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首页> 外文期刊>International Journal of Nanomedicine >Synergistic and complete reversal of the multidrug resistance of mitoxantrone hydrochloride by three-in-one multifunctional lipid-sodium glycocholate nanocarriers based on simultaneous BCRP and Bcl-2 inhibition
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Synergistic and complete reversal of the multidrug resistance of mitoxantrone hydrochloride by three-in-one multifunctional lipid-sodium glycocholate nanocarriers based on simultaneous BCRP and Bcl-2 inhibition

机译:基于同时的BCRP和Bcl-2抑制作用的三合一多功能脂质胆酸钠纳米载体协同和完全逆转盐酸米托蒽醌的多药耐药性

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摘要

Multidrug resistance (MDR) is a severe obstacle to successful chemotherapy due to its complicated nature that involves multiple mechanisms, such as drug efflux by transporters (P-glycoprotein and breast cancer resistance protein, BCRP) and anti-apoptotic defense (B-cell lymphoma, Bcl-2). To synergistically and completely reverse MDR by simultaneous inhibition of pump and non-pump cellular resistance, three-in-one multifunctional lipid-sodium glycocholate (GcNa) nanocarriers (TMLGNs) have been designed for controlled co-delivery of water-soluble cationic mitoxantrone hydrochloride (MTO), cyclosporine A (CsA – BCRP inhibitor), and GcNa (Bcl-2 inhibitor). GcNa and dextran sulfate were incorporated as anionic compounds to enhance the encapsulation efficiency of MTO (up to 97.8%±1.9%) and sustain the release of cationic MTO by electrostatic interaction. The results of a series of in vitro and in vivo investigations indicated that the TMLGNs were taken up by the resistant cancer cells by an endocytosis pathway that escaped the efflux induced by BCRP, and the simultaneous release of CsA with MTO further efficiently inhibited the efflux of the released MTO by BCRP; meanwhile GcNa induced the apoptosis process, and an associated synergistic antitumor activity and reversion of MDR were achieved because the reversal index was almost 1.0.
机译:多药耐药性(MDR)由于其复杂的性质涉及多种机制,例如转运蛋白的药物外排(P-糖蛋白和乳腺癌耐药蛋白,BCRP)和抗凋亡防御(B细胞淋巴瘤),因此是成功化疗的严重障碍。 ,Bcl-2)。为了通过同时抑制泵浦和非泵浦细胞抗性来协同和完全逆转MDR,已设计了三合一多功能脂质胆酸钠(GcNa)纳米载体(TMLGNs)用于控制共递送水溶性阳离子米托蒽醌盐酸盐(MTO),环孢菌素A(CsA – BCRP抑制剂)和GcNa(Bcl-2抑制剂)。将GcNa和硫酸葡聚糖作为阴离子化合物掺入,以提高MTO的包封效率(高达97.8%±1.9%),并通过静电相互作用维持阳离子MTO的释放。一系列体外和体内研究的结果表明,TMLGNs通过逃逸BCRP诱导的流出的胞吞途径被耐药性癌细胞吸收,并且与MTO同时释放CsA进一步有效地抑制了TMLGNs的流出。 BCRP发布的MTO;同时,GcNa诱导细胞凋亡过程,并且由于逆转指数几乎为1.0,因此实现了相关的协同抗肿瘤活性和MDR逆转。

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