Unraveling the Curcumin's Molecular Targets and Its Potential in Suppressing Skin Inflammation Using Network Pharmacology and In Vitro Studies

IF 3.5 4区 医学 Q2 CHEMISTRY, MEDICINAL
Anjana Sureshbabu, Elena Smirnova, Do Thi Cat Tuong, Sangeetha Vinod, Sungyeon Chin, Mohammad Moniruzzaman, Kalaiselvi Senthil, Dong I. Lee, Karthikeyan Adhimoolam, Taesun Min
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Abstract

Curcumin, a polyphenol compound derived from turmeric, has garnered attention for its anti-inflammatory and antioxidant properties, making it a promising candidate for treating skin inflammation. Despite its potential, the underlying pharmacological effects to skin inflammation remain unclear. Therefore, this study aimed to reveal the curcumin's molecular targets and its potential in suppressing skin inflammation using network pharmacology and in vitro experiments. A total of 7,393 and 239 targets related to curcumin and skin inflammation, respectively, were obtained from public databases. By drawing a Venn diagram, 216 common targets were identified as candidate targets. These targets were subjected to gene function and pathway enrichment analyses, and a protein-protein interaction network was established to investigate curcumin's impact on inflammation. The gene functions were mainly associated with inflammatory response, membrane raft, and serine-type endopeptidase activity. The NF-κB and MAPK pathways could be the major pathways through which curcumin acts on skin inflammation. Ten major targets of curcumin in the treatment of skin inflammation were identified: AKT1, TNF, EGFR, APP, MMP9, STAT3, HIF1A, PTGS2, EP300, and GSK3B. Molecular docking analysis results showed high binding affinity of curcumin to PTGS2, GSK3B, HIF1A, and STAT3, which may contribute to its inhibitory effect on skin inflammation. In vitro experiments confirmed curcumin's anti-inflammatory effect on inflammation by reducing the expression levels of NO, IL-1β, and IL-6 in LPS-induced HaCaT cells. Taken together, this study reveals major targets and pathways of curcumin in the treatment of skin inflammation, paving the way for invivo and clinical investigations.

利用网络药理学和体外研究揭示姜黄素的分子靶点及其抑制皮肤炎症的潜力
姜黄素是一种从姜黄中提取的多酚化合物,因其抗炎和抗氧化特性而受到关注,使其成为治疗皮肤炎症的有希望的候选者。尽管具有潜力,但其对皮肤炎症的潜在药理作用尚不清楚。因此,本研究旨在通过网络药理学和体外实验揭示姜黄素的分子靶点及其抑制皮肤炎症的潜力。从公共数据库中分别获得了与姜黄素和皮肤炎症相关的7393个和239个靶点。通过绘制维恩图,确定了216个常见目标作为候选目标。我们对这些靶点进行了基因功能和途径富集分析,并建立了蛋白-蛋白相互作用网络来研究姜黄素对炎症的影响。该基因功能主要与炎症反应、膜筏和丝氨酸型内肽酶活性有关。NF-κB和MAPK通路可能是姜黄素作用于皮肤炎症的主要途径。确定了姜黄素治疗皮肤炎症的10个主要靶点:AKT1、TNF、EGFR、APP、MMP9、STAT3、HIF1A、PTGS2、EP300和GSK3B。分子对接分析结果显示姜黄素与PTGS2、GSK3B、HIF1A、STAT3具有较高的结合亲和力,这可能与姜黄素抑制皮肤炎症的作用有关。体外实验证实姜黄素通过降低lps诱导的HaCaT细胞NO、IL-1β和IL-6的表达水平,具有抗炎作用。综上所述,本研究揭示了姜黄素治疗皮肤炎症的主要靶点和途径,为体内和临床研究铺平了道路。
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来源期刊
CiteScore
6.40
自引率
2.60%
发文量
104
审稿时长
6-12 weeks
期刊介绍: Drug Development Research focuses on research topics related to the discovery and development of new therapeutic entities. The journal publishes original research articles on medicinal chemistry, pharmacology, biotechnology and biopharmaceuticals, toxicology, and drug delivery, formulation, and pharmacokinetics. The journal welcomes manuscripts on new compounds and technologies in all areas focused on human therapeutics, as well as global management, health care policy, and regulatory issues involving the drug discovery and development process. In addition to full-length articles, Drug Development Research publishes Brief Reports on important and timely new research findings, as well as in-depth review articles. The journal also features periodic special thematic issues devoted to specific compound classes, new technologies, and broad aspects of drug discovery and development.
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