The adipokine leptin modulates adventitial pericyte functions by autocrine and paracrine signalling
Identificadores
URI: http://hdl.handle.net/20.500.12020/1583ISSN: 2045-2322
DOI: https://doi.org/10.1038/s41598-017-05868-y
Autor/es
Riu, Federica; Slater, Sadie C.; Jover Garcia, Eva; Rodriguez-Arabaolaza, Iker; Alvino, Valeria; [et al.]Fecha
2017Tipo de documento
articleÁrea/s de conocimiento
Biología Celular y MolecularMateria/s Unesco
32 Ciencias MédicasResumen
Transplantation of adventitial pericytes (APCs) improves recovery from tissue ischemia in preclinical
animal models by still unknown mechanisms. This study investigates the role of the adipokine leptin
(LEP) in the regulation of human APC biological functions. Transcriptomic analysis of APCs showed
components of the LEP signalling pathway are modulated by hypoxia. Kinetic studies indicate cultured
APCs release high amounts of immunoreactive LEP following exposure to hypoxia, continuing upon
return to normoxia. Secreted LEP activates an autocrine/paracrine loop through binding to the LEP
receptor (LEPR) and induction of STAT3 phosphorylation. Titration studies using recombinant LEP
and siRNA knockdown of LEP or LEPR demonstrate the adipokine exerts important regulatory roles
in APC growth, survival, migration and promotion of endothelial network formation. Heterogeneity
in LEP expression and secretion may influence the reparative proficiency of APC therapy. Accordingly,
the levels of LEP secretion predict the microvascular outcome of APCs transplantation in a mouse limb
ischemia model. Moreover, we found that the expression of the Lepr gene is upregulated on resident
vascular cells from murine ischemic muscles, thus providing a permissive milieu to transplanted LEPexpressing APCs. Results highlight a new mechanism responsible for APC adaptation to hypoxia and
instrumental to vascular repair.





