组织工程与重建外科杂志 ›› 2025, Vol. 21 ›› Issue (3): 230-.

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鼠尾草酚抑制增生性瘢痕形成的实验研究

  

  • 出版日期:2025-06-02 发布日期:2025-07-01

Carnosol inhibits the formation of hypertrophic scar

  • Online:2025-06-02 Published:2025-07-01

摘要: 目的 增生性瘢痕是一种常见的纤维化皮肤疾病,其主要特点是成纤维细胞激活及胶原纤维过度沉积。本研 究拟探索鼠尾草酚对增生性瘢痕的抑制作用。方法 使用 5~80 µmol/L 鼠尾草酚处理人增生性瘢痕来源成纤维细胞 (hSFs),并用 CCK-8法确认合适的鼠尾草酚作用浓度。使用 30 µmol/L鼠尾草酚处理 hSFs,划痕实验检测 hSFs迁移能 力的变化。使用 10~30 µmol/L 鼠尾草酚处理 hSFs,qRT-PCR 和 Western blo(t WB)法检测鼠尾草酚对 hSFs胶原分泌及 激活相关基因mRNA及蛋白表达的影响。构建兔耳瘢痕模型,10 µmol/L及30 µmol/L鼠尾草酚治疗至术后14天,于模 型构建第 14天及 28天采集样本进行 HE 和 Masson 染色以评估组织结构,α-SMA 免疫组化染色评估组织纤维化情况。 结果 鼠尾草酚可剂量依赖性抑制hSFs增殖;30 µmol/L鼠尾草酚可明显抑制hSFs的迁移能力;同时,鼠尾草酚可剂量 依赖性地抑制 hSFs的胶原分泌及激活;兔耳瘢痕模型显示,鼠尾草酚可明显抑制增生性瘢痕的形成,表现为纤维化程 度降低以及α-SMA表达水平降低。结论 体内外实验证实,鼠尾草酚可明显抑制增生性瘢痕的形成,其潜在机制可能 与鼠尾草酚可影响成纤维细胞功能有关。

关键词: 鼠尾草酚, &emsp, 成纤维细胞, &emsp, 增生性瘢痕

Abstract: Objective Hypertrophic scar (HS) is a common fibrotic skin disorder characterized by the activation of fibroblast and the excessive deposition of extracellular matrix( ECM). This study intends to explore the inhibitory effect of carnosol on HS. Methods  Human hypertrophic scar-derived fibroblasts (sHSFs) were treated with 5-80 µmol/L carnosol, and CCK-8 method was used to confirm the appropriate concentration of carnosol. Then HSFs were treated with 30 µmol/L carnosol and wound healing assay was used to detect migration ability of HSFs. Moreover, HSFs were treated with 10-30 µmol/L carnosol, qRT-PCR and western blot( WB) were used to evaluate the effects of carnosol on mRNA and protein expression of collagen secretion and activation-related genes in HSFs. Rabbit ear scar model was established and treated with 10 µmol/L or 30 µmol/L carnosol until 14th day after surgery, on the 14th and 28th day after the establishment of model, samples were collected for HE and Masson’s trichrome staining to evaluate tissue structure, and α -SMA immunohistochemical staining was used to evaluate the fibrosis degree of tissue. Results  Carnosol could inhibit the proliferation of HSFs in a dose-dependent manner. 30 µmol/L carnosol treatment could significantly inhibit the migration of HSFs. And carnosol could inhibit the collagen secretion and activation of HSFs in a dose-dependent manner. The rabbit ear scar model showed that carnosol could significantly inhibit the formation of hypertrophic scar, manifested as decreased fibrosis degree and decreased expression of α -SMA. Conclusion  Experiments have confirmed that carnosol can significantly inhibit the formation of hypertrophic scar both in vivo and in vitro, and its potential mechanism may be related to the effect of carnosol on fibroblast function.

Key words: Carnosol, &emsp, Fibroblasts, &emsp, Hypertrophic scar