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基于网络药理学的方法研究迷迭香治疗与衰老相关疾病的分子靶点和分子机制。

Network pharmacology-based approach to investigate the molecular targets and molecular mechanisms of Rosmarinus officinalis L. for treating aging-related disorders.

机构信息

Department of Botany, Pt. Badridutt Pandey Campus Bageshwar, Soban Singh Jeena University, Almora, Uttarakhand, 263601, India.

Department of Biotechnology, Kumaun University, Bhimtal, Uttarakhand, 263136, India.

出版信息

Biogerontology. 2024 Oct;25(5):793-808. doi: 10.1007/s10522-024-10122-w. Epub 2024 Jul 17.

Abstract

Aging, a natural biological process, presents challenges in maintaining physiological well-being and is associated with increased vulnerability to diseases. Addressing aging mechanisms is crucial for developing effective preventive and therapeutic strategies against age-related ailments. Rosmarinus officinalis L. is a medicinal herb widely used in traditional medicine, containing diverse bioactive compounds that have been studied for their antioxidant and anti-inflammatory properties, which are associated with potential health benefits. Using network pharmacology, this study investigates the anti-aging function and underlying mechanisms of R. officinalis. Through network pharmacology analysis, the top 10 hub genes were identified, including TNF, CTNNB1, JUN, MTOR, SIRT1, and others associated with the anti-aging effects. This analysis revealed a comprehensive network of interactions, providing a holistic perspective on the multi-target mechanism underlying Rosemary's anti-aging properties. GO and KEGG pathway enrichment analysis revealed the relevant biological processes, molecular functions, and cellular components involved in treating aging-related conditions. KEGG pathway analysis shows that anti-aging targets of R. officinalis involved endocrine resistance, pathways in cancer, and relaxin signaling pathways, among others, indicating multifaceted mechanisms. Genes like MAPK1, MMP9, and JUN emerged as significant players. These findings enhance our understanding of R. officinalis's potential in mitigating aging-related disorders through multi-target effects on various biological processes and pathways. Such approaches may reduce the risk of failure in single-target and symptom-based drug discovery and therapy.

摘要

衰老,一种自然的生物过程,在维持生理健康方面带来挑战,并且与增加对疾病的易感性相关。解决衰老机制对于开发针对与年龄相关疾病的有效预防和治疗策略至关重要。迷迭香(Rosmarinus officinalis L.)是一种广泛应用于传统医学的药用草本植物,含有多种生物活性化合物,这些化合物已被研究具有抗氧化和抗炎特性,与潜在的健康益处相关。本研究使用网络药理学方法研究迷迭香的抗衰老功能和潜在机制。通过网络药理学分析,确定了前 10 个关键基因,包括 TNF、CTNNB1、JUN、MTOR、SIRT1 等,这些基因与抗衰老作用相关。该分析揭示了一个全面的相互作用网络,为迷迭香抗衰老特性的多靶点机制提供了整体视角。GO 和 KEGG 通路富集分析揭示了与治疗与衰老相关疾病相关的生物过程、分子功能和细胞组成。KEGG 通路分析表明,迷迭香的抗衰老靶点涉及内分泌抵抗、癌症途径和松弛素信号通路等,表明其具有多方面的机制。MAPK1、MMP9 和 JUN 等基因成为重要的参与者。这些发现增强了我们对迷迭香通过对各种生物过程和途径的多靶点作用减轻与衰老相关疾病的潜力的理解。这种方法可能降低单靶点和基于症状的药物发现和治疗中失败的风险。

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