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首页> 外文期刊>Acta biomaterialia >Preferential tumor accumulation and desirable interstitial penetration of poly(lactic-co-glycolic acid) nanoparticles with dual coating of chitosan oligosaccharide and polyethylene glycol-poly(D,L-lactic acid)
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Preferential tumor accumulation and desirable interstitial penetration of poly(lactic-co-glycolic acid) nanoparticles with dual coating of chitosan oligosaccharide and polyethylene glycol-poly(D,L-lactic acid)

机译:壳聚糖低聚糖和聚乙二醇-聚(D,L-乳酸)双涂层的聚(乳酸-乙醇酸共聚物)纳米颗粒的优先肿瘤积累和理想的间隙渗透

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Despite advances in polymeric nanoparticles (NPs) as effective delivery systems for anticancer drugs, rapid clearance from blood and poor penetration capacity in heterogeneous tumors still remain to be addressed. Here, a dual coating of poly (ethylene glycol)-poly (D,L-lactic acid) (PEG-PDLLA) and water-soluble chitosan oligosaccharide (CO) was used to develop PLGA-based NPs (PCPNPs) with colloidal stability for delivery of paclitaxel (PTX). The PCPNPs were prepared by a modified nanoprecipitation process and exhibited homogeneous size of 165.5 nm, and slight positive charge (+3.54 mV). The single PEG-PDLLA-coated PLGA NPs (PPNPs) with negative charge (-13.42 mV) were prepared as control. Human breast cancer MDA-MB-231 cell and mice MDA-MB-231 xenograft model were used for in vitro and in vivo evaluation. Compared to Taxol (R), both PCPNPs and PPNPs increased the intracellular uptake and exerted stronger inhibitory effect on tumor cells in vitro, especially for PCPNPs. Particularly, due to the near neutral surface charge and shielding by the dual coating, the blank cationic NP presented low cytotoxicity. With the synergistic action of PEG-PDLLA and CO, PCPNPs not only strongly inhibited macrophage uptake and extended the blood circulation time, but also improved the selective accumulation and interstitial penetration capacity to/in tumor site. Consequently, a significantly enhanced antitumor efficacy was observed for the cationic PCPNPs. Our findings suggest that, the dual PEG-PDLLA/CO coating can effective improve the tumor accumulation and interstitial penetration of NPs and, therefore may have great potential for tumor treatment.
机译:尽管作为有效的抗癌药物递送系统的聚合物纳米颗粒(NPs)取得了进步,但从血液中快速清除和在异质性肿瘤中的渗透能力差仍然有待解决。在这里,聚(乙二醇)-聚(D,L-乳酸)(PEG-PDLLA)和水溶性壳聚糖低聚糖(CO)的双重涂层被用于开发具有胶体稳定性的基于PLGA的NP(PCPNP),用于紫杉醇(PTX)的交付。 PCPNPs是通过改进的纳米沉淀工艺制备的,显示出165.5 nm的均一尺寸和少量正电荷(+3.54 mV)。制备具有负电荷(-13.42 mV)的单个PEG-PDLLA包被的PLGA NP(PPNP)作为对照。使用人乳腺癌MDA-MB-231细胞和小鼠MDA-MB-231异种移植模型进行体外和体内评估。与紫杉醇相比,PCPNPs和PPNPs均可增加细胞内摄取,并在体外对肿瘤细胞发挥更强的抑制作用,尤其是对PCPNPs。特别地,由于接近中性的表面电荷和被双重涂层的屏蔽,空白阳离子NP呈现出低细胞毒性。借助PEG-PDLLA和CO的协同作用,PCPNPs不仅可以强烈抑制巨噬细胞的摄取并延长血液循环时间,而且还可以提高对肿瘤部位的选择性积累和间隙渗透能力。因此,观察到阳离子PCPNPs的抗肿瘤功效显着增强。我们的发现表明,双重PEG-PDLLA / CO涂层可以有效改善NP的肿瘤积累和间质渗透,因此可能具有巨大的治疗潜力。

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