天然产物研究与开发 ›› 2025, Vol. 37 ›› Issue (6): 1020-1028.doi: 10.16333/j.1001-6880.2025.6.004 cstr: 32307.14.1001-6880.2025.6.004

• 研究论文 • 上一篇    下一篇

大黄多糖通过促进表皮细胞增殖与迁移加速皮肤创面愈合的研究

尹秀雯1,郝春艳1,贺武斌2*   

  1. 1锦州医科大学护理学院;2锦州医科大学附属第一医院,锦州 121000
  • 出版日期:2025-06-25 发布日期:2025-06-25
  • 基金资助:
    中华护理学会科研课题(ZHKY201925);锦州医科大学横向课题(A2024007)

Effect of Rheum palmatum polysaccharide in accelerating skin wound healing by promoting epidermal cell proliferation and migration

YIN Xiu-wen1,HAO Chun-yan1,HE Wu-bin2*   

  1. 1School of Nursing,Jinzhou Medical University;2The First Affiliated Hospital of Jinzhou Medical University,Jinzhou 121000,China
  • Online:2025-06-25 Published:2025-06-25

摘要:

探讨大黄多糖(Rheum palmatum polysaccharide,RPS)调控多分子通路促进皮肤创面修复的作用机制。通过体外HaCaT细胞增殖与迁移实验结合小鼠皮肤损伤模型,采用细胞活力检测、划痕分析、组织病理染色及分子生物学技术评估RPS对创面修复的影响。结果显示,适宜浓度RPS可显著增强表皮细胞增殖活性并加速迁移进程,同时上调肿瘤坏死因子-α(tumor necrosis factor-αTNF-α)、表皮生长因子(epidermal growth factor,EGF)及转化生长因子-β1(transforming growth factor-β1,TGF-β1)等关键因子的基因表达。进一步分析表明,RPS通过激活磷脂酰肌醇3激酶(phosphatidylinositol 3-kinase,PI3K)/蛋白激酶B(protein kinase B,AKT)-丝裂原活化蛋白激酶(mitogen-activated protein kinase,MAPK)/细胞外信号调节激酶(extracellular signal-regulated kinase,ERK)(PI3K/AKT-MAPK/ERK)信号通路,显著提升通路关键蛋白AKT Ser473和ERK Thr202/Tyr204磷酸化水平,并促进Ⅰ型胶原蛋白α1链(collagen type I alpha 1 chain,Col1A1)和Ⅲ型胶原蛋白α1链(collagen type III alpha 1 chain,Col3A1)的mRNA表达。动物实验证实,RPS处理组表皮再生和胶原沉积明显优于对照组,创面组织生长因子(TNF-αEGFTGF-β1)及胶原相关基因(Col1A1Col3A1)表达同步增强,且PI3K/AKT-MAPK/ERK通路磷酸化水平显著提升。本研究阐明RPS通过多靶点调控机制协同促进创面修复,其作用涉及激活关键信号通路、上调修复相关因子表达及增强胶原重构,为新型创面修复制剂的研发提供了重要理论基础。

关键词: 大黄多糖, 细胞增殖, 细胞迁移, 创面愈合

Abstract:

This study investigated the mechanism by which Rheum palmatum polysaccharide (RPS) regulates multiple molecular pathways to enhance skin wound repair. Utilizing in vitro HaCaT cell proliferation and migration assays combined with a murine skin injury model, the effects of RPS on wound healing were evaluated through cell viability tests, scratch assays, histopathological staining, and molecular biology techniques. Results demonstrated that RPS at appropriate concentrations significantly enhanced epidermal cell proliferation and accelerated migration. Concurrently, it upregulated the gene expression of key factors, including tumor necrosis factor-α (TNF-α), epidermal growth factor (EGF), and transforming growth factor-β1 (TGF-β1). Further analysis revealed that RPS activated the phosphatidylinositol 3-kinase (PI3K)/protein kinase B (AKT)-mitogen-activated protein kinase (MAPK)/extracellular signal-regulated kinase (ERK) (PI3K/AKT-MAPK/ERK) signaling pathway, markedly increasing the phosphorylation levels of key pathway proteins (AKT Ser 473 and ERK Thr 202/Tyr 204) and promoting mRNA expression of collagen type I alpha 1 chain (Col1A1) and collagen type III alpha 1 chain (Col3A1). Animal experiments confirmed that the RPS-treated group exhibited superior epidermal regeneration rates and collagen deposition compared to the control group. Wound tissues in the RPS group showed enhanced expression of growth factors (TNF-α, EGF, TGF-β1) and collagen-related genes (Col1A1, Col3A1), alongside significantly elevated phosphorylation levels of the PI3K/AKT-MAPK/ERK pathway. This study elucidates that RPS synergistically promotes wound repair through a multi-target regulatory mechanism, involving activation of critical signaling pathways, upregulation of repair-related factors, and enhancement of collagen remodeling. These findings provide a vital theoretical foundation for the development of novel wound repair therapeutics.

Key words: Rheum palmatum polysaccharide, cell proliferation, cell migration, wound healing

中图分类号:  R742