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Articles 1 - 6 of 6
Full-Text Articles in Translational Medical Research
Glut1 Is Redundant In Hypoxic And Glycolytic Nucleus Pulposus Cells Of The Intervertebral Disc, Shira N. Johnston, Elizabeth S. Silagi, Vedavathi Madhu, Duc H. Nguyen, Irving M. Shapiro, Makarand V. Risbud
Glut1 Is Redundant In Hypoxic And Glycolytic Nucleus Pulposus Cells Of The Intervertebral Disc, Shira N. Johnston, Elizabeth S. Silagi, Vedavathi Madhu, Duc H. Nguyen, Irving M. Shapiro, Makarand V. Risbud
Department of Orthopaedic Surgery Faculty Papers
Glycolysis is central to homeostasis of nucleus pulposus (NP) cells in the avascular intervertebral disc. Since the glucose transporter, GLUT1, is a highly enriched phenotypic marker of NP cells, we hypothesized that it is vital for the development and postnatal maintenance of the disc. Surprisingly, primary NP cells treated with 2 well-characterized GLUT1 inhibitors maintained normal rates of glycolysis and ATP production, indicating intrinsic compensatory mechanisms. We showed in vitro that NP cells mitigated GLUT1 loss by rewiring glucose import through GLUT3. Of note, we demonstrated that substrates, such as glutamine and palmitate, did not compensate for glucose restriction resulting …
Ogr1-Dependent Regulation Of The Allergen-Induced Asthma Phenotype, Ajay P Nayak, Deepak A. Deshpande, Phd, Sushrut D. Shah, Dominic R Villalba, Roslyn Yi, Nadan Wang, Raymond B. Penn
Ogr1-Dependent Regulation Of The Allergen-Induced Asthma Phenotype, Ajay P Nayak, Deepak A. Deshpande, Phd, Sushrut D. Shah, Dominic R Villalba, Roslyn Yi, Nadan Wang, Raymond B. Penn
Division of Pulmonary and Critical Care Medicine Faculty Papers
The proton-sensing receptor, ovarian cancer G protein-coupled receptor (OGR1), has been shown to be expressed in airway smooth muscle (ASM) cells and is capable of promoting ASM contraction in response to decreased extracellular pH. OGR1 knockout (OGR1KO) mice are reported to be resistant to the asthma features induced by inhaled allergen. We recently described certain benzodiazepines as OGR1 activators capable of mediating both procontractile and prorelaxant signaling in ASM cells. Here we assess the effect of treatment with the benzodiazepines lorazepam or sulazepam on the asthma phenotype in wild-type (WT) and OGR1KO mice subjected to inhaled house dust mite (HDM; …
Inflammatory Serine Proteases Play A Critical Role In The Early Pathogenesis Of Diabetic Cardiomyopathy., Mikhail A Kolpakov, Kunal Sikder, Amrita Sarkar, Shaswati Chaki, Sanket K Shukla, Xinji Guo, Zhao Qi, Carlos Barbery, Abdelkarim Sabri, Khadija Rafiq
Inflammatory Serine Proteases Play A Critical Role In The Early Pathogenesis Of Diabetic Cardiomyopathy., Mikhail A Kolpakov, Kunal Sikder, Amrita Sarkar, Shaswati Chaki, Sanket K Shukla, Xinji Guo, Zhao Qi, Carlos Barbery, Abdelkarim Sabri, Khadija Rafiq
Center for Translational Medicine Faculty Papers
BACKGROUND/AIMS: Diabetic cardiomyopathy (DCM) is characterized by structural and functional alterations that can lead to heart failure. Several mechanisms are known to be involved in the pathogenesis of DCM, however, the molecular mechanism that links inflammation to DCM is incompletely understood. To learn about this mechanism, we investigated the role of inflammatory serine proteases (ISPs) during the development of DCM.
METHODS: Eight weeks old mice with deletion of dipeptidyl peptidase I (DPPI), an enzyme involved in the maturation of major ISPs, and wild type (WT) mice controls were injected with streptozotocin (50 mg/kg for 5 days intraperitoneally) and studied after …
Α-Catenin-Dependent Cytoskeletal Tension Controls Yap Activity In The Heart., Alexia Vite, Caimei Zhang, Roslyn Yi, Sabrina Emms, Glenn L. Radice
Α-Catenin-Dependent Cytoskeletal Tension Controls Yap Activity In The Heart., Alexia Vite, Caimei Zhang, Roslyn Yi, Sabrina Emms, Glenn L. Radice
Center for Translational Medicine Faculty Papers
Shortly after birth, muscle cells of the mammalian heart lose their ability to divide. At the same time, the N-cadherin/catenin cell adhesion complex accumulates at the cell termini, creating a specialized type of cell-cell contact called the intercalated disc (ICD). To investigate the relationship between ICD maturation and proliferation, αE-catenin (Ctnna1) and αT-catenin (Ctnna3) genes were deleted to generate cardiac-specific α-catenin double knockout (DKO) mice. DKO mice exhibited aberrant N-cadherin expression, mislocalized actomyosin activity and increased cardiomyocyte proliferation that was dependent on Yap activity. To assess effects on tension, cardiomyocytes were cultured on deformable polyacrylamide hydrogels of varying stiffness. When …
Neural Crest Cell-Autonomous Roles Of Fibronectin In Cardiovascular Development., Xia Wang, Sophie Astrof
Neural Crest Cell-Autonomous Roles Of Fibronectin In Cardiovascular Development., Xia Wang, Sophie Astrof
Department of Medicine Faculty Papers
The chemical and mechanical properties of extracellular matrices (ECMs) modulate diverse aspects of cellular fates; however, how regional heterogeneity in ECM composition regulates developmental programs is not well understood. We discovered that fibronectin 1 (Fn1) is expressed in strikingly non-uniform patterns during mouse development, suggesting that regionalized synthesis of the ECM plays cell-specific regulatory roles during embryogenesis. To test this hypothesis, we ablated Fn1 in the neural crest (NC), a population of multi-potent progenitors expressing high levels of Fn1. We found that Fn1 synthesized by the NC mediated morphogenesis of the aortic arch artery and differentiation of NC cells into …
Fibronectin Signals Through Integrin Α5Β1 To Regulate Cardiovascular Development In A Cell Type-Specific Manner., Dongying Chen, Xia Wang, Dong Liang, Julie Gordon, Ashok Mittal, Nancy Manley, Karl Degenhardt, Sophie Astrof
Fibronectin Signals Through Integrin Α5Β1 To Regulate Cardiovascular Development In A Cell Type-Specific Manner., Dongying Chen, Xia Wang, Dong Liang, Julie Gordon, Ashok Mittal, Nancy Manley, Karl Degenhardt, Sophie Astrof
Department of Medicine Faculty Papers
Fibronectin (Fn1) is an evolutionarily conserved extracellular matrix glycoprotein essential for embryonic development. Global deletion of Fn1 leads to mid-gestation lethality from cardiovascular defects. However, severe morphogenetic defects that occur early in embryogenesis in these embryos precluded assigning a direct role for Fn1 in cardiovascular development. We noticed that Fn1 is expressed in strikingly non-uniform patterns during mouse embryogenesis, and that its expression is particularly enriched in the pharyngeal region corresponding with the pharyngeal arches 3, 4, and 6. This region bears a special importance for the developing cardiovascular system, and we hypothesized that the localized enrichment of Fn1 in …