环孢素A降低再生FOXN1缺陷小鼠真皮成纤维细胞中基质金属蛋白酶和胶原蛋白的表达。

Barbara Gawronska-Kozak, Heather Kirk-Ballard
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引用次数: 24

摘要

背景:环孢素A (Cyclosporin A, CsA)是一种免疫抑制剂,通过影响细胞外基质代谢来改变伤口愈合过程。我们比较了CsA对裸小鼠(FOXN1缺陷小鼠)和对照小鼠(C57BL/6 J (B6))真皮成纤维细胞的影响,以评估在无疤痕愈合/再生过程中似乎起重要作用的代谢途径。结果:CsA处理后,裸鼠(再生)真皮成纤维细胞中基质金属蛋白酶(MMPs)和胶原III的高表达水平被下调至B6(非再生)小鼠真皮成纤维细胞的水平。相比之下,对照小鼠的真皮成纤维细胞对CsA治疗的反应是Mmps mRNA的轻微降低和胶原I mRNA的表达增加2.5倍。体外迁移实验显示,CsA处理大大延迟了裸小鼠和对照小鼠真皮成纤维细胞的迁移行为。结论:数据表明,通过细胞外基质成分积累的交替,CsA治疗刺激从无疤痕到疤痕愈合的转变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cyclosporin A reduces matrix metalloproteinases and collagen expression in dermal fibroblasts from regenerative FOXN1 deficient (nude) mice.

Cyclosporin A reduces matrix metalloproteinases and collagen expression in dermal fibroblasts from regenerative FOXN1 deficient (nude) mice.

Cyclosporin A reduces matrix metalloproteinases and collagen expression in dermal fibroblasts from regenerative FOXN1 deficient (nude) mice.

Cyclosporin A reduces matrix metalloproteinases and collagen expression in dermal fibroblasts from regenerative FOXN1 deficient (nude) mice.

Background: Cyclosporin A (CsA), an immunosuppressive agent modifies the wound healing process through an influence on extracellular matrix metabolism. We have compared the effects of CsA on dermal fibroblasts from nude (FOXN1 deficient) mice, a genetic model of skin scarless healing, and from control (C57BL/6 J (B6) mice to evaluate metabolic pathways that appear to have important roles in the process of scarless healing/regeneration.

Results: High levels of matrix metalloproteinases (MMPs) and collagen III expression in dermal fibroblasts from nude (regenerative) mice were down-regulated by CsA treatment to the levels observed in dermal fibroblasts from B6 (non-regenerative) mice. In contrast, dermal fibroblasts from control mice respond to CsA treatment with a minor reduction of Mmps mRNA and 2.5-fold increase expression of collagen I mRNA. An in vitro migratory assay revealed that CsA treatment profoundly delayed the migratory behavior of dermal fibroblasts from both nude and control mice.

Conclusion: The data suggest that by alternation of the accumulation of extracellular matrix components CsA treatment stimulates the transition from a scarless to a scar healing.

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