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Nrf2 Activation in Keratinocytes: A Central Role in Diabetes‐Associated Wound Healing

氧化应激 伤口愈合 炎症 细胞生物学 血管生成 角质形成细胞 活性氧 下调和上调 促炎细胞因子 药理学 生物 癌症研究 免疫学 内分泌学 生物化学 体外 基因
作者
Srinivasan Kaussikaa,Murali Krishna Prasad,Kunka Mohanram Ramkumar
出处
期刊:Experimental Dermatology [Wiley]
卷期号:33 (10)
标识
DOI:10.1111/exd.15189
摘要

ABSTRACT Wound healing is a complex biological process crucial for tissue repair, wherein keratinocytes play a pivotal role in initiating, sustaining and completing the cascade. Various local and systemic factors, such as lifestyle, age metabolic disorders and vascular insufficiency, can influence this process, and in the context of diabetic wounds, disrupted biological mechanisms, including inflammation, tissue hypoxia, decrease in collagen production along with increased oxidative stress and keratinocyte dysfunction, contribute to delayed healing. During re‐epithelialisation, keratinocytes undergo rapid multiplication and migration, forming a dense hyperproliferative epithelial layer that restores the epidermal barrier. Nuclear factor‐erythroid 2‐related factor (Nrf2), a vital transcription factor, emerges as a central regulator in managing antioxidant proteins and detoxifying enzymes, serving as a guardian against elevated reactive oxygen species (ROS) levels during stress. Nrf2 also orchestrates angiogenesis and anti‐inflammatory responses crucial for wound repair. Studies demonstrate that under high‐glucose conditions, Nrf2 activation promotes wound healing by enhancing cell proliferation and migration while reducing apoptosis. Nrf2 activators stimulate endogenous antioxidant production, thereby mitigating oxidative stress. Furthermore, Nrf2 upregulation is associated with decreased expression of cytokines such as TNF‐α and IL‐ 6. Recent research underscores the potential of bioactive molecules, including dietary polyphenols, traditional medicinal compounds and pharmacological agents, in activating Nrf2 and preventing diseases such as diabetes due to their robust antioxidative properties. This review aims to investigate the activation of Nrf2 by these bioactive molecules in cultured keratinocytes and animal models, elucidating the key molecular regulatory mechanisms involved in alleviating oxidative stress and facilitating the diabetic wound healing process. Understanding these complex pathways may offer insights into novel therapeutic strategies for enhanced wound healing in diabetes‐associated complications.
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