TY - JOUR
T1 - Neurotensin increases mortality and mast cells reduce neurotensin levels in a mouse model of sepsis
AU - Piliponsky, Adrian M.
AU - Chen, Ching-Cheng
AU - Nishimura, Toshihiko
AU - Metz, Martin
AU - Rios, Eon J.
AU - Dobner, Paul R.
AU - Wada, Etsuko
AU - Wada, Keiji
AU - Zacharias, Sherma
AU - Mohanasundaram, Uma M.
AU - Faix, James D.
AU - Abrink, Magnus
AU - Pejler, Gunnar
AU - Pearl, Ronald G.
AU - Tsai, Mindy
AU - Galli, Stephen J.
PY - 2008
Y1 - 2008
N2 - Sepsis is a complex, incompletely understood and often fatal disorder, typically accompanied by hypotension, that is considered to represent a dysregulated host response to infection. Neurotensin (NT) is a 13-amino-acid peptide that, among its multiple effects, induces hypotension. We find that intraperitoneal and plasma concentrations of NT are increased in mice after severe cecal ligation and puncture (CLP), a model of sepsis, and that mice treated with a pharmacological antagonist of NT, or NT-deficient mice, show reduced mortality during severe CLP. In mice, mast cells can degrade NT and reduce NT-induced hypotension and CLP-associated mortality, and optimal expression of these effects requires mast cell expression of neurotensin receptor 1 and neurolysin. These findings show that NT contributes to sepsis-related mortality in mice during severe CLP and that mast cells can lower NT concentrations, and suggest that mast cell-dependent reduction in NT levels contributes to the ability of mast cells to enhance survival after CLP.
AB - Sepsis is a complex, incompletely understood and often fatal disorder, typically accompanied by hypotension, that is considered to represent a dysregulated host response to infection. Neurotensin (NT) is a 13-amino-acid peptide that, among its multiple effects, induces hypotension. We find that intraperitoneal and plasma concentrations of NT are increased in mice after severe cecal ligation and puncture (CLP), a model of sepsis, and that mice treated with a pharmacological antagonist of NT, or NT-deficient mice, show reduced mortality during severe CLP. In mice, mast cells can degrade NT and reduce NT-induced hypotension and CLP-associated mortality, and optimal expression of these effects requires mast cell expression of neurotensin receptor 1 and neurolysin. These findings show that NT contributes to sepsis-related mortality in mice during severe CLP and that mast cells can lower NT concentrations, and suggest that mast cell-dependent reduction in NT levels contributes to the ability of mast cells to enhance survival after CLP.
UR - https://res.slu.se/id/publ/20807
U2 - 10.1038/nm1738
DO - 10.1038/nm1738
M3 - Journal article
C2 - 18376408
SN - 1078-8956
VL - 14
SP - 392
EP - 398
JO - Nature Medicine
JF - Nature Medicine
IS - 4
ER -