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亲水性和两亲性水溶性树枝状聚合物前药,适合非水溶性非核苷 HIV-1 逆转录酶抑制剂硫代氨基甲酸酯衍生物的肠胃外给药。

Hydrophilic and amphiphilic water-soluble dendrimer prodrugs suitable for parenteral administration of a non-soluble non-nucleoside HIV-1 reverse transcriptase inhibitor thiocarbamate derivative.

机构信息

Dipartimento di Farmacia, Università di Genova, Viale Cembrano 4, I-16148 Genova, Italy.

Dipartimento di Farmacia, Università di Genova, Viale Cembrano 4, I-16148 Genova, Italy.

出版信息

Eur J Pharm Sci. 2018 Nov 1;124:153-164. doi: 10.1016/j.ejps.2018.08.036. Epub 2018 Aug 28.

DOI:10.1016/j.ejps.2018.08.036
PMID:30170211
Abstract

Drugs delivered by proper carriers enter into the cells much more rapidly and carry out their action much more promptly than in the free forms. A high drug concentration can be sustained for longer periods of time at the target site in the cell. In in vivo conditions, this would translate into a reduction of systemic toxicity, dosage and frequency of dosing. Dendritic polymers significantly affect drug delivery in terms of reaching the target site, modifying the bio-distribution of the drug, and enhancing the efficacy of different drugs including anticancer compounds. 2-({[2-({[(2-tolyl)amino]carbonothioyl}oxy)ethyl]amino}carbo-nyl)benzoic acid 1 is a thiocarbamate derivative belonging to an already reported class of non-nucleoside HIV-1 reverse transcriptase inhibitors. In in vitro assay it showed no cytotoxic effects but was endowed with very low solubility and poor activity against wild-type HIV-1 (EC = 27 μM). With the aim at improving its water solubility, 1 has been successfully incorporated inside non-toxic amino acids-modified core-shell hetero dendrimers. IR, NMR, zeta potential, mean size of particles, buffer capacity and in vitro release profile of prepared materials were reported. All dendriplexes were evaluated in cell-based assays to assess their cytotoxic profile. The obtained complexes, which harmonize a peripheral polycationic character and a buffer capacity which presuppose efficient cells penetration and increased residence time with a not PAMAM structured biodegradable scaffold, were well water-soluble and could rationally appear as a promising set of prodrugs for safe in vivo administrations.

摘要

适当载体输送的药物比游离形式更快地进入细胞,并更迅速地发挥作用。在细胞内的靶部位,药物浓度可以在更长的时间内保持较高水平。在体内条件下,这将转化为降低全身毒性、减少剂量和给药频率。树突状聚合物在到达靶部位、改变药物的生物分布以及增强不同药物(包括抗癌化合物)的疗效方面,对药物输送有显著影响。2-({[2-({[(2-甲苯基)氨基]碳硫代酰基}氧基)乙基]氨基}羰基)苯甲酸 1 是一种硫代氨基甲酸酯衍生物,属于已报道的非核苷 HIV-1 逆转录酶抑制剂类别。在体外试验中,它没有显示出细胞毒性作用,但具有非常低的溶解度和对野生型 HIV-1 的低活性(EC=27 μM)。为了提高其水溶性,1 已成功地被包裹在非毒性氨基酸修饰的核壳杂树突聚合物中。报道了所制备材料的 IR、NMR、zeta 电位、平均粒径、缓冲能力和体外释放曲线。所有的树突状聚合物都在基于细胞的测定中进行了评估,以评估其细胞毒性特征。所得到的复合物具有外周阳离子特性和缓冲能力,这意味着能够有效地穿透细胞并增加停留时间,同时具有非 PAMAM 结构的可生物降解支架,具有良好的水溶性,并且可以作为一组有前途的前药,用于安全的体内给药。

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