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Preparation of PGA-PAE-Micelles for Enhanced Antitumor Efficacy of Cisplatin

机译:PGA-PAE-胶束的制备增强顺铂的抗肿瘤功效

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Poly-y-L-glutamic acid (PGA) is an outstanding drug carrier candidate owning to its excellent biodegradability and biocompatibility. The PGA carrier may shield toxic drugs from the body and enable the delivery of poorly soluble or unstable drugs and thereby minimize the side effects and improve drug efficacy. However, the limitation of PGA as a drug carrier is low drug loading efficiency (DLE), which is usually below 30%. In this study, we reported a chemical modification method using L-phenylalanine ethyl ester (PAE). PGA-PAE construct was amphiphilic, which could form micelles in aqueous solution. Cisplatin (CDDP), a commonly used chemotherapy drug whose side effect is well-known, was used as a model molecule to test the drug-loading efficiency of PGA-PAE. In this paper, two sizes of CDDP-loaded PGA-PAE micelles (M(Pt)-1 and M(Pt)-2) were prepared, the average diameter of M(Pt)-1 was 106 +/- 6 nm and M(Pt)-2 was 210 +/- 9 nm. The DLE of M(Pt)-1 and M(Pt)-2 was 52.8 +/- 2.2 and 55.8 +/- 1.2%, respectively. Both exhibited excellent biocompatibility, stability, and drug-retaining capability in physiological condition. The in vitro accumulative drug-releasing profile, IC50 for different tumor cell lines HeLa, A549, and HCCC9810, and in vivo pharmacokinetics were similar between these two micelles; however, M(Pt)-1 showed higher tumor tissue retention and longer efficient cancer cell internalization time (up to 20 d). Our results suggested PGA-PAE micelle carriers reduced the toxicity of CDDP and its size at around 100 nm was the better for CDDP high-efficacy.
机译:聚-Y-L-谷氨酸(PGA)是一种优异的药物载体候选物,其具有优异的生物降解性和生物相容性。 PGA载体可以保护来自身体的有毒药物,并能够递送差异或不稳定的药物,从而最小化副作用并提高药物功效。然而,PGA作为药物载体的限制是低药物负载效率(DLE),其通常低于30%。在这项研究中,我们报道了一种使用L-苯丙氨酸乙酯(PAE)的化学改性方法。 PGA-PAE构建体是两亲性,其可以在水溶液中形成胶束。顺铂(CDDP),常用的化疗药物涉及众所周知的副作用,用作试验PGA-PAE的药物负载效率的模型分子。在本文中,制备了两种尺寸的CDDP的PGA-PAE胶束(M(Pt)-1和M(Pt)-2),M(Pt)-1的平均直径为106 +/- 6nm和m(pt)-2为210 +/- 9 nm。 m(pt)-1和m(pt)-2的DLE分别为52.8 +/- 2.2和55.8 +/- 1.2%。两者都表现出优异的生物相容性,稳定性和药物保留能力在生理条件下。对于不同肿瘤细胞系HeLa,A549和HCCC9810的体外累积药物释放型材,IC50,以及在这两种胶束之间的体内药代动力学相似;然而,M(Pt)-1显示出更高的肿瘤组织保留和更长的癌细胞内化时间(最多20d)。我们的结果表明PGA-PAE胶束载体降低了CDDP的毒性,其尺寸约为100nm,对于CDDP高效率而言更好。

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