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蛹虫草素的治疗潜力和生物学应用及其产生菌的代谢机制。

Therapeutic Potential and Biological Applications of Cordycepin and Metabolic Mechanisms in Cordycepin-Producing Fungi.

机构信息

Institute of Biology, Gansu Academy of Sciences, Lanzhou 730000, Gansu Province, China.

Ministry of Education Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University, Lanzhou 730000, Gansu Province, China.

出版信息

Molecules. 2019 Jun 14;24(12):2231. doi: 10.3390/molecules24122231.

Abstract

Cordycepin(3'-deoxyadenosine), a cytotoxic nucleoside analogue found in , has attracted much attention due to its therapeutic potential and biological value. Cordycepin interacts with multiple medicinal targets associated with cancer, tumor, inflammation, oxidant, polyadenylation of mRNA, etc. The investigation of the medicinal drug actions supports the discovery of novel targets and the development of new drugs to enhance the therapeutic potency and reduce toxicity. Cordycepin may be of great value owing to its medicinal potential as an external drug, such as in cosmeceutical, traumatic, antalgic and muscle strain applications. In addition, the biological application of cordycepin, for example, as a ligand, has been used to uncover molecular structures. Notably, studies that investigated the metabolic mechanisms of cordycepin-producing fungi have yielded significant information related to the biosynthesis of high levels of cordycepin. Here, we summarized the medicinal targets, biological applications, cytotoxicity, delivery carriers, stability, and pros/cons of cordycepin in clinical applications, as well as described the metabolic mechanisms of cordycepin in cordycepin-producing fungi. We posit that new approaches, including single-cell analysis, have the potential to enhance medicinal potency and unravel all facets of metabolic mechanisms of cordycepin in .

摘要

蛹虫草中的虫草素(3'-脱氧腺苷)是一种具有细胞毒性的核苷类似物,由于其治疗潜力和生物学价值而备受关注。虫草素与多种与癌症、肿瘤、炎症、氧化剂、mRNA 多聚腺苷酸化等相关的医学靶标相互作用。对药物作用的研究支持了新靶点的发现和新药的开发,以提高治疗效果并降低毒性。虫草素可能具有很高的价值,因为它具有作为外用药的药用潜力,例如在化妆品、创伤、止痛和肌肉劳损应用中。此外,虫草素的生物学应用,例如作为配体,已被用于揭示分子结构。值得注意的是,研究虫草素产生真菌的代谢机制的研究已经产生了与高水平虫草素生物合成相关的重要信息。在这里,我们总结了虫草素在医学靶标、生物学应用、细胞毒性、载体、稳定性、临床应用的优缺点以及虫草素产生真菌中的代谢机制。我们认为,单细胞分析等新方法有可能提高治疗效果,并揭示虫草素在蛹虫草中的代谢机制的各个方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff4a/6632035/8430c3807b3d/molecules-24-02231-g001.jpg

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