, Jonathan T Lei, Diana Fandino, Meenakshi Anurag, Matthew V Holt, Xuxu Gou, Jacob B Pilcher, Matthew P Goetz, Donald W Northfelt, Susan G Hilsenbeck, C Gary Marshall, Marc L Hyer, Robert Papp, Shou-Yun Yin, Carmine De Angelis, Rachel Schiff, Suzanne A W Fuqua, Cynthia X Ma, Charles E Foulds, Matthew J Ellis
Faculty, Staff and Students Publications
Endocrine therapies (ET) with cyclin-dependent kinase 4/6 (CDK4/6) inhibition are the standard treatment for estrogen receptor-α-positive (ER+) breast cancer, however drug resistance is common. In this study, proteogenomic analyses of patient-derived xenografts (PDXs) from patients with 22 ER+ breast cancer demonstrated that protein kinase, membrane-associated tyrosine/threonine one (PKMYT1), a WEE1 homolog, is estradiol (E2) regulated in E2-dependent PDXs and constitutively expressed when growth is E2-independent. In clinical samples, high PKMYT1 mRNA levels associated with resistance to both ET and CDK4/6 inhibition. The PKMYT1 inhibitor lunresertib (RP-6306) with gemcitabine selectively and synergistically reduced the viability of ET and palbociclib-resistant ER+ breast …
A Molecular Switch From Tumor Suppressor To Oncogene In Er+Ve Breast Cancer: Role Of Androgen Receptor, Jak-Stat, And Lineage Plasticity, Sarah Asemota, Wendy Effah, Jeremiah Holt, Daniel Johnson, Linnea Cripe, Suriyan Ponnusamy, Thirumagal Thiyagarajan, Yekta Khosrosereshki, Dong-Jin Hwang, Yali He, Brandy Grimes, Martin D Fleming, Frances E Pritchard, Ashley Hendrix, Meiyun Fan, Abhinav Jain, Hyo Young Choi, Liza Makowski, D Neil Hayes, Duane D Miller, Lawrence M Pfeffer, Balaji Santhanam, Ramesh Narayanan
A Molecular Switch From Tumor Suppressor To Oncogene In Er+Ve Breast Cancer: Role Of Androgen Receptor, Jak-Stat, And Lineage Plasticity, Sarah Asemota, Wendy Effah, Jeremiah Holt, Daniel Johnson, Linnea Cripe, Suriyan Ponnusamy, Thirumagal Thiyagarajan, Yekta Khosrosereshki, Dong-Jin Hwang, Yali He, Brandy Grimes, Martin D Fleming, Frances E Pritchard, Ashley Hendrix, Meiyun Fan, Abhinav Jain, Hyo Young Choi, Liza Makowski, D Neil Hayes, Duane D Miller, Lawrence M Pfeffer, Balaji Santhanam, Ramesh Narayanan
Faculty, Staff and Student Publications
Cancers develop resistance to inhibitors of oncogenes mainly due to target-centric mechanisms such as mutations and splicing. While inhibitors or antagonists force targets to unnatural conformation contributing to protein instability and resistance, activating tumor suppressors may maintain the protein in an agonistic conformation to elicit sustainable growth inhibition. Due to the lack of tumor suppressor agonists, this hypothesis and the mechanisms underlying resistance are not understood. In estrogen receptor (ER)-positive breast cancer (BC), androgen receptor (AR) is a druggable tumor suppressor offering a promising avenue for this investigation. Spatial genomics suggests that the molecular portrait of AR-expressing BC cells in …
The Role Of Aldh1a1 In Glioblastoma Proliferation And Invasion, Yu-Kai Huang, Tzu-Ming Wang, Chi-Yu Chen, Chia-Yang Li, Shu-Chi Wang, Khushboo Irshad, Yuan Pan, Kun-Che Chang
The Role Of Aldh1a1 In Glioblastoma Proliferation And Invasion, Yu-Kai Huang, Tzu-Ming Wang, Chi-Yu Chen, Chia-Yang Li, Shu-Chi Wang, Khushboo Irshad, Yuan Pan, Kun-Che Chang
Faculty, Staff and Student Publications
High-grade gliomas, including glioblastoma multiforme (GBM), continue to be a leading aggressive brain tumor in adults, marked by its rapid growth and invasive nature. Aldehyde dehydrogenase 1 family, member A1 (ALDH1A1), an enzyme, plays a significant role in tumor progression, yet its function in high-grade gliomas is still poorly investigated. In this study, we evaluated ALDH1A1 levels in clinical samples of GBM. We also assessed the prognostic significance of ALDH1A1 expression in GBM and LGG (low grade glioma) patients using TCGA (The Cancer Genome Atlas) database analysis. The MTT and transwell assays were utilized to examine cell growth and the …
Astrocyte-Induced Cdk5 Expedites Breast Cancer Brain Metastasis By Suppressing Mhc-I Expression To Evade Immune Recognition, Arseniy E Yuzhalin, Frank J Lowery, Yohei Saito, Xiangliang Yuan, Jun Yao, Yimin Duan, Jingzhen Ding, Sunil Acharya, Chenyu Zhang, Abigail Fajardo, Hao-Nien Chen, Yongkun Wei, Yutong Sun, Lin Zhang, Yi Xiao, Ping Li, Philip L Lorenzi, Jason T Huse, Huihui Fan, Zhongming Zhao, Mien-Chie Hung, Dihua Yu
Astrocyte-Induced Cdk5 Expedites Breast Cancer Brain Metastasis By Suppressing Mhc-I Expression To Evade Immune Recognition, Arseniy E Yuzhalin, Frank J Lowery, Yohei Saito, Xiangliang Yuan, Jun Yao, Yimin Duan, Jingzhen Ding, Sunil Acharya, Chenyu Zhang, Abigail Fajardo, Hao-Nien Chen, Yongkun Wei, Yutong Sun, Lin Zhang, Yi Xiao, Ping Li, Philip L Lorenzi, Jason T Huse, Huihui Fan, Zhongming Zhao, Mien-Chie Hung, Dihua Yu
Faculty, Staff and Student Publications
Brain metastases (BrMs) evade the immune response to develop in the brain, yet the mechanisms of BrM immune evasion remains unclear. This study shows that brain astrocytes induce the overexpression of neuronal-specific cyclin-dependent kinase 5 (Cdk5) in breast cancer-derived BrMs, which facilitates BrM outgrowth in mice. Cdk5-overexpressing BrMs exhibit reduced expression and function of the class I major histocompatibility complex (MHC-I) and antigen-presentation pathway, which are restored by inhibiting Cdk5 genetically or pharmacologically, as evidenced by single-cell RNA sequencing and functional studies. Mechanistically, Cdk5 suppresses MHC-I expression on the cancer cell membrane through the Irf2bp1-Stat1-importin α-Nlrc5 pathway, enabling BrMs to …
Antiangiogenic Tyrosine Kinase Inhibitors Have Differential Efficacy In Clear Cell Renal Cell Carcinoma In Bone, Stefan Maksimovic, Nina C Boscolo, Ludovica La Posta, Sergio Barrios, Mohammad Jad Moussa, Emanuela Gentile, Pedro I Pesquera, Wenjiao Li, Jianfeng Chen, Javier A Gomez, Akshay Basi, Jared K Burks, Christopher Alvarez-Breckenridge, Jianjun Gao, Matthew T Campbell, Eleonora Dondossola
Antiangiogenic Tyrosine Kinase Inhibitors Have Differential Efficacy In Clear Cell Renal Cell Carcinoma In Bone, Stefan Maksimovic, Nina C Boscolo, Ludovica La Posta, Sergio Barrios, Mohammad Jad Moussa, Emanuela Gentile, Pedro I Pesquera, Wenjiao Li, Jianfeng Chen, Javier A Gomez, Akshay Basi, Jared K Burks, Christopher Alvarez-Breckenridge, Jianjun Gao, Matthew T Campbell, Eleonora Dondossola
Faculty, Staff and Student Publications
Clear cell renal cell carcinoma (ccRCC) is the most prevalent kidney neoplasm; bone metastasis (BM) develops in 35% to 40% of metastatic patients and results in substantial morbidity and mortality, as well as medical costs. A key feature of ccRCC is the loss of function of the von Hippel-Lindau protein, which enhances angiogenesis via vascular endothelial growth factor release. Consequently, antiangiogenic tyrosine kinase inhibitors (TKI) emerged as a treatment for ccRCC. However, limited data about their efficacy in BM is available, and no systematic comparisons have been performed. We developed mouse models of bone and lung ccRCC tumors and compared …
A Protein Expression Atlas On Tissue Samples And Cell Lines From Cancer Patients Provides Insights Into Tumor Heterogeneity And Dependencies, Jun Li, Wei Liu, Kamalika Mojumdar, Hong Kim, Zhicheng Zhou, Zhenlin Ju, Shwetha V Kumar, Patrick Kwok-Shing Ng, Han Chen, Michael A Davies, Yiling Lu, Rehan Akbani, Gordon B Mills, Han Liang
A Protein Expression Atlas On Tissue Samples And Cell Lines From Cancer Patients Provides Insights Into Tumor Heterogeneity And Dependencies, Jun Li, Wei Liu, Kamalika Mojumdar, Hong Kim, Zhicheng Zhou, Zhenlin Ju, Shwetha V Kumar, Patrick Kwok-Shing Ng, Han Chen, Michael A Davies, Yiling Lu, Rehan Akbani, Gordon B Mills, Han Liang
Faculty, Staff and Student Publications
The Cancer Genome Atlas (TCGA) and the Cancer Cell Line Encyclopedia (CCLE) are foundational resources in cancer research, providing extensive molecular and phenotypic data. However, large-scale proteomic data across various cancer types for these cohorts remain limited. Here, we expand upon our previous work to generate high-quality protein expression data for approximately 8,000 TCGA patient samples and around 900 CCLE cell line samples, covering 447 clinically relevant proteins, using reverse-phase protein arrays. These protein expression profiles offer profound insights into intertumor heterogeneity and cancer dependency and serve as sensitive functional readouts for somatic alterations. We develop a systematic protein-centered strategy …
Development Of An Engineered Extracellular Vesicles-Based Vaccine Platform For Combined Delivery Of Mrna And Protein To Induce Functional Immunity, Xin Luo, Kathleen M Mcandrews, Kent A Arian, Sami J Morse, Viktoria Boeker, Shreyasee V Kumbhar, Yingying Hu, Krishnan K Mahadevan, Kaira A Church, Sriram Chitta, Nicolas T Ryujin, Janine Hensel, Jianli Dai, Dara P Dowlatshahi, Hikaru Sugimoto, Michelle L Kirtley, Valerie S Lebleu, Shabnam Shalapour, Joe H Simmons, Raghu Kalluri
Development Of An Engineered Extracellular Vesicles-Based Vaccine Platform For Combined Delivery Of Mrna And Protein To Induce Functional Immunity, Xin Luo, Kathleen M Mcandrews, Kent A Arian, Sami J Morse, Viktoria Boeker, Shreyasee V Kumbhar, Yingying Hu, Krishnan K Mahadevan, Kaira A Church, Sriram Chitta, Nicolas T Ryujin, Janine Hensel, Jianli Dai, Dara P Dowlatshahi, Hikaru Sugimoto, Michelle L Kirtley, Valerie S Lebleu, Shabnam Shalapour, Joe H Simmons, Raghu Kalluri
Faculty, Staff and Student Publications
mRNA incorporated in lipid nanoparticles (LNPs) became a new class of vaccine modality for induction of immunity against COVID-19 and ushered in a new era in vaccine development. Here, we report a novel, easy-to-execute, and cost effective engineered extracellular vesicles (EVs)-based combined mRNA and protein vaccine platform (EVX-M+P vaccine) and explore its utility in proof-of-concept immunity studies in the settings of cancer and infectious disease. As a first example, we engineered EVs, natural nanoparticle carriers shed by all cells, to contain ovalbumin mRNA and protein (EVOvaM+P vaccine) to serve as cancer vaccine against ovalbumin-expressing melanoma tumors. EVOvaM+P administration to mice …
In Vivo Crispr Screens Identify Mga As An Immunotherapy Target In Triple-Negative Breast Cancer, Xu Feng, Chang Yang, Yuanjian Huang, Dan Su, Chao Wang, Lori Lyn Wilson, Ling Yin, Mengfan Tang, Siting Li, Zhen Chen, Dandan Zhu, Shimin Wang, Shengzhe Zhang, Jie Zhang, Huimin Zhang, Litong Nie, Min Huang, Jae-Il Park, Traver Hart, Dadi Jiang, Kuirong Jiang, Junjie Chen
In Vivo Crispr Screens Identify Mga As An Immunotherapy Target In Triple-Negative Breast Cancer, Xu Feng, Chang Yang, Yuanjian Huang, Dan Su, Chao Wang, Lori Lyn Wilson, Ling Yin, Mengfan Tang, Siting Li, Zhen Chen, Dandan Zhu, Shimin Wang, Shengzhe Zhang, Jie Zhang, Huimin Zhang, Litong Nie, Min Huang, Jae-Il Park, Traver Hart, Dadi Jiang, Kuirong Jiang, Junjie Chen
Faculty, Staff and Student Publications
Understanding the mechanisms underlying immune evasion is crucial for developing novel anticancer modalities. To systematically uncover tumor-intrinsic genetic modulators involved in immune escape in tumor microenvironment, we performed genome-scale in vivo CRISPR screens in two syngeneic models and later expanded up to seven syngeneic models with a focused validation library. These data help us better understand tumor immune evasion and pave the way for developing effective therapeutics. Importantly, we uncovered that Mga depletion elicited an antitumor immune response and inhibited tumor growth in triple-negative breast cancer. Our findings suggest that Mga may play a role in modulating the tumor immune …
Mta-Cooperative Prmt5 Inhibitors Enhance T Cell-Mediated Antitumor Activity In Mtap-Loss Tumors, Si Chen, Jiakai Hou, Roshni Jaffery, Ashley Guerrero, Rongjie Fu, Leilei Shi, Ningbo Zheng, Ritu Bohat, Nicholas A Egan, Chengtai Yu, Sana Sharif, Yue Lu, Wei He, Shuyue Wang, Donjeta Gjuka, Everett M Stone, Pooja Anil Shah, Jordi Rodon Ahnert, Taiping Chen, Xinli Liu, Mark T Bedford, Han Xu, Weiyi Peng
Mta-Cooperative Prmt5 Inhibitors Enhance T Cell-Mediated Antitumor Activity In Mtap-Loss Tumors, Si Chen, Jiakai Hou, Roshni Jaffery, Ashley Guerrero, Rongjie Fu, Leilei Shi, Ningbo Zheng, Ritu Bohat, Nicholas A Egan, Chengtai Yu, Sana Sharif, Yue Lu, Wei He, Shuyue Wang, Donjeta Gjuka, Everett M Stone, Pooja Anil Shah, Jordi Rodon Ahnert, Taiping Chen, Xinli Liu, Mark T Bedford, Han Xu, Weiyi Peng
Faculty, Staff and Student Publications
BACKGROUND: Hyperactivated protein arginine methyltransferases (PRMTs) are implicated in human cancers. Inhibiting tumor intrinsic PRMT5 was reported to potentiate antitumor immune responses, highlighting the possibility of combining PRMT5 inhibitors (PRMT5i) with cancer immunotherapy. However, global suppression of PRMT5 activity impairs the effector functions of immune cells. Here, we sought to identify strategies to specifically inhibit PRMT5 activity in tumor tissues and develop effective PRMT5i-based immuno-oncology (IO) combinations for cancer treatment, particularly for methylthioadenosine phosphorylase (MTAP)-loss cancer.
METHODS: Isogeneic tumor lines with and without MTAP loss were generated by CRISPR/Cas9 knockout. The effects of two PRMT5 inhibitors (GSK3326595 and MRTX1719) were …
Protocol For The Derivation Of Primary Cancer Stem Cell Lines From Human Ependymal Tumors, Cory M Richman, Peter B Dirks, Michael D Taylor, Kulandaimanuvel Antony Michealraj
Protocol For The Derivation Of Primary Cancer Stem Cell Lines From Human Ependymal Tumors, Cory M Richman, Peter B Dirks, Michael D Taylor, Kulandaimanuvel Antony Michealraj
Faculty, Staff and Students Publications
Cancer stem cells (CSCs) established from surgical biopsies closely mimic the human context and can be used to investigate disease mechanisms, genetic fitness, and therapeutic evaluation. Here, we present a protocol for the derivation of primary patient-derived CSC lines from ependymal tumors. We describe the necessary steps, from surgical intervention and biopsy to the dissociation of ependymomas to derive cultures. We then detail procedures for cell line propagation and define the characteristics of these primary cancer cell lines. For complete details on the use and execution of this protocol, please refer to Michealraj et al.
The P-Myh9/Usp22/Hif-1Α Axis Promotes Lenvatinib Resistance And Cancer Stemness In Hepatocellular Carcinoma, Qiaonan Shan, Lu Yin, Qifan Zhan, Jiongjie Yu, Sheng Pan, Jianyong Zhuo, Wei Zhou, Jiaqi Bao, Lincheng Zhang, Jiachen Hong, Jianan Xiang, Qingyang Que, Kangchen Chen, Shengjun Xu, Jingrui Wang, Yangbo Zhu, Bin He, Jingbang Wu, Haiyang Xie, Shusen Zheng, Tingting Feng, Sunbin Ling, Xiao Xu
The P-Myh9/Usp22/Hif-1Α Axis Promotes Lenvatinib Resistance And Cancer Stemness In Hepatocellular Carcinoma, Qiaonan Shan, Lu Yin, Qifan Zhan, Jiongjie Yu, Sheng Pan, Jianyong Zhuo, Wei Zhou, Jiaqi Bao, Lincheng Zhang, Jiachen Hong, Jianan Xiang, Qingyang Que, Kangchen Chen, Shengjun Xu, Jingrui Wang, Yangbo Zhu, Bin He, Jingbang Wu, Haiyang Xie, Shusen Zheng, Tingting Feng, Sunbin Ling, Xiao Xu
Faculty, Staff and Student Publications
Lenvatinib is a targeted drug used for first-line treatment of hepatocellular carcinoma (HCC). A deeper insight into the resistance mechanism of HCC against lenvatinib is urgently needed. In this study, we aimed to dissect the underlying mechanism of lenvatinib resistance (LR) and provide effective treatment strategies. We established an HCC model of acquired LR. Cell counting, migration, self-renewal ability, chemoresistance and expression of stemness genes were used to detect the stemness of HCC cells. Molecular and biochemical strategies such as RNA-sequencing, immunoprecipitation, mass spectrometry and ubiquitination assays were used to explore the underlying mechanisms. Patient-derived HCC models and HCC samples …
The Estrogen Receptor-Related Orphan Receptors Regulate Autophagy Through Tfeb, Mckenna Losby, Matthew Hayes, Aurore Valfort, Danesh H Sopariwala, Ryan Sanders, John K Walker, Weiyi Xu, Vihang A Narkar, Lilei Zhang, Cyrielle Billon, Thomas P Burris
The Estrogen Receptor-Related Orphan Receptors Regulate Autophagy Through Tfeb, Mckenna Losby, Matthew Hayes, Aurore Valfort, Danesh H Sopariwala, Ryan Sanders, John K Walker, Weiyi Xu, Vihang A Narkar, Lilei Zhang, Cyrielle Billon, Thomas P Burris
Faculty, Staff and Students Publications
Autophagy is an essential self-degradative and recycling mechanism that maintains cellular homeostasis. Estrogen receptor-related orphan receptors (ERRs) are fundamental in regulating cardiac metabolism and function. Previously, we showed that ERR agonists improve cardiac function in models of heart failure and induce autophagy. Here, we characterized a mechanism by which ERRs induce the autophagy pathway in cardiomyocytes. Transcription factor EB (TFEB) is a master regulator of the autophagy-lysosome pathway and has been shown to be crucial regulator of genes that control autophagy. We discovered that TFEB is a direct ERR target gene whose expression is induced by ERR agonists. Activation of …
Creb-Binding Protein/P300 Bromodomain Inhibition Reduces Neutrophil Accumulation And Activates Antitumor Immunity In Triple-Negative Breast Cancer, Xueying Yuan, Xiaoxin Hao, Hilda L Chan, Na Zhao, Diego A Pedroza, Fengshuo Liu, Kang Le, Alex J Smith, Sebastian J Calderon, Nadia Lieu, Michael J Soth, Philip Jones, Xiang Hf Zhang, Jeffrey M Rosen
Creb-Binding Protein/P300 Bromodomain Inhibition Reduces Neutrophil Accumulation And Activates Antitumor Immunity In Triple-Negative Breast Cancer, Xueying Yuan, Xiaoxin Hao, Hilda L Chan, Na Zhao, Diego A Pedroza, Fengshuo Liu, Kang Le, Alex J Smith, Sebastian J Calderon, Nadia Lieu, Michael J Soth, Philip Jones, Xiang Hf Zhang, Jeffrey M Rosen
Faculty, Staff and Students Publications
Tumor-associated neutrophils (TANs) have been shown to promote immunosuppression and tumor progression, and a high TAN frequency predicts poor prognosis in triple-negative breast cancer (TNBC). Dysregulation of CREB-binding protein (CBP)/P300 function has been observed with multiple cancer types. The bromodomain (BRD) of CBP/P300 has been shown to regulate its activity. In this study, we found that IACS-70654, a selective CBP/P300 BRD inhibitor, reduced TANs and inhibited the growth of neutrophil-enriched TNBC models. In the bone marrow, CBP/P300 BRD inhibition reduced the tumor-driven abnormal differentiation and proliferation of neutrophil progenitors. Inhibition of CBP/P300 BRD also stimulated the immune response by inducing …
Longitudinal Intravascular Antibody Labeling Identified Regulatory T Cell Recruitment As A Therapeutic Target In A Mouse Model Of Lung Cancer, Sean-Luc Shanahan, Nikesh Kunder, Charles Inaku, Natalie B Hagan, Grace Gibbons, Nicolas Mathey-Andrews, Gayathri Anandappa, Shawn Soares, Kristen E Pauken, Tyler Jacks, Jason M Schenkel
Longitudinal Intravascular Antibody Labeling Identified Regulatory T Cell Recruitment As A Therapeutic Target In A Mouse Model Of Lung Cancer, Sean-Luc Shanahan, Nikesh Kunder, Charles Inaku, Natalie B Hagan, Grace Gibbons, Nicolas Mathey-Andrews, Gayathri Anandappa, Shawn Soares, Kristen E Pauken, Tyler Jacks, Jason M Schenkel
Faculty, Staff and Student Publications
Anticancer immunity is predicated on leukocyte migration into tumors. Once recruited, leukocytes undergo substantial reprogramming to adapt to the tumor microenvironment. A major challenge in the field is distinguishing recently recruited from resident leukocytes in tumors. In this study, we developed an intravascular Ab technique to label circulating mouse leukocytes before they migrate to tissues, providing unprecedented insight into the kinetics of recruitment. This approach unveiled the substantial role of leukocyte migration in tumor progression using a preclinical mouse model of lung adenocarcinoma. Regulatory T cells (Tregs), critical mediators of immunosuppression, were continuously and rapidly recruited into tumors throughout cancer …
Targeting Prmt3 Impairs Methylation And Oligomerization Of Hsp60 To Boost Anti-Tumor Immunity By Activating Cgas/Sting Signaling, Yunxing Shi, Zongfeng Wu, Shaoru Liu, Dinglan Zuo, Yi Niu, Yuxiong Qiu, Liang Qiao, Wei He, Jiliang Qiu, Yunfei Yuan, Guocan Wang, Binkui Li
Targeting Prmt3 Impairs Methylation And Oligomerization Of Hsp60 To Boost Anti-Tumor Immunity By Activating Cgas/Sting Signaling, Yunxing Shi, Zongfeng Wu, Shaoru Liu, Dinglan Zuo, Yi Niu, Yuxiong Qiu, Liang Qiao, Wei He, Jiliang Qiu, Yunfei Yuan, Guocan Wang, Binkui Li
Faculty, Staff and Student Publications
Immune checkpoint blockade (ICB) has emerged as a promising therapeutic option for hepatocellular carcinoma (HCC), but resistance to ICB occurs and patient responses vary. Here, we uncover protein arginine methyltransferase 3 (PRMT3) as a driver for immunotherapy resistance in HCC. We show that PRMT3 expression is induced by ICB-activated T cells via an interferon-gamma (IFNγ)-STAT1 signaling pathway, and higher PRMT3 expression levels correlate with reduced numbers of tumor-infiltrating CD8+ T cells and poorer response to ICB. Genetic depletion or pharmacological inhibition of PRMT3 elicits an influx of T cells into tumors and reduces tumor size in HCC mouse models. Mechanistically, …