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pH 和谷胱甘肽响应水凝胶用于紫杉醇的局部递送。

pH and glutathion-responsive hydrogel for localized delivery of paclitaxel.

机构信息

Polymeric Materials Group for the Controlled Release of Bioactive Compounds in Biomedicine, Biochemistry and Molecular Biology Department, Facultad de Medicina, Universidad Complutense de Madrid, Madrid 28040, Spain.

Polymeric Materials Group for the Controlled Release of Bioactive Compounds in Biomedicine, Biochemistry and Molecular Biology Department, Facultad de Medicina, Universidad Complutense de Madrid, Madrid 28040, Spain.

出版信息

Colloids Surf B Biointerfaces. 2014 Apr 1;116:247-56. doi: 10.1016/j.colsurfb.2014.01.004. Epub 2014 Jan 9.

Abstract

pH and glutathion (GSH)- responsive nanogels (NGs) based on poly-N-isopropylacrilamide (NIPA), N-hydroxyethyl acrylamide (HEAA) and tert-butyl 2-acrylamidoethyl carbamate (2AAECM) were synthesized by a microemulsion polymerization method using N, N'-cystaminebisacrylamide (CBA) as a crosslinking agent and evaluated for passive targeting of paclitaxel (PTX). Physicochemical characterizations of unloaded and PTX-loaded NGs, such as particle size, morphology, encapsulation efficiency and in vitro PTX release were also assessed. Electron microscopy techniques (SEM and TEM) as well as dynamic light scattering (DLS) analysis showed nanosized spherical hydrogels. FTIR spectra confirmed the synthesis of nanogels by free radical polymerization among vinyl groups of monomers. In vitro release was analyzed by high-performance liquid chromatography (HPLC) and differences between two NG formulations were obtained. Nanogels released almost 64% of PTX after 50h at GSH concentrations equivalent to that in the cellular cytosol, whereas less PTX was released from NGs at pH and GSH levels similar to plasma. Cellular uptake and cytotoxicity were also demonstrated by using coumarin-6 and MTT assays, respectively, for three tumor cell lines (MCF7, HeLa and T47D). Cellular uptake assays revealed rapid uptake within 2h and intracellular accumulation of coumarin-6-loaded nanogels after 48 h incubation. MTT assays showed changes in cell viability at different concentrations of PTX formulations, as well as pure PTX (10 μM, 20 μM and 30 μM). To investigate PTX effect on cell viability, changes in cell cycle were examined by flow cytometry and a G2/M cell arrest was demonstrated. Overall, synthesized nanogels may be used as potential carriers for hydrophobic anticancer drugs.

摘要

基于聚 N-异丙基丙烯酰胺(NIPA)、N-羟乙基丙烯酰胺(HEAA)和叔丁基 2-丙烯酰胺乙基碳酸酯(2AAECM)的 pH 和谷胱甘肽(GSH)响应纳米凝胶(NGs)是通过微乳液聚合方法合成的,使用 N,N'-双(丙烯酰胺基)胱胺(CBA)作为交联剂,并评估其对紫杉醇(PTX)的被动靶向作用。还评估了未负载和负载 PTX 的 NGs 的物理化学特性,例如粒径、形态、包封效率和体外 PTX 释放。电子显微镜技术(SEM 和 TEM)以及动态光散射(DLS)分析表明纳米尺寸的球形水凝胶。傅里叶变换红外(FTIR)光谱证实了单体中乙烯基自由基聚合合成纳米凝胶。通过高效液相色谱法(HPLC)分析体外释放,并获得两种 NG 配方之间的差异。在 GSH 浓度相当于细胞胞质溶胶的情况下,纳米凝胶在 50 小时后释放了近 64%的 PTX,而在 pH 和 GSH 水平与血浆相似的情况下,纳米凝胶释放的 PTX 较少。还通过使用香豆素-6 和 MTT 测定法分别对三种肿瘤细胞系(MCF7、HeLa 和 T47D)进行细胞摄取和细胞毒性测试。细胞摄取实验显示,在孵育 48 小时后,香豆素-6 负载的纳米凝胶在 2 小时内迅速摄取并在细胞内积累。MTT 测定法显示不同浓度的 PTX 制剂以及纯 PTX(10 μM、20 μM 和 30 μM)对细胞活力的变化。为了研究 PTX 对细胞活力的影响,通过流式细胞术检查细胞周期的变化,并证明 G2/M 细胞停滞。总之,合成的纳米凝胶可用作疏水性抗癌药物的潜在载体。

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