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Articles 721 - 750 of 7751
Full-Text Articles in Medicine and Health Sciences
Genetics-Nutrition Interactions Control Diurnal Enhancer-Promoter Dynamics And Liver Lipid Metabolism, Dishu Zhou, Ying Chen, Panpan Liu, Kun Zhu, Juliet Holder-Haynes, S Julie-Ann Lloyd, Cam Mong La, Inna I Astapova, Seunghee Choa, Ying Xiong, Hosung Bae, Marlene Aguilar, Hongyuan Yang, Yu A An, Zheng Sun, Mark A Herman, Xia Gao, Liming Pei, Cholsoon Jang, Joshua D Rabinowitz, Samer G Mattar, Yongyou Zhang, Dongyin Guan
Genetics-Nutrition Interactions Control Diurnal Enhancer-Promoter Dynamics And Liver Lipid Metabolism, Dishu Zhou, Ying Chen, Panpan Liu, Kun Zhu, Juliet Holder-Haynes, S Julie-Ann Lloyd, Cam Mong La, Inna I Astapova, Seunghee Choa, Ying Xiong, Hosung Bae, Marlene Aguilar, Hongyuan Yang, Yu A An, Zheng Sun, Mark A Herman, Xia Gao, Liming Pei, Cholsoon Jang, Joshua D Rabinowitz, Samer G Mattar, Yongyou Zhang, Dongyin Guan
Faculty, Staff and Student Publications
The circadian clock controls 24-h rhythmic processes. However, how genetic variations outside clock genes impact peripheral diurnal rhythms remains largely unknown. Here, we find that genetic variation contributes to different diurnal patterns of hepatic gene expression in both humans and mice. Nutritional challenges alter the rhythmicity of gene expression in mouse liver in a strain-specific manner. Remarkably, genetics and nutrition interdependently control more than 80% of rhythmic gene and enhancer-promoter interactions (E-PIs), with a noncanonical clock regulator, estrogen-related receptor gamma (ESRRγ), emerging as a top transcription factor during motif mining. Knockout of Esrrγ abolishes strain-specific metabolic processes in response to …
Atg Conjugation-Dependent/Independent Mechanisms Underlie Lysosomal Stress-Induced Tfeb Regulation, Shiori Akayama, Takayuki Shima, Tatsuya Kaminishi, Mengying Cui, Jlenia Monfregola, Kohei Nishino, Andrea Ballabio, Hidetaka Kosako, Tamotsu Yoshimori, Shuhei Nakamura
Atg Conjugation-Dependent/Independent Mechanisms Underlie Lysosomal Stress-Induced Tfeb Regulation, Shiori Akayama, Takayuki Shima, Tatsuya Kaminishi, Mengying Cui, Jlenia Monfregola, Kohei Nishino, Andrea Ballabio, Hidetaka Kosako, Tamotsu Yoshimori, Shuhei Nakamura
Duncan NRI Faculty and Staff Publications
TFEB, a master regulator of autophagy and lysosomal biogenesis, is activated by several cellular stresses including lysosomal damage, but its underlying mechanism is unclear. TFEB activation during lysosomal damage depends on the ATG conjugation system, which mediates lipidation of ATG8 proteins. Here, we newly identify ATG conjugation-independent TFEB regulation that precedes ATG conjugation-dependent regulation, designated Modes I and II, respectively. We reveal unique regulators of TFEB in each mode: APEX1 in Mode I and CCT7 and/or TRIP6 in Mode II. APEX1 interacts with TFEB independently of the ATG conjugation system, and is required for TFEB stability, while both CCT7 and …
Atg16l1 Controls Mammalian Vacuolar Proton Atpase, Thabata L A Duque, Masroor Paddar, Einar Trosdal, Ruheena Javed, Lee Allers, Michal H Mudd, Prithvi Akepati, Soumya R Mishra, Michelle Salemi, Brett Phinney, Shawn B Bratton, Thomas Wileman, Vojo Deretic
Atg16l1 Controls Mammalian Vacuolar Proton Atpase, Thabata L A Duque, Masroor Paddar, Einar Trosdal, Ruheena Javed, Lee Allers, Michal H Mudd, Prithvi Akepati, Soumya R Mishra, Michelle Salemi, Brett Phinney, Shawn B Bratton, Thomas Wileman, Vojo Deretic
Faculty, Staff and Student Publications
The mechanisms governing mammalian proton pump V-ATPase function are of fundamental and medical interest. The assembly and disassembly of cytoplasmic V1 domain with the membrane-embedded V0 domain of V-ATPase is a key aspect of V-ATPase localization and function. Here, we show that the mammalian protein ATG16L1, primarily appreciated for its role in canonical autophagy and in noncanonical membrane atg8ylation processes, controls V-ATPase. ATG16L1 knockout elevated V-ATPase activity, increased V1 presence on endomembranes, and increased the number of acidified intracellular compartments. ATG16L1's ability to efficiently bind V-ATPase was required for its inhibitory role in endolysosomal acidification and for control of Mycobacterium …
Apoe-Calypse Tau: Apoe-Tau Synergy In Alzheimer's Disease, Matthew Paul Lennol, Chiara Bordier, Léana Kamelher, Jason D Ulrich, David M Holtzman, Maud Gratuze
Apoe-Calypse Tau: Apoe-Tau Synergy In Alzheimer's Disease, Matthew Paul Lennol, Chiara Bordier, Léana Kamelher, Jason D Ulrich, David M Holtzman, Maud Gratuze
2020-Current year OA Pubs
Alzheimer's disease (AD), the most common cause of dementia, is characterized by the accumulation of amyloid-β (Aβ) in senile plaques and abnormally hyperphosphorylated tau proteins in neurofibrillary tangles. While much of the research has focused on Aβ, tau-mediated neurodegeneration is more closely associated with synaptic loss and cognitive decline in AD, emphasizing the need for a deeper understanding of tau pathology. In this context, the interaction between tau and APOE, particularly the main genetic risk factor for AD APOE ε4, remains underexplored. APOE encodes apolipoprotein E (apoE), a protein important in lipid metabolism. In addition to promoting Aβ deposition, emerging …
Vaccine Value Profile For Schistosomiasis, Gavin Yamey, Kaci Kennedy Mcdade, Roy M Anderson, Sarah M Bartsch, Maria Elena Bottazzi, David Diemert, Peter J Hotez, Bruce Y Lee, Donald Mcmanus, Adebayo J Molehin, Meta Roestenberg, David Rollinson, Afzal A Siddiqui, Miriam Tendler, Joanne P Webster, Hong You, Raphaël M Zellweger, Caroline Marshall
Vaccine Value Profile For Schistosomiasis, Gavin Yamey, Kaci Kennedy Mcdade, Roy M Anderson, Sarah M Bartsch, Maria Elena Bottazzi, David Diemert, Peter J Hotez, Bruce Y Lee, Donald Mcmanus, Adebayo J Molehin, Meta Roestenberg, David Rollinson, Afzal A Siddiqui, Miriam Tendler, Joanne P Webster, Hong You, Raphaël M Zellweger, Caroline Marshall
Faculty, Staff and Students Publications
Schistosomiasis is caused by parasitic flatworms (Schistosoma). The disease in humans can be caused by seven different species of Schistosoma: S. mansoni, S. japonicum, S. haematobium, S. malayensis, S. mekongi, S. guineensis and S. intercalatum, as well as by hybrids between species, including livestock schistosome species. People are infected when exposed to infested water and the parasite larvae penetrate the skin. Poor and rural communities are typically the most affected, and the general population who lives in affected areas and is exposed to contaminated water is at risk. Areas with poor access to safe water and adequate sanitation are also …
All-Optical Voltage Interrogation For Probing Synaptic Plasticity In Vivo, Jacques Carolan, Michelle A Land, Xiaoyu Lu, Maxime Beau, Dimitar Kostadinov, François St-Pierre, Beverley A Clark, Michael Häusser
All-Optical Voltage Interrogation For Probing Synaptic Plasticity In Vivo, Jacques Carolan, Michelle A Land, Xiaoyu Lu, Maxime Beau, Dimitar Kostadinov, François St-Pierre, Beverley A Clark, Michael Häusser
Faculty, Staff and Students Publications
Measuring synaptic efficacy and defining the rules for induction of synaptic plasticity at identified connections in the mammalian brain is essential for understanding how synapses contribute to learning and memory. This requires new approaches to selectively evoke presynaptic activity and measure postsynaptic responses with high spatiotemporal resolution and high sensitivity over long periods in vivo. Here we develop an all-optical approach to probe synaptic plasticity at identified cerebellar synapses in awake, behaving mice. We developed and applied JEDI-2Psub, a genetically encoded voltage indicator with increased sensitivity around resting membrane potentials, to record subthreshold and suprathreshold activity in Purkinje cell (PC) …
A Mast Cell Receptor Mediates Post-Stroke Brain Inflammation Via A Dural-Brain Axis, Ruchita Kothari, Mostafa W Abdulrahim, Hyun Jong Oh, Daniel H Capuzzi, Collin B Kilgore, Sumil K Nair, Yaowu Zhang, Nathachit Limjunyawong, Sarbjit S Saini, Jennifer E Kim, Justin M Caplan, Fernanado L Gonzalez, Christopher M Jackson, Chetan Bettegowda, Judy Huang, Bhanu P Ganesh, Chunfeng Tan, Raymond C Koehler, Rafael J Tamargo, Louise D Mccullough, Risheng Xu, Xinzhong Dong
A Mast Cell Receptor Mediates Post-Stroke Brain Inflammation Via A Dural-Brain Axis, Ruchita Kothari, Mostafa W Abdulrahim, Hyun Jong Oh, Daniel H Capuzzi, Collin B Kilgore, Sumil K Nair, Yaowu Zhang, Nathachit Limjunyawong, Sarbjit S Saini, Jennifer E Kim, Justin M Caplan, Fernanado L Gonzalez, Christopher M Jackson, Chetan Bettegowda, Judy Huang, Bhanu P Ganesh, Chunfeng Tan, Raymond C Koehler, Rafael J Tamargo, Louise D Mccullough, Risheng Xu, Xinzhong Dong
Faculty, Staff and Student Publications
The immune environment surrounding the brain plays a fundamental role in monitoring signs of injury. Insults, including ischemic stroke, can disrupt this balance and incite an exaggerated inflammatory response, yet the underlying mechanism remains unclear. Here, we show that the mast-cell-specific receptor Mrgprb2 regulates post-stroke brain inflammation from the meninges. Mrgprb2 causes meningeal mast cell degranulation after stroke, releasing immune mediators. This process recruits skull bone marrow neutrophils into the dura and further promotes neutrophil migration from the dura into the brain by cleaving the chemorepellent semaphorin 3a. We demonstrate that the human ortholog, MRGPRX2, is expressed in human meningeal …
Rare Variants In Prkci Cause Van Der Woude Syndrome And Other Features Of Peridermopathy, Kelsey Robinson, Sunil K Singh, Rachel B Walkup, Dorelle V Fawwal, Kendra M Vilfort, Amanda Koloskee, Azeez Fashina, Wasiu Lanre Adeyemo, Terri H Beaty, Azeez Butali, Carmen J Buxó, Wendy K Chung, David J Cutler, Michael P Epstein, Brooklynn Gasser, Lord J J Gowans, Jacqueline T Hecht, Anuj Mankad, Lina Moreno Uribe, Daryl A Scott, Gary M Shaw, Mary Ann Thomas, Seth M Weinberg, Eric C Liao, Harrison Brand, Mary L Marazita, Robert J Lipinski, Jeffrey C Murray, Robert A Cornell, Elizabeth J Leslie-Clarkson
Rare Variants In Prkci Cause Van Der Woude Syndrome And Other Features Of Peridermopathy, Kelsey Robinson, Sunil K Singh, Rachel B Walkup, Dorelle V Fawwal, Kendra M Vilfort, Amanda Koloskee, Azeez Fashina, Wasiu Lanre Adeyemo, Terri H Beaty, Azeez Butali, Carmen J Buxó, Wendy K Chung, David J Cutler, Michael P Epstein, Brooklynn Gasser, Lord J J Gowans, Jacqueline T Hecht, Anuj Mankad, Lina Moreno Uribe, Daryl A Scott, Gary M Shaw, Mary Ann Thomas, Seth M Weinberg, Eric C Liao, Harrison Brand, Mary L Marazita, Robert J Lipinski, Jeffrey C Murray, Robert A Cornell, Elizabeth J Leslie-Clarkson
Faculty, Staff and Student Publications
Van der Woude syndrome (VWS) is an autosomal dominant disorder characterized by lower lip pits and orofacial clefts (OFCs). With a prevalence of ∼1 in 35,000 live births, it is the most common form of syndromic clefting. Most VWS is attributed to variants in IRF6 (∼70%) or GRHL3 (∼5%), leaving up to 25% of individuals without a molecular diagnosis. Both IRF6 and GRHL3 function in a transcriptional regulatory network (TRN) governing differentiation of periderm, a single epithelial cell layer preventing pathological adhesions during palatogenesis. Periderm disruption can elicit a spectrum of phenotypes, including lip pits and OFCs, pterygia, and severe …
Preclinical Models Of Melanoma Leptomeningeal Disease To Assess Intrathecal Checkpoint Blockade, Renato A Guerrieri, Grant M Fischer, Jacob R Cortez, Barbara G Knighton, Debora A Ledesma, Courtney W Hudgens, Yimmy F Delcid, Qianghua Hu, Christian Y B Onana, Fernando C L Carapeto, Michael T Tezlaff, Jason T Huse, Patrick Hwu, Elizabeth M Burton, Isabella C Glitza Oliva, Michael A Davies, Sherise D Ferguson
Preclinical Models Of Melanoma Leptomeningeal Disease To Assess Intrathecal Checkpoint Blockade, Renato A Guerrieri, Grant M Fischer, Jacob R Cortez, Barbara G Knighton, Debora A Ledesma, Courtney W Hudgens, Yimmy F Delcid, Qianghua Hu, Christian Y B Onana, Fernando C L Carapeto, Michael T Tezlaff, Jason T Huse, Patrick Hwu, Elizabeth M Burton, Isabella C Glitza Oliva, Michael A Davies, Sherise D Ferguson
Faculty, Staff and Student Publications
Leptomeningeal disease (LMD) is a subtype of central nervous system metastatic disease that is associated with poor patient outcomes and limited treatment options. There is an unmet need to develop preclinical models of LMD to expedite and improve the development of new therapeutics. Here, we describe the development of multiple orthotopic immunocompetent murine models of melanoma LMD, including their use to assess the efficacy of systemic and/or intrathecal immunotherapy. LMD was established by direct intrathecal injection of murine cell lines (B16-F10, BP, D4M, D4M-UV2, MC38-gp100, RMS, YUMM3.1, and YUMMER1.7) into the cisterna magna of C57BL/6 mice. Tumor take rate, distribution, …
A Needed Nomenclature For Nucleosomes, Michael-Christopher Keogh, Genevieve Almouzni, Andrew J Andrews, Karim-Jean Armache, Cheryl H Arrowsmith, Sung Hee Baek, Mark T Bedford, Emily Bernstein, Jacques Côté, Yael David, John M Denu, Beat Fierz, Benjamin A Garcia, Karen C Glass, Or Gozani, Kristian Helin, Steven Henikoff, Ole N Jensen, Steven Z Josefowicz, Neil L Kelleher, Tatiana G Kutateladze, Herbert H Lindner, Chao Lu, Karolin Luger, Parag Mallick, Catherine A Musselman, Tom W Muir, Ljiljana Paša-Tolić, Robert Schneider, Xiaobing Shi, Yang Shi, Simone Sidoli, Lloyd M Smith, Jessica K Tyler, Cynthia Wolberger, Jerry L Workman, Brian D Strahl, Nicolas L Young
A Needed Nomenclature For Nucleosomes, Michael-Christopher Keogh, Genevieve Almouzni, Andrew J Andrews, Karim-Jean Armache, Cheryl H Arrowsmith, Sung Hee Baek, Mark T Bedford, Emily Bernstein, Jacques Côté, Yael David, John M Denu, Beat Fierz, Benjamin A Garcia, Karen C Glass, Or Gozani, Kristian Helin, Steven Henikoff, Ole N Jensen, Steven Z Josefowicz, Neil L Kelleher, Tatiana G Kutateladze, Herbert H Lindner, Chao Lu, Karolin Luger, Parag Mallick, Catherine A Musselman, Tom W Muir, Ljiljana Paša-Tolić, Robert Schneider, Xiaobing Shi, Yang Shi, Simone Sidoli, Lloyd M Smith, Jessica K Tyler, Cynthia Wolberger, Jerry L Workman, Brian D Strahl, Nicolas L Young
Faculty, Staff and Student Publications
Histone post-translational modifications (PTMs) are crucial to eukaryotic genome regulation, with a range of reported functions and mechanisms of action. Though often studied individually, it has long been recognized that the modifications function by combinatorial synergy or antagonism. Interplay may involve PTMs on the same histone, within the same nucleosome (containing a histone octamer), or between nucleosomes in higher-order chromatin. Given this, the field must distinguish ever greater complexity, and the context in which it is studied, with brevity and precision. The proteoform was introduced to define individual forms of a protein by sequence and PTMs, followed by the nucleoform …
Neuronal Activity-Dependent Gene Dysregulation In C9orf72 I3neuronal Models Of Als/Ftd Pathogenesis, Layla T. Ghaffari, Emily A. Welebob, Sarah E. Bond Newton, Ashley V. Boehringer, Kelly L. Cyliax, Piera Pasinelli, Davide Trotti, Aaron R. Haeusler
Neuronal Activity-Dependent Gene Dysregulation In C9orf72 I3neuronal Models Of Als/Ftd Pathogenesis, Layla T. Ghaffari, Emily A. Welebob, Sarah E. Bond Newton, Ashley V. Boehringer, Kelly L. Cyliax, Piera Pasinelli, Davide Trotti, Aaron R. Haeusler
Farber Institute for Neuroscience Faculty Papers
The GGGGCC nucleotide repeat expansion (NRE) mutation in the C9ORF72 (C9) gene is the most common cause of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). Neuronal activity plays an essential role in shaping biological processes within both healthy and neurodegenerative disease scenarios. Here, we show that at baseline conditions, C9-NRE-induced pluripotent stem cell-cortical neurons display aberrations in several pathways, including synaptic signaling and transcriptional machinery, potentially priming diseased neurons for an altered response to neuronal stimulation. Indeed, exposure to two pathophysiologically relevant stimulation modes, prolonged membrane depolarization or a blockade of K+ channels, followed by RNA sequencing, induces …
Escape Of Kdm6a From X Chromosome Is Detrimental To Ischemic Brains Via Irf5 Signaling, Conelius Ngwa, Afzal Misrani, Kanaka Valli Manyam, Yan Xu, Shaohua Qi, Romana Sharmeen, Juneyoung Lee, Long-Jun Wu, Louise Mccullough, Fudong Liu
Escape Of Kdm6a From X Chromosome Is Detrimental To Ischemic Brains Via Irf5 Signaling, Conelius Ngwa, Afzal Misrani, Kanaka Valli Manyam, Yan Xu, Shaohua Qi, Romana Sharmeen, Juneyoung Lee, Long-Jun Wu, Louise Mccullough, Fudong Liu
The Brown Foundation: Institute of Molecular Medicine
The role of chromatin biology and epigenetics in disease progression is gaining increasing recognition. Genes that escape X chromosome inactivation (XCI) can impact neuroinflammation through epigenetic mechanisms. Our previous study has suggested that the X escapee genes Kdm6a and Kdm5c are involved in microglial activation after stroke in aged mice. However, the underlying mechanisms remain unclear. We hypothesized that Kdm6a/5c demethylate H3K27Me3/H3K4Me3 in microglia, respectively, and mediate the transcription of interferon regulatory factor 5 (IRF5) and IRF4, leading to microglial pro-inflammatory responses and exacerbated stroke injury. Aged (17–20 months) Kdm6a/5c microglial conditional knockout (CKO) female mice (one allele of the …
Hydrogen Sulfide Inhibits Recruitment Of Monocyte-Derived Tumor Associated Macrophages In Glioblastoma By Downregulating Cxcl12, Joseph Camarano, Morgan Roque, Gabrielle Gahn, Stephen Garrett Whipple, Danielle Terrell, Charles Ronkon, Jamie Toms, Anthony Sin, Bharat Guthikonda, Khatri Latha, Yuhui Yang, Xinggui Shen, Christopher G Kevil, Ganesh Rao, Sungho Lee
Hydrogen Sulfide Inhibits Recruitment Of Monocyte-Derived Tumor Associated Macrophages In Glioblastoma By Downregulating Cxcl12, Joseph Camarano, Morgan Roque, Gabrielle Gahn, Stephen Garrett Whipple, Danielle Terrell, Charles Ronkon, Jamie Toms, Anthony Sin, Bharat Guthikonda, Khatri Latha, Yuhui Yang, Xinggui Shen, Christopher G Kevil, Ganesh Rao, Sungho Lee
Faculty, Staff and Students Publications
Tumor associated macrophages (TAMs) directly contribute to the dismal prognosis of glioblastoma by preventing anti-tumor immunity and promoting tumor invasion and angiogenesis. Inhibiting TAM infiltration is a potential therapeutic strategy in glioblastoma, with several chemokine antagonists in early clinical development. Hydrogen sulfide, a gasotransmitter that regulates microglial accumulation in a wide range of CNS diseases, may be a novel therapeutic target to prevent TAM recruitment in glioblastoma. In this study, hydrogen sulfide concentrations were directly measured from 14 isocitrate dehydrogenase (IDH)-wildtype glioblastoma surgical samples and compared against overall survival as well as expression of TAM markers and chemokines. Effects of …
Dynamic Rewiring Of Microrna Networks In The Brainstem Autonomic Control Circuits During Hypertension Development In The Female Spontaneously Hypertensive Rat, Alison Moss, Ankita Srivastava, Lakshmi Kuttippurathu, James S. Schwaber, Rajanikanth Vadigepalli
Dynamic Rewiring Of Microrna Networks In The Brainstem Autonomic Control Circuits During Hypertension Development In The Female Spontaneously Hypertensive Rat, Alison Moss, Ankita Srivastava, Lakshmi Kuttippurathu, James S. Schwaber, Rajanikanth Vadigepalli
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
We describe global microRNA (miRNA) changes in the central autonomic control circuits during the development of neurogenic hypertension. Using the female spontaneously hypertensive rat (SHR) and the normotensive Wistar Kyoto (WKY), we analyzed the dynamic miRNA expression changes in three brainstem regions-the nucleus of the solitary tract, caudal ventrolateral medulla, and rostral ventrolateral medulla-as a time series beginning at 8 wk of age before hypertension onset through to extended chronic hypertension. Our analysis yielded nine miRNAs that were significantly differentially regulated in all three regions between SHR and WKY over time. We collated computationally predicted gene targets of these nine …
Repeated Withdrawal Of A Glpr Agonist Induces Hyperleptinemia And Deteriorates Metabolic Health In Obese Aging Um-Het3 Mice, Nisi Jiang, Jiyuan Yin, Noah Lawrence, Jieyi Meng, Laurence T Maeyens, Ziying Xu, Xin Li, Mbolle Ekane, Ariana Chaudhary, Pengju Cao, Guannan Li, Carolina Solis-Herrera, Yi Zhu, Shangang Zhao
Repeated Withdrawal Of A Glpr Agonist Induces Hyperleptinemia And Deteriorates Metabolic Health In Obese Aging Um-Het3 Mice, Nisi Jiang, Jiyuan Yin, Noah Lawrence, Jieyi Meng, Laurence T Maeyens, Ziying Xu, Xin Li, Mbolle Ekane, Ariana Chaudhary, Pengju Cao, Guannan Li, Carolina Solis-Herrera, Yi Zhu, Shangang Zhao
Children’s Nutrition Research Center Staff Publications
GLP-1-based therapy is highly effective in combating aging-associated metabolic diseases. However, the metabolic effects of frequent withdrawal from this therapy in aged, obese mice have not been previously studied. In this study, aged obese UM-HET3 mice were assigned to three groups: Group 1 received no liraglutide treatment (Lira OFF); Group 2 underwent 3 cycles of treatment followed by withdrawal (Lira ON/OFF); and Group 3 remained on continuous treatment (Lira ON). As expected, mice in Group 3 showed reduced body weight and food intake, along with improved metabolic health. In contrast, mice in Group 2 developed hyperleptinemia and visceral fat expansion, …
Bone Marrow Endosteum In Homeostasis And Metastasis, Yuta Nakai, Wanida Ono, Noriaki Ono
Bone Marrow Endosteum In Homeostasis And Metastasis, Yuta Nakai, Wanida Ono, Noriaki Ono
Faculty, Staff and Student Publications
The endosteum is a thin layer of connective tissue lining the inner surfaces of bones adjoining the medullary cavity. The endosteum houses a variety of cells crucial for bone growth, repair and remodelling, including bone-forming osteoblasts, bone-resorbing osteoclasts and their precursor cells. Historically, the endosteum has been extensively studied as a key site for haematopoiesis by which blood cells are incessantly produced. However, recent studies have defined the endosteum as a niche for skeletal stem cells, underscoring the importance of the harmony between the inner endosteum and the outer periosteum in maintaining bone homeostasis. The endosteum also plays a significant …
Recapitulating The Immune Microenvironment In Pediatric Brain Cancer: Preclinical Modeling Strategies., Adip G. Bhargav, Joseph S. Domino, David Akhavan, Jo Ling Goh
Recapitulating The Immune Microenvironment In Pediatric Brain Cancer: Preclinical Modeling Strategies., Adip G. Bhargav, Joseph S. Domino, David Akhavan, Jo Ling Goh
Manuscripts, Articles, Book Chapters and Other Papers
Primary brain and CNS tumors comprise the most common tumors in children and are the most common cause of cancer deaths in this population. Pediatric primary malignant brain tumors including high-grade glioma and medulloblastoma account for a significant proportion of these cancer deaths. Advances in the surgical management and adjuvant treatment paradigms have improved the prognosis of many patients with these tumors, but there remains a subset of treatment-resistant tumors or tumors with unique genetics aberrations and aggressive phenotypes that confer a poor prognosis. Immunotherapeutic strategies have demonstrated promise in pre-clinical studies and early clinical trials. However, high-fidelity evaluation of …
Carotenoids As Neuroprotective Agents In Multiple Sclerosis: Pathways, Mechanisms, And Clinical Prospects, Elham Nadimi, Shirin Jamal Omidi, Mahshad Ghasemi, Mohammad Hashem Hashempur, Aida Iraji
Carotenoids As Neuroprotective Agents In Multiple Sclerosis: Pathways, Mechanisms, And Clinical Prospects, Elham Nadimi, Shirin Jamal Omidi, Mahshad Ghasemi, Mohammad Hashem Hashempur, Aida Iraji
Faculty, Staff and Student Publications
Multiple sclerosis (MS) is a chronic autoimmune andneurodegenerative disorder affecting the central nervous system (CNS), characterized by demyelination and neuroinflammatory responses, oxidative stress, and immune dysregulation. The global incidence of MS is rising, demonstrating the necessity for new therapeutic agents against its complex pathophysiology. Carotenoids, naturally pigments with strong antioxidant, anti-inflammatory, immunomodulatory, and neuroprotective activities, have been recognized as promising candidates to target MS.The antioxidant effect of astaxanthin, lycopene, β-carotene, crocin, and lutein resulted from the deactivation of reactive oxygen species (ROS), preservation of mitochondrial integrity, and prevention of lipid peroxidation. Additionally, carotenoids regulate inflammatory pathways by suppressing NF-κB activation, …
Site-Specific Drug Release Of Monomethyl Fumarate To Treat Oxidative Stress Disorders, Thomas D Avery, Jiahe Li, Dion J L Turner, Mohd S U Rasheed, Fisher R Cherry, Damian L Stachura, Fátima Rivera-Escalera, David M Ruiz, Michael J Lacagnina, Caitlyn M Gaffney, Clarissa Aguilar, Jingxian Yu, Yang Wang, Huan Xie, Dong Liang, Andrew J Shepherd, Andrew D Abell, Peter M Grace
Site-Specific Drug Release Of Monomethyl Fumarate To Treat Oxidative Stress Disorders, Thomas D Avery, Jiahe Li, Dion J L Turner, Mohd S U Rasheed, Fisher R Cherry, Damian L Stachura, Fátima Rivera-Escalera, David M Ruiz, Michael J Lacagnina, Caitlyn M Gaffney, Clarissa Aguilar, Jingxian Yu, Yang Wang, Huan Xie, Dong Liang, Andrew J Shepherd, Andrew D Abell, Peter M Grace
Faculty, Staff and Student Publications
Treatment of diseases of oxidative stress through activation of the antioxidant nuclear factor E2-related factor 2 (NRF2) is limited by systemic side effects. We chemically functionalize the NRF2 activator monomethyl fumarate to require Baeyer-Villiger oxidation for release of the active drug at sites of oxidative stress. This prodrug reverses chronic pain in mice with reduced side effects and could be applied to other disorders of oxidative stress.
Tofacitinib Ameliorates Campylobacter-Induced Intestinal Pathology By Suppressing Ifnγ Producing Ilcs And T Cells, Anna A Korchagina, Sergey A Shein, Wayne T Muraoka, Justin Nguyen, Qiangxing Chen, Anna A Tumanova, Austin W Todd, Carlos E Rivera, Rita Tamayo, Paolo Casali, Ekaterina Koroleva, Alexei V Tumanov
Tofacitinib Ameliorates Campylobacter-Induced Intestinal Pathology By Suppressing Ifnγ Producing Ilcs And T Cells, Anna A Korchagina, Sergey A Shein, Wayne T Muraoka, Justin Nguyen, Qiangxing Chen, Anna A Tumanova, Austin W Todd, Carlos E Rivera, Rita Tamayo, Paolo Casali, Ekaterina Koroleva, Alexei V Tumanov
Faculty, Staff and Student Publications
Patients with autoimmune diseases are more susceptible to foodborne infections, which can be exacerbated by immunosuppressive therapy. Tofacitinib, a JAK/STAT pathway inhibitor, was recently approved for the treatment of ulcerative colitis, yet its effects on the pathogenesis of intestinal infections remain unclear. Here, we examined the impact of oral tofacitinib treatment in a mouse model of Campylobacter jejuni (C. jejuni) infection. Our results show that early tofacitinib administration attenuates intestinal pathology without affecting bacterial colonization. Specifically, tofacitinib suppressed CXCL1, CXCL2, CCL2 chemokine expression by intestinal epithelial cells, limiting recruitment of monocytes and neutrophils to the gut. In addition, JAK/STAT inhibition …
Cancer-Associated Fibroblasts As Mediators Of Tissue Microenvironment Remodeling In Cancer, Fernanda G Kugeratski, Emily J Kay, Sara Zanivan
Cancer-Associated Fibroblasts As Mediators Of Tissue Microenvironment Remodeling In Cancer, Fernanda G Kugeratski, Emily J Kay, Sara Zanivan
Faculty, Staff and Student Publications
Cancer-associated fibroblasts (CAFs) are a multifunctional cell population of solid tumors that substantially remodel the tumor microenvironment (TME). The combination of single-cell and spatial technologies with elegant mouse models and analysis of patient samples is enabling unprecedented advances in the characterization of CAF origins, heterogeneity, and functions within the TME. As such, the field is now evolving to delineate tissue-specific subpopulations of CAFs, their markers, and the biological context in which each subset presents with a tumor-promoting or a tumor-restraining function. In this timely review, we discuss recent advances in CAF biology in the context of emerging areas of interest …
Cancer-Induced Nerve Injury Promotes Resistance To Anti-Pd-1 Therapy, Erez N Baruch, Frederico O Gleber-Netto, Priyadharsini Nagarajan, Xiayu Rao, Shamima Akhter, Tuany Eichwald, Tongxin Xie, Mohammad Balood, Adebayo Adewale, Shorook Naara, Hinduja N Sathishkumar, Shajedul Islam, William Mccarthy, Brandi J Mattson, Renata Ferrarotto, Michael K Wong, Michael A Davies, Sonali Jindal, Sreyashi Basu, Karine Roversi, Amin Reza Nikpoor, Maryam Ahmadi, Ali Ahmadi, Catherine Harwood, Irene Leigh, Dennis Gong, Paulino Tallón De Lara, Derrick L Tao, Tara M Davidson, Nadim J Ajami, Andrew Futreal, Kunal Rai, Veena Kochat, Micah Castillo, Preethi Gunaratne, Ryan P Goepfert, Sharia D Hernandez, Nikhil I Khushalani, Jing Wang, Stephanie S Watowich, George A Calin, Michael R Migden, Mona Yuan, Naijiang Liu, Yi Ye, William L Hwang, Paola D Vermeer, Nisha J D'Silva, Yuri L Bunimovich, Dan Yaniv, Jared K Burks, Javier Gomez, Patrick M Dougherty, Kenneth Y Tsai, James P Allison, Padmanee Sharma, Jennifer A Wargo, Jeffrey N Myers, Sebastien Talbot, Neil D Gross, Moran Amit
Cancer-Induced Nerve Injury Promotes Resistance To Anti-Pd-1 Therapy, Erez N Baruch, Frederico O Gleber-Netto, Priyadharsini Nagarajan, Xiayu Rao, Shamima Akhter, Tuany Eichwald, Tongxin Xie, Mohammad Balood, Adebayo Adewale, Shorook Naara, Hinduja N Sathishkumar, Shajedul Islam, William Mccarthy, Brandi J Mattson, Renata Ferrarotto, Michael K Wong, Michael A Davies, Sonali Jindal, Sreyashi Basu, Karine Roversi, Amin Reza Nikpoor, Maryam Ahmadi, Ali Ahmadi, Catherine Harwood, Irene Leigh, Dennis Gong, Paulino Tallón De Lara, Derrick L Tao, Tara M Davidson, Nadim J Ajami, Andrew Futreal, Kunal Rai, Veena Kochat, Micah Castillo, Preethi Gunaratne, Ryan P Goepfert, Sharia D Hernandez, Nikhil I Khushalani, Jing Wang, Stephanie S Watowich, George A Calin, Michael R Migden, Mona Yuan, Naijiang Liu, Yi Ye, William L Hwang, Paola D Vermeer, Nisha J D'Silva, Yuri L Bunimovich, Dan Yaniv, Jared K Burks, Javier Gomez, Patrick M Dougherty, Kenneth Y Tsai, James P Allison, Padmanee Sharma, Jennifer A Wargo, Jeffrey N Myers, Sebastien Talbot, Neil D Gross, Moran Amit
Faculty, Staff and Student Publications
Perineural invasion (PNI) is a well-established factor of poor prognosis in multiple cancer types1, yet its mechanism remains unclear. Here we provide clinical and mechanistic insights into the role of PNI and cancer-induced nerve injury (CINI) in resistance to anti-PD-1 therapy. Our study demonstrates that PNI and CINI of tumour-associated nerves are associated with poor response to anti-PD-1 therapy among patients with cutaneous squamous cell carcinoma, melanoma and gastric cancer. Electron microscopy and electrical conduction analyses reveal that cancer cells degrade the nerve fibre myelin sheets. The injured neurons respond by autonomously initiating IL-6- and type I interferon-mediated …
Enhanced Control Of Liposomal Drug Release By Drug-Aptamer Complexes, Xiangang Huang, Yang Li, Matthew Torre, Rachelle Shao, Wei Zhang, Zihan Wang, Daniel S Kohane, Christopher B Weldon
Enhanced Control Of Liposomal Drug Release By Drug-Aptamer Complexes, Xiangang Huang, Yang Li, Matthew Torre, Rachelle Shao, Wei Zhang, Zihan Wang, Daniel S Kohane, Christopher B Weldon
Duncan NRI Faculty and Staff Publications
Conventional diffusion-controlled drug delivery systems (DDS) can have undesirable initial burst release, leading to potential systemic toxicity, and the rate of basal release can deplete content, shortening the duration of effect. Here, it is hypothesized that conventional drug delivery systems-using liposomes as an example-can be enhanced by incorporation of an aptamer that binds specifically to the encapsulated drug. Affinity of the aptamer to the drug within liposomes (Lipo-Apt) would slow release. It is demonstrated that this approach works with a range of relatively small and hydrophilic molecules, including tetrodotoxin (TTX), serotonin (Ser), and kanamycin (Kan). The in vivo utility of …
Pka-Driven Spp1 Activation As A Novel Mechanism Connecting The Bone Microenvironment To Prostate Cancer Progression, Pablo Sanchis, Agustina Sabater, Julia Lechuga, Jimena Rada, Rocio Seniuk, Gaston Pascual, Mora Gatti, Juan Bizzotto, Peter D A Shepherd, Jun Yang, Javier Cotignola, Elba Vazquez, Joaquin Mateo, Pia Valacco, Estefania Labanca, Christopher Logothetis, Geraldine Gueron, Nicolas Anselmino
Pka-Driven Spp1 Activation As A Novel Mechanism Connecting The Bone Microenvironment To Prostate Cancer Progression, Pablo Sanchis, Agustina Sabater, Julia Lechuga, Jimena Rada, Rocio Seniuk, Gaston Pascual, Mora Gatti, Juan Bizzotto, Peter D A Shepherd, Jun Yang, Javier Cotignola, Elba Vazquez, Joaquin Mateo, Pia Valacco, Estefania Labanca, Christopher Logothetis, Geraldine Gueron, Nicolas Anselmino
Faculty, Staff and Student Publications
Prostate cancer (PCa) bone metastasis (BM) poses a significant clinical challenge due to the heterogeneity of treatment responses and patient outcomes. In this study, we examined the role of Protein Kinase A (PKA) signaling in modulating the expression of osteopontin (SPP1/OPN), a protein associated with poor prognosis, within a subset of PCa BM patients. By integrating multi-omics results we identified a novel mechanism in which bone-derived type-I collagen (Col1a1) and fibronectin (Fn1) stimulate SPP1 expression in PCa cells through the activation of PKA signaling. This bone-induced regulation of SPP1 was confirmed both in vitro, using PCa-bone co-culture systems (PC3 or …
From Nociception In Aneural Animals To Human Suffering: Toward A Comparative Biology Of Pain, Edgar T Walters
From Nociception In Aneural Animals To Human Suffering: Toward A Comparative Biology Of Pain, Edgar T Walters
Faculty, Staff and Student Publications
Pain is a core feature of human life, but systematic comparisons of this biological trait across taxa have been rare. A broadly accepted definition based on human experience emphasizes dual features of pain: a sensory (discriminative) component for sensing and monitoring tissue injury, and an affective (emotional) component to motivate avoidance of tissue distress. Conscious pain is coupled to unconscious nociception (detection of incipient or existing injury). This Review considers nociception and pain across phyla within a comparative framework, addressing basic questions about evolutionary origins, mechanisms and functions of pain. The occurrence of adaptive cellular responses to injury in virtually …
Irf6 Regulates Adherens Junction Proteins And Inflammatory Cytokines In Salivary Acinar Cells And Its Expression Is Elevated In Sjӧgren’S Syndrome, Vi Pham, Antonio Hernandes Chaves Neto, Julia Zheng, Mary Elmeniawi, Krishna Kumar Kookal, Muhammad F Walji, Mary C Farach-Carson, Walid D Fakhouri
Irf6 Regulates Adherens Junction Proteins And Inflammatory Cytokines In Salivary Acinar Cells And Its Expression Is Elevated In Sjӧgren’S Syndrome, Vi Pham, Antonio Hernandes Chaves Neto, Julia Zheng, Mary Elmeniawi, Krishna Kumar Kookal, Muhammad F Walji, Mary C Farach-Carson, Walid D Fakhouri
Faculty, Staff and Student Publications
Objective: To investigate the mechanism of Interferon Regulatory Factor 6 (IRF6) function in regulating adherens junction proteins and inflammatory cytokines in human salivary acinar cells and Sjögren's syndrome biopsies.
Design: We used mouse model, salivary cell lines, and human salivary gland (SG) biopsies to investigate IRF6 function in SG cellular integrity and immunomodulation.
Results: In Irf6-null mice, we observed myoepithelial cell detachment from acinar cells of major SGs, and the acini were remarkably disorganized compared to wild-type littermates. At the molecular level, the acinar differentiation markers E-cadherin and MIST1 were markedly reduced in Irf6-null embryonic SG, while the proinflammatory cytokines, …
Inhibition Of Ros1 Activity With Lorlatinib Reversibly Suppresses Fertility In Male Mice, Yuki Oyama, Kentaro Shimada, Haruhiko Miyata, Rie Iida-Norita, Chihiro Emori, Maki Kamoshita, Seiya Oura, Ryohei Katayama, Martin M Matzuk, Masahito Ikawa
Inhibition Of Ros1 Activity With Lorlatinib Reversibly Suppresses Fertility In Male Mice, Yuki Oyama, Kentaro Shimada, Haruhiko Miyata, Rie Iida-Norita, Chihiro Emori, Maki Kamoshita, Seiya Oura, Ryohei Katayama, Martin M Matzuk, Masahito Ikawa
Faculty, Staff and Students Publications
Background: Inhibition of sperm maturation in the epididymis is a promising post-testicular strategy for short-acting male contraceptives. It has been shown that ROS1, a receptor tyrosine kinase expressed in the epididymis, is essential for epididymal differentiation, sperm maturation, and male fertility in mice. However, it is unknown if inhibition of ROS1 suppresses male fertility reversibly.
Objectives: Our study aimed to investigate the effects of ROS1 inhibitor administration in male mice on sperm function and fertility.
Materials and methods: We used lorlatinib, an anti-cancer drug that inhibits ROS1. We treated 10-week-old sexually mature male mice with lorlatinib for 3 weeks and …
Normal Urinary Oxalate Excretion In 4-Hydroxy-2-Oxo-Glutarate Aldolase 1 (Hoga1) Deficient Mice With Agt Expression In Peroxisomes And Not In Mitochondria, Iolanda Boffa, Rosa Ferriero, Mariarosaria Cancelliere, Edoardo Nusco, Leonardo Gatticchi, Donna Palmer, Philip Ng, Pasquale Piccolo, Barbara Cellini, Kyle Wood, John Knight, Nicola Brunetti-Pierri
Normal Urinary Oxalate Excretion In 4-Hydroxy-2-Oxo-Glutarate Aldolase 1 (Hoga1) Deficient Mice With Agt Expression In Peroxisomes And Not In Mitochondria, Iolanda Boffa, Rosa Ferriero, Mariarosaria Cancelliere, Edoardo Nusco, Leonardo Gatticchi, Donna Palmer, Philip Ng, Pasquale Piccolo, Barbara Cellini, Kyle Wood, John Knight, Nicola Brunetti-Pierri
Faculty, Staff and Students Publications
Primary hyperoxaluria type 3 (PH3) is caused by mutations in Hoga1 gene. PH3 individuals develop nephrolithiasis, but the mechanism underlying hyperoxaluria is unclear and a mouse model recapitulating the human disease can provide insights into the pathogenesis of PH3. Hoga1−/− mice do not have increased urinary oxalate excretion, probably due to the murine mitochondrial alanine-glioxylate-aminotransferase (AGT) activity, which in humans is only expressed in peroxisomes. However, Hoga1−/−/Agxt−/− mice with AGT installed on peroxisome and not on mitochondria did not show increased urinary oxalate, suggesting that AGT expression in both cellular compartments is not an explanation for …
Aging Affects Lipid Homeostasis In Lacrimal Glands By Upregulating Lipogenesis And Changing Its Specificity, Seher Yuksel, Prashant Kumar, Sydney E Krenz, Kaitlin K Scholand, Zhiyuan Yu, Anastasiia Ivanova, Helen P Makarenkova, Sarah F Hamm-Alvarez, Igor A Butovich, Cintia S De Paiva
Aging Affects Lipid Homeostasis In Lacrimal Glands By Upregulating Lipogenesis And Changing Its Specificity, Seher Yuksel, Prashant Kumar, Sydney E Krenz, Kaitlin K Scholand, Zhiyuan Yu, Anastasiia Ivanova, Helen P Makarenkova, Sarah F Hamm-Alvarez, Igor A Butovich, Cintia S De Paiva
Faculty, Staff and Students Publications
Purpose: The lacrimal gland (LG) develops age-related alterations. This study investigated the lipid content of the accumulated secretions within the murine aged LG.
Methods: C57BL/6J animals of different ages (3 months, 12 months, and 20-26 months) were used. Published data of bulk RNA sequencing of aged LGs were used to investigate lipid pathways. Exorbital LGs were excised for histology or PCR. Histologic sections were stained with standard histochemical stains or immunostained using anti-adiponectin, anti-perilipin 2 antibodies, and BODIPY dye. LG lipidomes were investigated using unbiased, untargeted high-resolution liquid chromatography/mass spectrometry (LC/MS), and the data were processed using unbiased, untargeted principal …
Tigit Affects Car Nk-Cell Effector Function In The Solid Tumor Microenvironment By Modulating Immune Synapse Strength, Ishwar Navin, Matthew Dysthe, Prashant S Menon, Corrine Baumgartner, Tim Sauer, Navin Varadarajan, Robin Parihar
Tigit Affects Car Nk-Cell Effector Function In The Solid Tumor Microenvironment By Modulating Immune Synapse Strength, Ishwar Navin, Matthew Dysthe, Prashant S Menon, Corrine Baumgartner, Tim Sauer, Navin Varadarajan, Robin Parihar
Faculty, Staff and Students Publications
Therapies using NK cells that express chimeric antigen receptors (CAR-NK) have been successfully employed against hematologic malignancies. However, solid tumors resist CAR-NKs partly by enriching tumor microenvironments with ligands for NK cell inhibitory receptors. Although the NK inhibitory receptor T-cell immunoreceptor with immunoglobulin and immunoreceptor tyrosine-based inhibitory motif domain (TIGIT) has been implicated in impaired antitumor activity of endogenous NK cells, the consequences of TIGIT expression on engineered CAR-NKs have not been explored. To address this gap, we compared TIGIT-expressing and TIGIT-deleted human CAR-NKs targeting the GD2 solid tumor antigen in tumor immune microenvironment co-cultures and in vivo tumor immune …