The decay of stem cell nourishment at the niche.

Fecha de publicación:

Autores de IIS La Fe

Grupos

Abstract

One of the main features of human aging is the loss of adult stem cell homeostasis. Organs that are very dependent on adult stem cells show increased susceptibility to aging, particularly organs that present a vascular stem cell niche. Reduced regenerative capacity in tissues correlates with reduced stem cell function, which parallels a loss of microvascular density (rarefraction) and plasticity. Moreover, the age-related loss of microvascular plasticity and rarefaction has significance beyond metabolic support for tissues because stem cell niches are regulated co-ordinately with the vascular cells. In addition, microvascular rarefaction is related to increased inflammatory signals that may negatively regulate the stem cell population. Thus, the processes of microvascular rarefaction, adult stem cell dysfunction, and inflammation underlie the cycle of physiological decline that we call aging. Observations from new mouse models and humans are discussed here to support the vascular aging theory. We develop a novel theory to explain the complexity of aging in mammals and perhaps in other organisms. The connection between vascular endothelial tissue and organismal aging provides a potential evolutionary conserved mechanism that is an ideal target for the development of therapies to prevent or delay age-related processes in humans.

Datos de la publicación

ISSN/ISSNe:
1549-1684, 1557-8577

REJUVENATION RESEARCH  MARY ANN LIEBERT, INC

Tipo:
Article
Páginas:
487-494
PubMed:
23937078
Factor de Impacto:
0,806 SCImago
Cuartil:
Q2 SCImago

Citas Recibidas en Web of Science: 6

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