Glomerular Endothelial Mitochondrial Dysfunction Is Essential and Characteristic of Diabetic Kidney Disease Susceptibility.
Haiying Qi,Gabriella Casalena,Shaolin Shi,Liping Yu,Kerstin Ebefors,Yezhou Sun,Weijia Zhang,Vivette D. D'Agati,Detlef Schlöndorff,Börje Haraldsson,Erwin P. Bottinger,Ilse Daehn +11 more
TL;DR: The studies show that DKD susceptibility was linked to mitochondrial dysfunction, mediated largely by Edn1–Ednra in glomerular endothelial cells representing an early event in DKD progression, and suggest that cross talk between glomerULAR endothelial injury and podocytes leads to defects and depletion, albuminuria, and glomerulosclerosis.
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Abstract: The molecular signaling mechanisms between glomerular cell types during initiation/progression of diabetic kidney disease (DKD) remain poorly understood. We compared the early transcriptome profile between DKD-resistant C57BL/6J and DKD-susceptible DBA/2J (D2) glomeruli and demonstrated a significant downregulation of essential mitochondrial genes in glomeruli from diabetic D2 mice, but not in C57BL/6J, with comparable hyperglycemia. Diabetic D2 mice manifested increased mitochondrial DNA lesions (8-oxoguanine) exclusively localized to glomerular endothelial cells after 3 weeks of diabetes, and these accumulated over time in addition to increased urine secretion of 8-oxo-deoxyguanosine. Detailed assessment of glomerular capillaries from diabetic D2 mice demonstrated early signs of endothelial injury and loss of fenestrae. Glomerular endothelial mitochondrial dysfunction was associated with increased glomerular endothelin-1 receptor type A (Ednra) expression and increased circulating endothelin-1 (Edn1). Selective Ednra blockade or mitochondrial-targeted reactive oxygen species scavenging prevented mitochondrial oxidative stress of endothelial cells and ameliorated diabetes-induced endothelial injury, podocyte loss, albuminuria, and glomerulosclerosis. In human DKD, increased urine 8-oxo-deoxyguanosine was associated with rapid DKD progression, and biopsies from patients with DKD showed increased mitochondrial DNA damage associated with glomerular endothelial EDNRA expression. Our studies show that DKD susceptibility was linked to mitochondrial dysfunction, mediated largely by Edn1–Ednra in glomerular endothelial cells representing an early event in DKD progression, and suggest that cross talk between glomerular endothelial injury and podocytes leads to defects and depletion, albuminuria, and glomerulosclerosis.
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Reactive oxygen species (ROS) in macrophage activation and function in diabetes.
Erika Rendra,Vladimir Riabov,Dieuwertje M Mossel,Tatyana Sevastyanova,Martin C. Harmsen,Julia Kzhyshkowska +5 more
TL;DR: The role of ROS in macrophage polarization is dissected, how ROS production links metabolism and inflammation in diabetes and its complications is analyzed, and the contribution of ROS to the crosstalk between macrophages and endothelial cells in diabetic complications is discussed.
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Mitochondrial dysfunction in diabetic kidney disease.
TL;DR: It is postulate that the diabetic milieu and inherited factors that underlie abnormalities in mitochondrial function synergistically drive the development and progression of DKD.
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Mitochondrial quality control in kidney injury and repair.
Chengyuan Tang,Juan Cai,Xiao Ming Yin,Joel M. Weinberg,Manjeri A. Venkatachalam,Zheng Dong,Zheng Dong +6 more
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Microvascular Dysfunction and Hyperglycemia: A Vicious Cycle With Widespread Consequences.
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Obesity in Type 1 Diabetes: Pathophysiology, Clinical Impact, and Mechanisms.
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TL;DR: The goal is to provide a framework for the evidence base needed to develop type 1 diabetes-specific weight management recommendations that account for the competing outcomes of glycemic control and weight management.
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Podocyte detachment and reduced glomerular capillary endothelial fenestration promote kidney disease in type 2 diabetic nephropathy
E. Jennifer Weil,Kevin V. Lemley,Clinton C. Mason,Berne Yee,Lois I. Jones,Kristina Blouch,Tracy Lovato,Meghan Richardson,Bryan D. Myers,Robert G. Nelson +9 more
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