Liu Chunyan, Xu Mengzhen, Yan Luocheng, Wang Yulian, Zhou Zhen, Wang Shaocong, Sun Yajie, Zhang Junfeng, Dong Lei
State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, 163 Xianlin Avenue, Nanjing, 210093, China.
Chin Med. 2021 Jun 29;16(1):49. doi: 10.1186/s13020-021-00453-y.
Honeysuckle is a time-honored herb with anticancer activity in traditional Chinese medicine. Recently, accumulating reports are suggesting that the microRNAs in this medicinal plant not only play a physiological role in their original system, but also can be transmitted to another species as potential therapeutic components. In the numerous bioactive investigations, the anti-tumor effects of these microRNAs in the magical herb are rarely studied, especially the special miR2911, a honeysuckle-encoded atypical microRNA, with high stability during the boiling process and unique biological activity to target TGF-β1 mRNA.
Luciferase assay was conducted to test the ability of miR2911 to target TGF-β1 mRNA. ELISA was performed to determine the expression level of TGF-β1 of mouse colorectal adenocarcinoma CT26 cells when treated with miR2911 and tumor tissue in Sidt1 and Sidt1 mice. qRT-PCR was performed to examine the level of expression of miR2911. Tumor-bearing wild and nude mice were employed to evaluate the anti-tumor effect of honeysuckle and miR2911 in vivo. Tumor tissue necrosis was observed by H&E staining. Besides, the infiltration of T lymphocytes across solid tumors was tested by immunostaining staining.
Our results showed that honeysuckle slowed the development of colon cancer down. Further research showed that miR2911 could bind strongly to TGF-β1 mRNA and down-regulate the expression of TGF-β1 and had a high stability under boiling and acid condition. Moreover, SIDT1 mediated dietary miR2911 inter-species absorption. And we found that miR2911 had a similar anticancer effect as honeysuckle. Mechanistically, miR2911 reversed the tumor-promoting effect of TGF-β1 by an increase of T lymphocytes infiltration, resulting in slowing the colon cancer process in immunocompetent mice. Consistent with this inference, the anti-tumor effect of miR2911 was revealed to be abolished in T cell immune deficiency mice.
Taken together, honeysuckle-derived miR2911 showed an anti-tumor effect in colon cancer through targeting TGF-β1 mRNA. The down-regulation of TGF-β1 promoted T lymphocytes infiltration, and accordingly impeded the colon tumor development.
金银花是一种在传统中药中具有抗癌活性的历史悠久的草药。最近,越来越多的报道表明,这种药用植物中的微小RNA不仅在其原始系统中发挥生理作用,还可以作为潜在的治疗成分传递到另一个物种。在众多生物活性研究中,这些微小RNA在这种神奇草药中的抗肿瘤作用很少被研究,尤其是特殊的miR2911,一种金银花编码的非典型微小RNA,在煮沸过程中具有高稳定性,并对靶向TGF-β1 mRNA具有独特的生物学活性。
进行荧光素酶测定以测试miR2911靶向TGF-β1 mRNA的能力。用ELISA法测定miR2911处理小鼠结肠腺癌CT26细胞及Sidt1和Sidt1小鼠肿瘤组织中TGF-β1的表达水平。用qRT-PCR检测miR2911的表达水平。采用荷瘤野生型和裸鼠评价金银花和miR2911在体内的抗肿瘤作用。通过苏木精-伊红染色观察肿瘤组织坏死情况。此外,通过免疫染色检测T淋巴细胞在实体瘤中的浸润情况。
我们的结果表明金银花减缓了结肠癌的发展。进一步研究表明,miR2911能与TGF-β1 mRNA强烈结合,下调TGF-β1的表达,且在煮沸和酸性条件下具有高稳定性。此外,SIDT1介导膳食miR2911的种间吸收。并且我们发现miR2911具有与金银花相似的抗癌作用。机制上,miR2911通过增加T淋巴细胞浸润逆转TGF-β1的促肿瘤作用,从而减缓免疫健全小鼠的结肠癌进程。与此推断一致,miR2911的抗肿瘤作用在T细胞免疫缺陷小鼠中被消除。
综上所述,金银花来源的miR2911通过靶向TGF-β1 mRNA在结肠癌中显示出抗肿瘤作用。TGF-β1的下调促进了T淋巴细胞浸润,从而阻碍了结肠肿瘤的发展。