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Published on: October 18, 2016
Immunophenotypical characterization of macrophages in rat bleomycin-induced scleroderma
V Juniantito1, T Izawa, T Yuasa
1Laboratory of Veterinary Pathology, Division of Veterinary Sciences, Graduate School of Life and Environmental Sciences, Osaka Prefecture University, Rinkuu Ourai Kita 1-58, Izumisano-shi, Osaka 598-8531, Japan.
Abstract:
Scleroderma is a skin disorder characterized by persistent fibrosis. Macrophage properties influencing cutaneous fibrogenesis remain to be fully elucidated. In this rat (F344 rats) model of scleroderma, at 1, 2, 3, and 4 weeks after initiation of daily subcutaneous injections of bleomycin (BLM; 100 μl of 1 mg/ml daily), skin samples were collected for histological and immunohistochemical evaluations. Immunohistochemically, the numbers of cells reacting to ED1 (anti-CD68; phagocytic activity) and ED2 (anti-CD163; inflammatory factor production) began to increase at week 1, peaked at week 2, and decreased thereafter. In contrast, the increased number of cells reacting to OX6 (anti-MHC class II molecules) was seen from week 2 and remained elevated until week 4. α-Smooth muscle actin-positive myofibroblasts were increased for 4 weeks. Double labeling revealed that galectin-3, a regulator of fibrogenic factor TGF-β1, was expressed in CD68+, CD163+, and MHC class II+ macrophages and myofibroblasts. mRNA expression of TGF-β1, as well as MCP-1 and CSF-1 (both macrophage function modulators), were significantly elevated at weeks 1 to 4. This study shows that the increased number of macrophages with heterogeneous immunophenotypes, which might be induced by MCP-1 and CSF-1, could participate in the sclerotic lesion formation, presumably through increased fibrogenic factors such as galectin-3 and TGF-β1; the data may provide useful information to understand the pathogenesis of the human scleroderma condition.
Insights
In scleroderma models, macrophages with varied phenotypes, possibly induced by MCP-1 and CSF-1, contribute to skin fibrosis through galectin-3 and TGF-β1. This offers insights into human scleroderma pathogenesis.
Area of Science:
- Immunology
- Dermatology
- Pathology
Background:
- Scleroderma is a fibrotic skin disorder.
- The role of macrophages in scleroderma pathogenesis is not fully understood.
Purpose of the Study:
- To investigate macrophage phenotypes and their role in bleomycin-induced scleroderma in rats.
- To elucidate the involvement of fibrogenic factors in scleroderma development.
Main Methods:
- Bleomycin-induced scleroderma model in F344 rats.
- Histological and immunohistochemical analysis of skin samples at weeks 1, 2, 3, and 4.
- Evaluation of macrophage markers (CD68, CD163, MHC class II), myofibroblasts, galectin-3, TGF-β1, MCP-1, and CSF-1 expression.
Main Results:
- Macrophage markers (CD68, CD163) increased early, peaking at week 2, while MHC class II+ cells increased from week 2 to 4.
- α-Smooth muscle actin-positive myofibroblasts were elevated throughout the 4-week study period.
- Galectin-3 was found in macrophages and myofibroblasts; TGF-β1, MCP-1, and CSF-1 mRNA levels were significantly elevated.
Conclusions:
- Increased macrophages with heterogeneous immunophenotypes, potentially driven by MCP-1 and CSF-1, contribute to sclerotic lesion formation.
- Macrophage-derived galectin-3 and TGF-β1 are implicated in scleroderma pathogenesis.
- Findings provide insights into the mechanisms underlying human scleroderma.

