The nephron-arterial network and its interactions

Author:

Marsh Donald J.1ORCID,Postnov Dmitry D.23,Sosnovtseva Olga V.3,Holstein-Rathlou Niels-Henrik3

Affiliation:

1. Department of Molecular Pharmacology, Physiology, and Biotechnology, Brown University, Providence, Rhode Island

2. Neurophotonics Center, Boston University, Boston, Massachusetts

3. Department of Biomedical Sciences, Panum Institute, University of Copenhagen, Copenhagen, Denmark

Abstract

Tubuloglomerular feedback and the myogenic mechanism form an ensemble in renal afferent arterioles that regulate single-nephron blood flow and glomerular filtration. Each mechanism generates a self-sustained oscillation, the mechanisms interact, and the oscillations synchronize. The synchronization generates a bimodal electrical signal in the arteriolar wall that propagates retrograde to a vascular node, where it meets similar electrical signals from other nephrons. Each signal carries information about the time-dependent behavior of the regulatory ensemble. The converging signals support synchronization of the nephrons participating in the information exchange, and the synchronization can lead to formation of nephron clusters. We review the experimental evidence and the theoretical implications of these interactions and consider additional interactions that can limit the size of nephron clusters. The architecture of the arterial tree figures prominently in these interactions.

Funder

Novo Nordisk

Publisher

American Physiological Society

Subject

Physiology

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