Ion channels and channelopathies in glomeruli.

Alexander Staruschenko, Rong Ma, Oleg Palygin, Stuart E Dryer

Journal: Physiological reviews 2022;103(1):787-854

PMID: 36007181

Abstract

An essential step in renal function entails the formation of an ultrafiltrate that is delivered to the renal tubules for subsequent processing. This process, known as glomerular filtration, is controlled by intrinsic regulatory systems and by paracrine, neuronal, and endocrine signals that converge onto glomerular cells. In addition, the characteristics of glomerular fluid flow, such as the glomerular filtration rate and the glomerular filtration fraction, play an important role in determining blood flow to the rest of the kidney. Consequently, disease processes that initially affect glomeruli are the most likely to lead to end-stage kidney failure. The cells that comprise the glomerular filter, especially podocytes and mesangial cells, express many different types of ion channels that regulate intrinsic aspects of cell function and cellular responses to the local environment, such as changes in glomerular capillary pressure. Dysregulation of glomerular ion channels, such as changes in TRPC6, can lead to devastating glomerular diseases, and a number of channels, including TRPC6, TRPC5, and various ionotropic receptors, are promising targets for drug development. This review discusses glomerular structure and glomerular disease processes. It also describes the types of plasma membrane ion channels that have been identified in glomerular cells, the physiological and pathophysiological contexts in which they operate, and the pathways by which they are regulated and dysregulated. The contributions of these channels to glomerular disease processes, such as focal segmental glomerulosclerosis (FSGS) and diabetic nephropathy, as well as the development of drugs that target these channels are also discussed.

Address: Department of Molecular Pharmacology and Physiology, University of South Florida, Tampa, Florida.; Hypertension and Kidney Research Center, University of South Florida, Tampa, Florida.; James A. Haley Veterans Hospital, Tampa, Florida.; Department of Physiology and Anatomy, University of North Texas Health Science Center, Fort Worth, Texas.; Division of Nephrology, Department of Medicine, Medical University of South Carolina, Charleston, South Carolina.; Department of Biology and Biochemistry, University of Houston, Houston, Texas.; Department of Biomedical Sciences, Tilman J. Fertitta Family College of Medicine, University of Houston, Houston, Texas.
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