Synthesis and in vitro evaluation of self-assembling biocompatible heparin-based targeting polymeric micelles for delivery of doxorubicin to leukemic cells.

IF 2.1 Q3 CHEMISTRY, MEDICINAL
Research in Pharmaceutical Sciences Pub Date : 2025-02-20 eCollection Date: 2025-02-01 DOI:10.4103/RPS.RPS_197_24
Jaber Emami, Moloud Kazemi, Mina Mirian
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引用次数: 0

Abstract

Background and purpose: Biodegradable polymeric micelles have emerged as one of the most promising platforms for targeted drug delivery. In the present study, a polymeric micelle composed of folic acid (FA), heparin (HEP), dexamethasone (DEX), and (FA-PEG-HEP-CA-TOC) was developed for the delivery of doxorubicin (DOX) to leukemic cells.

Experimental approach: FA-HEP-DEX was synthesized and characterized by 1H-NMR. DOX-loaded micelles were prepared using a dialysis method. The impact of various processing variables, including polymer-to-drug ratio, dialysis temperature, and solvent type, on the physicochemical properties of the micelles were evaluated. In vitro, cellular uptake and cytotoxicity of the micelles in folate receptor-positive (K562) and negative (HepG2) cells were evaluated.

Findings/results: The 1H-NMR results confirmed the successful synthesis of FA-HEP-DEX. DOX-loaded micelles exhibited an average particle size of 117 to 181 nm with a high drug entrapment efficiency (36% to 71%). DOX-loaded micelles also showed sustained drug-release behavior. DOX-loaded FA-HEP-DEX micelles exhibited higher cellular uptake and in vitro cytotoxicity than free DOX and DOX-loaded HEP-DEX micelles in K562 cells.

Conclusions and implications: DOX was well incorporated into the micelles with high entrapment efficiency due to high solubility of DOX in DEX as the hydrophobic component of the micelle structure. The higher cellular uptake and cell toxicity of targeted micelles correspond to the presence of FA on the micelle surface, which promotes cell internalization of the micelles viaspecific receptor-mediated endocytosis. Our results indicated the potential of DOX-loaded heparin-based micelles with desirable antitumor activity as a targeted drug delivery system in cancer therapy.

基于肝素的自组装生物相容性靶向聚合物胶束的合成及体外评价,用于向白血病细胞递送阿霉素。
背景与目的:可生物降解聚合物胶束已成为最有前途的靶向给药平台之一。在本研究中,一种由叶酸(FA)、肝素(HEP)、地塞米松(DEX)和FA- peg -HEP- ca - toc组成的聚合物胶束被开发出来,用于向白血病细胞递送阿霉素(DOX)。实验方法:合成FA-HEP-DEX,并用1H-NMR对其进行表征。采用透析法制备了dox负载胶束。考察了聚合物与药物比、透析温度、溶剂类型等工艺参数对胶束理化性质的影响。在体外,对叶酸受体阳性(K562)和阴性(HepG2)细胞中胶束的细胞摄取和细胞毒性进行了评估。发现/结果:1H-NMR结果证实FA-HEP-DEX成功合成。负载dox的胶束平均粒径为117 ~ 181 nm,具有较高的药物包封效率(36% ~ 71%)。负载dox的胶束也表现出持续的药物释放行为。在K562细胞中,负载DOX的FA-HEP-DEX胶束比自由DOX和负载DOX的HEP-DEX胶束表现出更高的细胞摄取和体外细胞毒性。结论和意义:由于DOX作为胶束结构的疏水组分在DEX中的高溶解度,DOX被很好地结合到胶束中,并具有高的包裹效率。靶向胶束的高细胞摄取和细胞毒性与胶束表面FA的存在相对应,这促进了特异性受体介导的胶束内吞作用的细胞内化。我们的研究结果表明,dox负载的肝素基胶束具有良好的抗肿瘤活性,可作为癌症治疗的靶向药物输送系统。
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来源期刊
Research in Pharmaceutical Sciences
Research in Pharmaceutical Sciences CHEMISTRY, MEDICINAL-
CiteScore
3.60
自引率
19.00%
发文量
50
审稿时长
34 weeks
期刊介绍: Research in Pharmaceutical Sciences (RPS) is included in Thomson Reuters ESCI Web of Science (searchable at WoS master journal list), indexed with PubMed and PubMed Central and abstracted in the Elsevier Bibliographic Databases. Databases include Scopus, EMBASE, EMCare, EMBiology and Elsevier BIOBASE. It is also indexed in several specialized databases including Scientific Information Database (SID), Google Scholar, Iran Medex, Magiran, Index Copernicus (IC) and Islamic World Science Citation Center (ISC).
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