Good's buffer based highly biocompatible ionic liquid modified PLGA nanoparticles for the selective uptake in cancer cells†

IF 6.4 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Gagandeep Singh, Gaya S. Dasanayake, Claylee M. Chism, Priyavrat Vashisth, Amandeep Kaur, Sandeep Kumar Misra, Joshua S. Sharp and Eden E. L. Tanner
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Abstract

Achieving safe and efficacious drug delivery is still an outstanding challenge. Herein we have synthesized 20 biocompatible good's buffer-based ionic liquids (GBILs) with a range of attractive properties for drug delivery applications. The synthesized GBILs were used to coat the surface of poly(lactic-co-glycolic acid) (PLGA) by nanoprecipitation-sonication and characterized by dynamic light scattering (DLS) and proton nuclear magnetic resonance (1H NMR) spectroscopy. The GBIL-modified PLGA NPs were then tested for their interaction with bio-interfaces such as serum proteins (using SDS-PAGE and LCMS) and red blood cells (RBCs) isolated from human and BALB/c mouse blood. In this report, we show that surface modification of PLGA with certain GBILs led to modulation of preferential cellular uptake towards human triple-negative breast cancer cells (MDA-MB-231) compared to human normal healthy breast cells (MCF-10A). For example, cholinium N,N-bis(2-hydroxyethyl)-2-aminoethane sulfonate (CBES) coated PLGA NPs were found to be selective for MDA-MB-231 cells (60.7 ± 0.7%) as compared to MCF-10A cells (27.3 ± 0.7%). In this way, GBIL-coatings have increased PLGA NP uptake in the cancer cells by 2-fold while decreasing the uptake towards normal healthy breast cells. Therefore, GBIL-modified nanoparticles could be a versatile platform for targeted drug delivery and gene therapy applications, as their surface properties can be tailored to interact with specific cell receptors and enhance cellular uptake. This formulation technique has shown promising results for targeting specific cells, which could be explored further for other cell types to achieve site-specific and efficient delivery of therapeutic agents.

Abstract Image

Good’s基于高生物相容性离子液体修饰的PLGA纳米颗粒在癌细胞中的选择性摄取
实现安全有效的给药仍然是一个突出的挑战。在此,我们合成了20种生物相容性良好的缓冲离子液体(GBILs),具有一系列具有吸引力的特性,可用于药物输送应用。采用纳米沉淀-超声技术将合成的GBILs涂覆在聚乳酸-羟基乙酸(PLGA)表面,并采用动态光散射(DLS)和质子核磁共振(1H NMR)光谱对其进行了表征。然后测试gbil修饰的PLGA NPs与生物界面的相互作用,如血清蛋白(使用SDS-PAGE和LCMS)和从人和BALB/c小鼠血液中分离的红细胞(rbc)。在本报告中,我们发现,与人类正常健康乳腺细胞(MCF-10A)相比,用某些GBILs修饰PLGA的表面导致了对人类三阴性乳腺癌细胞(MDA-MB-231)的优先细胞摄取的调节。例如,胆碱N,N-二(2-羟乙基)-2-氨基乙烷磺酸盐(CBES)包被的PLGA NPs对MDA-MB-231细胞的选择性为60.7±0.7%,而MCF-10A细胞的选择性为27.3±0.7%。通过这种方式,gbil涂层使癌细胞对PLGA NP的摄取增加了2倍,同时减少了对正常健康乳腺细胞的摄取。因此,gbil修饰的纳米颗粒可以成为靶向药物递送和基因治疗应用的通用平台,因为它们的表面特性可以与特定的细胞受体相互作用并增强细胞摄取。这种配方技术已经显示出针对特定细胞的有希望的结果,可以进一步探索其他细胞类型,以实现治疗药物的位点特异性和高效递送。
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来源期刊
Materials Chemistry Frontiers
Materials Chemistry Frontiers Materials Science-Materials Chemistry
CiteScore
12.00
自引率
2.90%
发文量
313
期刊介绍: Materials Chemistry Frontiers focuses on the synthesis and chemistry of exciting new materials, and the development of improved fabrication techniques. Characterisation and fundamental studies that are of broad appeal are also welcome. This is the ideal home for studies of a significant nature that further the development of organic, inorganic, composite and nano-materials.
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