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载有长春瑞滨的多功能磁性纳米颗粒作为抗癌药物递送系统:合成、表征及体外释放研究。

Vinorelbine-loaded multifunctional magnetic nanoparticles as anticancer drug delivery systems: synthesis, characterization, and in vitro release study.

作者信息

Özcan Zeynep, Hazar Yoruç Afife Binnaz

机构信息

Yildiz Technical University, Faculty of Chemistry and Metallurgy, Department of Metallurgical and Materials Engineering, 34210, Istanbul, Turkey.

出版信息

Beilstein J Nanotechnol. 2024 Feb 28;15:256-269. doi: 10.3762/bjnano.15.24. eCollection 2024.

Abstract

In this study, a multifunctional therapeutic agent combining chemotherapy and photothermal therapy on a single platform has been developed in the form of vinorelbine-loaded polydopamine-coated iron oxide nanoparticles. Vinorelbine (VNB) is loaded on the surface of iron oxide nanoparticles produced by a solvothermal technique after coating with polydopamine (PDA) with varying weight ratios as a result of dopamine polymerisation and covalent bonding of thiol-polyethylene glycol (SH-PEG). The VNB/PDA/FeO nanoparticles have a saturation magnetisation value of 60.40 emu/g in vibrating sample magnetometry, which proves their magnetisation. Vinorelbine, which is used as an effective cancer therapy agent, is included in the nanocomposite structure, and in vitro drug release studies under different pH conditions (pH 5.5 and 7.4) and photothermal activity at 808 nm NIR laser irradiation are investigated. The comprehensive integration of precise multifunctional nanoparticles design, magnetic response, and controlled drug release with photothermal effect brings a different perspective to advanced cancer treatment research.

摘要

在本研究中,以负载长春瑞滨的聚多巴胺包覆氧化铁纳米粒子的形式,开发了一种在单一平台上结合化疗和光热疗法的多功能治疗剂。长春瑞滨(VNB)负载于通过溶剂热技术制备的氧化铁纳米粒子表面,在用多巴胺聚合以及巯基聚乙二醇(SH-PEG)共价键合形成不同重量比的聚多巴胺(PDA)包覆之后。在振动样品磁强计中,VNB/PDA/FeO纳米粒子的饱和磁化强度值为60.40 emu/g,这证明了它们的磁化特性。作为一种有效的癌症治疗剂的长春瑞滨被纳入纳米复合结构中,并研究了在不同pH条件(pH 5.5和7.4)下的体外药物释放研究以及在808 nm近红外激光照射下的光热活性。精确的多功能纳米粒子设计、磁响应以及光热效应控制药物释放的综合集成,为先进癌症治疗研究带来了不同的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7518/10910576/846045d4eae6/Beilstein_J_Nanotechnol-15-256-g002.jpg

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