» Articles » PMID: 20044996

In Vitro-derived Alternatively Activated Macrophages Reduce Colonic Inflammation in Mice

Overview
Specialty Gastroenterology
Date 2010 Jan 5
PMID 20044996
Citations 150
Authors
Affiliations
Soon will be listed here.
Abstract

Background & Aims: Infection with the rat tapeworm Hymenolepis diminuta reduces the severity of dinitrobenzene sulfonic acid (DNBS)-induced colitis in mice. Infection with H. diminuta increases colonic expression of arginase-1 and found in inflammatory zone 1 (FIZZ1), markers of alternatively activated macrophages (AAMs). We investigated whether AAMs have anticolitic effects.

Methods: Normal or macrophage-depleted Balb/c mice were infected with H. diminuta; some mice were given DNBS, and the severity of colitis was assessed by disease activity scores, myeloperoxidase activity, and histologic examination. AAMs were also differentiated in vitro, given to mice by intraperitoneal or intravenous injection, and the effects on DNBS-induced colitis were determined. Numbers of AAMs were assessed in biopsy specimens from patients with Crohn's disease.

Results: Depletion of intestinal macrophages using clodronate-liposomes prevented the anticolitic effect of infection with H. diminuta. Injection of AAMs, but not classically activated macrophages, significantly reduced the severity of DNBS-induced colitis. The AAM-induced, anticolitic effect was accompanied by increased interleukin (IL)-10 production from mitogen-stimulated spleen cells; in vivo neutralization of IL-10 partially reduced the effects of AAM transfer. Patients with active CD had reduced numbers of CD68(+)CD206(+) macrophages (which indicate AAM), whereas biopsy specimens from patients with inactive CD had increased numbers of these cells.

Conclusions: Analysis of the H. diminuta-murine DNBS system identified the AAM, which, when administered to mice, significantly reduced DNBS-induced colitis. The ability to derive AAMs from patients' blood suggests that adoptive transfer of these cells could be a novel approach to inflammatory bowel disease.

Citing Articles

Novel Insights into the Pathogenesis of Inflammatory Bowel Diseases.

Calvez V, Puca P, Di Vincenzo F, Del Gaudio A, Bartocci B, Murgiano M Biomedicines. 2025; 13(2).

PMID: 40002718 PMC: 11853239. DOI: 10.3390/biomedicines13020305.


Helminths in alternative therapeutics of inflammatory bowel disease.

Pandey H, Tang D, Wong S, Lal D Intest Res. 2025; 23(1):8-22.

PMID: 39916482 PMC: 11834367. DOI: 10.5217/ir.2023.00059.


Smad4 deficiency in hepatocytes attenuates NAFLD progression via inhibition of lipogenesis and macrophage polarization.

Yang W, Yan X, Chen R, Xin X, Ge S, Zhao Y Cell Death Dis. 2025; 16(1):58.

PMID: 39890803 PMC: 11785999. DOI: 10.1038/s41419-025-07376-8.


GPx1 deficiency confers increased susceptibility to ferroptosis in macrophages from individuals with active Crohn's disease.

Sousa J, Callejas B, Wang A, Higgins E, Herik A, Andonian N Cell Death Dis. 2024; 15(12):903.

PMID: 39695083 PMC: 11655851. DOI: 10.1038/s41419-024-07289-y.


A Future Avenue of Treatment Ulcerative Colitis Targeting Macrophage Polarization: A Phytochemical Application.

Saurabh N, Khan M, Kirabo A Crohns Colitis 360. 2024; 6(4):otae070.

PMID: 39668979 PMC: 11635166. DOI: 10.1093/crocol/otae070.