School of Post-Baccalaureate Medicine, Kaohsiung Medical University, Kaohsiung 80708, Taiwan.
Department of Radiation Oncology, Kaohsiung Medical University Hospital, Kaohsiung Medical University, Kaohsiung 80708, Taiwan.
Int J Mol Sci. 2023 Aug 4;24(15):12449. doi: 10.3390/ijms241512449.
Exosomes are cell-derived membranous structures primarily involved in the delivery of the payload to the recipient cells, and they play central roles in carcinogenesis and metastasis. Radiotherapy is a common cancer treatment that occasionally generates exosomal miRNA-associated modulation to regulate the therapeutic anticancer function and side effects. Combining radiotherapy and natural products may modulate the radioprotective and radiosensitizing responses of non-cancer and cancer cells, but there is a knowledge gap regarding the connection of this combined treatment with exosomal miRNAs and their downstream targets for radiation and exosome biogenesis. This review focuses on radioprotective natural products in terms of their impacts on exosomal miRNAs to target radiation-modulating and exosome biogenesis (secretion and assembly) genes. Several natural products have individually demonstrated radioprotective and miRNA-modulating effects. However, the impact of natural-product-modulated miRNAs on radiation response and exosome biogenesis remains unclear. In this review, by searching through PubMed/Google Scholar, available reports on potential functions that show radioprotection for non-cancer tissues and radiosensitization for cancer among these natural-product-modulated miRNAs were assessed. Next, by accessing the miRNA database (miRDB), the predicted targets of the radiation- and exosome biogenesis-modulating genes from the Gene Ontology database (MGI) were retrieved bioinformatically based on these miRNAs. Moreover, the target-centric analysis showed that several natural products share the same miRNAs and targets to regulate radiation response and exosome biogenesis. As a result, the miRNA-radiomodulation (radioprotection and radiosensitization)-exosome biogenesis axis in regard to natural-product-mediated radiotherapeutic effects is well organized. This review focuses on natural products and their regulating effects on miRNAs to assess the potential impacts of radiomodulation and exosome biogenesis for both the radiosensitization of cancer cells and the radioprotection of non-cancer cells.
外泌体是一种主要参与将有效载荷递送到受体细胞的细胞衍生的膜状结构,它们在癌症发生和转移中发挥核心作用。放射治疗是一种常见的癌症治疗方法,偶尔会产生外泌体 miRNA 相关调节作用,以调节治疗性抗癌功能和副作用。将放射治疗与天然产物相结合可以调节非癌细胞和癌细胞的放射保护和放射增敏反应,但对于这种联合治疗与外泌体 miRNA 及其下游靶标对辐射和外泌体生物发生的联系,存在知识空白。本综述重点关注放射保护天然产物对其靶向调节辐射和外泌体生物发生(分泌和组装)基因的外泌体 miRNA 的影响。几种天然产物单独显示出放射保护和 miRNA 调节作用。然而,天然产物调节的 miRNA 对辐射反应和外泌体生物发生的影响仍不清楚。在本综述中,通过在 PubMed/Google Scholar 上搜索,评估了这些天然产物调节的 miRNA 中显示非癌细胞放射保护和癌细胞放射增敏作用的潜在功能的可用报告。接下来,通过访问 miRNA 数据库(miRDB),根据这些 miRNA 从基因本体数据库(MGI)中检索与辐射和外泌体生物发生调节基因相关的预测靶标。此外,基于靶标分析表明,几种天然产物共享相同的 miRNA 和靶标来调节辐射反应和外泌体生物发生。结果,miRNA 辐射调节(放射保护和放射增敏)-外泌体生物发生轴在天然产物介导的放射治疗效果方面得到了很好的组织。本综述重点关注天然产物及其对 miRNA 的调节作用,以评估放射调节和外泌体生物发生对癌细胞放射增敏和非癌细胞放射保护的潜在影响。