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整合化疗增敏与保护功能的肿瘤细胞可区分纳米药物

Tumor Cell Distinguishable Nanomedicine Integrating Chemotherapeutic Sensitization and Protection.

作者信息

Liu Sen, Shen Can, Qian Cheng, Wang Jianquan, Yang Zhongmei, Wei Yanchun, Quan Li, Pan Changjiang, Hu Yong, Ye Wei

机构信息

Jiangsu Provincial Engineering Research Center for Biomedical Materials and Advanced Medical Devices, Faculty of Mechanical and Material Engineering, Huaiyin Institute of Technology, Huaian, China.

Institute of Materials Engineering, Collaborative Innovation Center of Chemistry for Life Sciences, College of Engineering and Applied Sciences, Nanjing University, Nanjing, China.

出版信息

Front Bioeng Biotechnol. 2021 Nov 8;9:773021. doi: 10.3389/fbioe.2021.773021. eCollection 2021.

Abstract

Theoretically, with a high enough drug dosage, cancer cells could be eliminated. However, the dosages that can be administered are limited by the therapeutic efficacy and side effects of the given drug. Herein, a nanomedicine integrating chemotherapeutic sensitization and protection was developed to relieve the limitation of administration dosage and to improve the efficacy of chemotherapy. The nanomedicine was endowed with the function of synergistically controlled release of CO and drugs under near-infrared (NIR) light irradiation. CO photo-induced release system (COPIRS) was synthesized by constructing an electron excitation-electron transfer group-electron-induced CO release structure and was used as the hydrophobic part, and then hydrophilic polymer (polyethylene glycol; PEG) was introduced by a thermal-responsive groups (DA group), forming a near-infrared-induced burst-release nanocarrier. and experiments showed that the nanomedicine can distinguish between tumor and normal cells and regulates the resistance of these different cells through the controlled release of carbonic oxide (CO), simultaneously enhancing the efficacy of chemotherapy drugs on tumor cells and chemotherapeutic protection on normal cells. This strategy could solve the current limitations on dosages due to toxicity and provide a solution for tumor cure by chemotherapy.

摘要

理论上,给予足够高的药物剂量,癌细胞是可以被消除的。然而,所能给予的剂量受到特定药物的治疗效果和副作用的限制。在此,研发了一种整合化疗增敏和保护作用的纳米药物,以缓解给药剂量的限制并提高化疗效果。该纳米药物被赋予了在近红外(NIR)光照射下协同控制释放一氧化碳(CO)和药物的功能。通过构建电子激发-电子转移基团-电子诱导CO释放结构合成了CO光诱导释放系统(COPIRS),并将其用作疏水部分,然后通过热响应基团(DA基团)引入亲水性聚合物(聚乙二醇;PEG),形成近红外诱导的突释纳米载体。实验表明,该纳米药物能够区分肿瘤细胞和正常细胞,并通过一氧化碳(CO)的控制释放调节这些不同细胞的耐药性,同时增强化疗药物对肿瘤细胞的疗效以及对正常细胞的化疗保护作用。这一策略可以解决当前因毒性导致的剂量限制问题,并为通过化疗治愈肿瘤提供一种解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fc8/8631718/a3e95d0c5385/fbioe-09-773021-g001.jpg

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