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点击核酸包含共递药系统通过自噬和糖酵解的双向调控诱导细胞内稳态崩溃用于肿瘤治疗。

Click-Nucleic-Acid-Containing Codelivery System Inducing Collapse of Cellular Homeostasis for Tumor Therapy through Bidirectional Regulation of Autophagy and Glycolysis.

机构信息

Key Laboratory of Smart Drug Delivery, Ministry of Education, State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Department of Pharmaceutics, School of Pharmacy, Fudan University, Shanghai 201203, China.

出版信息

ACS Appl Mater Interfaces. 2020 Dec 30;12(52):57757-57767. doi: 10.1021/acsami.0c18361. Epub 2020 Dec 15.

Abstract

As a rapid proliferating tissue, tumor cells have to optimize nutrient utilization to withstand harsh conditions. Several approaches have been explored to inhibit the growth and metastasis of tumor by disrupting the reprogrammed tumor metabolism. However, nutrient limitations within solid tumors may induce the metabolic flexibility of malignant cells to sustain growth and survival using one nutrient to fill metabolite pools normally supplied by the other. To overcome this predicament, a promising click-nucleic-acid-containing platform for codelivery of rapamycin, anti-PFKFB4 siRNA, and targeting ligand aptamer AS1411 was applied. PFKFB4 could act as a promising target for tumor therapy for being a molecular fulcrum that could couple glycolysis to autophagy by promoting aggressive metastatic tumors. The downregulation of PFKFB4 can help inhibit the SRC3/Akt/mTOR pathway, leading autophagy to the direction of promoting apoptosis of tumor cells, which is induced by the collapse of tumor cellular homeostasis, while low dosages of rapamycin could decrease surgery-induced immune dysfunction. Enhanced tumor autophagy, favorable in vivo antitumor efficacy, and effective systematic immune activation are observed after treatment, suggesting that autophagy and glycolysis can serve as an integrated target for tumor treatment.

摘要

作为一种快速增殖的组织,肿瘤细胞必须优化营养利用以适应恶劣的条件。已经探索了几种方法来通过破坏重新编程的肿瘤代谢来抑制肿瘤的生长和转移。然而,实体瘤内的营养限制可能会诱导恶性细胞的代谢灵活性,以便在一种营养物质耗尽时,利用另一种营养物质来维持生长和存活。为了克服这一困境,应用了一种有前途的点击核酸包含平台,用于雷帕霉素、抗 PFKFB4 siRNA 和靶向配体适体 AS1411 的共递药。PFKFB4 可以作为肿瘤治疗的有希望的靶点,因为它可以通过促进侵袭性转移肿瘤来将糖酵解与自噬联系起来,作为分子支点。PFKFB4 的下调有助于抑制 SRC3/Akt/mTOR 通路,导致自噬向促进肿瘤细胞凋亡的方向发展,这是由肿瘤细胞内稳态崩溃引起的,而雷帕霉素的低剂量可以减少手术引起的免疫功能障碍。治疗后观察到增强的肿瘤自噬、有利的体内抗肿瘤疗效和有效的系统免疫激活,表明自噬和糖酵解可以作为肿瘤治疗的综合靶点。

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