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Articles 1081 - 1110 of 2945

Full-Text Articles in Medical Specialties

Jag1/2 Maintain Esophageal Homeostasis And Suppress Foregut Tumorigenesis By Restricting The Basal Progenitor Cell Pool, Haidi Huang, Yu Jiang, Jiangying Liu, Dan Luo, Jianghong Yuan, Rongzi Mu, Xiang Yu, Donglei Sun, Jihong Lin, Qiyue Chen, Xinjing Li, Ming Jiang, Jianming Xu, Bo Chu, Chengqian Yin, Lei Zhang, Youqiong Ye, Bo Cao, Qiong Wang, Yongchun Zhang May 2024

Jag1/2 Maintain Esophageal Homeostasis And Suppress Foregut Tumorigenesis By Restricting The Basal Progenitor Cell Pool, Haidi Huang, Yu Jiang, Jiangying Liu, Dan Luo, Jianghong Yuan, Rongzi Mu, Xiang Yu, Donglei Sun, Jihong Lin, Qiyue Chen, Xinjing Li, Ming Jiang, Jianming Xu, Bo Chu, Chengqian Yin, Lei Zhang, Youqiong Ye, Bo Cao, Qiong Wang, Yongchun Zhang

Faculty, Staff and Students Publications

Basal progenitor cells are crucial for maintaining foregut (the esophagus and forestomach) homeostasis. When their function is dysregulated, it can promote inflammation and tumorigenesis. However, the mechanisms underlying these processes remain largely unclear. Here, we employ genetic mouse models to reveal that Jag1/2 regulate esophageal homeostasis and foregut tumorigenesis by modulating the function of basal progenitor cells. Deletion of Jag1/2 in mice disrupts esophageal and forestomach epithelial homeostasis. Mechanistically, Jag1/2 deficiency impairs activation of Notch signaling, leading to reduced squamous epithelial differentiation and expansion of basal progenitor cells. Moreover, Jag1/2 deficiency exacerbates the deoxycholic acid (DCA)-induced squamous epithelial injury and …


Integrative Molecular Analyses Of The Md Anderson Prostate Cancer Patient-Derived Xenograft (Mda Pca Pdx) Series, Nicolas Anselmino, Estefania Labanca, Peter D A Shepherd, Jiabin Dong, Jun Yang, Xiaofei Song, Subhiksha Nandakumar, Ritika Kundra, Cindy Lee, Nikolaus Schultz, Jianhua Zhang, John C Araujo, Ana M Aparicio, Sumit K Subudhi, Paul G Corn, Louis L Pisters, John F Ward, John W Davis, Elba S Vazquez, Geraldine Gueron, Christopher J Logothetis, Andrew Futreal, Patricia Troncoso, Yu Chen, Nora M Navone May 2024

Integrative Molecular Analyses Of The Md Anderson Prostate Cancer Patient-Derived Xenograft (Mda Pca Pdx) Series, Nicolas Anselmino, Estefania Labanca, Peter D A Shepherd, Jiabin Dong, Jun Yang, Xiaofei Song, Subhiksha Nandakumar, Ritika Kundra, Cindy Lee, Nikolaus Schultz, Jianhua Zhang, John C Araujo, Ana M Aparicio, Sumit K Subudhi, Paul G Corn, Louis L Pisters, John F Ward, John W Davis, Elba S Vazquez, Geraldine Gueron, Christopher J Logothetis, Andrew Futreal, Patricia Troncoso, Yu Chen, Nora M Navone

Faculty, Staff and Student Publications

PURPOSE: Develop and deploy a robust discovery platform that encompasses heterogeneity, clinical annotation, and molecular characterization and overcomes the limited availability of prostate cancer models. This initiative builds on the rich MD Anderson (MDA) prostate cancer (PCa) patient-derived xenograft (PDX) resource to complement existing publicly available databases by addressing gaps in clinically annotated models reflecting the heterogeneity of potentially lethal and lethal prostate cancer.

EXPERIMENTAL DESIGN: We performed whole-genome, targeted, and RNA sequencing in representative samples of the same tumor from 44 PDXs derived from 38 patients linked to donor tumor metadata and corresponding organoids. The cohort includes models derived …


Ire1Α Determines Ferroptosis Sensitivity Through Regulation Of Glutathione Synthesis, Dadi Jiang, Youming Guo, Tianyu Wang, Liang Wang, Yuelong Yan, Ling Xia, Rakesh Bam, Zhifen Yang, Hyemin Lee, Takao Iwawaki, Boyi Gan, Albert C Koong May 2024

Ire1Α Determines Ferroptosis Sensitivity Through Regulation Of Glutathione Synthesis, Dadi Jiang, Youming Guo, Tianyu Wang, Liang Wang, Yuelong Yan, Ling Xia, Rakesh Bam, Zhifen Yang, Hyemin Lee, Takao Iwawaki, Boyi Gan, Albert C Koong

Faculty, Staff and Student Publications

Cellular sensitivity to ferroptosis is primarily regulated by mechanisms mediating lipid hydroperoxide detoxification. We show that inositol-requiring enzyme 1 (IRE1α), an endoplasmic reticulum (ER) resident protein critical for the unfolded protein response (UPR), also determines cellular sensitivity to ferroptosis. Cancer and normal cells depleted of IRE1α gain resistance to ferroptosis, while enhanced IRE1α expression promotes sensitivity to ferroptosis. Mechanistically, IRE1α's endoribonuclease activity cleaves and down-regulates the mRNA of key glutathione biosynthesis regulators glutamate-cysteine ligase catalytic subunit (GCLC) and solute carrier family 7 member 11 (SLC7A11). This activity of IRE1α is independent of its role in regulating the UPR and is …


Targeting Ccl2/Ccr2 Signaling Overcomes Mek Inhibitor Resistance In Acute Myeloid Leukemia, Rucha V Modak, Katia G De Oliveira Rebola, John Mcclatchy, Mona Mohammadhosseini, Alisa Damnernsawad, Stephen E Kurtz, Christopher A Eide, Guanming Wu, Ted Laderas, Tamilla Nechiporuk, Marina A Gritsenko, Joshua R Hansen, Chelsea Hutchinson, Sara J C Gosline, Paul Piehowski, Daniel Bottomly, Nicholas Short, Karin Rodland, Shannon K Mcweeney, Jeffrey W Tyner, Anupriya Agarwal May 2024

Targeting Ccl2/Ccr2 Signaling Overcomes Mek Inhibitor Resistance In Acute Myeloid Leukemia, Rucha V Modak, Katia G De Oliveira Rebola, John Mcclatchy, Mona Mohammadhosseini, Alisa Damnernsawad, Stephen E Kurtz, Christopher A Eide, Guanming Wu, Ted Laderas, Tamilla Nechiporuk, Marina A Gritsenko, Joshua R Hansen, Chelsea Hutchinson, Sara J C Gosline, Paul Piehowski, Daniel Bottomly, Nicholas Short, Karin Rodland, Shannon K Mcweeney, Jeffrey W Tyner, Anupriya Agarwal

Faculty, Staff and Student Publications

Purpose: Emerging evidence underscores the critical role of extrinsic factors within the microenvironment in protecting leukemia cells from therapeutic interventions, driving disease progression, and promoting drug resistance in acute myeloid leukemia (AML). This finding emphasizes the need for the identification of targeted therapies that inhibit intrinsic and extrinsic signaling to overcome drug resistance in AML.

Experimental design: We performed a comprehensive analysis utilizing a cohort of ∼300 AML patient samples. This analysis encompassed the evaluation of secreted cytokines/growth factors, gene expression, and ex vivo drug sensitivity to small molecules. Our investigation pinpointed a notable association between elevated levels of CCL2 …


Optical Coherence Tomography-Guided Brillouin Microscopy Highlights Regional Tissue Stiffness Differences During Anterior Neural Tube Closure In The Mthfd1l Murine Mutant, Yogeshwari S Ambekar, Carlo Donato Caiaffa, Bogdan J Wlodarczyk, Manmohan Singh, Alexander W Schill, John W Steele, Jitao Zhang, Salavat R Aglyamov, Giuliano Scarcelli, Richard H Finnell, Kirill V Larin May 2024

Optical Coherence Tomography-Guided Brillouin Microscopy Highlights Regional Tissue Stiffness Differences During Anterior Neural Tube Closure In The Mthfd1l Murine Mutant, Yogeshwari S Ambekar, Carlo Donato Caiaffa, Bogdan J Wlodarczyk, Manmohan Singh, Alexander W Schill, John W Steele, Jitao Zhang, Salavat R Aglyamov, Giuliano Scarcelli, Richard H Finnell, Kirill V Larin

Faculty, Staff and Students Publications

Neurulation is a highly synchronized biomechanical process leading to the formation of the brain and spinal cord, and its failure leads to neural tube defects (NTDs). Although we are rapidly learning the genetic mechanisms underlying NTDs, the biomechanical aspects are largely unknown. To understand the correlation between NTDs and tissue stiffness during neural tube closure (NTC), we imaged an NTD murine model using optical coherence tomography (OCT), Brillouin microscopy and confocal fluorescence microscopy. Here, we associate structural information from OCT with local stiffness from the Brillouin signal of embryos undergoing neurulation. The stiffness of neuroepithelial tissues in Mthfd1l null embryos …


Optical Coherence Tomography-Guided Brillouin Microscopy Highlights Regional Tissue Stiffness Differences During Anterior Neural Tube Closure In The Mthfd1l Murine Mutant, Yogeshwari S Ambekar, Carlo Donato Caiaffa, Bogdan J Wlodarczyk, Manmohan Singh, Alexander W Schill, John W Steele, Jitao Zhang, Salavat R Aglyamov, Giuliano Scarcelli, Richard H Finnell, Kirill V Larin May 2024

Optical Coherence Tomography-Guided Brillouin Microscopy Highlights Regional Tissue Stiffness Differences During Anterior Neural Tube Closure In The Mthfd1l Murine Mutant, Yogeshwari S Ambekar, Carlo Donato Caiaffa, Bogdan J Wlodarczyk, Manmohan Singh, Alexander W Schill, John W Steele, Jitao Zhang, Salavat R Aglyamov, Giuliano Scarcelli, Richard H Finnell, Kirill V Larin

Faculty, Staff and Students Publications

Neurulation is a highly synchronized biomechanical process leading to the formation of the brain and spinal cord, and its failure leads to neural tube defects (NTDs). Although we are rapidly learning the genetic mechanisms underlying NTDs, the biomechanical aspects are largely unknown. To understand the correlation between NTDs and tissue stiffness during neural tube closure (NTC), we imaged an NTD murine model using optical coherence tomography (OCT), Brillouin microscopy and confocal fluorescence microscopy. Here, we associate structural information from OCT with local stiffness from the Brillouin signal of embryos undergoing neurulation. The stiffness of neuroepithelial tissues in Mthfd1l null embryos …


C-Terminal Binding Protein 2 Is A Novel Tumor Suppressor Targeting The Myc-Irf4 Axis In Multiple Myeloma, Coty Hing Yau Cheung, Chi Keung Cheng, Kam Tong Leung, Chi Zhang, Chi Yan Ho, Xi Luo, Angel Yuet Fong Kam, Tian Xia, Thomas Shek Kong Wan, Herbert Augustus Pitts, Natalie Pui Ha Chan, Joyce Sin Cheung, Raymond Siu Ming Wong, Xiao-Bing Zhang, Margaret Heung Ling Ng May 2024

C-Terminal Binding Protein 2 Is A Novel Tumor Suppressor Targeting The Myc-Irf4 Axis In Multiple Myeloma, Coty Hing Yau Cheung, Chi Keung Cheng, Kam Tong Leung, Chi Zhang, Chi Yan Ho, Xi Luo, Angel Yuet Fong Kam, Tian Xia, Thomas Shek Kong Wan, Herbert Augustus Pitts, Natalie Pui Ha Chan, Joyce Sin Cheung, Raymond Siu Ming Wong, Xiao-Bing Zhang, Margaret Heung Ling Ng

Faculty, Staff and Student Publications

Multiple myeloma (MM) cells are addicted to MYC and its direct transactivation targets IRF4 for proliferation and survival. MYC and IRF4 are still considered "undruggable," as most small-molecule inhibitors suffer from low potency, suboptimal pharmacokinetic properties, and undesirable off-target effects. Indirect inhibition of MYC/IRF4 emerges as a therapeutic vulnerability in MM. Here, we uncovered an unappreciated tumor-suppressive role of C-terminal binding protein 2 (CTBP2) in MM via strong inhibition of the MYC-IRF4 axis. In contrast to epithelial cancers, CTBP2 is frequently downregulated in MM, in association with shortened survival, hyperproliferative features, and adverse clinical outcomes. Restoration of CTBP2 exhibited potent …


The Crosstalk Between Macrophages And Cancer Cells Potentiates Pancreatic Cancer Cachexia, Mingyang Liu, Yu Ren, Zhijun Zhou, Jingxuan Yang, Xiuhui Shi, Yang Cai, Alex X Arreola, Wenyi Luo, Kar-Ming Fung, Chao Xu, Ryan D Nipp, Michael S Bronze, Lei Zheng, Yi-Ping Li, Courtney W Houchen, Yuqing Zhang, Min Li May 2024

The Crosstalk Between Macrophages And Cancer Cells Potentiates Pancreatic Cancer Cachexia, Mingyang Liu, Yu Ren, Zhijun Zhou, Jingxuan Yang, Xiuhui Shi, Yang Cai, Alex X Arreola, Wenyi Luo, Kar-Ming Fung, Chao Xu, Ryan D Nipp, Michael S Bronze, Lei Zheng, Yi-Ping Li, Courtney W Houchen, Yuqing Zhang, Min Li

Faculty, Staff and Student Publications

With limited treatment options, cachexia remains a major challenge for patients with cancer. Characterizing the interplay between tumor cells and the immune microenvironment may help identify potential therapeutic targets for cancer cachexia. Herein, we investigate the critical role of macrophages in potentiating pancreatic cancer induced muscle wasting via promoting TWEAK (TNF-like weak inducer of apoptosis) secretion from the tumor. Specifically, depletion of macrophages reverses muscle degradation induced by tumor cells. Macrophages induce non-autonomous secretion of TWEAK through CCL5/TRAF6/NF-κB pathway. TWEAK promotes muscle atrophy by activating MuRF1 initiated muscle remodeling. Notably, tumor cells recruit and reprogram macrophages via the CCL2/CCR2 axis …


Regulation Of Cerebral Blood Flow Boosts Precise Brain Targeting Of Vinpocetine-Derived Ionizable-Lipidoid Nanoparticles, Xufei Bian, Ling Yang, Dingxi Jiang, Adam J Grippin, Yifan Ma, Shuang Wu, Linchong Wu, Xiaoyou Wang, Zhongjie Tang, Kaicheng Tang, Weidong Pan, Shiyan Dong, Betty Y S Kim, Wen Jiang, Zhaogang Yang, Chong Li May 2024

Regulation Of Cerebral Blood Flow Boosts Precise Brain Targeting Of Vinpocetine-Derived Ionizable-Lipidoid Nanoparticles, Xufei Bian, Ling Yang, Dingxi Jiang, Adam J Grippin, Yifan Ma, Shuang Wu, Linchong Wu, Xiaoyou Wang, Zhongjie Tang, Kaicheng Tang, Weidong Pan, Shiyan Dong, Betty Y S Kim, Wen Jiang, Zhaogang Yang, Chong Li

Faculty, Staff and Student Publications

Despite advances in active drug targeting for blood-brain barrier penetration, two key challenges persist: first, attachment of a targeting ligand to the drug or drug carrier does not enhance its brain biodistribution; and second, many brain diseases are intricately linked to microcirculation disorders that significantly impede drug accumulation within brain lesions even after they cross the barrier. Inspired by the neuroprotective properties of vinpocetine, which regulates cerebral blood flow, we propose a molecular library design centered on this class of cyclic tertiary amine compounds and develop a self-enhanced brain-targeted nucleic acid delivery system. Our findings reveal that: (i) vinpocetine-derived ionizable-lipidoid …


Mitochondria Regulate Proliferation In Adult Cardiac Myocytes, Gregory B Waypa, Kimberly A Smith, Paul T Mungai, Vincent J Dudley, Kathryn A Helmin, Benjamin D Singer, Clara Bien Peek, Joseph Bass, Lauren Nelson, Sanjiv J Shah, Gaston Ofman, J Andrew Wasserstrom, William A Muller, Alexander V Misharin, G R Scott Budinger, Hiam Abdala-Valencia, Navdeep S Chandel, Danijela Dokic, Elizabeth Bartom, Shuang Zhang, Yuki Tatekoshi, Amir Mahmoodzadeh, Hossein Ardehali, Edward B Thorp, Paul T Schumacker May 2024

Mitochondria Regulate Proliferation In Adult Cardiac Myocytes, Gregory B Waypa, Kimberly A Smith, Paul T Mungai, Vincent J Dudley, Kathryn A Helmin, Benjamin D Singer, Clara Bien Peek, Joseph Bass, Lauren Nelson, Sanjiv J Shah, Gaston Ofman, J Andrew Wasserstrom, William A Muller, Alexander V Misharin, G R Scott Budinger, Hiam Abdala-Valencia, Navdeep S Chandel, Danijela Dokic, Elizabeth Bartom, Shuang Zhang, Yuki Tatekoshi, Amir Mahmoodzadeh, Hossein Ardehali, Edward B Thorp, Paul T Schumacker

Faculty, Staff and Student Publications

Newborn mammalian cardiomyocytes quickly transition from a fetal to an adult phenotype that utilizes mitochondrial oxidative phosphorylation but loses mitotic capacity. We tested whether forced reversal of adult cardiomyocytes back to a fetal glycolytic phenotype would restore proliferative capacity. We deleted Uqcrfs1 (mitochondrial Rieske iron-sulfur protein, RISP) in hearts of adult mice. As RISP protein decreased, heart mitochondrial function declined, and glucose utilization increased. Simultaneously, the hearts underwent hyperplastic remodeling during which cardiomyocyte number doubled without cellular hypertrophy. Cellular energy supply was preserved, AMPK activation was absent, and mTOR activation was evident. In ischemic hearts with RISP deletion, new cardiomyocytes …


Downregulation Of Mirlet7 Mirna Family Promotes Tc17 Differentiation And Emphysema Via De-Repression Of Rorγt, Phillip A Erice, Xinyan Huang, Matthew J Seasock, Matthew J Robertson, Hui-Ying Tung, Melissa A Perez-Negron, Shivani L Lotlikar, David B Corry, Farrah Kheradmand, Antony Rodriguez May 2024

Downregulation Of Mirlet7 Mirna Family Promotes Tc17 Differentiation And Emphysema Via De-Repression Of Rorγt, Phillip A Erice, Xinyan Huang, Matthew J Seasock, Matthew J Robertson, Hui-Ying Tung, Melissa A Perez-Negron, Shivani L Lotlikar, David B Corry, Farrah Kheradmand, Antony Rodriguez

Faculty, Staff and Students Publications

Environmental air irritants including nanosized carbon black (nCB) can drive systemic inflammation, promoting chronic obstructive pulmonary disease (COPD) and emphysema development. The let-7 microRNA (Mirlet7 miRNA) family is associated with IL-17-driven T cell inflammation, a canonical signature of lung inflammation. Recent evidence suggests the Mirlet7 family is downregulated in patients with COPD, however, whether this repression conveys a functional consequence on emphysema pathology has not been elucidated. Here, we show that overall expression of the Mirlet7 clusters, Mirlet7b/Mirlet7c2 and Mirlet7a1/Mirlet7f1/Mirlet7d, are reduced in the lungs and T cells of smokers with emphysema as well as in mice with …


Optimization Of The Antifungal Properties Of The Bacterial Peptide Entv By Variant Analysis, Shantanu Guha, Shane A Cristy, Giuseppe Buda De Cesare, Melissa R Cruz, Michael C Lorenz, Danielle A Garsin May 2024

Optimization Of The Antifungal Properties Of The Bacterial Peptide Entv By Variant Analysis, Shantanu Guha, Shane A Cristy, Giuseppe Buda De Cesare, Melissa R Cruz, Michael C Lorenz, Danielle A Garsin

Faculty, Staff and Student Publications

Fungal resistance to commonly used medicines is a growing public health threat, and there is a dire need to develop new classes of antifungals. We previously described a peptide produced by Enterococcus faecalis, EntV, that restricts Candida albicans to a benign form rather than having direct fungicidal activity. Moreover, we showed that one 12-amino acid (aa) alpha helix of this peptide retained full activity, with partial activity down to the 10aa alpha helix. Using these peptides as a starting point, the current investigation sought to identify the critical features necessary for antifungal activity and to screen for new variants …


Progress Toward A Vaccine For Extraintestinal Pathogenic Coli (Expec) Ii: Efficacy Of A Toxin-Autotransporter Dual Antigen Approach, Yikun Xing, Justin R Clark, James D Chang, Jacob J Zulk, Dylan M Chirman, Felipe-Andres Piedra, Ellen E Vaughan, Haroldo J Hernandez Santos, Kathryn A Patras, Anthony W Maresso May 2024

Progress Toward A Vaccine For Extraintestinal Pathogenic Coli (Expec) Ii: Efficacy Of A Toxin-Autotransporter Dual Antigen Approach, Yikun Xing, Justin R Clark, James D Chang, Jacob J Zulk, Dylan M Chirman, Felipe-Andres Piedra, Ellen E Vaughan, Haroldo J Hernandez Santos, Kathryn A Patras, Anthony W Maresso

Faculty, Staff and Students Publications

Extraintestinal pathogenic Escherichia coli (ExPEC) is a leading cause of worldwide morbidity and mortality, the top cause of antimicrobial-resistant (AMR) infections, and the most frequent cause of life-threatening sepsis and urinary tract infections (UTI) in adults. The development of an effective and universal vaccine is complicated by this pathogen’s pan-genome, its ability to mix and match virulence factors and AMR genes via horizontal gene transfer, an inability to decipher commensal from pathogens, and its intimate association and co-evolution with mammals. Using a pan virulome analysis of >20,000 sequenced E. coli strains, we identified the secreted cytolysin α-hemolysin (HlyA) as a …


Metaplastic Regeneration In The Mouse Stomach Requires A Reactive Oxygen Species Pathway, Zhi-Feng Miao, Jing-Xu Sun, Xuan-Zhang Huang, Shi Bai, Min-Jiao Pang, Jia-Yi Li, Han-Yu Chen, Qi-Yue Tong, Shi-Yu Ye, Xin-Yu Wang, Xiao-Hai Hu, Jing-Ying Li, Jin-Wei Zou, Wen Xu, Jun-Hao Yang, Xi Lu, Jason C Mills, Zhen-Ning Wang May 2024

Metaplastic Regeneration In The Mouse Stomach Requires A Reactive Oxygen Species Pathway, Zhi-Feng Miao, Jing-Xu Sun, Xuan-Zhang Huang, Shi Bai, Min-Jiao Pang, Jia-Yi Li, Han-Yu Chen, Qi-Yue Tong, Shi-Yu Ye, Xin-Yu Wang, Xiao-Hai Hu, Jing-Ying Li, Jin-Wei Zou, Wen Xu, Jun-Hao Yang, Xi Lu, Jason C Mills, Zhen-Ning Wang

Faculty, Staff and Students Publications

In pyloric metaplasia, mature gastric chief cells reprogram via an evolutionarily conserved process termed paligenosis to re-enter the cell cycle and become spasmolytic polypeptide-expressing metaplasia (SPEM) cells. Here, we use single-cell RNA sequencing (scRNA-seq) following injury to the murine stomach to analyze mechanisms governing paligenosis at high resolution. Injury causes induced reactive oxygen species (ROS) with coordinated changes in mitochondrial activity and cellular metabolism, requiring the transcriptional mitochondrial regulator Ppargc1a (Pgc1α) and ROS regulator Nf2el2 (Nrf2). Loss of the ROS and mitochondrial control in Ppargc1a-/- mice causes the death of paligenotic cells through ferroptosis. Blocking the cystine transporter SLC7A11(xCT), which …


Triggering Receptor Expressed On Myeloid Cells 2 (Trem2) Regulates Phagocytosis In Glioblastoma, Mekenzie M Peshoff, Pravesh Gupta, Shivangi Oberai, Rakesh Trivedi, Hiroshi Katayama, Prashanth Chakrapani, Minghao Dang, Simona Migliozzi, Joy Gumin, Divya B Kadri, Jessica K Lin, Nancy K Milam, Mark E Maynard, Brian D Vaillant, Brittany Parker-Kerrigan, Frederick F Lang, Jason T Huse, Antonio Iavarone, Linghua Wang, Karen Clise-Dwyer, Krishna P Bhat May 2024

Triggering Receptor Expressed On Myeloid Cells 2 (Trem2) Regulates Phagocytosis In Glioblastoma, Mekenzie M Peshoff, Pravesh Gupta, Shivangi Oberai, Rakesh Trivedi, Hiroshi Katayama, Prashanth Chakrapani, Minghao Dang, Simona Migliozzi, Joy Gumin, Divya B Kadri, Jessica K Lin, Nancy K Milam, Mark E Maynard, Brian D Vaillant, Brittany Parker-Kerrigan, Frederick F Lang, Jason T Huse, Antonio Iavarone, Linghua Wang, Karen Clise-Dwyer, Krishna P Bhat

Faculty, Staff and Student Publications

Background: Glioblastomas (GBMs) are central nervous system tumors that resist standard-of-care interventions and even immune checkpoint blockade. Myeloid cells in the tumor microenvironment can contribute to GBM progression; therefore, emerging immunotherapeutic approaches include reprogramming these cells to achieve desirable antitumor activity. Triggering receptor expressed on myeloid cells 2 (TREM2) is a myeloid signaling regulator that has been implicated in a variety of cancers and neurological diseases with contrasting functions, but its role in GBM immunopathology and progression is still under investigation.

Methods: Our reverse translational investigations leveraged single-cell RNA sequencing and cytometry of human gliomas to characterize TREM2 expression across …


Risk Of Meningomyelocele Mediated By The Common 22q112 Deletion, Keng Ioi Vong, Sangmoon Lee, Kit Sing Au, T Blaine Crowley, Valeria Capra, Jeremiah Martino, Meade Haller, Camila Araújo, Hélio R Machado, Renee George, Bryn Gerding, Kiely N James, Valentina Stanley, Nan Jiang, Kameron Alu, Naomi Meave, Anna S Nidhiry, Fiza Jiwani, Isaac Tang, Ashna Nisal, Ishani Jhamb, Arzoo Patel, Aakash Patel, Jennifer Mcevoy-Venneri, Chelsea Barrows, Celina Shen, Yoo-Jin Ha, Robyn Howarth, Madison Strain, Allison Elizabeth Ashley-Koch, Matloob Azam, Sara Mumtaz, Gyang Markus Bot, Richard H Finnell, Zoha Kibar, Ahmed I Marwan, Gia Melikishvili, Hal S Meltzer, Osvaldo M Mutchinick, David A Stevenson, Henry J Mroczkowski, Betsy Ostrander, Erica Schindewolf, Julie Moldenhauer, Elaine H Zackai, Beverly S Emanuel, Sixto Garcia-Minaur, Beata A Nowakowska, Roger E Stevenson, Maha S Zaki, Hope Northrup, Hanna K Mcnamara, Kimberly A Aldinger, Ian G Phelps, Mei Deng, Ian A Glass, Bernice Morrow, Donna M Mcdonald-Mcginn, Simone Sanna-Cherchi, Dolores J Lamb, Joseph G Gleeson May 2024

Risk Of Meningomyelocele Mediated By The Common 22q112 Deletion, Keng Ioi Vong, Sangmoon Lee, Kit Sing Au, T Blaine Crowley, Valeria Capra, Jeremiah Martino, Meade Haller, Camila Araújo, Hélio R Machado, Renee George, Bryn Gerding, Kiely N James, Valentina Stanley, Nan Jiang, Kameron Alu, Naomi Meave, Anna S Nidhiry, Fiza Jiwani, Isaac Tang, Ashna Nisal, Ishani Jhamb, Arzoo Patel, Aakash Patel, Jennifer Mcevoy-Venneri, Chelsea Barrows, Celina Shen, Yoo-Jin Ha, Robyn Howarth, Madison Strain, Allison Elizabeth Ashley-Koch, Matloob Azam, Sara Mumtaz, Gyang Markus Bot, Richard H Finnell, Zoha Kibar, Ahmed I Marwan, Gia Melikishvili, Hal S Meltzer, Osvaldo M Mutchinick, David A Stevenson, Henry J Mroczkowski, Betsy Ostrander, Erica Schindewolf, Julie Moldenhauer, Elaine H Zackai, Beverly S Emanuel, Sixto Garcia-Minaur, Beata A Nowakowska, Roger E Stevenson, Maha S Zaki, Hope Northrup, Hanna K Mcnamara, Kimberly A Aldinger, Ian G Phelps, Mei Deng, Ian A Glass, Bernice Morrow, Donna M Mcdonald-Mcginn, Simone Sanna-Cherchi, Dolores J Lamb, Joseph G Gleeson

Faculty, Staff and Student Publications

Meningomyelocele is one of the most severe forms of neural tube defects (NTDs) and the most frequent structural birth defect of the central nervous system. We assembled the Spina Bifida Sequencing Consortium to identify causes. Exome and genome sequencing of 715 parent-offspring trios identified six patients with chromosomal 22q11.2 deletions, suggesting a 23-fold increased risk compared with the general population. Furthermore, analysis of a separate 22q11.2 deletion cohort suggested a 12- to 15-fold increased NTD risk of meningomyelocele. The loss of


Autologous Bone Marrow Mononuclear Cells To Treat Severe Traumatic Brain Injury In Children, Charles S Cox, David M Notrica, Jenifer Juranek, Jeffrey H Miller, Fabio Triolo, Steven Kosmach, Sean I Savitz, P David Adelson, Claudia Pedroza, Scott D Olson, Michael C Scott, Akshita Kumar, Benjamin M Aertker, Henry W Caplan, Margaret L Jackson, Brijesh S Gill, Robert A Hetz, Michael S Lavoie, Linda Ewing-Cobbs May 2024

Autologous Bone Marrow Mononuclear Cells To Treat Severe Traumatic Brain Injury In Children, Charles S Cox, David M Notrica, Jenifer Juranek, Jeffrey H Miller, Fabio Triolo, Steven Kosmach, Sean I Savitz, P David Adelson, Claudia Pedroza, Scott D Olson, Michael C Scott, Akshita Kumar, Benjamin M Aertker, Henry W Caplan, Margaret L Jackson, Brijesh S Gill, Robert A Hetz, Michael S Lavoie, Linda Ewing-Cobbs

Faculty, Staff and Student Publications

Autologous bone marrow mononuclear cells (BMMNCs) infused after severe traumatic brain injury have shown promise for treating the injury. We evaluated their impact in children, particularly their hypothesized ability to preserve the blood–brain barrier and diminish neuroinflammation, leading to structural CNS preservation with improved outcomes.

We performed a randomized, double-blind, placebo-sham-controlled Bayesian dose-escalation clinical trial at two children's hospitals in Houston, TX and Phoenix, AZ, USA (NCT01851083). Patients 5–17 years of age with severe traumatic brain injury (Glasgow Coma Scale score ≤ 8) were randomized to BMMNC or placebo (3:2). Bone marrow harvest, cell isolation and infusion were …


Focal Adhesion Kinase-Yap Signaling Axis Drives Drug-Tolerant Persister Cells And Residual Disease In Lung Cancer, Franziska Haderk, Yu-Ting Chou, Lauren Cech, Celia Fernández-Méndez, Johnny Yu, Victor Olivas, Ismail M Meraz, Dora Barbosa Rabago, D Lucas Kerr, Carlos Gomez, David V Allegakoen, Juan Guan, Khyati N Shah, Kari A Herrington, Oghenekevwe M Gbenedio, Shigeki Nanjo, Mourad Majidi, Whitney Tamaki, Yashar K Pourmoghadam, Julia K Rotow, Caroline E Mccoach, Jonathan W Riess, J Silvio Gutkind, Tracy T Tang, Leonard Post, Bo Huang, Pilar Santisteban, Hani Goodarzi, Sourav Bandyopadhyay, Calvin J Kuo, Jeroen P Roose, Wei Wu, Collin M Blakely, Jack A Roth, Trever G Bivona May 2024

Focal Adhesion Kinase-Yap Signaling Axis Drives Drug-Tolerant Persister Cells And Residual Disease In Lung Cancer, Franziska Haderk, Yu-Ting Chou, Lauren Cech, Celia Fernández-Méndez, Johnny Yu, Victor Olivas, Ismail M Meraz, Dora Barbosa Rabago, D Lucas Kerr, Carlos Gomez, David V Allegakoen, Juan Guan, Khyati N Shah, Kari A Herrington, Oghenekevwe M Gbenedio, Shigeki Nanjo, Mourad Majidi, Whitney Tamaki, Yashar K Pourmoghadam, Julia K Rotow, Caroline E Mccoach, Jonathan W Riess, J Silvio Gutkind, Tracy T Tang, Leonard Post, Bo Huang, Pilar Santisteban, Hani Goodarzi, Sourav Bandyopadhyay, Calvin J Kuo, Jeroen P Roose, Wei Wu, Collin M Blakely, Jack A Roth, Trever G Bivona

Faculty, Staff and Student Publications

Targeted therapy is effective in many tumor types including lung cancer, the leading cause of cancer mortality. Paradigm defining examples are targeted therapies directed against non-small cell lung cancer (NSCLC) subtypes with oncogenic alterations in EGFR, ALK and KRAS. The success of targeted therapy is limited by drug-tolerant persister cells (DTPs) which withstand and adapt to treatment and comprise the residual disease state that is typical during treatment with clinical targeted therapies. Here, we integrate studies in patient-derived and immunocompetent lung cancer models and clinical specimens obtained from patients on targeted therapy to uncover a focal adhesion kinase (FAK)-YAP signaling …


Fam86a Methylation Of Eef2 Links Mrna Translation Elongation To Tumorigenesis, Joel William Francis, Simone Hausmann, Sabeen Ikram, Kunlun Yin, Robert Mealey-Farr, Natasha Mahealani Flores, Annie Truc Trinh, Tourkian Chasan, Julia Thompson, Pawel Karol Mazur, Or Gozani May 2024

Fam86a Methylation Of Eef2 Links Mrna Translation Elongation To Tumorigenesis, Joel William Francis, Simone Hausmann, Sabeen Ikram, Kunlun Yin, Robert Mealey-Farr, Natasha Mahealani Flores, Annie Truc Trinh, Tourkian Chasan, Julia Thompson, Pawel Karol Mazur, Or Gozani

Faculty, Staff and Student Publications

eEF2 post-translational modifications (PTMs) can profoundly affect mRNA translation dynamics. However, the physiologic function of eEF2K525 trimethylation (eEF2K525me3), a PTM catalyzed by the enzyme FAM86A, is unknown. Here, we find that FAM86A methylation of eEF2 regulates nascent elongation to promote protein synthesis and lung adenocarcinoma (LUAD) pathogenesis. The principal physiologic substrate of FAM86A is eEF2, with K525me3 modeled to facilitate productive eEF2-ribosome engagement during translocation. FAM86A depletion in LUAD cells causes 80S monosome accumulation and mRNA translation inhibition. FAM86A is overexpressed in LUAD and eEF2K525me3 levels increase through advancing LUAD disease stages. FAM86A knockdown attenuates LUAD cell proliferation and suppression …


Dlk-Mapk Signaling Coupled With Dna Damage Promotes Intrinsic Neurotoxicity Associated With Non-Mutated Tau, Sanming Li, Ethan R Roy, Yanyu Wang, Trent Watkins, Wei Cao May 2024

Dlk-Mapk Signaling Coupled With Dna Damage Promotes Intrinsic Neurotoxicity Associated With Non-Mutated Tau, Sanming Li, Ethan R Roy, Yanyu Wang, Trent Watkins, Wei Cao

Faculty, Staff and Student Publications

Alzheimer's disease (AD) is the most prevalent form of neurodegeneration. Despite the well-established link between tau aggregation and clinical progression, the major pathways driven by this protein to intrinsically damage neurons are incompletely understood. To model AD-relevant neurodegeneration driven by tau, we overexpressed non-mutated human tau in primary mouse neurons and observed substantial axonal degeneration and cell death, a process accompanied by activated caspase 3. Mechanistically, we detected deformation of the nuclear envelope and increased DNA damage response in tau-expressing neurons. Gene profiling analysis further revealed significant alterations in the mitogen-activated protein kinase (MAPK) pathway; moreover, inhibitors of dual leucine …


Enhanced Ctla-4 Blockade Anti-Tumor Immunity With Apg-157 Combination In A Murine Head And Neck Cancer, Daniel Sanghoon Shin, Saroj Basak, Mysore S Veena, Begoña Comin-Anduix, Arjun Bhattacharya, Tien S Dong, Albert Ko, Philip Han, Jonathan Jacobs, Neda A Moatamed, Luis Avila, Matteo Pellegrini, Marilene Wang, Eri S Srivatsan May 2024

Enhanced Ctla-4 Blockade Anti-Tumor Immunity With Apg-157 Combination In A Murine Head And Neck Cancer, Daniel Sanghoon Shin, Saroj Basak, Mysore S Veena, Begoña Comin-Anduix, Arjun Bhattacharya, Tien S Dong, Albert Ko, Philip Han, Jonathan Jacobs, Neda A Moatamed, Luis Avila, Matteo Pellegrini, Marilene Wang, Eri S Srivatsan

Faculty, Staff and Student Publications

BACKGROUND: A phase I clinical study for patients with locally advanced H&N cancer with a new class of botanical drug APG-157 provided hints of potential synergy with immunotherapy. We sought to evaluate the efficacy of the combination of APG-157 and immune checkpoint inhibitors.

METHODS: CCL23, UM-SCC1 (human), and SCCVII (HPV-), MEER (HPV+) (murine) H&N cancer cell lines were utilized for in vitro and in vivo studies. We measured tumor growth by treating the mice with APG-157, anti-PD-1, and anti-CTLA-4 antibody combinations (8 groups). The tumor microenvironments were assessed by multi-color flow cytometry, immunohistochemistry, and RNA-seq analysis. Fecal microbiome was analyzed …


Mechanisms Driving Fasting-Induced Protection From Genotoxic Injury In The Small Intestine, Kali Deans-Fielder, Timothy Wu, Thanh Nguyen, Sarah To, Yang-Zhe Huang, Steven J Bark, Jason C Mills, Noah F Shroyer May 2024

Mechanisms Driving Fasting-Induced Protection From Genotoxic Injury In The Small Intestine, Kali Deans-Fielder, Timothy Wu, Thanh Nguyen, Sarah To, Yang-Zhe Huang, Steven J Bark, Jason C Mills, Noah F Shroyer

Faculty, Staff and Students Publications

Genotoxic agents such as doxorubicin (DXR) can cause damage to the intestines that can be ameliorated by fasting. How fasting is protective and the optimal timing of fasting and refeeding remain unclear. Here, our analysis of fasting/refeeding-induced global intestinal transcriptional changes revealed metabolic shifts and implicated the cellular energetic hub mechanistic target of rapamycin complex 1 (mTORC1) in protecting from DXR-induced DNA damage. Our analysis of specific transcripts and proteins in intestinal tissue and tissue extracts showed that fasting followed by refeeding at the time of DXR administration reduced damage and caused a spike in mTORC1 activity. However, continued fasting …


Age-Related Differences In The Mouse Corneal Epithelial Transcriptome And Their Impact On Corneal Wound Healing, Anmar Abu-Romman, Kaitlin K Scholand, Gowthaman Govindarajan, Zhiyuan Yu, Sonali Pal-Ghosh, Mary A Stepp, Cintia S De Paiva May 2024

Age-Related Differences In The Mouse Corneal Epithelial Transcriptome And Their Impact On Corneal Wound Healing, Anmar Abu-Romman, Kaitlin K Scholand, Gowthaman Govindarajan, Zhiyuan Yu, Sonali Pal-Ghosh, Mary A Stepp, Cintia S De Paiva

Faculty, Staff and Students Publications

PURPOSE: Aging is a risk factor for dry eye. We sought to identify changes in the aged mouse corneal epithelial transcriptome and determine how age affects corneal sensitivity, re-epithelialization, and barrier reformation after corneal debridement.

METHODS: Corneal epithelium of female C57BL/6J (B6) mice of different ages (2, 12, 18, and 24 months) was collected, RNA extracted, and bulk RNA sequencing performed. Cornea sensitivity was measured with an esthesiometer in 2- to 3-month-old, 12- to 13-month-old, 18- to 19-month-old, and 22- to 25-month-old female and male mice. The 2-month-old and 18-month-old female and male mice underwent unilateral corneal debridement using a …


Altered Myocardial Lipid Regulation In Junctophilin-2-Associated Familial Cardiomyopathies, Satadru K Lahiri, Feng Jin, Yue Zhou, Ann P Quick, Carlos F Kramm, Meng C Wang, Xander Ht Wehrens May 2024

Altered Myocardial Lipid Regulation In Junctophilin-2-Associated Familial Cardiomyopathies, Satadru K Lahiri, Feng Jin, Yue Zhou, Ann P Quick, Carlos F Kramm, Meng C Wang, Xander Ht Wehrens

Faculty, Staff and Students Publications

Myocardial lipid metabolism is critical to normal heart function, whereas altered lipid regulation has been linked to cardiac diseases including cardiomyopathies. Genetic variants in the JPH2 gene can cause hypertrophic cardiomyopathy (HCM) and, in some cases, dilated cardiomyopathy (DCM). In this study, we tested the hypothesis that JPH2 variants identified in patients with HCM and DCM, respectively, cause distinct alterations in myocardial lipid profiles. Echocardiography revealed clinically significant cardiac dysfunction in both knock-in mouse models of cardiomyopathy. Unbiased myocardial lipidomic analysis demonstrated significantly reduced levels of total unsaturated fatty acids, ceramides, and various phospholipids in both mice with HCM and …


Impact Of Sustained Calorie Restriction And Weight Cycling On Body Composition In High-Fat Diet-Fed Male And Female C57bl/6j Mice, Daniel L Smith, Yongbin Yang, Luis M Mestre, Beate Henschel, Erik Parker, Stephanie Dickinson, Amit Patki, David B Allison, Tim R Nagy May 2024

Impact Of Sustained Calorie Restriction And Weight Cycling On Body Composition In High-Fat Diet-Fed Male And Female C57bl/6j Mice, Daniel L Smith, Yongbin Yang, Luis M Mestre, Beate Henschel, Erik Parker, Stephanie Dickinson, Amit Patki, David B Allison, Tim R Nagy

Children’s Nutrition Research Center Staff Publications

Objective: The objective of this study was to investigate body composition changes with weight cycling (WC) among adult C57BL/6J mice with diet-induced obesity.

Methods: A total of 555 single-housed mice were fed a high-fat diet ad libitum (AL) from 8 to 43 weeks of age. The 200 heaviest mice of each sex were randomized to the following four groups: ever obese (EO, continued AL feeding); obese weight loser (OWL, calorie-restricted); obese weight loser moderate (OWLM, body weight halfway between EO and OWL); and WC (diet restricted to OWL followed by AL refeeding cycles). Body weight and composition data were collected. …


Programming A Ferroptosis-To-Apoptosis Transition Landscape Revealed Ferroptosis Biomarkers And Repressors For Cancer Therapy, Yaron Vinik, Avi Maimon, Vinay Dubey, Harsha Raj, Ifat Abramovitch, Sergey Malitsky, Maxim Itkin, Avi Ma'ayan, Frank Westermann, Eyal Gottlieb, Eytan Ruppin, Sima Lev May 2024

Programming A Ferroptosis-To-Apoptosis Transition Landscape Revealed Ferroptosis Biomarkers And Repressors For Cancer Therapy, Yaron Vinik, Avi Maimon, Vinay Dubey, Harsha Raj, Ifat Abramovitch, Sergey Malitsky, Maxim Itkin, Avi Ma'ayan, Frank Westermann, Eyal Gottlieb, Eytan Ruppin, Sima Lev

Faculty, Staff and Student Publications

Ferroptosis and apoptosis are key cell-death pathways implicated in several human diseases including cancer. Ferroptosis is driven by iron-dependent lipid peroxidation and currently has no characteristic biomarkers or gene signatures. Here a continuous phenotypic gradient between ferroptosis and apoptosis coupled to transcriptomic and metabolomic landscapes is established. The gradual ferroptosis-to-apoptosis transcriptomic landscape is used to generate a unique, unbiased transcriptomic predictor, the Gradient Gene Set (GGS), which classified ferroptosis and apoptosis with high accuracy. Further GGS optimization using multiple ferroptotic and apoptotic datasets revealed highly specific ferroptosis biomarkers, which are robustly validated in vitro and in vivo. A subset of …


Jak2v617f Reversible Activation Shows Its Essential Requirement In Myeloproliferative Neoplasms, Andrew J Dunbar, Robert L Bowman, Young C Park, Kavi O'Connor, Franco Izzo, Robert M Myers, Abdul Karzai, Zachary Zaroogian, Won Jun Kim, Inés Fernández-Maestre, Michael R Waarts, Abbas Nazir, Wenbin Xiao, Tamara Codilupi, Max Brodsky, Mirko Farina, Louise Cai, Sheng F Cai, Benjamin Wang, Wenbin An, Julie L Yang, Shoron Mowla, Shira E Eisman, Amritha Varshini Hanasoge Somasundara, Jacob L Glass, Tanmay Mishra, Remie Houston, Emily Guzzardi, Anthony R Martinez Benitez, Aaron D Viny, Richard P Koche, Sara C Meyer, Dan A Landau, Ross L Levine May 2024

Jak2v617f Reversible Activation Shows Its Essential Requirement In Myeloproliferative Neoplasms, Andrew J Dunbar, Robert L Bowman, Young C Park, Kavi O'Connor, Franco Izzo, Robert M Myers, Abdul Karzai, Zachary Zaroogian, Won Jun Kim, Inés Fernández-Maestre, Michael R Waarts, Abbas Nazir, Wenbin Xiao, Tamara Codilupi, Max Brodsky, Mirko Farina, Louise Cai, Sheng F Cai, Benjamin Wang, Wenbin An, Julie L Yang, Shoron Mowla, Shira E Eisman, Amritha Varshini Hanasoge Somasundara, Jacob L Glass, Tanmay Mishra, Remie Houston, Emily Guzzardi, Anthony R Martinez Benitez, Aaron D Viny, Richard P Koche, Sara C Meyer, Dan A Landau, Ross L Levine

Faculty, Staff and Student Publications

Gain-of-function mutations activating JAK/STAT signaling are seen in the majority of patients with myeloproliferative neoplasms (MPN), most commonly JAK2V617F. Although clinically approved JAK inhibitors improve symptoms and outcomes in MPNs, remissions are rare, and mutant allele burden does not substantively change with chronic therapy. We hypothesized this is due to limitations of current JAK inhibitors to potently and specifically abrogate mutant JAK2 signaling. We therefore developed a conditionally inducible mouse model allowing for sequential activation, and then inactivation, of Jak2V617F from its endogenous locus using a combined Dre-rox/Cre-lox dual-recombinase system. Jak2V617F deletion abrogates MPN features, induces depletion of mutant-specific hematopoietic …


The Hepatokine Orosomucoid 2 Mediates Beneficial Metabolic Effects Of Bile Acids, Sung Ho Lee, Ji Ho Suh, Mi Jeong Heo, Jong Min Choi, Yang Yang, Hyun-Jung Jung, Zhanguo Gao, Yongmei Yu, Sung Yun Jung, Mikhail G Kolonin, Aaron R Cox, Sean M Hartig, Holger K Eltzschig, Cynthia Ju, David D Moore, Kang Ho Kim May 2024

The Hepatokine Orosomucoid 2 Mediates Beneficial Metabolic Effects Of Bile Acids, Sung Ho Lee, Ji Ho Suh, Mi Jeong Heo, Jong Min Choi, Yang Yang, Hyun-Jung Jung, Zhanguo Gao, Yongmei Yu, Sung Yun Jung, Mikhail G Kolonin, Aaron R Cox, Sean M Hartig, Holger K Eltzschig, Cynthia Ju, David D Moore, Kang Ho Kim

Faculty, Staff and Student Publications

Bile acids (BAs) are pleiotropic regulators of metabolism. Elevated levels of hepatic and circulating BAs improve energy metabolism in peripheral organs, but the precise mechanisms underlying the metabolic benefits and harm still need to be fully understood. In the current study, we identified orosomucoid 2 (ORM2) as a liver-secreted hormone (i.e., hepatokine) induced by BAs and investigated its role in BA-induced metabolic improvements in mouse models of diet-induced obesity. Contrary to our expectation, under a high-fat diet (HFD), our Orm2 knockout (Orm2-KO) exhibited a lean phenotype compared with C57BL/6J control, partly due to the increased energy expenditure. However, when challenged …


Co-Clinical Trial Of Novel Bispecific Anti-Her2 Antibody Zanidatamab In Patient-Derived Xenografts, Timothy P Diperi, Kurt W Evans, Bailiang Wang, Ming Zhao, Argun Akcakanat, Maria Gabriela Raso, Yasmeen Q Rizvi, Xiaofeng Zheng, Anil Korkut, Kaushik Varadarajan, Burak Uzunparmak, Ecaterina E Dumbrava, Shubham Pant, Jaffer A Ajani, Paula R Pohlmann, V Behrana Jensen, Milind Javle, Jordi Rodon, Funda Meric-Bernstam May 2024

Co-Clinical Trial Of Novel Bispecific Anti-Her2 Antibody Zanidatamab In Patient-Derived Xenografts, Timothy P Diperi, Kurt W Evans, Bailiang Wang, Ming Zhao, Argun Akcakanat, Maria Gabriela Raso, Yasmeen Q Rizvi, Xiaofeng Zheng, Anil Korkut, Kaushik Varadarajan, Burak Uzunparmak, Ecaterina E Dumbrava, Shubham Pant, Jaffer A Ajani, Paula R Pohlmann, V Behrana Jensen, Milind Javle, Jordi Rodon, Funda Meric-Bernstam

Faculty, Staff and Student Publications

Zanidatamab is a bispecific human epidermal growth factor receptor 2 (HER2)-targeted antibody that has demonstrated antitumor activity in a broad range of HER2-amplified/expressing solid tumors. We determined the antitumor activity of zanidatamab in patient-derived xenograft (PDX) models developed from pretreatment or postprogression biopsies on the first-in-human zanidatamab phase I study (NCT02892123). Of 36 tumors implanted, 19 PDX models were established (52.7% take rate) from 17 patients. Established PDXs represented a broad range of HER2-expressing cancers, and in vivo testing demonstrated an association between antitumor activity in PDXs and matched patients in 7 of 8 co-clinical models tested. We …


Head-To-Head Comparison Of Relevant Cell Sources Of Small Extracellular Vesicles For Cardiac Repair: Superiority Of Embryonic Stem Cells, Hernán González-King, Patricia G Rodrigues, Tamsin Albery, Benyapa Tangruksa, Ramya Gurrapu, Andreia M Silva, Gentian Musa, Dominika Kardasz, Kai Liu, Bengt Kull, Karin Åvall, Katarina Rydén-Markinhuhta, Tania Incitti, Nitin Sharma, Cecilia Graneli, Hadi Valadi, Kasparas Petkevicius, Miguel Carracedo, Sandra Tejedor, Alena Ivanova, Sepideh Heydarkhan-Hagvall, Phillipe Menasché, Jane Synnergren, Niek Dekker, Qing-Dong Wang, Karin Jennbacken May 2024

Head-To-Head Comparison Of Relevant Cell Sources Of Small Extracellular Vesicles For Cardiac Repair: Superiority Of Embryonic Stem Cells, Hernán González-King, Patricia G Rodrigues, Tamsin Albery, Benyapa Tangruksa, Ramya Gurrapu, Andreia M Silva, Gentian Musa, Dominika Kardasz, Kai Liu, Bengt Kull, Karin Åvall, Katarina Rydén-Markinhuhta, Tania Incitti, Nitin Sharma, Cecilia Graneli, Hadi Valadi, Kasparas Petkevicius, Miguel Carracedo, Sandra Tejedor, Alena Ivanova, Sepideh Heydarkhan-Hagvall, Phillipe Menasché, Jane Synnergren, Niek Dekker, Qing-Dong Wang, Karin Jennbacken

Faculty, Staff and Student Publications

Small extracellular vesicles (sEV) derived from various cell sources have been demonstrated to enhance cardiac function in preclinical models of myocardial infarction (MI). The aim of this study was to compare different sources of sEV for cardiac repair and determine the most effective one, which nowadays remains limited. We comprehensively assessed the efficacy of sEV obtained from human primary bone marrow mesenchymal stromal cells (BM-MSC), human immortalized MSC (hTERT-MSC), human embryonic stem cells (ESC), ESC-derived cardiac progenitor cells (CPC), human ESC-derived cardiomyocytes (CM), and human primary ventricular cardiac fibroblasts (VCF), in in vitro models of cardiac repair. ESC-derived sEV (ESC-sEV) …