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Metabolism Regulates Exposure of Pancreatic Islets to Circulating Molecules In Vivo
Author(s) -
Aurélien Michau,
David J. Hodson,
Pierre Fontanaud,
Anne Guillou,
Gabriel Espinosa-Carrasco,
François Molino,
Catherine Peters,
Iain C.A.F. Robinson,
Paul Le Tissier,
Patrice Mollard,
Marie Schaeffer
Publication year - 2015
Publication title -
diabetes
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.219
H-Index - 330
eISSN - 1939-327X
pISSN - 0012-1797
DOI - 10.2337/db15-1168
Subject(s) - islet , endocrinology , medicine , in vivo , extravasation , insulin , pancreatic islets , diabetes mellitus , pancreas , biology , immunology , microbiology and biotechnology
Pancreatic β-cells modulate insulin secretion through rapid sensing of blood glucose and integration of gut-derived signals. Increased insulin demand during pregnancy and obesity alters islet function and mass and leads to gestational diabetes mellitus and type 2 diabetes in predisposed individuals. However, it is unclear how blood-borne factors dynamically access the islets of Langerhans. Thus, understanding the changes in circulating molecule distribution that accompany compensatory β-cell expansion may be key to developing novel antidiabetic therapies. Here, using two-photon microscopy in vivo in mice, we demonstrate that islets are almost instantly exposed to peaks of circulating molecules, which rapidly pervade the tissue before clearance. In addition, both gestation and short-term high-fat-diet feeding decrease molecule extravasation and uptake rates in vivo in islets, independently of β-cell expansion or islet blood flow velocity. Together, these data support a role for islet vascular permeability in shaping β-cell adaptive responses to metabolic demand by modulating the access and sensing of circulating molecules.

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