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◆ Frontiers in immunology2026-01-01

From support to homeostatic licensing: the bidirectional fibroblast-macrophage circuit and its central role in tissue homeostasis and fibrosis.

Meng Zhang, Ruiqi Chu, Shengni Zhang, Xiangxiang Ren

原始摘要(英文原文)· Original abstract
The capacity of fibroblasts to support macrophages predominantly through colony-stimulating factor 1 (CSF1)-mediated survival and proliferation has long been recognized. Whether macrophages actively regulate fibroblasts in vivo has remained a critical open question. Recent work in murine skin has provided the first direct evidence for reverse homeostatic licensing, a process whereby macrophages, in return, provide permissive signals that maintain fibroblast quiescence: conditional deletion of Csf1 in dermatopontin-expressing (Dpt+) fibroblasts causes a progressive loss of CD64+ and CD11c+ macrophages, which in turn deprives fibroblasts of essential microenvironmental cues, leading to disrupted cell-cycle, metabolic, and immune signaling programs, and compensatory fibroblast expansion. This discovery formally defines a bidirectional circuit. In human systemic sclerosis, elevated fibroblast-derived CSF1 and increased macrophage abundance jointly correlate with disease severity, a paradox we resolve through the concept of functional licensing exhaustion in disease-associated macrophages. Taking this breakthrough as a point of departure, we integrate the concept of a fibroblast-macrophage homeostatic circuit as a generalizable framework. We examine how this push-pull loop operates in tissue maintenance, wound repair, and fibrogenesis; explore its similarities and divergences in the tumor microenvironment and across organ fibroses; and propose a therapeutic shift from simple cell depletion to the restoration of circuit equilibrium. The framework provides a conceptual basis for clinical strategies that target stromal-immune interactions.
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From support to homeostatic licensing: the bidirectional fibroblast-macrophage circuit and its central role in tissue homeostasis and fibrosis. — 科研速览 Science Skim