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Articles 1231 - 1260 of 1666
Full-Text Articles in Biomedical Informatics
Metastatic Infiltration Of Nervous Tissue And Periosteal Nerve Sprouting In Multiple Myeloma-Induced Bone Pain In Mice And Human, Marta Diaz-Delcastillo, Oana Palasca, Tim T Nemler, Didde M Thygesen, Norma A Chávez-Saldaña, Juan A Vázquez-Mora, Lizeth Y Ponce Gomez, Lars Juhl Jensen, Holly Evans, Rebecca E Andrews, Aritri Mandal, David Neves, Patrick Mehlen, James P Caruso, Patrick M Dougherty, Theodore J Price, Andrew Chantry, Michelle A Lawson, Thomas L Andersen, Juan M Jimenez-Andrade, Anne-Marie Heegaard
Metastatic Infiltration Of Nervous Tissue And Periosteal Nerve Sprouting In Multiple Myeloma-Induced Bone Pain In Mice And Human, Marta Diaz-Delcastillo, Oana Palasca, Tim T Nemler, Didde M Thygesen, Norma A Chávez-Saldaña, Juan A Vázquez-Mora, Lizeth Y Ponce Gomez, Lars Juhl Jensen, Holly Evans, Rebecca E Andrews, Aritri Mandal, David Neves, Patrick Mehlen, James P Caruso, Patrick M Dougherty, Theodore J Price, Andrew Chantry, Michelle A Lawson, Thomas L Andersen, Juan M Jimenez-Andrade, Anne-Marie Heegaard
Faculty, Staff and Student Publications
Multiple myeloma (MM) is a neoplasia of B plasma cells that often induces bone pain. However, the mechanisms underlying myeloma-induced bone pain (MIBP) are mostly unknown. Using a syngeneic MM mouse model, we show that periosteal nerve sprouting of calcitonin gene-related peptide (CGRP+) and growth associated protein 43 (GAP43+) fibers occurs concurrent to the onset of nociception and its blockade provides transient pain relief. MM patient samples also showed increased periosteal innervation. Mechanistically, we investigated MM induced gene expression changes in the dorsal root ganglia (DRG) innervating the MM-bearing bone of male mice and found alterations in pathways associated with …
The Checkpoint Inhibitor Pd-1h/Vista Controls Osteoclast-Mediated Multiple Myeloma Bone Disease, Jing Fu, Shirong Li, Huihui Ma, Jun Yang, Gabriel M Pagnotti, Lewis M Brown, Stephen J Weiss, Markus Y Mapara, Suzanne Lentzsch
The Checkpoint Inhibitor Pd-1h/Vista Controls Osteoclast-Mediated Multiple Myeloma Bone Disease, Jing Fu, Shirong Li, Huihui Ma, Jun Yang, Gabriel M Pagnotti, Lewis M Brown, Stephen J Weiss, Markus Y Mapara, Suzanne Lentzsch
Faculty, Staff and Student Publications
Multiple myeloma bone disease is characterized by the development of osteolytic bone lesions. Recent work identified matrix metalloproteinase 13 as a myeloma-derived fusogen that induces osteoclast activation independent of its proteolytic activity. We now identify programmed death-1 homolog, PD-1H, as the bona fide MMP-13 receptor on osteoclasts. Silencing PD-1H or using Pd-1h-/- bone marrow cells abrogates the MMP-13-enhanced osteoclast fusion and bone-resorptive activity. Further, PD-1H interacts with the actin cytoskeleton and plays a necessary role in supporting c-Src activation and sealing zone formation. The critical role of PD-1H in myeloma lytic bone lesions was confirmed using a Pd-1h-/- myeloma bone …
Anti-Mir-93-5p Therapy Prolongs Sepsis Survival By Restoring The Peripheral Immune Response, Mihnea P Dragomir, Enrique Fuentes-Mattei, Melanie Winkle, Keishi Okubo, Recep Bayraktar, Erik Knutsen, Aiham Qdaisat, Meng Chen, Yongfeng Li, Masayoshi Shimizu, Lan Pang, Kevin Liu, Xiuping Liu, Simone Anfossi, Huanyu Zhang, Ines Koch, Anh M Tran, Swati Mohapatra, Anh Ton, Mecit Kaplan, Matthew W Anderson, Spencer J Rothfuss, Robert Silasi, Ravi S Keshari, Manuela Ferracin, Cristina Ivan, Cristian Rodriguez-Aguayo, Gabriel Lopez-Berestein, Constantin Georgescu, Pinaki P Banerjee, Rafet Basar, Ziyi Li, David Horst, Catalin Vasilescu, Maria Teresa S Bertilaccio, Katayoun Rezvani, Florea Lupu, Sai-Ching Yeung, George A Calin
Anti-Mir-93-5p Therapy Prolongs Sepsis Survival By Restoring The Peripheral Immune Response, Mihnea P Dragomir, Enrique Fuentes-Mattei, Melanie Winkle, Keishi Okubo, Recep Bayraktar, Erik Knutsen, Aiham Qdaisat, Meng Chen, Yongfeng Li, Masayoshi Shimizu, Lan Pang, Kevin Liu, Xiuping Liu, Simone Anfossi, Huanyu Zhang, Ines Koch, Anh M Tran, Swati Mohapatra, Anh Ton, Mecit Kaplan, Matthew W Anderson, Spencer J Rothfuss, Robert Silasi, Ravi S Keshari, Manuela Ferracin, Cristina Ivan, Cristian Rodriguez-Aguayo, Gabriel Lopez-Berestein, Constantin Georgescu, Pinaki P Banerjee, Rafet Basar, Ziyi Li, David Horst, Catalin Vasilescu, Maria Teresa S Bertilaccio, Katayoun Rezvani, Florea Lupu, Sai-Ching Yeung, George A Calin
Faculty, Staff and Student Publications
Sepsis remains a leading cause of death for humans and currently has no pathogenesis-specific therapy. Hampered progress is partly due to a lack of insight into deep mechanistic processes. In the past decade, deciphering the functions of small noncoding miRNAs in sepsis pathogenesis became a dynamic research topic. To screen for new miRNA targets for sepsis therapeutics, we used samples for miRNA array analysis of PBMCs from patients with sepsis and control individuals, blood samples from 2 cohorts of patients with sepsis, and multiple animal models: mouse cecum ligation puncture-induced (CLP-induced) sepsis, mouse viral miRNA challenge, and baboon Gram+ and …
Anoctamin 4 Channel Currents Activate Glucose-Inhibited Neurons In The Mouse Ventromedial Hypothalamus During Hypoglycemia, Longlong Tu, Jonathan C Bean, Yang He, Hailan Liu, Meng Yu, Hesong Liu, Nan Zhang, Na Yin, Junying Han, Nikolas A Scarcelli, Kristine M Conde, Mengjie Wang, Yongxiang Li, Bing Feng, Peiyu Gao, Zhao-Lin Cai, Makoto Fukuda, Mingshan Xue, Qingchun Tong, Yongjie Yang, Lan Liao, Jianming Xu, Chunmei Wang, Yanlin He, Yong Xu
Anoctamin 4 Channel Currents Activate Glucose-Inhibited Neurons In The Mouse Ventromedial Hypothalamus During Hypoglycemia, Longlong Tu, Jonathan C Bean, Yang He, Hailan Liu, Meng Yu, Hesong Liu, Nan Zhang, Na Yin, Junying Han, Nikolas A Scarcelli, Kristine M Conde, Mengjie Wang, Yongxiang Li, Bing Feng, Peiyu Gao, Zhao-Lin Cai, Makoto Fukuda, Mingshan Xue, Qingchun Tong, Yongjie Yang, Lan Liao, Jianming Xu, Chunmei Wang, Yanlin He, Yong Xu
Faculty, Staff and Student Publications
Glucose is the basic fuel essential for maintenance of viability and functionality of all cells. However, some neurons - namely, glucose-inhibited (GI) neurons - paradoxically increase their firing activity in low-glucose conditions and decrease that activity in high-glucose conditions. The ionic mechanisms mediating electric responses of GI neurons to glucose fluctuations remain unclear. Here, we showed that currents mediated by the anoctamin 4 (Ano4) channel are only detected in GI neurons in the ventromedial hypothalamic nucleus (VMH) and are functionally required for their activation in response to low glucose. Genetic disruption of the Ano4 gene in VMH neurons reduced blood …
Unique Transcriptional Profiles Underlie Osteosarcomagenesis Driven By Different P53 Mutants, Dhruv Chachad, Lalit R Patel, Carlos Vera Recio, Rasoul Pourebrahim, Elizabeth M Whitley, Wenyi Wang, Xiaoping Su, An Xu, Dung-Fang Lee, Guillermina Lozano
Unique Transcriptional Profiles Underlie Osteosarcomagenesis Driven By Different P53 Mutants, Dhruv Chachad, Lalit R Patel, Carlos Vera Recio, Rasoul Pourebrahim, Elizabeth M Whitley, Wenyi Wang, Xiaoping Su, An Xu, Dung-Fang Lee, Guillermina Lozano
Faculty, Staff and Student Publications
Missense mutations in the DNA binding domain of p53 are characterized as structural or contact mutations based on their effect on the conformation of the protein. These mutations show gain-of-function (GOF) activities, such as promoting increased metastatic incidence compared with p53 loss, often mediated by the interaction of mutant p53 with a set of transcription factors. These interactions are largely context specific. To understand the mechanisms by which p53 DNA binding domain mutations drive osteosarcoma progression, we created mouse models, in which either the p53 structural mutant p53R172H or the contact mutant p53R245W are expressed specifically in osteoblasts, yielding osteosarcoma …
Bicc1 Drives Pancreatic Cancer Progression By Inducing Vegf-Independent Angiogenesis, Chongbiao Huang, Hui Li, Yang Xu, Chao Xu, Huizhi Sun, Zengxun Li, Yi Ge, Hongwei Wang, Tiansuo Zhao, Song Gao, Xiuchao Wang, Shengyu Yang, Peiqing Sun, Zhe Liu, Jing Liu, Antao Chang, Jihui Hao
Bicc1 Drives Pancreatic Cancer Progression By Inducing Vegf-Independent Angiogenesis, Chongbiao Huang, Hui Li, Yang Xu, Chao Xu, Huizhi Sun, Zengxun Li, Yi Ge, Hongwei Wang, Tiansuo Zhao, Song Gao, Xiuchao Wang, Shengyu Yang, Peiqing Sun, Zhe Liu, Jing Liu, Antao Chang, Jihui Hao
Faculty, Staff and Student Publications
VEGF inhibitors are one of the most successful antiangiogenic drugs in the treatment of many solid tumors. Nevertheless, pancreatic adenocarcinoma (PAAD) cells can reinstate tumor angiogenesis via activation of VEGF-independent pathways, thereby conferring resistance to VEGF inhibitors. Bioinformatic analysis showed that BICC1 was one of the top genes involved in the specific angiogenesis process of PAAD. The analysis of our own cohort confirmed that BICC1 was overexpressed in human PAAD tissues and was correlated to increased microvessel density and tumor growth, and worse prognosis. In cells and mice with xenograft tumors, BICC1 facilitated angiogenesis in pancreatic cancer in a VEGF-independent …
Adenosine Metabolized From Extracellular Atp Ameliorates Organ Injury By Triggering A2br Signaling, Taha Kelestemur, Zoltán H Németh, Pal Pacher, Jennet Beesley, Simon C Robson, Holger K Eltzschig, György Haskó
Adenosine Metabolized From Extracellular Atp Ameliorates Organ Injury By Triggering A2br Signaling, Taha Kelestemur, Zoltán H Németh, Pal Pacher, Jennet Beesley, Simon C Robson, Holger K Eltzschig, György Haskó
Faculty, Staff and Student Publications
BACKGROUND: Trauma and a subsequent hemorrhagic shock (T/HS) result in insufficient oxygen delivery to tissues and multiple organ failure. Extracellular adenosine, which is a product of the extracellular degradation of adenosine 5' triphosphate (ATP) by the membrane-embedded enzymes CD39 and CD73, is organ protective, as it participates in signaling pathways, which promote cell survival and suppress inflammation through adenosine receptors including the A
METHODS: T/HS shock was induced by blood withdrawal from the femoral artery in wild-type, global knockout (CD39, CD73, A
RESULTS: T/HS upregulated the expression of CD39, CD73, and the A
CONCLUSION: In conclusion, the CD39-CD73-A
Genomic Landscape Of Down Syndrome-Associated Acute Lymphoblastic Leukemia, Zhenhua Li, Ti-Cheng Chang, Jacob J Junco, Meenakshi Devidas, Yizhen Li, Wenjian Yang, Xin Huang, Dale J Hedges, Zhongshan Cheng, Mary Shago, Andrew J Carroll, Nyla A Heerema, Julie Gastier-Foster, Brent L Wood, Michael J Borowitz, Lauren Sanclemente, Elizabeth A Raetz, Stephen P Hunger, Eleanor Feingold, Tracie C Rosser, Stephanie L Sherman, Mignon L Loh, Charles G Mullighan, Jiyang Yu, Gang Wu, Philip J Lupo, Karen R Rabin, Jun J Yang
Genomic Landscape Of Down Syndrome-Associated Acute Lymphoblastic Leukemia, Zhenhua Li, Ti-Cheng Chang, Jacob J Junco, Meenakshi Devidas, Yizhen Li, Wenjian Yang, Xin Huang, Dale J Hedges, Zhongshan Cheng, Mary Shago, Andrew J Carroll, Nyla A Heerema, Julie Gastier-Foster, Brent L Wood, Michael J Borowitz, Lauren Sanclemente, Elizabeth A Raetz, Stephen P Hunger, Eleanor Feingold, Tracie C Rosser, Stephanie L Sherman, Mignon L Loh, Charles G Mullighan, Jiyang Yu, Gang Wu, Philip J Lupo, Karen R Rabin, Jun J Yang
Faculty, Staff and Students Publications
Trisomy 21, the genetic cause of Down syndrome (DS), is the most common congenital chromosomal anomaly. It is associated with a 20-fold increased risk of acute lymphoblastic leukemia (ALL) during childhood and results in distinctive leukemia biology. To comprehensively define the genomic landscape of DS-ALL, we performed whole-genome sequencing and whole-transcriptome sequencing (RNA-Seq) on 295 cases. Our integrated genomic analyses identified 15 molecular subtypes of DS-ALL, with marked enrichment of CRLF2-r, IGH::IGF2BP1, and C/EBP altered (C/EBPalt) subtypes compared with 2257 non-DS-ALL cases. We observed abnormal activation of the CEBPD, CEBPA, and CEBPE genes in 10.5% of DS-ALL cases via a …
Mct4-Dependent Lactate Secretion Suppresses Antitumor Immunity In Lkb1-Deficient Lung Adenocarcinoma, Yu Qian, Ana Galan-Cobo, Irene Guijarro, Minghao Dang, David Molkentine, Alissa Poteete, Fahao Zhang, Qi Wang, Jing Wang, Edwin Parra, Apekshya Panda, Jacy Fang, Ferdinandos Skoulidis, Ignacio I Wistuba, Svena Verma, Taha Merghoub, Jedd D Wolchok, Kwok-Kin Wong, Ralph J Deberardinis, John D Minna, Natalie I Vokes, Catherine B Meador, Justin F Gainor, Linghua Wang, Alexandre Reuben, John V Heymach
Mct4-Dependent Lactate Secretion Suppresses Antitumor Immunity In Lkb1-Deficient Lung Adenocarcinoma, Yu Qian, Ana Galan-Cobo, Irene Guijarro, Minghao Dang, David Molkentine, Alissa Poteete, Fahao Zhang, Qi Wang, Jing Wang, Edwin Parra, Apekshya Panda, Jacy Fang, Ferdinandos Skoulidis, Ignacio I Wistuba, Svena Verma, Taha Merghoub, Jedd D Wolchok, Kwok-Kin Wong, Ralph J Deberardinis, John D Minna, Natalie I Vokes, Catherine B Meador, Justin F Gainor, Linghua Wang, Alexandre Reuben, John V Heymach
Faculty, Staff and Student Publications
Inactivating STK11/LKB1 mutations are genomic drivers of primary resistance to immunotherapy in KRAS-mutated lung adenocarcinoma (LUAD), although the underlying mechanisms remain unelucidated. We find that LKB1 loss results in enhanced lactate production and secretion via the MCT4 transporter. Single-cell RNA profiling of murine models indicates that LKB1-deficient tumors have increased M2 macrophage polarization and hypofunctional T cells, effects that could be recapitulated by the addition of exogenous lactate and abrogated by MCT4 knockdown or therapeutic blockade of the lactate receptor GPR81 expressed on immune cells. Furthermore, MCT4 knockout reverses the resistance to PD-1 blockade induced by LKB1 loss in syngeneic …
A Functional Link Between Lariat Debranching Enzyme And The Intron-Binding Complex Is Defective In Non-Photosensitive Trichothiodystrophy, Brittany A Townley, Luke Buerer, Ning Tsao, Albino Bacolla, Fadhel Mansoori, Timur Rusanov, Nathanial Clark, Negar Goodarzi, Nicolas Schmidt, Sridhar Nonavinkere Srivatsan, Hua Sun, Reilly A Sample, Joshua R Brickner, Drew Mcdonald, Miaw-Sheue Tsai, Matthew J Walter, David F Wozniak, Alex S Holehouse, Vladimir Pena, John A Tainer, William G Fairbrother, Nima Mosammaparast
A Functional Link Between Lariat Debranching Enzyme And The Intron-Binding Complex Is Defective In Non-Photosensitive Trichothiodystrophy, Brittany A Townley, Luke Buerer, Ning Tsao, Albino Bacolla, Fadhel Mansoori, Timur Rusanov, Nathanial Clark, Negar Goodarzi, Nicolas Schmidt, Sridhar Nonavinkere Srivatsan, Hua Sun, Reilly A Sample, Joshua R Brickner, Drew Mcdonald, Miaw-Sheue Tsai, Matthew J Walter, David F Wozniak, Alex S Holehouse, Vladimir Pena, John A Tainer, William G Fairbrother, Nima Mosammaparast
Faculty, Staff and Student Publications
The pre-mRNA life cycle requires intron processing; yet, how intron-processing defects influence splicing and gene expression is unclear. Here, we find that TTDN1/MPLKIP, which is encoded by a gene implicated in non-photosensitive trichothiodystrophy (NP-TTD), functionally links intron lariat processing to spliceosomal function. The conserved TTDN1 C-terminal region directly binds lariat debranching enzyme DBR1, whereas its N-terminal intrinsically disordered region (IDR) binds the intron-binding complex (IBC). TTDN1 loss, or a mutated IDR, causes significant intron lariat accumulation, as well as splicing and gene expression defects, mirroring phenotypes observed in NP-TTD patient cells. A Ttdn1-deficient mouse model recapitulates intron-processing defects and certain …
The Swi/Snf Chromatin-Remodeling Subunit Dpf2 Facilitates Nrf2-Dependent Antiinflammatory And Antioxidant Gene Expression, Gloria Mas, Na Man, Yuichiro Nakata, Concepcion Martinez-Caja, Daniel Karl, Felipe Beckedorff, Francesco Tamiro, Chuan Chen, Stephanie Duffort, Hidehiro Itonaga, Adnan K Mookhtiar, Kranthi Kunkalla, Alfredo M Valencia, Clayton K Collings, Cigall Kadoch, Francisco Vega, Scott C Kogan, Ramin Shiekhattar, Lluis Morey, Daniel Bilbao, Stephen D Nimer
The Swi/Snf Chromatin-Remodeling Subunit Dpf2 Facilitates Nrf2-Dependent Antiinflammatory And Antioxidant Gene Expression, Gloria Mas, Na Man, Yuichiro Nakata, Concepcion Martinez-Caja, Daniel Karl, Felipe Beckedorff, Francesco Tamiro, Chuan Chen, Stephanie Duffort, Hidehiro Itonaga, Adnan K Mookhtiar, Kranthi Kunkalla, Alfredo M Valencia, Clayton K Collings, Cigall Kadoch, Francisco Vega, Scott C Kogan, Ramin Shiekhattar, Lluis Morey, Daniel Bilbao, Stephen D Nimer
Faculty, Staff and Student Publications
During emergency hematopoiesis, hematopoietic stem cells (HSCs) rapidly proliferate to produce myeloid and lymphoid effector cells, a response that is critical against infection or tissue injury. If unresolved, this process leads to sustained inflammation, which can cause life-threatening diseases and cancer. Here, we identify a role of double PHD fingers 2 (DPF2) in modulating inflammation. DPF2 is a defining subunit of the hematopoiesis-specific BAF (SWI/SNF) chromatin-remodeling complex, and it is mutated in multiple cancers and neurological disorders. We uncovered that hematopoiesis-specific Dpf2-KO mice developed leukopenia, severe anemia, and lethal systemic inflammation characterized by histiocytic and fibrotic tissue infiltration resembling a …
Histone Demethylase Kdm5d Upregulation Drives Sex Differences In Colon Cancer, Jiexi Li, Zhengdao Lan, Wenting Liao, James W Horner, Xueping Xu, Jielin Liu, Yohei Yoshihama, Shan Jiang, Hong Seok Shim, Max Slotnik, Kyle A Labella, Chang-Jiun Wu, Kenneth Dunner, Wen-Hao Hsu, Rumi Lee, Isha Khanduri, Christopher Terranova, Kadir Akdemir, Deepavali Chakravarti, Xiaoying Shang, Denise J Spring, Y Alan Wang, Ronald A Depinho
Histone Demethylase Kdm5d Upregulation Drives Sex Differences In Colon Cancer, Jiexi Li, Zhengdao Lan, Wenting Liao, James W Horner, Xueping Xu, Jielin Liu, Yohei Yoshihama, Shan Jiang, Hong Seok Shim, Max Slotnik, Kyle A Labella, Chang-Jiun Wu, Kenneth Dunner, Wen-Hao Hsu, Rumi Lee, Isha Khanduri, Christopher Terranova, Kadir Akdemir, Deepavali Chakravarti, Xiaoying Shang, Denise J Spring, Y Alan Wang, Ronald A Depinho
Faculty, Staff and Student Publications
Sex exerts a profound impact on cancer incidence, spectrum and outcomes, yet the molecular and genetic bases of such sex differences are ill-defined and presumptively ascribed to X-chromosome genes and sex hormones1. Such sex differences are particularly prominent in colorectal cancer (CRC) in which men experience higher metastases and mortality. A murine CRC model, engineered with an inducible transgene encoding oncogenic mutant KRASG12D and conditional null alleles of Apc and Trp53 tumour suppressors (designated iKAP)2, revealed higher metastases and worse outcomes specifically in males with oncogenic mutant KRAS (KRAS*) CRC. Integrated cross-species molecular and transcriptomic analyses identified Y-chromosome gene histone …
Pdcl2 Is Essential For Sperm Acrosome Formation And Male Fertility In Mice, Yoshitaka Fujihara, Kiyonori Kobayashi, Ferheen Abbasi, Tsutomu Endo, Zhifeng Yu, Masahito Ikawa, Martin M Matzuk
Pdcl2 Is Essential For Sperm Acrosome Formation And Male Fertility In Mice, Yoshitaka Fujihara, Kiyonori Kobayashi, Ferheen Abbasi, Tsutomu Endo, Zhifeng Yu, Masahito Ikawa, Martin M Matzuk
Faculty, Staff and Students Publications
BACKGROUND: Each year, infertility affects 15% of couples worldwide, with 50% of cases attributed to men. Globozoospermia is an uncommon cause of male factor infertility, characterized by defects in sperm acrosome formation, leading to round-headed spermatozoa.
OBJECTIVE: We generated Pdcl2 knockout mice to investigate the essential roles of PDCL2 in mammalian reproduction.
MATERIALS AND METHODS: We used reverse transcription-polymerase chain reaction to demonstrate that PDCL2 was expressed exclusively in the male reproductive tract in mice and humans. We created Pdcl2 knockout mice using the CRISPR-Cas9 system and analyzed their fertility. Pdcl2 null spermatozoa underwent further evaluation using computer-assisted sperm analysis, …
A Cre Driver Line For Genetic Targeting Of Kappa Opioid Receptor Expressing Cells, Franciely Paliarin, Chelsea Duplantis, Andrea F Jones, Jessica Cucinello-Ragland, Samhita Basavanhalli, Emily Blaze, Evan Doré, Anna Isabella Neel, Haiguo Sun, Rong Chen, Scott Edwards, Nicholas W Gilpin, Robert O Messing, Rajani Maiya
A Cre Driver Line For Genetic Targeting Of Kappa Opioid Receptor Expressing Cells, Franciely Paliarin, Chelsea Duplantis, Andrea F Jones, Jessica Cucinello-Ragland, Samhita Basavanhalli, Emily Blaze, Evan Doré, Anna Isabella Neel, Haiguo Sun, Rong Chen, Scott Edwards, Nicholas W Gilpin, Robert O Messing, Rajani Maiya
Faculty, Staff and Student Publications
Here we describe the generation and characterization of a Cre knock-in mouse line that harbors a Cre insertion in the 3′UTR of the κ opioid receptor gene (Oprk1) locus and provides genetic access to populations of κ opioid receptor (KOR)-expressing neurons throughout the brain. Using a combination of techniques including RNA in situ hybridization and immunohistochemistry, we report that Cre is expressed with high fidelity in KOR-expressing cells throughout the brain in this mouse line. We also provide evidence that Cre insertion does not alter basal KOR function. Baseline anxiety-like behaviors and nociceptive thresholds are unaltered in Oprk1-Cre …
Snakes And Ladders: A Potential Therapy Of Hepatocyte Growth Factor And Pigment Epithelium-Derived Factor In Pulmonary Hypertension, Joseph M Zambelas, Harry Karmouty-Quintana
Snakes And Ladders: A Potential Therapy Of Hepatocyte Growth Factor And Pigment Epithelium-Derived Factor In Pulmonary Hypertension, Joseph M Zambelas, Harry Karmouty-Quintana
Faculty, Staff and Student Publications
No abstract provided.
Neoadjuvant Immunotherapy For Advanced, Resectable Non-Small Cell Lung Cancer: A Systematic Review And Meta-Analysis, Yajing Wu, Vivek Verma, Carl M Gay, Yujia Chen, Fei Liang, Qiang Lin, Jianing Wang, Wei Zhang, Zhouguang Hui, Min Zhao, Jun Wang, Joe Y Chang
Neoadjuvant Immunotherapy For Advanced, Resectable Non-Small Cell Lung Cancer: A Systematic Review And Meta-Analysis, Yajing Wu, Vivek Verma, Carl M Gay, Yujia Chen, Fei Liang, Qiang Lin, Jianing Wang, Wei Zhang, Zhouguang Hui, Min Zhao, Jun Wang, Joe Y Chang
Faculty, Staff and Student Publications
Background: Neoadjuvant immunotherapy (nIT) is a rapidly emerging paradigm for advanced resectable non-small cell lung cancer (NSCLC). The objectives of this PRISMA/MOOSE/PICOD-guided systematic review and meta-analysis were (1) to assess the safety and efficacy of nIT, (2) to compare the safety and efficacy of neoadjuvant chemoimmunotherapy (nCIT) versus chemotherapy alone (nCT), and (3) to explore predictors of pathologic response with nIT and their association with outcomes.
Methods: Eligibility was resectable stage I-III NSCLC and the receipt of programmed death-1/programmed cell death ligand-1 (PD-L1)/cytotoxic T-lymphocyte-associated antigen-4 inhibitors before resection; other forms and modalities of neoadjuvant and/or adjuvant therapies were allowed. For …
Stroke-Induced Respiratory Dysfunction Is Associated With Cognitive Decline, Anthony Patrizz, Ahmad El Hamamy, Michael Maniskas, Yashasvee Munshi, Louise Atadja, Hilda Ahnstedt, Matthew Howe, Fan Bu, Daniel K Mulkey, Louise D Mccullough, Jun Li
Stroke-Induced Respiratory Dysfunction Is Associated With Cognitive Decline, Anthony Patrizz, Ahmad El Hamamy, Michael Maniskas, Yashasvee Munshi, Louise Atadja, Hilda Ahnstedt, Matthew Howe, Fan Bu, Daniel K Mulkey, Louise D Mccullough, Jun Li
Faculty, Staff and Student Publications
BACKGROUND: Respiratory dysfunction is a common complication of stroke, with an incidence of over 60%. Despite the high prevalence of stroke-induced respiratory dysfunction, how disordered breathing influences recovery and cognitive outcomes after ischemic stroke is unknown. We hypothesized that stroke induces chronic respiratory dysfunction, breathing instability, and apnea in mice, which would contribute to higher mortality and greater poststroke cognitive deficits.
METHODS: Mice were subjected to a 60-minute transient middle cerebral artery occlusion or permanent distal middle cerebral artery occlusion. Whole body plethysmography was performed on C57BL/6 young (2-3 months) and aged (20 months) male and female mice. Animals were …
Screening Hydrogels For Antifibrotic Properties By Implanting Cellularly Barcoded Alginates In Mice And A Non-Human Primate, Sudip Mukherjee, Boram Kim, Lauren Y Cheng, Michael David Doerfert, Jiaming Li, Andrea Hernandez, Lily Liang, Maria I Jarvis, Peter D Rios, Sofia Ghani, Ira Joshi, Douglas Isa, Trisha Ray, Tanguy Terlier, Cody Fell, Ping Song, Roberto N Miranda, Jose Oberholzer, David Yu Zhang, Omid Veiseh
Screening Hydrogels For Antifibrotic Properties By Implanting Cellularly Barcoded Alginates In Mice And A Non-Human Primate, Sudip Mukherjee, Boram Kim, Lauren Y Cheng, Michael David Doerfert, Jiaming Li, Andrea Hernandez, Lily Liang, Maria I Jarvis, Peter D Rios, Sofia Ghani, Ira Joshi, Douglas Isa, Trisha Ray, Tanguy Terlier, Cody Fell, Ping Song, Roberto N Miranda, Jose Oberholzer, David Yu Zhang, Omid Veiseh
Faculty, Staff and Student Publications
Screening implantable biomaterials for antifibrotic properties is constrained by the need for in vivo testing. Here we show that the throughput of in vivo screening can be increased by cellularly barcoding a chemically modified combinatorial library of hydrogel formulations. The method involves the implantation of a mixture of alginate formulations, each barcoded with human umbilical vein endothelial cells from different donors, and the association of the identity and performance of each formulation by genotyping single nucleotide polymorphisms of the cells via next-generation sequencing. We used the method to screen 20 alginate formulations in a single mouse and 100 alginate formulations …
Cisplatin Decreases Voluntary Wheel-Running Activity But Does Not Impair Food-Motivated Behavior In Mice, Kiersten S Scott, Brandon Chelette, Chinenye Chidomere, A Phillip West, Robert Dantzer
Cisplatin Decreases Voluntary Wheel-Running Activity But Does Not Impair Food-Motivated Behavior In Mice, Kiersten S Scott, Brandon Chelette, Chinenye Chidomere, A Phillip West, Robert Dantzer
Faculty, Staff and Student Publications
Cisplatin is a chemotherapeutic agent that is still commonly used to treat solid tumors. However, it has several toxic side effects due in large part to the mitochondrial damage that it induces. As this mitochondrial damage is likely to result in a decrease in the amount of metabolic energy that is available for behavioral activities, it is not surprising that fatigue develops in cancer patients treated with cisplatin. The present preclinical study was initiated to determine whether the detrimental effects of cisplatin were more pronounced on physical effort requiring a lot of energy versus effort that not only requires less …
Identification Of Unique Α4 Chain Structure And Conserved Antiangiogenic Activity Of Α3nc1 Type Iv Collagen In Zebrafish, Valerie S Lebleu, Jianli Dai, Susan Tsutakawa, Brian A Macdonald, Joseph L Alge, Malin Sund, Liang Xie, Hikaru Sugimoto, John Tainer, Leonard I Zon, Raghu Kalluri
Identification Of Unique Α4 Chain Structure And Conserved Antiangiogenic Activity Of Α3nc1 Type Iv Collagen In Zebrafish, Valerie S Lebleu, Jianli Dai, Susan Tsutakawa, Brian A Macdonald, Joseph L Alge, Malin Sund, Liang Xie, Hikaru Sugimoto, John Tainer, Leonard I Zon, Raghu Kalluri
Faculty, Staff and Student Publications
BACKGROUND: Type IV collagen is an abundant component of basement membranes in all multicellular species and is essential for the extracellular scaffold supporting tissue architecture and function. Lower organisms typically have two type IV collagen genes, encoding α1 and α2 chains, in contrast with the six genes in humans, encoding α1-α6 chains. The α chains assemble into trimeric protomers, the building blocks of the type IV collagen network. The detailed evolutionary conservation of type IV collagen network remains to be studied.
RESULTS: We report on the molecular evolution of type IV collagen genes. The zebrafish α4 non-collagenous (NC1) domain, in …
Remote Neuronal Activity Drives Glioma Progression Through Sema4f, Emmet Huang-Hobbs, Yi-Ting Cheng, Yeunjung Ko, Estefania Luna-Figueroa, Brittney Lozzi, Kathryn R Taylor, Malcolm Mcdonald, Peihao He, Hsiao-Chi Chen, Yuhui Yang, Ehson Maleki, Zhung-Fu Lee, Sanjana Murali, Michael R Williamson, Dongjoo Choi, Rachel Curry, James Bayley, Junsung Woo, Ali Jalali, Michelle Monje, Jeffrey L Noebels, Akdes Serin Harmanci, Ganesh Rao, Benjamin Deneen
Remote Neuronal Activity Drives Glioma Progression Through Sema4f, Emmet Huang-Hobbs, Yi-Ting Cheng, Yeunjung Ko, Estefania Luna-Figueroa, Brittney Lozzi, Kathryn R Taylor, Malcolm Mcdonald, Peihao He, Hsiao-Chi Chen, Yuhui Yang, Ehson Maleki, Zhung-Fu Lee, Sanjana Murali, Michael R Williamson, Dongjoo Choi, Rachel Curry, James Bayley, Junsung Woo, Ali Jalali, Michelle Monje, Jeffrey L Noebels, Akdes Serin Harmanci, Ganesh Rao, Benjamin Deneen
Faculty, Staff and Students Publications
The tumor microenvironment (TME) plays an essential role in malignancy and neurons have emerged as a key component of the TME that promotes tumorigenesis across a host of cancers1,2. Recent studies on glioblastoma (GBM) highlight bi-directional signaling between tumors and neurons that propagates a vicious cycle of proliferation, synaptic integration, and brain hyperactivity3-8; however, the identity of neuronal subtypes and tumor subpopulations driving this phenomenon are incompletely understood. Here we show that callosal projection neurons located in the hemisphere contralateral to primary GBM tumors promote progression and widespread infiltration. Using this platform …
Atoh1 Drives The Heterogeneity Of The Pontine Nuclei Neurons And Promotes Their Differentiation, Sih-Rong Wu, Jessica C Butts, Matthew S Caudill, Jean-Pierre Revelli, Ryan S Dhindsa, Mark A Durham, Huda Y Zoghbi
Atoh1 Drives The Heterogeneity Of The Pontine Nuclei Neurons And Promotes Their Differentiation, Sih-Rong Wu, Jessica C Butts, Matthew S Caudill, Jean-Pierre Revelli, Ryan S Dhindsa, Mark A Durham, Huda Y Zoghbi
Faculty, Staff and Students Publications
Pontine nuclei (PN) neurons mediate the communication between the cerebral cortex andthe cerebellum to refine skilled motor functions. Prior studies showed that PN neurons fall into two subtypes based on their anatomic location and region-specific connectivity, but the extent of their heterogeneity and its molecular drivers remain unknown. Atoh1 encodes a transcription factor that is expressed in the PN precursors. We previously showed that partial loss of Atoh1 function in mice results in delayed PN development and impaired motor learning. In this study, we performed single-cell RNA sequencing to elucidate the cell state–specific functions of Atoh1 during PN development and …
Spatial Single-Cell Sequencing Of Meiosis I Arrested Oocytes Indicates Acquisition Of Maternal Transcripts From The Soma, Kenneth A Trimmer, Peisen Zhao, Jacob Seemann, Shin-Yu Chen, Sudip Mondal, Adela Ben-Yakar, Swathi Arur
Spatial Single-Cell Sequencing Of Meiosis I Arrested Oocytes Indicates Acquisition Of Maternal Transcripts From The Soma, Kenneth A Trimmer, Peisen Zhao, Jacob Seemann, Shin-Yu Chen, Sudip Mondal, Adela Ben-Yakar, Swathi Arur
Faculty, Staff and Student Publications
Maternal RNAs are stored from minutes to decades in oocytes throughout meiosis I arrest in a transcriptionally quiescent state. Recent reports, however, propose a role for nascent transcription in arrested oocytes. Whether arrested oocytes launch nascent transcription in response to environmental or hormonal signals while maintaining the meiosis I arrest remains undetermined. We test this by integrating single-cell RNA sequencing, RNA velocity, and RNA fluorescence in situ hybridization on C. elegans meiosis I arrested oocytes. We identify transcripts that increase as the arrested meiosis I oocyte ages, but rule out extracellular signaling through ERK MAPK and nascent transcription as a …
Effect Of Ishophloroglucin A Isolated From Ishige Okamurae On In Vitro Osteoclastogenesis And Osteoblastogenesis, Su-Hyeon Cho, Hyun-Soo Kim, Hye-Yeon Jung, Jae-Il Park, You-Jee Jang, Juhee Ahn, Kil-Nam Kim
Effect Of Ishophloroglucin A Isolated From Ishige Okamurae On In Vitro Osteoclastogenesis And Osteoblastogenesis, Su-Hyeon Cho, Hyun-Soo Kim, Hye-Yeon Jung, Jae-Il Park, You-Jee Jang, Juhee Ahn, Kil-Nam Kim
Faculty, Staff and Student Publications
The balance between bone-resorbing osteoclasts and bone-forming osteoblasts is essential for the bone remodeling process. This study aimed to investigate the effect of Ishophloroglucin A (IPA) isolated from Ishige okamurae on the function of osteoclasts and osteoblasts in vitro. First, we demonstrated the effect of IPA on osteoclastogenesis in receptor activator of nuclear factor κB ligand (RANKL)-induced RAW 264.7 cells. IPA inhibited the tartrate-resistant acid phosphatase (TRAP) activity and osteoclast differentiation in RANKL-induced RAW 264.7 cells. Moreover, it inhibited the RANKL-induced osteoclast-related factors, such as TRAP, matrix metalloproteinase-9 (MMP-9), and calcitonin receptor (CTR), and transcription factors, such as nuclear factor …
Mdm2/P53 Levels In Bone Marrow Mesenchymal Stromal Cells Are Essential For Maintaining The Hematopoietic Niche In Response To Dna Damage, Rasoul Pourebrahim, Rafael Heinz Montoya, Zoe Alaniz, Lauren Ostermann, Patrick P Lin, Bin Liu, Edward Ayoub, Jared K Burks, Michael Andreeff
Mdm2/P53 Levels In Bone Marrow Mesenchymal Stromal Cells Are Essential For Maintaining The Hematopoietic Niche In Response To Dna Damage, Rasoul Pourebrahim, Rafael Heinz Montoya, Zoe Alaniz, Lauren Ostermann, Patrick P Lin, Bin Liu, Edward Ayoub, Jared K Burks, Michael Andreeff
Faculty, Staff and Student Publications
Mesenchymal stromal cells (MSCs) are a key component of the bone marrow (BM) niche, providing essential support required for the maintenance of hematopoietic stem cells. To advance our understanding of physiological functions of p53 and Mdm2 in BM-MSCs, we developed traceable conditional mouse models targeting Mdm2 and/or Trp53 in vivo. We demonstrate that Mdm2 is essential for the emergence, maintenance, and hematopoietic support of BM-MSCs. Mdm2 haploinsufficiency in BM-MSCs resulted in genotoxic stress-associated thrombocytopenia, suggesting a functional role for Mdm2 in hematopoiesis. In a syngeneic mouse model of acute myeloid leukemia (AML), Trp53 deletion in BM-MSCs improved survival, and protected …
Drugging Evolution Of Antibiotic Resistance At A Regulatory Network Hub, Yin Zhai, John P Pribis, Sean W Dooling, Libertad Garcia-Villada, P J Minnick, Jun Xia, Jingjing Liu, Qian Mei, Devon M Fitzgerald, Christophe Herman, P J Hastings, Mauro Costa-Mattioli, Susan M Rosenberg
Drugging Evolution Of Antibiotic Resistance At A Regulatory Network Hub, Yin Zhai, John P Pribis, Sean W Dooling, Libertad Garcia-Villada, P J Minnick, Jun Xia, Jingjing Liu, Qian Mei, Devon M Fitzgerald, Christophe Herman, P J Hastings, Mauro Costa-Mattioli, Susan M Rosenberg
Faculty, Staff and Students Publications
Evolution of antibiotic resistance is a world health crisis, fueled by new mutations. Drugs to slow mutagenesis could, as cotherapies, prolong the shelf-life of antibiotics, yet evolution-slowing drugs and drug targets have been underexplored and ineffective. Here, we used a network-based strategy to identify drugs that block hubs of fluoroquinolone antibiotic-induced mutagenesis. We identify a U.S. Food and Drug Administration- and European Medicines Agency-approved drug, dequalinium chloride (DEQ), that inhibits activation of the
Normal Saline Remodels The Omentum And Stimulates Its Receptivity For Transcoelomic Metastasis, Hironari Akasaka, Wonjae Lee, Song Yi Ko, Ernst Lengyel, Honami Naora
Normal Saline Remodels The Omentum And Stimulates Its Receptivity For Transcoelomic Metastasis, Hironari Akasaka, Wonjae Lee, Song Yi Ko, Ernst Lengyel, Honami Naora
Faculty, Staff and Student Publications
The omentum contains immune cell structures called milky spots that are niches for transcoelomic metastasis. It is difficult to remove the omentum completely, and there are no effective strategies to minimize the risk of colonization of preserved omental tissues by cancer cells that circulate in the peritoneal fluid. Normal saline is commonly administered into the peritoneal cavity for diagnostic and intraoperative lavage. Here we show that normal saline, when administered into the peritoneal cavity of mice, is prominently absorbed by the omentum, exfoliates its mesothelium, and induces expression of CX3CL1, the ligand for CX3CR1, within and surrounding the omental vasculature. …
Nanoparticle-Enhanced Proton Beam Immunoradiotherapy Drives Immune Activation And Durable Tumor Rejection, Yun Hu, Sébastien Paris, Narayan Sahoo, Genevieve Bertolet, Qi Wang, Qianxia Wang, Hampartsoum B Barsoumian, Jordan Da Silva, Ailing Huang, Denaha J Doss, David P Pollock, Ethan Hsu, Nanez Selene, Claudia S Kettlun Leyton, Tiffany A Voss, Fatemeh Masrorpour, Shonik Ganjoo, Carola Leuschner, Jordan T Pietz, Nahum Puebla-Osorio, Saumil Gandhi, Quynh-Nhu Nguyen, Jing Wang, Maria Angelica Cortez, James W Welsh
Nanoparticle-Enhanced Proton Beam Immunoradiotherapy Drives Immune Activation And Durable Tumor Rejection, Yun Hu, Sébastien Paris, Narayan Sahoo, Genevieve Bertolet, Qi Wang, Qianxia Wang, Hampartsoum B Barsoumian, Jordan Da Silva, Ailing Huang, Denaha J Doss, David P Pollock, Ethan Hsu, Nanez Selene, Claudia S Kettlun Leyton, Tiffany A Voss, Fatemeh Masrorpour, Shonik Ganjoo, Carola Leuschner, Jordan T Pietz, Nahum Puebla-Osorio, Saumil Gandhi, Quynh-Nhu Nguyen, Jing Wang, Maria Angelica Cortez, James W Welsh
Faculty, Staff and Student Publications
The combination of radiation therapy (RT) and immunotherapy has emerged as a promising treatment option in oncology. Historically, x-ray radiation (XRT) has been the most commonly used form of RT. However, proton beam therapy (PBT) is gaining recognition as a viable alternative, as it has been shown to produce similar outcomes to XRT while minimizing off-target effects. The effects of PBT on the antitumor immune response have only just begun to be described, and to our knowledge no studies to date have examined the effect of PBT as part of a combinatorial immunoradiotherapeutic strategy. Here, using a 2-tumor model of …
Arginine Depletion Attenuates Renal Cystogenesis In Tuberous Sclerosis Complex Model, Athar Amleh, Hadass Pri Chen, Lana Watad, Ifat Abramovich, Bella Agranovich, Eyal Gottlieb, Iddo Z Ben-Dov, Morris Nechama, Oded Volovelsky
Arginine Depletion Attenuates Renal Cystogenesis In Tuberous Sclerosis Complex Model, Athar Amleh, Hadass Pri Chen, Lana Watad, Ifat Abramovich, Bella Agranovich, Eyal Gottlieb, Iddo Z Ben-Dov, Morris Nechama, Oded Volovelsky
Faculty, Staff and Student Publications
Cystic kidney disease is a leading cause of morbidity in patients with tuberous sclerosis complex (TSC). We characterize the misregulated metabolic pathways using cell lines, a TSC mouse model, and human kidney sections. Our study reveals a substantial perturbation in the arginine biosynthesis pathway in TSC models with overexpression of argininosuccinate synthetase 1 (ASS1). The rise in ASS1 expression is dependent on the mechanistic target of rapamycin complex 1 (mTORC1) activity. Arginine depletion prevents mTORC1 hyperactivation and cell cycle progression and averts cystogenic signaling overexpression of c-Myc and P65. Accordingly, an arginine-depleted diet substantially reduces the TSC cystic load in …
Evidence-Based Guide To Using Artificial Introns For Tissue-Specific Knockout In Mice, Elena Mcbeath, Keigi Fujiwara, Marie-Claude Hofmann
Evidence-Based Guide To Using Artificial Introns For Tissue-Specific Knockout In Mice, Elena Mcbeath, Keigi Fujiwara, Marie-Claude Hofmann
Faculty, Staff and Student Publications
Up until recently, methods for generating floxed mice either conventionally or by CRISPR (Clustered Regularly Interspaced Short Palindromic Repeats)-Cas9 (CRISPR-associated protein 9) editing have been technically challenging, expensive and error-prone, or time-consuming. To circumvent these issues, several labs have started successfully using a small artificial intron to conditionally knockout (KO) a gene of interest in mice. However, many other labs are having difficulty getting the technique to work. The key problem appears to be either a failure in achieving correct splicing after the introduction of the artificial intron into the gene or, just as crucial, insufficient functional KO of the …