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Articles 1 - 30 of 104
Full-Text Articles in Pharmacology, Toxicology and Environmental Health
Kinase Signaling In Liver Disease Via Clinical-Trial-On-A-Pamchip: A Distinctive Methodology For Drug Mechanisms And Personalized Medicine, Zachary A. Kipp, Evelyn A. Bates, Genesee J. Martinez, Wang-Hsin Lee, Sally N. Pauss, Terry D. Hinds, Jr.
Kinase Signaling In Liver Disease Via Clinical-Trial-On-A-Pamchip: A Distinctive Methodology For Drug Mechanisms And Personalized Medicine, Zachary A. Kipp, Evelyn A. Bates, Genesee J. Martinez, Wang-Hsin Lee, Sally N. Pauss, Terry D. Hinds, Jr.
Pharmacology and Nutritional Sciences Faculty Publications
The utilization of extensive datasets, such as those generated by DNA or RNA sequencing, has become a central focus in drug discovery and personalized medicine (PerMed). Nonetheless, these datasets are constrained by the absence of protein-functionality testing, which affects physiological responses. In this study, we employed PamGene PamStation technology to quantify protein function by kinase activity across more than 500 signaling pathways from patients with hepatocellular carcinoma (HCC). Using proteins derived from nine patients and five human HCC cell lines for drug discovery and the clinical trial-on-a-chip approach, we developed comprehensive PerMed scores from the PamStation data to differentiate individual …
A Ubiquitous Organophosphate Flame Retardant Disrupts Energy And Glucose Homeostasis In Mice, Krystal M. Sewell, Kelly Oriakhi, Sara Y. Ngo Tenlep, Megan L. Weaver, Mansura Shahad Bawa, Se-Hyung Park, Shubh Saraswat, Xiaohua D. Zhang, Robert N. Helsley, Samir Softic, Cetewayo S. Rashid
A Ubiquitous Organophosphate Flame Retardant Disrupts Energy And Glucose Homeostasis In Mice, Krystal M. Sewell, Kelly Oriakhi, Sara Y. Ngo Tenlep, Megan L. Weaver, Mansura Shahad Bawa, Se-Hyung Park, Shubh Saraswat, Xiaohua D. Zhang, Robert N. Helsley, Samir Softic, Cetewayo S. Rashid
Pharmacology and Nutritional Sciences Faculty Publications
Organophosphate flame retardants (OPFRs) are used in many consumer products, and their presence in our environment raises concerns about potential health dangers. In humans, exposure to OPFRs, such as tris(1,3-dichloro-2-propyl) phosphate (TDCPP) is associated with metabolic disorders such as obesity, hyperglycemia, and insulin resistance. Our current study seeks to determine how TDCPP exposure affects body composition, glucose homeostasis, and energy balance in a rodent model. C57Bl/6 J mice were divided into two weight-matched groups and fed purified low phytoestrogen diets containing either 0.1 % DMSO (control) or TDCPP 415 mg/kg resulting in an approximate exposure of 50 mg/kg/day. Both male …
Contribution Of Metabolism-Independent Glucose Sensing To Metabolic Homeostasis, Nadia Rashid, Kavaljit H. Chhabra
Contribution Of Metabolism-Independent Glucose Sensing To Metabolic Homeostasis, Nadia Rashid, Kavaljit H. Chhabra
Pharmacology and Nutritional Sciences Faculty Publications
Glucose sensing and signaling are central to cellular metabolic machinery for the regulation of metabolic homeostasis. Glucose sensing has been almost always assumed to be coupled with glucose metabolism; however, recent findings have unraveled metabolism-independent sensing mechanisms. Here, we discuss whether glucose transporters (GLUTs) and sodium-glucose co-transporters (SGLTs) may also function as glucose sensors independent of their roles in transporting glucose. Moreover, we review the emerging roles of G protein-coupled receptors (GPCRs) in sensing glucose and, consequently, initiating its signaling pathways in a cell-specific manner. Altogether, this review offers insights into the newly identified glucose sensing mechanisms and highlights the …
Anatomical Atlas Of Kinase Responsiveness To Weight Gain: Adipose Depot Reprogramming In Diet-Induced Adiposity, Wang-Hsin Lee, Zachary A. Kipp, Sally N. Pauss, Genesee J. Martinez, Mei Xu, Terry D. Hinds, Jr.
Anatomical Atlas Of Kinase Responsiveness To Weight Gain: Adipose Depot Reprogramming In Diet-Induced Adiposity, Wang-Hsin Lee, Zachary A. Kipp, Sally N. Pauss, Genesee J. Martinez, Mei Xu, Terry D. Hinds, Jr.
Pharmacology and Nutritional Sciences Faculty Publications
Background/Objectives: Adipose tissue depots located at different anatomical sites exert differential functions in response to adiposity and glucose intolerance. These fat depots exhibit distinct metabolic signaling patterns that may influence pathological fat accumulation, thereby affecting the efficacy of anti-obesity interventions. Nonetheless, the mechanisms underpinning depot-specific signaling and pathway responsiveness remain insufficiently understood.
Methods: Kinase activity was characterized during the progression of adiposity across five adipose tissue depots in obese versus lean mice using the advanced PamGene kinome technology. Furthermore, kinase pathways in human preadipocytes and mouse 3T3-L1 preadipocytes were analyzed and compared with those in their differentiated, mature adipocytes. The …
Astrovascular Decoupling In Awake 5×Fad Mice Is Associated With Reduced Astrocytic Calcium, Ruei-Lung Lin, Sophiya L. Sims, Nicholas A. Wright, Léopoldine B. Galopin, Blaine Weiss, Susan D. Kraner, Jacquelyn E. Rhinehart, Ting-Hsuan Lu, Pradoldej Sompol, Christopher M. Norris, Olivier Thibault
Astrovascular Decoupling In Awake 5×Fad Mice Is Associated With Reduced Astrocytic Calcium, Ruei-Lung Lin, Sophiya L. Sims, Nicholas A. Wright, Léopoldine B. Galopin, Blaine Weiss, Susan D. Kraner, Jacquelyn E. Rhinehart, Ting-Hsuan Lu, Pradoldej Sompol, Christopher M. Norris, Olivier Thibault
Pharmacology and Nutritional Sciences Faculty Publications
INTRODUCTION
Evidence points to dysregulated Ca2+ in neurons and astrocytes in models of amyloidosis. While most of these data were obtained in vitro or in vivo under anesthesia, less work has investigated these variables in awake ambulating mice.
METHODS
Astrocytic Ca2+ fluctuations (GCaMP8f) were imaged concomitantly with vasoreactivity in S1 on a two-photon microscope during rest and ambulation. Single-cell resolution variables were extracted using continuous wavelet transform and traditional ΔF/F measures.
RESULTS
Along with increases in amyloid beta (Aβ) accumulation, we found significant reductions in measures of astrocyte functional connectivity, pairwise correlations, and network synchronicity in older 5×FAD …
Advancing Clinical Trial Readiness In White Matter Disease And Related Dementias: Key Steps For Future Research Progress, Pradoldej Sompol, Gregory A. Jicha, Jason D. Hinman, Adam M. Brickman, Steven M. Greenberg, Konstantinos Arfanakis, Marion S. Buckwalter, Irene Lorenzo Llorente, Jeff D. Williamson, Michael S. Wolf, Eric E. Smith, Aditi Gupta, Margaret E. Flanagan, Miguel A. Vazquez, Jeffrey M. Burns, S. Thomas Carmichael, Frank C. Barone
Advancing Clinical Trial Readiness In White Matter Disease And Related Dementias: Key Steps For Future Research Progress, Pradoldej Sompol, Gregory A. Jicha, Jason D. Hinman, Adam M. Brickman, Steven M. Greenberg, Konstantinos Arfanakis, Marion S. Buckwalter, Irene Lorenzo Llorente, Jeff D. Williamson, Michael S. Wolf, Eric E. Smith, Aditi Gupta, Margaret E. Flanagan, Miguel A. Vazquez, Jeffrey M. Burns, S. Thomas Carmichael, Frank C. Barone
Pharmacology and Nutritional Sciences Faculty Publications
White matter disease, a broad-spectrum term that covers various types of white matter lesions and degeneration, is strongly related to age-related neurodegenerative disorders including Alzheimer’s disease (AD), and vascular contributions to cognitive impairment and dementia (VCID) and Alzheimer’s related dementias (ADRD). There is no specific treatment for white matter disease. Therefore, basic research and clinical studies are essential for future outcomes. Since its formation in 2020, the Albert Research Institute for White Matter and Cognition (ARIWMC) mission has been to support white matter research by providing a forum for communication where basic and clinical scientists meet to discuss and debate …
A Unique Inflammaging Profile Generated By T Cells From People With Obesity Is Metformin Resistant, S. Santacruz‑Calvo, S. Saraswat, Gabriella Kalantar, E. Zukowski, H. Marszalkowski, Aida Javidan, F. Gholamrezaeinejad, L. P. Bharath, P. A. Kern, X. D. Zhang, Barbara S. Nikolajczyk
A Unique Inflammaging Profile Generated By T Cells From People With Obesity Is Metformin Resistant, S. Santacruz‑Calvo, S. Saraswat, Gabriella Kalantar, E. Zukowski, H. Marszalkowski, Aida Javidan, F. Gholamrezaeinejad, L. P. Bharath, P. A. Kern, X. D. Zhang, Barbara S. Nikolajczyk
Pharmacology and Nutritional Sciences Faculty Publications
The alarmingly high prevalence of obesity in older adults coupled with the negative health effects of chronic inflammation in both obesity and aging highlight the importance of studies investigating the impacts of obesity on age-related inflammation. Since shifts in peripheral T-cell metabolism and function drive systemic inflammation in both obesity and aging, we hypothesize that obesity impacts the Th17-dominated inflammaging profile we identified in lean subjects and thus modifies the anti-inflammatory effects of geroprotective drugs like metformin. New cytokine profiling data showed that CD4+ T cells from older people with obesity generate a profile that specifically excludes Th17 cytokines. Metformin …
Bilirubin Hepatic And Intestinal Transport And Catabolism: Physiology, Pathophysiology, And Benefits, Zachary A. Kipp, Sally N. Pauss, Genesee J. Martinez, Terry D. Hinds, Jr., Wang-Hsin Lee
Bilirubin Hepatic And Intestinal Transport And Catabolism: Physiology, Pathophysiology, And Benefits, Zachary A. Kipp, Sally N. Pauss, Genesee J. Martinez, Terry D. Hinds, Jr., Wang-Hsin Lee
Pharmacology and Nutritional Sciences Faculty Publications
Bilirubin, a metabolite derived from heme degradation, has traditionally been regarded as a waste product and a marker of liver injury. However, increasing evidence suggests that bilirubin also functions as a hormone, and reduced levels are associated with metabolic dysfunction. Studies have shown a strong association between low circulating bilirubin levels and an increased risk of metabolic disorders and cardiovascular disease. To advance bilirubin-based treatment strategies, it is essential to elucidate the mechanisms underlying bilirubin transport and metabolism. Therefore, we provide an in-depth discussion of bilirubin production and its subsequent fates, with a particular focus on the transport between the …
Cd47: An Immunoregulatory Nexus In Liver And Gastrointestinal Disorders, Josephine Otuagomah, Alana Newcomb, Taesik Gwag, Shuxia Wang
Cd47: An Immunoregulatory Nexus In Liver And Gastrointestinal Disorders, Josephine Otuagomah, Alana Newcomb, Taesik Gwag, Shuxia Wang
Pharmacology and Nutritional Sciences Faculty Publications
Cluster of differentiation 47 (CD47) is a widely expressed transmembrane protein that serves as a critical immunoregulatory checkpoint in both homeostatic and pathological conditions of the digestive system. It interacts with signal regulatory protein alpha to send a ‘do not eat me’ signal, thereby preventing phagocytosis and shaping immune responses. Beyond immunity, CD47 also influences cell death, growth and metabolism through interactions with integrins and thrombospondin-1. Recent studies implicate CD47 as a central nexus in the pathogenesis of diverse liver and gastrointestinal disorders, including metabolic dysfunction-associated steatotic liver disease, metabolic dysfunction-associated steatohepatitis, inflammatory bowel disease, liver ischaemia-reperfusion injury, drug-induced liver …
Gut Microbiome, Neuroinflammation, And Fetal Alcohol Spectrum Disorders: Insights From Rodent Models, Abdulrahman M. Busayli, Wenhua Xu, Ghaidaa A. Raffah, Gang Chen
Gut Microbiome, Neuroinflammation, And Fetal Alcohol Spectrum Disorders: Insights From Rodent Models, Abdulrahman M. Busayli, Wenhua Xu, Ghaidaa A. Raffah, Gang Chen
Pharmacology and Nutritional Sciences Faculty Publications
Fetal alcohol spectrum disorder (FASD) is a significant public health issue that affects children. It results from ethanol exposure during pregnancy, leading to considerable physical, neurodevelopmental, behavioral, and cognitive deficits. The exact mechanism is not well understood. Recently, considerable attention has been focused on the influence of gut microbiome on brain development through the gut–brain axis. Changes in the gut microbiome resulting from ethanol exposure may contribute to the pathology of FASD, potentially involving neuroinflammation. This literature review summarizes the existing research and primary animal studies on the impact of early ethanol exposure on the gut microbiome, neuroinflammation, brain development, …
Calcineurin/Nfat Inhibitors Maintain Cognition In A Preclinical Prevention Study In An Aging Canine Model Of Alzheimer Disease, Lorena Sordo, Margo F. Ubele, Kathy Boaz, Jennifer L. Mefford, Erin Dehnart Jones, Katie L. Mccarty, Hollie Y. Van Rooyen, Jeffrey R. Smiley, Stasia A. Bembenek Bailey, Jessica A. Perpich, Beverly Meacham, David K. Powell, Frederick Bresch, Jacob W. Crump, Michael J. Phelan, Jessica A. Noche, Craig E. Stark, László G. Puskás, Christopher M. Norris, Elizabeth Head
Calcineurin/Nfat Inhibitors Maintain Cognition In A Preclinical Prevention Study In An Aging Canine Model Of Alzheimer Disease, Lorena Sordo, Margo F. Ubele, Kathy Boaz, Jennifer L. Mefford, Erin Dehnart Jones, Katie L. Mccarty, Hollie Y. Van Rooyen, Jeffrey R. Smiley, Stasia A. Bembenek Bailey, Jessica A. Perpich, Beverly Meacham, David K. Powell, Frederick Bresch, Jacob W. Crump, Michael J. Phelan, Jessica A. Noche, Craig E. Stark, László G. Puskás, Christopher M. Norris, Elizabeth Head
Pharmacology and Nutritional Sciences Faculty Publications
Brain signaling of calcineurin (CN) and nuclear factor of activated T-cells (NFAT) transcription factor increases in Alzheimer disease (AD) and is associated with synaptic loss, neurodegeneration, neuroinflammation, amyloid-β (Aβ) production, and cognitive decline. CN/NFAT inhibitors ameliorate these neuropathologies in mouse models of AD. Further, chronic use of tacrolimus in transplant patients reduces risk of AD. Beagles naturally develop Aβ plaques and cognitive dysfunction. We evaluated the impact of FDA-approved CN inhibitor, tacrolimus, and experimental NFAT inhibitor, Q134R, on cognitive outcomes during a three-year prevention study in 37 middle-aged beagles. While beagles treated with CN/NFAT inhibitors showed differences in the pattern …
Adhesion G Protein-Coupled Receptor Latrophilin 1 (Adgrl1): A Novel Regulator Of Glucose And Energy Homeostasis., Kavaljit H Chhabra
Adhesion G Protein-Coupled Receptor Latrophilin 1 (Adgrl1): A Novel Regulator Of Glucose And Energy Homeostasis., Kavaljit H Chhabra
Pharmacology and Nutritional Sciences Faculty Publications
No abstract provided.
Aggravated Ulcerative Colitis Via Circnlgn-Mediated Suppression Of Nuclear Actin Polymerization., William W Du, Chi Zhou, Hui Yang, Shuoyang Wen, Yu Chen, Eric X Chen, Xiuwei H. Yang, Feiya Li, Kevin Y Du, Hui Yuan, Ting Ye, Javeria Qadir, Burton B Yang
Aggravated Ulcerative Colitis Via Circnlgn-Mediated Suppression Of Nuclear Actin Polymerization., William W Du, Chi Zhou, Hui Yang, Shuoyang Wen, Yu Chen, Eric X Chen, Xiuwei H. Yang, Feiya Li, Kevin Y Du, Hui Yuan, Ting Ye, Javeria Qadir, Burton B Yang
Pharmacology and Nutritional Sciences Faculty Publications
Colitis is a chronic bowel disease characterized by damage to the lining of the large intestine, with its precise underlying causes remaining incompletely understood. In this study, we provide evidence that circular RNA circNlgn plays a pivotal role in promoting the development of colitis. Colitis patients produce significant higher levels of circNlgn. Transgenic mice expressing circNlgn exhibit heightened susceptibility to colitis development and progression, primarily attributed to the presence of the protein isoform Nlgn173 encoded by circNlgn. Nlgn173 undergoes translocation into cell nuclei, where it interacts with actin, impeding the binding of actin-related protein 2 and 3 (Arp2/3) complex to …
Adgrl1 Is A Glucose Receptor Involved In Mediating Energy And Glucose Homeostasis, Kavaljit H Chhabra, Siresha Bathina, Tumininu S Faniyan, Dennis J Samuel, Muhammad Ummear Raza, Leticia Maria De Souza Cordeiro, Gonzalo Viana Di Prisco, Brady K Atwood, Jorge Robles, Lauren Bainbridge, Autumn Davis
Adgrl1 Is A Glucose Receptor Involved In Mediating Energy And Glucose Homeostasis, Kavaljit H Chhabra, Siresha Bathina, Tumininu S Faniyan, Dennis J Samuel, Muhammad Ummear Raza, Leticia Maria De Souza Cordeiro, Gonzalo Viana Di Prisco, Brady K Atwood, Jorge Robles, Lauren Bainbridge, Autumn Davis
Pharmacology and Nutritional Sciences Faculty Publications
AIMS/HYPOTHESIS: The brain is a major consumer of glucose as an energy source and regulates systemic glucose as well as energy balance. Although glucose transporters such as GLUT2 and sodium-glucose cotransporter 2 (SGLT2) are known to regulate glucose homeostasis and metabolism, the identity of a receptor that binds glucose to activate glucose signalling pathways in the brain is unknown. In this study, we aimed to discover a glucose receptor in the mouse hypothalamus.
METHODS: Here we used a high molecular mass glucose-biotin polymer to enrich glucose-bound mouse hypothalamic neurons through cell-based affinity chromatography. We then subjected the enriched neurons to …
Tris(1,3-Dichloro-2-Propyl) Phosphate Is A Metabolism-Disrupting Chemical In Male Mice, Sara Y. Ngo Tenlep, Megan L. Weaver, Jianzhong Chen, Olga A. Vsevolozhskaya, Andrew J. Morris, Cetewayo S. Rashid
Tris(1,3-Dichloro-2-Propyl) Phosphate Is A Metabolism-Disrupting Chemical In Male Mice, Sara Y. Ngo Tenlep, Megan L. Weaver, Jianzhong Chen, Olga A. Vsevolozhskaya, Andrew J. Morris, Cetewayo S. Rashid
Pharmacology and Nutritional Sciences Faculty Publications
Tris(1,3-dichloro-2-propyl) phosphate (TDCPP) is an organophosphate flame retardant. The primary TDCPP metabolite, bis(1,3-dichloro-2-propyl) phosphate (BDCPP), is detectable in the urine of over 90 % of Americans. Epidemiological studies show sex-specific associations between urinary BDCPP levels and metabolic syndrome, which is an established risk factor for type 2 diabetes, heart disease, and stroke. We used a mouse model to determine whether TDCPP exposure disrupts glucose homeostasis. Six-week old male and female C57BL/6J mice were given ad libitum access to diets containing vehicle (0.1 % DMSO) and TDCPP resulting in the following treatment groups: 0 mg/kg/day, 0.02 mg/kg/day, 1 mg/kg/day, or 100 …
Ethanol Exposure Up-Regulates Pd-L1/Pd-1 Immune Checkpoint Pathway And Promotes Mammary Tumor Development, Wenhua Xu, Linqing Wu, Mei Xu, Jia Luo, Gang Chen
Ethanol Exposure Up-Regulates Pd-L1/Pd-1 Immune Checkpoint Pathway And Promotes Mammary Tumor Development, Wenhua Xu, Linqing Wu, Mei Xu, Jia Luo, Gang Chen
Pharmacology and Nutritional Sciences Faculty Publications
Alcohol consumption in women enhances breast cancer incidence and ethanol is the main causal factor. Compromised host immunity through immunosuppression facilitates the development of many types of cancer, including breast cancer. Immune cells in breast tissues, particularly tumor-infiltrating CD8 cytotoxic T cells, play a critical role in the host anti-tumor immunity against breast tumorigenesis. These cytotoxic T cells are the major immune cells to carry out anti-tumor immunity through their cytotoxic effector function, which can be regulated by immune checkpoint pathways. The PD-1/PD-L1 pathway (the interaction between programmed death-1, PD-1, and its ligand, programmed deathligand 1, PD-L1) is the best …
Targeting Squalene Epoxidase Interrupts Homologous Recombination Via The Er Stress Response And Promotes Radiotherapy Efficacy, Zhipeng Hong, Tao Liu, Lingfeng Wan, Pengyan Fa, Pankaj Kumar, Yanan Cao, Chandra Bhushan Prasad, Zhaojun Qiu, Joseph Liu, Hongbing Wang, Zaibo Li, Qi-En Wang, Peixuan Guo, Deliang Guo, Ayse S. Yilmaz, Lanchun Lu, Ioanna Papandreou, Naduparambil K. Jacob, Chunhong Yan, Qing-Bai She
Targeting Squalene Epoxidase Interrupts Homologous Recombination Via The Er Stress Response And Promotes Radiotherapy Efficacy, Zhipeng Hong, Tao Liu, Lingfeng Wan, Pengyan Fa, Pankaj Kumar, Yanan Cao, Chandra Bhushan Prasad, Zhaojun Qiu, Joseph Liu, Hongbing Wang, Zaibo Li, Qi-En Wang, Peixuan Guo, Deliang Guo, Ayse S. Yilmaz, Lanchun Lu, Ioanna Papandreou, Naduparambil K. Jacob, Chunhong Yan, Qing-Bai She
Pharmacology and Nutritional Sciences Faculty Publications
Over 50% of all patients with cancer are treated with radiotherapy. However, radiotherapy is often insufficient as a monotherapy and requires a nontoxic radiosensitizer. Squalene epoxidase (SQLE) controls cholesterol biosynthesis by converting squalene to 2,3-oxidosqualene. Given that SQLE is frequently overexpressed in human cancer, this study investigated the importance of SQLE in breast cancer and non–small cell lung cancer (NSCLC), two cancers often treated with radiotherapy. SQLE-positive IHC staining was observed in 68% of breast cancer and 56% of NSCLC specimens versus 15% and 25% in normal breast and lung tissue, respectively. Importantly, SQLE expression was an independent predictor of …
Adipose-Specific Pparα Knockout Mice Have Increased Lipogenesis By Pask–Srebp1 Signaling And A Polarity Shift To Inflammatory Macrophages In White Adipose Tissue, Terry D. Hinds, Jr., Zachary A. Kipp, Mei Xu, Frederique B. Yiannikouris, Andrew J. Morris, Donald F. Stec, Walter Wahli, David E. Stec
Adipose-Specific Pparα Knockout Mice Have Increased Lipogenesis By Pask–Srebp1 Signaling And A Polarity Shift To Inflammatory Macrophages In White Adipose Tissue, Terry D. Hinds, Jr., Zachary A. Kipp, Mei Xu, Frederique B. Yiannikouris, Andrew J. Morris, Donald F. Stec, Walter Wahli, David E. Stec
Pharmacology and Nutritional Sciences Faculty Publications
The nuclear receptor PPARα is associated with reducing adiposity, especially in the liver, where it transactivates genes for β-oxidation. Contrarily, the function of PPARα in extrahepatic tissues is less known. Therefore, we established the first adipose-specific PPARα knockout (PparaFatKO) mice to determine the signaling position of PPARα in adipose tissue expansion that occurs during the development of obesity. To assess the function of PPARα in adiposity, female and male mice were placed on a high-fat diet (HFD) or normal chow for 30 weeks. Only the male PparaFatKO animals had significantly more adiposity in the inguinal white …
Epigenetic Regulation And Post-Translational Modifications Of Snai1 In Cancer Metastasis, Bo Dong, Yadi Wu
Epigenetic Regulation And Post-Translational Modifications Of Snai1 In Cancer Metastasis, Bo Dong, Yadi Wu
Pharmacology and Nutritional Sciences Faculty Publications
SNAI1, a zinc finger transcription factor, not only acts as the master regulator of epithelialmesenchymal transition (EMT) but also functions as a driver of cancer progression, including cell invasion, survival, immune regulation, stem cell properties, and metabolic regulation. The regulation of SNAI1 occurs at the transcriptional, translational, and predominant post-translational levels including phosphorylation, acetylation, and ubiquitination. Here, we discuss the regulation and role of SNAI1 in cancer metastasis, with a particular emphasis on epigenetic regulation and posttranslational modifications. Understanding how signaling networks integrate with SNAI1 in cancer progression will shed new light on the mechanism of tumor metastasis and help …
Cd151 Drives Cancer Progression Depending On Integrin Α3Β1 Through Egfr Signaling In Non-Small Cell Lung Cancer, Jianjie Zhu, Tingting Cai, Jieqi Zhou, Wenwen Du, Yuanyuan Zeng, Ting Liu, Yulong Fu, Yue Li, Qian Qian, Xiuwei H. Yang, Qinglin Li, Jian-An Huang, Zeyi Liu
Cd151 Drives Cancer Progression Depending On Integrin Α3Β1 Through Egfr Signaling In Non-Small Cell Lung Cancer, Jianjie Zhu, Tingting Cai, Jieqi Zhou, Wenwen Du, Yuanyuan Zeng, Ting Liu, Yulong Fu, Yue Li, Qian Qian, Xiuwei H. Yang, Qinglin Li, Jian-An Huang, Zeyi Liu
Pharmacology and Nutritional Sciences Faculty Publications
Background
Tetraspanins CD151, a transmembrane 4 superfamily protein, has been identified participating in the initiation of a variety of cancers. However, the precise function of CD151 in non-small cell lung cancer (NSCLC) remains unclear. Here, we addressed the pro-tumoral role of CD151 in NSCLC by targeting EGFR/ErbB2 which favors tumor proliferation, migration and invasion.
Methods
First, the mRNA expression levels of CD151 in NSCLC tissues and cell lines were measured by RT-PCR. Meanwhile, CD151 and its associated proteins were analyzed by western blotting. The expression levels of CD151 in NSCLC samples and its paired adjacent lung tissues were then verified …
Rats Genetically Selected For High Aerobic Exercise Capacity Have Elevated Plasma Bilirubin By Upregulation Of Hepatic Biliverdin Reductase-A (Bvra) And Suppression Of Ugt1a1, Terry D. Hinds Jr., Justin F. Creeden, Darren M. Gordon, Adam C. Spegele, Steven L. Britton, Lauren G. Koch, David E. Stec
Rats Genetically Selected For High Aerobic Exercise Capacity Have Elevated Plasma Bilirubin By Upregulation Of Hepatic Biliverdin Reductase-A (Bvra) And Suppression Of Ugt1a1, Terry D. Hinds Jr., Justin F. Creeden, Darren M. Gordon, Adam C. Spegele, Steven L. Britton, Lauren G. Koch, David E. Stec
Pharmacology and Nutritional Sciences Faculty Publications
Exercise in humans and animals increases plasma bilirubin levels, but the mechanism by which this occurs is unknown. In the present study, we utilized rats genetically selected for high capacity running (HCR) and low capacity running (LCR) to determine pathways in the liver that aerobic exercise modifies to control plasma bilirubin. The HCR rats, compared to the LCR, exhibited significantly higher levels of plasma bilirubin and the hepatic enzyme that produces it, biliverdin reductase-A (BVRA). The HCR also had reduced expression of the glucuronyl hepatic enzyme UGT1A1, which lowers plasma bilirubin. Recently, bilirubin has been shown to activate the peroxisome …
Thiamine Deficiency Causes Long-Lasting Neurobehavioral Deficits In Mice, Hui Li, Hong Xu, Wen Wen, Liying Wu, Mei Xu, Jia Luo
Thiamine Deficiency Causes Long-Lasting Neurobehavioral Deficits In Mice, Hui Li, Hong Xu, Wen Wen, Liying Wu, Mei Xu, Jia Luo
Pharmacology and Nutritional Sciences Faculty Publications
Thiamine deficiency (TD) has detrimental effects on brain health and neurobehavioral development, and it is associated with many aging-related neurological disorders. To facilitate TD-related neuropsychological studies, we generated a TD mouse model by feeding a thiamine-deficient diet for 30 days, followed by re-feeding the control diet for either one week or 16 weeks as recovery treatment. We then performed neurobehavioral tests in these two cohorts: cohort of one week post TD treatment (1 wk-PTDT) and 16 weeks post TD treatment (16 wks-PTDT). The TD mice showed no significant difference from control in any tests in the 1 wk-PTDT cohort at …
Amylin As A Potential Link Between Type 2 Diabetes And Alzheimer Disease, Florin Despa, Larry B. Goldstein, Geert Jan Biessels
Amylin As A Potential Link Between Type 2 Diabetes And Alzheimer Disease, Florin Despa, Larry B. Goldstein, Geert Jan Biessels
Pharmacology and Nutritional Sciences Faculty Publications
No abstract provided.
Saturated Fatty Acid Activates T Cell Inflammation Through A Nicotinamide Nucleotide Transhydrogenase (Nnt)-Dependent Mechanism, Grace Mccambridge, Madhur Agrawal, Alanna Keady, Philip A. Kern, Hatice Hasturk, Barbara S. Nikolajczyk, Leena P. Bharath
Saturated Fatty Acid Activates T Cell Inflammation Through A Nicotinamide Nucleotide Transhydrogenase (Nnt)-Dependent Mechanism, Grace Mccambridge, Madhur Agrawal, Alanna Keady, Philip A. Kern, Hatice Hasturk, Barbara S. Nikolajczyk, Leena P. Bharath
Pharmacology and Nutritional Sciences Faculty Publications
Circulating fatty acids (FAs) increase with obesity and can drive mitochondrial damage and inflammation. Nicotinamide nucleotide transhydrogenase (NNT) is a mitochondrial protein that positively regulates nicotinamide adenine dinucleotide phosphate (NADPH), a key mediator of energy transduction and redox homeostasis. The role that NNT-regulated bioenergetics play in the inflammatory response of immune cells in obesity is untested. Our objective was to determine how free fatty acids (FFAs) regulate inflammation through impacts on mitochondria and redox homeostasis of peripheral blood mononuclear cells (PBMCs). PBMCs from lean subjects were activated with a T cell-specific stimulus in the presence or absence of generally pro-inflammatory …
Isobavachalcone Sensitizes Cells To E2-Induced Paclitaxel Resistance By Down-Regulating Cd44 Expression In Er+ Breast Cancer Cells, Junfeng Shi, Yi Chen, Wenxing Chen, Cuiju Tang, Honghong Zhang, Yuetong Chen, Xiuwei H. Yang, Zhi Xu, Jingsun Wei, Jinfei Chen
Isobavachalcone Sensitizes Cells To E2-Induced Paclitaxel Resistance By Down-Regulating Cd44 Expression In Er+ Breast Cancer Cells, Junfeng Shi, Yi Chen, Wenxing Chen, Cuiju Tang, Honghong Zhang, Yuetong Chen, Xiuwei H. Yang, Zhi Xu, Jingsun Wei, Jinfei Chen
Pharmacology and Nutritional Sciences Faculty Publications
Oestrogen receptor (ER) is expressed in approximately 60%‐70% of human breast cancer. Clinical trials and retrospective analyses have shown that ER‐positive (ER+) tumours are more tolerant to chemotherapeutic drug resistance than ER‐negative (ER−) tumours. In addition, isobavachalcone (IBC) is known as a kind of phytoestrogen with antitumour effect. However, the underlying mechanism of IBC in ER+ breast cancer needs to be elucidated further. Our in vitro experiments showed that IBC could attenuate 17β‐estradiol (E2)‐induced paclitaxel resistance and that E2 could stimulate CD44 expression in ER+ breast cancer cells but not in ER− cells. Meanwhile, E2 could …
Myocyte [Na+]I Dysregulation In Heart Failure And Diabetic Cardiomyopathy, Sanda Despa
Myocyte [Na+]I Dysregulation In Heart Failure And Diabetic Cardiomyopathy, Sanda Despa
Pharmacology and Nutritional Sciences Faculty Publications
By controlling the function of various sarcolemmal and mitochondrial ion transporters, intracellular Na+ concentration ([Na+]i) regulates Ca2+ cycling, electrical activity, the matching of energy supply and demand, and oxidative stress in cardiac myocytes. Thus, maintenance of myocyte Na+ homeostasis is vital for preserving the electrical and contractile activity of the heart. [Na+]i is set by the balance between the passive Na+ entry through numerous pathways and the pumping of Na+ out of the cell by the Na+/K+-ATPase. This equilibrium is perturbed in heart failure, …
Neuroimaging Biomarkers Of Mtor Inhibition On Vascular And Metabolic Functions In Aging Brain And Alzheimer’S Disease, Jennifer Lee, Lucille M. Yanckello, David Ma, Jared D. Hoffman, Ishita Parikh, Scott Thalman, Bjoern Bauer, Anika M. S. Hartz, Fahmeed Hyder, Ai-Ling Lin
Neuroimaging Biomarkers Of Mtor Inhibition On Vascular And Metabolic Functions In Aging Brain And Alzheimer’S Disease, Jennifer Lee, Lucille M. Yanckello, David Ma, Jared D. Hoffman, Ishita Parikh, Scott Thalman, Bjoern Bauer, Anika M. S. Hartz, Fahmeed Hyder, Ai-Ling Lin
Pharmacology and Nutritional Sciences Faculty Publications
The mechanistic target of rapamycin (mTOR) is a nutrient sensor of eukaryotic cells. Inhibition of mechanistic mTOR signaling can increase life and health span in various species via interventions that include rapamycin and caloric restriction (CR). In the central nervous system, mTOR inhibition demonstrates neuroprotective patterns in aging and Alzheimer’s disease (AD) by preserving mitochondrial function and reducing amyloid beta retention. However, the effects of mTOR inhibition for in vivo brain physiology remain largely unknown. Here, we review recent findings of in vivo metabolic and vascular measures using non-invasive, multimodal neuroimaging methods in rodent models for brain aging and AD. …
Role Of Mcp-1 And Ccr2 In Ethanol-Induced Neuroinflammation And Neurodegeneration In The Developing Brain, Kai Zhang, Haiping Wang, Mei Xu, Jacqueline A. Frank, Jia Luo
Role Of Mcp-1 And Ccr2 In Ethanol-Induced Neuroinflammation And Neurodegeneration In The Developing Brain, Kai Zhang, Haiping Wang, Mei Xu, Jacqueline A. Frank, Jia Luo
Pharmacology and Nutritional Sciences Faculty Publications
Background: Neuroinflammation and microglial activation have been implicated in both alcohol use disorders (AUD) and fetal alcohol spectrum disorders (FASD). Chemokine monocyte chemoattractant protein 1 (MCP-1) and its receptor C-C chemokine receptor type 2 (CCR2) are critical mediators of neuroinflammation and microglial activation. FASD is the leading cause of mental retardation, and one of the most devastating outcomes of FASD is the loss of neurons in the central nervous system (CNS). The underlying molecular mechanisms, however, remain unclear. We hypothesize that MCP-1/CCR2 signaling mediates ethanol-induced neuroinflammation and microglial activation, which exacerbates neurodegeneration in the developing brain.
Methods: C57BL/6 mice and …
Alcohol Consumption Promotes Colorectal Carcinoma Metastasis Via A Ccl5-Induced And Ampk-Pathway-Mediated Activation Of Autophagy, Haodong Zhao, Danlei Chen, Rui Cao, Shiqing Wang, Dandan Yu, Yakun Liu, Yu Jiang, Mei Xu, Jia Luo, Siying Wang
Alcohol Consumption Promotes Colorectal Carcinoma Metastasis Via A Ccl5-Induced And Ampk-Pathway-Mediated Activation Of Autophagy, Haodong Zhao, Danlei Chen, Rui Cao, Shiqing Wang, Dandan Yu, Yakun Liu, Yu Jiang, Mei Xu, Jia Luo, Siying Wang
Pharmacology and Nutritional Sciences Faculty Publications
There is a definite relationship between alcohol consumption and colorectal cancer (CRC) development. We investigated effect of alcohol consumption on CRC patients’ progression and prognosis by utilizing epidemiological data and found patients with alcohol consumption increased risks of tumor-node-metastasis (TNM), organ metastasis and poorer prognosis. Because their tumor tissues displayed increased expression of C-C chemokine ligand 5 (CCL5), we hypothesized CCL5 might participate in cancer progression in such patients. Ethanol increased the secretion of CCL5 in two CRC cell lines, HT29 and DLD-1. Treatment with CCL5 directly increased migratory ability of these cells, whereas neutralization or knockdown of CCL5 can …
Amylin And Diabetic Cardiomyopathy – Amylin-Induced Sarcolemmal Ca2+ Leak Is Independent Of Diabetic Remodeling Of Myocardium, Miao Liu, Amanda Hoskins, Nirmal Verma, Donald M. Bers, Sanda Despa, Florin Despa
Amylin And Diabetic Cardiomyopathy – Amylin-Induced Sarcolemmal Ca2+ Leak Is Independent Of Diabetic Remodeling Of Myocardium, Miao Liu, Amanda Hoskins, Nirmal Verma, Donald M. Bers, Sanda Despa, Florin Despa
Pharmacology and Nutritional Sciences Faculty Publications
Amylin is a pancreatic β-cell hormone co-secreted with insulin, plays a role in normal glucose homeostasis, and forms amyloid in the pancreatic islets of individuals with type-2 diabetes. Aggregated amylin is also found in blood and extra-pancreatic tissues, including myocardium. Myocardial amylin accumulation is associated with myocyte Ca2+ dysregulation in diabetic rats expressing human amylin. Whether deposition of amylin in the heart is a consequence of or a contributor to diabetic cardiomyopathy remains unknown. We used amylin knockout (AKO) mice intravenously infused with either human amylin (i.e, the aggregated form) or non-amyloidogenic (i.e., monomeric) rodent amylin to test the …