Rational targeting of autophagy in colorectal cancer therapy: From molecular interactions to pharmacological compounds

自噬 结直肠癌 癌症研究 癌变 癌症 转移 癌细胞 靶向治疗 医学 肿瘤进展 放射治疗 生物 细胞凋亡 内科学 生物化学
作者
Canhui Jin,Tianbao Wang,Yanhui Wang,Pin Zhou,Juncheng Li,Wei‐Tao Wu,Xin Lv,Guangfu Ma,Aihong Wang
出处
期刊:Environmental Research [Elsevier]
卷期号:227: 115721-115721 被引量:2
标识
DOI:10.1016/j.envres.2023.115721
摘要

The abnormal progression of tumors has been a problem for treatment of cancer and therapeutic should be directed towards targeting main mechanisms involved in tumorigenesis in tumors. The genomic mutations can result in changes in biological mechanisms in human cancers. Colorectal cancer is one of the most malignant tumors of gastrointestinal tract and its treatment has been faced some difficulties due to development of resistance in tumor cells and also, their malignant behavior. Hence, new therapeutic modalities for colorectal cancer are being investigated. Autophagy is a "self-digestion" mechanism that is responsible for homeostasis preserving in cells and its aberrant activation/inhibition can lead to tumorigenesis. The current review focuses on the role of autophagy mechanism in colorectal cancer. Autophagy may be associated with increase/decrease in progression of colorectal cancer due to mutual function of this molecular mechanism. Pro-survival autophagy inhibits apoptosis to increase proliferation and survival rate of colorectal tumor cells and it is also involved in cancer metastasis maybe due to EMT induction. In contrast, pro-death autophagy decreases growth and invasion of colorectal tumor cells. The status of autophagy (upregulation and down-regulation) is a determining factor for therapy response in colorectal tumor cells. Therefore, targeting autophagy can increase sensitivity of colorectal tumor cells to chemotherapy and radiotherapy. Interestingly, nanoparticles can be employed for targeting autophagy in cancer therapy and they can both induce/suppress autophagy in tumor cells. Furthermore, autophagy modulators can be embedded in nanostructures in improving tumor suppression and providing cancer immunotherapy.
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