基于缺口蛋白重塑的智能药物:一种用于肿瘤治疗的防御性靶向策略。

IF 8.1 1区 生物学 Q1 CELL BIOLOGY Cell Death & Disease Pub Date : 2024-08-28 DOI:10.1038/s41419-024-07008-7
Yuliang Sun, Yilin Lu, Xinze Li, Yanan He, Then Kong Yong, Cheong Soon Keng, Badrul Yahaya, Yanli Liu, Juntang Lin
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引用次数: 0

摘要

在肿瘤治疗过程中,全身给药会受到生物屏障的阻碍,导致大量药物分子滞留在健康组织中,造成不可避免的副作用。在肿瘤部位精确部署药物有望缓解这一现象。在此,我们以内抑素和 Her2(+)肿瘤为例,通过赋予间充质干细胞(MSCs)智能反应程序(iMSCEndostatin),开发出一种具有简单 "智慧 "的智能药物。它能自主感知并区分肿瘤细胞和非肿瘤细胞,在肿瘤信号和药物释放之间建立逻辑联系。使其能够选择性地在肿瘤部位部署药物,从而将药物的毒性锁定在肿瘤部位。与旨在提高病变部位药物浓度的传统攻击性靶向策略不同,智能药物更倾向于防御性策略,防止药物出现在健康组织中。
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Intelligent drugs based on notch protein remodeling: a defensive targeting strategy for tumor therapy.

In the process of tumor treatment, systemic drug administration is hindered by biological barriers, leading to the retention of a large number of drug molecules in healthy tissues and causing unavoidable side effects. The precise deployment of drugs at the tumor site is expected to alleviate this phenomenon. Here, we take endostatin and Her2 (+) tumors as examples and develop an intelligent drug with simple "wisdom" by endowing mesenchymal stem cells (MSCs) with an intelligent response program (iMSCEndostatin). It can autonomously perceive and distinguish tumor cells from non-tumor cells, establishing a logical connection between tumor signals and drug release. Enable it to selectively deploy drugs at the tumor site, thereby locking the toxicity of drugs at the tumor site. Unlike traditional aggressive targeting strategies that aim to increase drug concentration at the lesion, intelligent drugs are more inclined to be defensive strategies that prevent the presence of drugs in healthy tissues.

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来源期刊
Cell Death & Disease
Cell Death & Disease CELL BIOLOGY-
CiteScore
15.10
自引率
2.20%
发文量
935
审稿时长
2 months
期刊介绍: Brought to readers by the editorial team of Cell Death & Differentiation, Cell Death & Disease is an online peer-reviewed journal specializing in translational cell death research. It covers a wide range of topics in experimental and internal medicine, including cancer, immunity, neuroscience, and now cancer metabolism. Cell Death & Disease seeks to encompass the breadth of translational implications of cell death, and topics of particular concentration will include, but are not limited to, the following: Experimental medicine Cancer Immunity Internal medicine Neuroscience Cancer metabolism
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