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基于透明质酸/葡聚糖的聚合物胶束共递送熊果酸和阿霉素至线粒体以增强多药耐药性癌症的化疗。

Hyaluronic acid/dextran-based polymeric micelles co-delivering ursolic acid and doxorubicin to mitochondria for potentiating chemotherapy in MDR cancer.

机构信息

Research Center for Health and Nutrition, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China.

Research Center for Health and Nutrition, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China; Pharmacy Department, Shanghai TCM-integrated Hospital, Shanghai University of Traditional Chinese Medicine, Shanghai 200082, China.

出版信息

Carbohydr Polym. 2024 May 15;332:121897. doi: 10.1016/j.carbpol.2024.121897. Epub 2024 Feb 6.

Abstract

Cancer multidrug resistance (MDR) dramatically hindered the efficiency of standard chemotherapy. Mitochondria are highly involved in the occurrence and development of MDR; thus, inducing its malfunction will be an appealing strategy to treat MDR tumors. In this paper, a natural polysaccharides-based nanoplatform (TDTD@UA/HA micelles) with cell and mitochondria dual-targeting ability was facilely fabricated to co-deliver ursolic acid (UA) and doxorubicin (DOX) for combinatorial MDR therapy. TDTD@UA/HA micelles featured a spherical morphology, narrow size distribution (∼140 nm), as well as favorable drug co-loading capacity (DOX: 8.41 %, UA: 9.06 %). After hyaluronic acid (HA)-mediated endocytosis, the lysosomal hyaluronidase promoted the degradation of HA layer and then the positive triphenylphosphine groups were exposed, which significantly enhanced the mitochondria-accumulation of nano micelles. Subsequently, DOX and UA were specifically released into mitochondria under the trigger of endogenous reactive oxygen species (ROS), followed by severe mitochondrial destruction through generating ROS, exhausting mitochondrial membrane potential, and blocking energy supply, etc.; ultimately contributing to the susceptibility restoration of MCF-7/ADR cells to chemotherapeutic agents. Importantly, TDTD@UA/HA micelles performed potent anticancer efficacy without distinct toxicity on the MDR tumor-bearing nude mice model. Overall, the versatile nanomedicine represented a new therapeutic paradigm and held great promise in overcoming MDR-related cancer.

摘要

癌症多药耐药性(MDR)极大地阻碍了标准化疗的效率。线粒体在 MDR 的发生和发展中高度参与;因此,诱导其功能障碍将是治疗 MDR 肿瘤的一种有吸引力的策略。在本文中,制备了一种具有细胞和线粒体双重靶向能力的天然多糖基纳米平台(TDTD@UA/HA 胶束),以共递送熊果酸(UA)和阿霉素(DOX)用于联合 MDR 治疗。TDTD@UA/HA 胶束具有球形形态、窄的粒径分布(∼140nm)以及良好的药物共载能力(DOX:8.41%,UA:9.06%)。在透明质酸(HA)介导的内吞作用后,溶酶体透明质酸酶促进 HA 层的降解,然后暴露正三苯基膦基团,这显著增强了纳米胶束的线粒体积累。随后,在内源性活性氧物质(ROS)的触发下,DOX 和 UA 特异性释放到线粒体中,随后通过产生 ROS、耗尽线粒体膜电位和阻断能量供应等方式导致严重的线粒体破坏;最终有助于 MCF-7/ADR 细胞对化疗药物的敏感性恢复。重要的是,TDTD@UA/HA 胶束在 MDR 荷瘤裸鼠模型中表现出强大的抗癌功效,而没有明显的毒性。总体而言,这种多功能纳米药物代表了一种新的治疗范例,有望克服与 MDR 相关的癌症。

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