Synthesis, characterization, drug-loading capacity and safety of novel pH-independent amphiphilic amino acid copolymer micelles.

Jihui Tang, Jing Yao, Jingbo Shi, Qingping Xiao, Jianping Zhou, Feihu Chen
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引用次数: 14

Abstract

A novel block copolymer containing two polymeric components, poly(L-aspartic acid)-b-poly (L-phenylalanine) (PAA-PPA), was synthesized and its potential for the preparation of copolymer micelles with a poorly water-soluble drug was investigated in this study. The chemical structure and physical properties of PAA-PPA were characterized by FTIR, 1H NMR and TG. The degree of polymerization of PAA-PPA was calculated by analyzing the relative area of N-CH signal and C-CH3 of 1H NMR spectra. The critical micelle concentration (CMC) of the PAA-PPA achieved a minimum of 11.1 mg/L. Studies on the drug-free PAA-PPA solutions showed PAA-PPA aggregation into micellar type in the sub-150 nm size range. Furthermore, the size of the PAA-PPA micelles was found to be pH-independent between the pH range of 4.0 and 8.0, which could be favorable to avoid the limitation of the size change at the specified pH value seeking drug stability. 4-amino-2-trifluoromethyl-phenyl retinate (ATPR) was studied as a poorly water-soluble model drug. The drug-loading and entrapment efficiency of the ATPR-loaded PAA-PPA micelles were 30.9 wt% and 87.9 %, respectively. The high drug-loading and entrapment efficiency were due to the synergistic effect of the micellar encapsulation and the binding interaction between drug and PAA-PPA. The ATPR-loaded PAA-PPA micelles showed a narrow size distribution, low zeta potential, high drug-loading capacity and good stable. The PAA-PPA was safer than Tween-80 and Cremophor EL (CrmEL) as an injectable pharmaceutical adjuvant for ATPR as indicated by the hemolysis and cytotoxicity studies. The novel amphiphilic amino acid copolymer can be considered as a prospective injectable delivery system for ATPR in terms of the pH-independent, greater drug-loading capacity and safety.
新型不依赖ph的两亲性氨基酸共聚物胶束的合成、表征、载药能力和安全性。
合成了一种新型嵌段共聚物——聚(l -天冬氨酸)-聚(b-聚(l -苯丙氨酸)(PAA-PPA),研究了其与水溶性较差的药物制备共聚物胶束的潜力。采用FTIR、1H NMR和TG对PAA-PPA的化学结构和物理性质进行了表征。通过1H NMR分析N-CH信号与C-CH3的相对面积,计算PAA-PPA的聚合度。PAA-PPA的临界胶束浓度(CMC)最低达到11.1 mg/L。对无药PAA-PPA溶液的研究表明,PAA-PPA在150nm以下的粒径范围内呈胶束型聚集。此外,PAA-PPA胶束的大小在pH为4.0 ~ 8.0的范围内与pH无关,这有利于避免在特定pH值下胶束大小变化的限制。研究了4-氨基-2-三氟甲基苯基视黄酸酯(ATPR)作为难水溶性模型药物。载atpr的PAA-PPA胶束载药效率和包封效率分别为30.9%和87.9%。由于胶束包封的协同作用和药物与PAA-PPA的结合相互作用,使得PAA-PPA具有较高的载药量和包封效率。负载atpr的PAA-PPA胶束尺寸分布窄,zeta电位低,载药量大,稳定性好。溶血和细胞毒性研究表明,PAA-PPA作为ATPR的可注射药物佐剂比Tween-80和Cremophor EL (CrmEL)更安全。该新型两亲性氨基酸共聚物具有不依赖于ph、更大的载药量和安全性等优点,是一种有前景的ATPR注射给药系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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