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双硫仑与紫杉醇的聚乙二醇化脂质体:一种针对化疗耐药性乳腺癌的有前景的化疗组合。

PEGylated Liposomes of Disulfiram and Paclitaxel: A Promising Chemotherapeutic Combination Against Chemoresistant Breast Cancer.

作者信息

Said Suliman Ammar, Rehmani Sahrish, Small Benjamin, Butcher Kate, Khoder Mouhamad, Kannappan Vinodh, Wang Weiguang, Elhissi Abdelbary, Najlah Mohammad

机构信息

Pharmaceutical Research Group, School of Allied Health, Faculty of Health, Education, Medicine and Social Care, Anglia Ruskin University, Bishops Hall Lane, Chelmsford CM1 1SQ, UK.

GMPriority Pharma Ltd., Priors Way, Coggeshall, Colchester CO6 1TW, UK.

出版信息

Pharmaceuticals (Basel). 2025 Mar 28;18(4):487. doi: 10.3390/ph18040487.

Abstract

Steric stabilization of liposomes using PEGylation has been used widely in pharmaceutical research to overcome the limitations of conventional liposomes and to extend circulation time. PEGylation tended to improve the physicochemical stability and reverse the chemoresistance in multidrug-resistant (MDR) breast cancer cell lines. In this study, PEGylated formulations of disulfiram (DS) and paclitaxel (PAC) were developed using the ethanol-based proliposome technology. : PEGylated liposomal formulations of disulfiram (DS) and paclitaxel (PAC) were developed using the ethanol-based proliposome approach combined with high-pressure homogenization (HPH). The liposomes were characterized for particle size, polydispersity index (PDI), zeta potential, drug loading efficiency (DLE%), and drug entrapment efficiency (DEE%). Cytotoxicity studies were performed on sensitive (MCF7, MDA-MB-231) and chemoresistant (MDA-MB-231) breast cancer cell lines using the MTT assay to assess the anti-ancer potential of the formulations. Synergistic cytotoxic effects of DS and PAC co-delivery were also evaluated. : There was no significant difference in drug loading (DLE%) and drug entrapment efficiency (EE%) between conventional liposomes and the developed PEGylated vesicles. DS demonstrated higher loading in liposomes than PAC, and a greater cytotoxic effect on both sensitive (MCF7 and MDA-MB-231) and chemoresistant (MDA-MB-231) human breast cancer cell lines. For both DS- and PAC-loaded liposomes, PEGylation did not compromise the cytotoxic effect on both sensitive and chemoresistant cells. Interestingly, the combination of DS- and PAC-loaded PEGylated liposomes had significantly higher cytotoxic effect and lower IC50 than that of each drug alone. : Overall, PEGylated liposomal formulation of DS and PAC acted synergistically to reverse the multidrug resistance in breast cancer cells and could serve as a promising system for delivery of PAC and DS simultaneously in one formulation using an alcohol-based proliposome formulation.

摘要

使用聚乙二醇化对脂质体进行空间稳定化已在药物研究中广泛应用,以克服传统脂质体的局限性并延长循环时间。聚乙二醇化倾向于改善多药耐药(MDR)乳腺癌细胞系中的物理化学稳定性并逆转化学抗性。在本研究中,采用基于乙醇的前体脂质体技术开发了双硫仑(DS)和紫杉醇(PAC)的聚乙二醇化制剂。:采用基于乙醇的前体脂质体方法结合高压均质化(HPH)技术,开发了双硫仑(DS)和紫杉醇(PAC)的聚乙二醇化脂质体制剂。对脂质体的粒径、多分散指数(PDI)、zeta电位、载药效率(DLE%)和包封率(DEE)进行了表征。使用MTT法对敏感(MCF7、MDA-MB-231)和耐药(MDA-MB-231)乳腺癌细胞系进行细胞毒性研究,以评估制剂的抗癌潜力。还评估了DS和PAC共递送的协同细胞毒性作用。:传统脂质体与所开发的聚乙二醇化囊泡之间的载药率(DLE%)和包封率(EE%)没有显著差异。DS在脂质体中的载药量高于PAC,并且对敏感(MCF7和MDA-MB-231)和耐药(MDA-MB-231)人乳腺癌细胞系均具有更大的细胞毒性作用。对于载有DS和PAC的脂质体,聚乙二醇化均未损害对敏感和耐药细胞的细胞毒性作用。有趣的是,载有DS和PAC的聚乙二醇化脂质体的组合具有比每种药物单独使用时显著更高的细胞毒性作用和更低的IC50。:总体而言,DS和PAC的聚乙二醇化脂质体制剂协同作用以逆转乳腺癌细胞中的多药耐药性,并且可以作为一种有前景的系统,用于使用基于醇的前体脂质体制剂在一种制剂中同时递送PAC和DS。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11d6/12030275/f4b1a2a9672c/pharmaceuticals-18-00487-g001.jpg

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