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Comparison of hyaluronic acid-based micelles and polyethylene glycol-based micelles on reversal of multidrug resistance and enhanced anticancer efficacy in vitro and in vivo

机译:基于透明质酸的胶束和基于聚乙二醇的胶束在体内外逆转多药耐药性和增强的抗癌效力的比较

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摘要

Polyethylene glycol (PEG)-based block copolymer micelles and hyaluronic acid (HA)-based grafted copolymer micelles have been widely investigated in chemotherapy. In this study, to evaluate the differences among HA-based grafted polymer micelles, PEG-based block polymer micelles and the mixed of these two micelles in enhancing antitumor effects and overcoming MDR, two amphiphilic vitamin E succinate (VES) derivatives, HA VES (HA-g-VES) and PEG 2000 VES (TPGS2k), were applied as nanocarriers to prepare HA-VES micelles (HA-PMs), TPGS2k micelles (TPGS2k-PMs) and the mixed micelles (HA/TPGS2k-PMs) for the co-delivery of doxorubicin (DOX) and curcumin (Cur). With the addition of TPGS2k, the particle size of HA/TPGS2k-PMs (153.37 ± 1.00 nm) was smaller than that of HA-PMs (223.83 ± 1.84) but significantly larger than that of TPGS2k-PMs (about 20 nm). The loading efficiency of HA/TPGS2k-PMs was 7.10%, which was lower than HA-PMs (8.31 ± 0.15%) but higher than TPGS2k-PMs (4.38 ± 0.24%). In vitro, HA/TPGS2k-PMs and TPGS2k-PMs exhibited higher cytotoxicity and reversal MDR effects than HA-PMs in MCF-7/Adr cells. However, HA/TPGS2k-PMs, HA-PMs and TPGS2k-PMs all significantly improved the tumor biodistribution, the antitumor effects and reduced the side effects of DOX in 4T1-tumor-bearing mice, but these three micelles displayed no differences in vivo. Therefore, EPR passive targeting effects caused by PEGylated micelles and CD44 active targeting effects caused by HA-based micelles have no significant variance in the delivery of antitumor drugs by i.v.
机译:在化学疗法中,已广泛研究了基于聚乙二醇(PEG)的嵌段共聚物胶束和基于透明质酸(HA)的接枝共聚物胶束。在这项研究中,为了评估基于HA的接枝聚合物胶束,基于PEG的嵌段聚合物胶束以及这两种胶束的混合物在增强抗肿瘤作用和克服MDR方面的区别,两种两亲性维生素E琥珀酸酯(VES)衍生物HA VES( HA-g-VES)和PEG 2000 VES(TPGS2k)被用作纳米载体,以制备HA-VES胶束(HA-PMs),TPGS2k胶束(TPGS2k-PMs)和混合胶束(HA / TPGS2k-PMs)。阿霉素(DOX)和姜黄素(Cur)的共同投放。加入TPGS2k后,HA / TPGS2k-PMs的粒径(153.37±1.00 nm)小于HA-PMs(223.83±1.84nm),但明显大于TPGS2k-PMs(约20 nm)。 HA / TPGS2k-PMs的负载效率为7.10%,低于HA-PMs(8.31±0.15%),但高于TPGS2k-PMs(4.38±0.24%)。在体外,在MCF-7 / Adr细胞中,HA / TPGS2k-PMs和TPGS2k-PMs比HA-PMs表现出更高的细胞毒性和逆转MDR效应。然而,HA / TPGS2k-PMs,HA-PMs和TPGS2k-PMs均显着改善了4T1荷瘤小鼠的肿瘤生物分布,抗肿瘤作用并降低了DOX的副作用,但是这三个胶束在体内没有表现出差异。因此,由PEG化胶束引起的EPR被动靶向作用和由基于HA的胶束引起的CD44主动靶向作用在静脉输注抗肿瘤药物方面没有显着差异。

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