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一种新型的亲脂性转铁蛋白包覆的脂囊泡作为药物载体递送到癌细胞。

A new formulation of hydrophobin-coated niosome as a drug carrier to cancer cells.

机构信息

Department of Chemistry, Shahid Bahonar University of Kerman, Kerman, Iran.

Department of Biotechnology, Institute of Science, High Technology and Environmental Sciences, Graduate University of Advanced Technology, Kerman, Iran.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Aug;113:110975. doi: 10.1016/j.msec.2020.110975. Epub 2020 Apr 18.

Abstract

Hydrophobin-1 (HFB-1) found on the surface of fungal spores, plays a role in the lack of antigen recognition by the host immune system. The present study aimed to evaluate the potential application of HFB-1 for the delivery of doxorubicin (Dox) into different cell lines. Coating the surface of niosomes (Nio) with HFB-1 leads to the hypothesis that this protein can confer protection against in vivo immune-system recognition and prevent the immune response. Thus, HFB-1 could become a promising alternative to polyethylene glycol (PEG). Here, HFB-1-coated niosome loaded with doxorubicin (Dox) based on Span 40, Tween 40 and cholesterol was prepared and compared with the PEG-coated niosome. Physicochemical characteristics of the prepared formulations in terms of size, zeta potential, polydispersity index (PDI), morphology, entrapment efficiency (EE), and release rate were evaluated at different pH levels (2, 5.2, and 7.4). In the end, the in vitro cytotoxicity assay was performed on four different cancer cell lines namely A549, MDA-MB-231, C6 and PC12 in addition to one control cell line (3 T3) to ensure the formulation's selectivity against cancer cells. Results showed that the niosomes coated with HFB-1 presented better size distribution, higher EE, more sustained release profile, enhanced biocompatibility and improved anticancer effects as compared to the PEG-coated niosomes. Interestingly, the viability percentage of the control cell line was higher than different cancer cells when treated with the formulations, which indicates the higher selectivity of the formulation against cancer cells. In conclusion, loading the niosomes with Dox and coating them with HFB-1 enhanced their efficacy and selectivity toward cancer cells, presenting a promising drug delivery system for sustained drug release in cancer treatment.

摘要

真菌孢子表面的疏水蛋白-1(HFB-1)在宿主免疫系统缺乏抗原识别中发挥作用。本研究旨在评估 HFB-1 将阿霉素(Dox)递送到不同细胞系的应用潜力。用 HFB-1 包被非离子囊泡(Nio),假设这种蛋白质可以提供对体内免疫系统识别的保护,防止免疫反应。因此,HFB-1 可能成为聚乙二醇(PEG)的一种有前途的替代品。在这里,制备了基于 Span 40、Tween 40 和胆固醇的载有阿霉素(Dox)的 HFB-1 包被非离子囊泡,并与 PEG 包被非离子囊泡进行了比较。在不同 pH 值(2、5.2 和 7.4)下,从粒径、Zeta 电位、多分散指数(PDI)、形态、包封效率(EE)和释放率等方面评价了制备配方的理化特性。最后,在体外对四种不同的癌细胞系(A549、MDA-MB-231、C6 和 PC12)和一种对照细胞系(3T3)进行了细胞毒性测定,以确保该制剂对癌细胞的选择性。结果表明,与 PEG 包被的非离子囊泡相比,用 HFB-1 包被的非离子囊泡具有更好的粒径分布、更高的 EE、更持续的释放曲线、增强的生物相容性和改善的抗癌效果。有趣的是,用制剂处理时,对照细胞系的存活率百分比高于不同的癌细胞系,这表明制剂对癌细胞具有更高的选择性。总之,将 Dox 载入非离子囊泡并用 HFB-1 包被可以增强其对癌细胞的疗效和选择性,为癌症治疗中持续释放药物提供了一种有前途的药物递送系统。

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