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Journal Article

Endothelial IGF- 1R deficiency disrupts microvascular homeostasis, impairing skeletal muscle perfusion and endurance: implications for age-related sarcopenia

Adam Nyul-Toth; Santny Shanmugarama; Roland Patai; Rafal Gulej; Janet Faakye; Dorina Nagy; Mark Nagykaldi; Tamas Kiss; Tamas Csipo; Madison Milan; Shoba Ekambaram; Sharon Negri; Raghavendra Y. Nagaraja; Anna Csiszar; Jacob L. Brown; Holly Van Remmen; Anna Ungvari; Andriy Yabluchanskiy; Stefano Tarantini; Zoltan Ungvari
GeroScience · Vol. 47, Issue 3 · pp. 4187-4204 · 2025

Abstract

Aging is associated with a progressive decline in circulating insulin-like growth factor- 1 (IGF- 1) levels in humans, which has been implicated in the pathogenesis of sarcopenia. IGF- 1 is an anabolic hormone that plays a dual role in maintaining skeletal muscle health, acting both directly on muscle fibers to promote growth and indirectly by supporting the vascular network that sustains muscle perfusion. However, the microvascular consequences of IGF- 1 deficiency in aging muscle remain poorly understood. To elucidate how impaired IGF- 1 input affects skeletal muscle vasculature, we examined the effects of endothelial-specific IGF- 1 receptor (IGF- 1R) deficiency using a mouse model of endothelial IGF- 1R knockdown (VE-Cadherin-CreER T2 /Igf1r f/f mice). These mice exhibited significantly reduced skeletal muscle endurance and attenuated hyperemic response to acetylcholine, an endothelium-dependent vasodilator. Additionally, they displayed microvascular rarefaction and impaired nitric oxide-dependent vasorelaxation, indicating a significant decline in microvascular health in skeletal muscle. These findings suggest that endothelial IGF- 1R signaling is critical for maintaining microvascular integrity, muscle perfusion, and function. Impaired IGF- 1 input to the microvascular endothelium may contribute to reduced muscle blood flow and exacerbate age-related sarcopenia. Enhancing vascular health by modulating IGF- 1 signaling could represent a potential therapeutic strategy to counteract age-related muscle decline.

Bibliographic Information

JournalGeroScience
PublisherSpringer
Publication Date2025-04-08
Publication Year2025
Volume47
Issue3
Pages4187-4204
Document TypeJournal Article
eISSN2509-2723
DOI10.1007/s11357-025-01653-2

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NARA Access Coverage1978-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11357
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