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主动靶向氧化还原响应多功能胶束用于癌症协同化疗

Actively Targeting Redox-Responsive Multifunctional Micelles for Synergistic Chemotherapy of Cancer.

作者信息

Darge Haile Fentahun, Addisu Kefyalew Dagnew, Tsai Hsieh-Chih, Birhan Yihenew Simegniew, Hanurry Endris Yibru, Mekonnen Tefera Worku, Gebrie Hailemichael Tegenu, Arunagiri Vinothini, Thankachan Darieo, Wu Tsung-Yun, Lai Juin-Yih, Chang Hao-Ming, Huang Chun-Chiang, Wu Szu-Yuan

机构信息

Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, Taipei 10607, Taiwan.

College of Medicine and Health Science, Bahir Dar University, P.O. Box 79, Bahir Dar 00000, Ethiopia.

出版信息

ACS Omega. 2024 Jul 29;9(32):34268-34280. doi: 10.1021/acsomega.3c09817. eCollection 2024 Aug 13.

Abstract

Stimuli-responsive polymeric micelles decorated with cancer biomarkers represent an optimal choice for drug delivery applications due to their ability to enhance therapeutic efficacy while mitigating adverse side effects. Accordingly, we synthesized a digoxin-modified novel multifunctional redox-responsive disulfide-linked poly(ethylene glycol--poly(lactic--glycolic acid) copolymer (Bi(Dig-PEG-PLGA)-S) for the targeted and controlled release of doxorubicin (DOX) in cancer cells. Within the micellar aggregate, the disulfide bond confers redox responsiveness, while the presence of the digoxin moiety acts as a targeting agent and chemosensitizer for DOX. Upon self-assembly in aqueous solution, Bi(Dig-PEG-PLGA)-S formed uniformly distributed spherical micelles with a hydrodynamic diameter ( ) of 58.36 ± 0.78 nm and a zeta potential of -24.71 ± 1.01 mV. The micelles exhibited desirable serum and colloidal stability with a substantial drug loading capacity (DLC) of 6.26% and an encapsulation efficiency (EE) of 83.23%. In addition, the release of DOX demonstrated the redox-responsive behavior of the micelles, with approximately 89.41 ± 6.09 and 79.64 ± 6.68% of DOX diffusing from DOX@Bi(Dig-PEG-PLGA)-S in the presence of 10 mM GSH and 0.1 mM HO, respectively, over 96 h. Therefore, in HeLa cell lines, DOX@Bi(Dig-PEG-PLGA)-S showed enhanced intracellular accumulation and subsequent apoptotic effects, attributed to the targeting ability and chemosensitization potential of digoxin. Hence, these findings underscore the promising characteristics of Bi(Dig-PEG-PLGA)-S as a multifunctional drug delivery vehicle for cancer treatment.

摘要

用癌症生物标志物修饰的刺激响应性聚合物胶束是药物递送应用的理想选择,因为它们能够提高治疗效果,同时减轻不良副作用。因此,我们合成了一种地高辛修饰的新型多功能氧化还原响应性二硫键连接的聚(乙二醇 - 聚(乳酸 - 乙醇酸)共聚物(Bi(Dig-PEG-PLGA)-S),用于在癌细胞中靶向和控释阿霉素(DOX)。在胶束聚集体中,二硫键赋予氧化还原响应性,而地高辛部分的存在则作为DOX的靶向剂和化学增敏剂。在水溶液中自组装后,Bi(Dig-PEG-PLGA)-S形成均匀分布的球形胶束,其流体动力学直径( )为58.36±0.78nm,zeta电位为-24.71±1.01mV。胶束表现出理想的血清和胶体稳定性,具有6.26%的高载药量(DLC)和83.23%的包封率(EE)。此外,DOX的释放证明了胶束的氧化还原响应行为,在10 mM GSH和0.1 mM HO存在下,分别有大约89.41±6.09%和79.64±6.68%的DOX在96小时内从DOX@Bi(Dig-PEG-PLGA)-S中扩散出来。因此,在HeLa细胞系中,DOX@Bi(Dig-PEG-PLGA)-S显示出增强的细胞内积累和随后的凋亡效应,这归因于地高辛的靶向能力和化学增敏潜力。因此,这些发现强调了Bi(Dig-PEG-PLGA)-S作为癌症治疗多功能药物递送载体的有前景的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80cc/11325410/c52bf2869cdc/ao3c09817_0001.jpg

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