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Full-Text Articles in Medicine and Health Sciences
Epc-Exs Improve Astrocyte Survival And Oxidative Stress Through Different Uptaking Pathways In Diabetic Hypoxia Condition, Manasi Suchit Halurkar, Jinju Wang, Shuzhen Chen, Ji Chen Bihl
Epc-Exs Improve Astrocyte Survival And Oxidative Stress Through Different Uptaking Pathways In Diabetic Hypoxia Condition, Manasi Suchit Halurkar, Jinju Wang, Shuzhen Chen, Ji Chen Bihl
Pharmacology and Toxicology Faculty Publications
Background: Hyperglycemia contributes to cardiovascular complications in patients with type 2 diabetes. We confirmed that high glucose (HG) induces endothelial dysfunction and cerebral ischemic injury is enlarged in diabetic mice. Stem cell-released exosomes have been shown to protect the brain from ischemic stroke. We have previously shown that endothelial progenitor cells (EPCs)-released exosomes (EPC-EXs) can protect endothelial cells from hypoxia/reoxygenation (H/R) and HG-induced injury. Here, we aim to investigate the effects of EPC-EXs on astrocytes under H/R and HG-induced injury and whether miR-126 enriched EPC-EXs (miR126-EPC-EXs) have enhanced efficacy. Methods: EPC-EX uptake and co-localization were measured by fluorescent microscopy using …
Epc-Exs Improve Neuronal Survival And Oxidative Stress Through Different Uptaking Pathways In Diabetic Hypoxia Condition, Manasi Suchit Halurkar, Jinju Wang, Shuzhen Chen, Ji Chen Bihl
Epc-Exs Improve Neuronal Survival And Oxidative Stress Through Different Uptaking Pathways In Diabetic Hypoxia Condition, Manasi Suchit Halurkar, Jinju Wang, Shuzhen Chen, Ji Chen Bihl
Pharmacology and Toxicology Faculty Publications
Background: Hyperglycemia contributes to cardiovascular complications in patients with type 2 diabetes. We confirmed that high glucose (HG) induces endothelial dysfunction and cerebral ischemic injury is enlarged in diabetic mice. Stem cell-released exosomes have been shown to protect the brain from ischemic stroke. We have previously shown that endothelial progenitor cells (EPCs)-released exosomes (EPC-EXs) can protect endothial cells from hypoxia/reoxygenation (H/R) and HG-induced injury. Here, we aim to investigate the effects of EPC-EXs on astrocytes under H/R and HG-induced injury and whether miR-126 enriched EPC-EXs (EPC-EXsmiR126) have enhanced efficacy. Methods: EPC-EX uptake and co-localization were measured by fluorescent microscopy using …
Effect Of High Glucose On Ocular Surface Epithelial Cell Barrier And Tight Junction Proteins, Saleh M. Alfuraih, Ashley Barbarino, Christopher Ross, Kiumars Shamloo, Vishal Jhanji, Miao Zhang, Ajay Sharma
Effect Of High Glucose On Ocular Surface Epithelial Cell Barrier And Tight Junction Proteins, Saleh M. Alfuraih, Ashley Barbarino, Christopher Ross, Kiumars Shamloo, Vishal Jhanji, Miao Zhang, Ajay Sharma
Pharmacy Faculty Articles and Research
PURPOSE. Patients with diabetes mellitus are reported to have ocular surface defects, impaired ocular surface barrier function, and a higher incidence of corneal and conjunctival infections. Tight junctions are critical for ocular surface barrier function. The present study was designed to investigate the effect of high glucose exposure on human corneal and conjunctival epithelial cell barrier function and tight junction proteins.
METHODS. Human corneal and conjunctival epithelial cells were exposed to 15 mM and 30 mM glucose for 24 and 72 hours. The barrier function was measured using transepithelial electrical resistance (TEER). The cell migration was quantified using scratch assay. …
Modulation Of Apolipoprotein L1-Microrna-193a Axis Prevents Podocyte Dedifferentiation In High-Glucose Milieu, A. Mishra, K. Ayasolla, V. Kumar, X. Lan, H. Vashistha, R. Aslam, A. Hussain, S. Chowdhary, A. Malhotra, P. C. Singhal, +6 Additional Authors
Modulation Of Apolipoprotein L1-Microrna-193a Axis Prevents Podocyte Dedifferentiation In High-Glucose Milieu, A. Mishra, K. Ayasolla, V. Kumar, X. Lan, H. Vashistha, R. Aslam, A. Hussain, S. Chowdhary, A. Malhotra, P. C. Singhal, +6 Additional Authors
Journal Articles
No abstract provided.