IF 3.4 3区 医学 Q1 ENGINEERING, MULTIDISCIPLINARY
Faprathan Pikwong, Jiraporn Kamsarn, Wattanased Jarisarapurin, Phornsawat Baipaywad, Hansoo Park, Sarawut Kumphune
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引用次数: 0

摘要

心肌病是心力衰竭的病因之一,是全球死亡的主要原因,并可能导致明显的心肌异常。为了挽救患者的生命和提高他们的生活质量,人们发现、开发、研究和评估了多种治疗药物。有效给药可提高治疗效果,同时减少副作用。纳米颗粒(NPs)已被用于输送治疗药物,并在减轻心肌缺血/再灌注损伤方面显示出前景。然而,NPs 的重大局限性包括非特异性靶向性和免疫原性。为了改善心脏靶向性和生物相容性,有人提出了利用心脏细胞膜(cCM)涂层对 NPs 表面进行修饰的假设。在这里,我们从人类心室细胞系(AC16)中分离出了心细胞膜,合成了介孔二氧化硅纳米粒子(MSN),然后在其表面包覆了心细胞膜。与 MSN 相比,心脏细胞膜包覆的介孔二氧化硅纳米粒子(cCMCMSNs)不会显著改变药物(罗丹明 B)的包封效率和释放曲线。此外,与其他细胞类型相比,cCMCMSNs 还能显著增强 RhB 在心脏细胞中的特异性分布,且不会产生细胞毒性。为了评估免疫逃逸,将 cCMCMSNs 暴露于活化的巨噬细胞,结果表明 cCMCMSNs 被吞噬的程度低于 MSN。这项研究证明了在纳米粒子表面包覆心脏细胞膜的合成技术是一种纳米医药技术,它能增强对心脏细胞的选择性给药,有可能为心血管疾病的给药提供另一种方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cardiac Cell Membrane-Coated Nanoparticles as a Potential Targeted Delivery System for Cardiac Therapy.

Cardiomyopathies, a cause of heart failure, are a predominant cause of death globally and may lead to discernible myocardial abnormalities. Several therapeutic agents were discovered, developed, investigated, and evaluated to save patients' lives and improve their quality of life. The effective administration of drugs improves therapeutic outcomes while reducing side effects. Nanoparticles (NPs) have been utilised for the delivery of therapeutic agents and demonstrate promise in reducing myocardial ischaemia/reperfusion injury. However, significant limitations of NPs include non-specific targeting and immunogenicity. To improve cardiac targeting and biocompatibility, surface modifications using a cardiac cell membrane (cCM) coating on the surface of NPs have been hypothesised. Here, cCMs were isolated from the human ventricular cell line (AC16), and mesoporous silica nanoparticles (MSNs) were synthesised and then coated with cCMs. The cardiac cell membrane-coated mesoporous silica nanoparticles (cCMCMSNs) did not significantly alter the encapsulation efficiency or the release profile of the loaded drug (Rhodamine B) in comparison to MSN. Moreover, cCMCMSNs demonstrated a significantly enhanced distribution of RhB specifically to cardiac cells, compared to other cell types, without causing cytotoxicity. To evaluate immune escape, cCMCMSNs were exposed to activated macrophages, demonstrating that cCMCMSNs were phagocytosed to a lesser extent than MSN. This study demonstrated the synthesis of cardiac cell membranes coated on the surface of nanoparticles as nanomedicine technologies that enhance selective drug delivery to cardiac cells, potentially offering an alternate method for drug administration in cardiovascular diseases.

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来源期刊
Biomimetics
Biomimetics Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
3.50
自引率
11.10%
发文量
189
审稿时长
11 weeks
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