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pH 和还原双重响应纳米凝胶作为智能纳米载体抵抗阿霉素聚集。

pH and Reduction Dual-Responsive Nanogels as Smart Nanocarriers to Resist Doxorubicin Aggregation.

机构信息

Department of Organic Chemistry, Bioorganic Chemistry and Biotechnology, Faculty of Chemistry, Silesian University of Technology, Krzywoustego 4, 44-100 Gliwice, Poland.

Biotechnology Center, Silesian University of Technology, Krzywoustego 8, 44-100 Gliwice, Poland.

出版信息

Molecules. 2022 Sep 14;27(18):5983. doi: 10.3390/molecules27185983.

Abstract

The use of smart nanocarriers that can modulate therapeutic release aided by biological cues can prevent undesirable cytotoxicity caused by the premature release of cytotoxic drugs during nanocarrier circulation. In this report, degradable nanocarriers based on pH/reduction dual-responsive nanogels were synthesized to encapsulate doxorubicin hydrochloride (DOX) and specifically boost the release of DOX in conditions characteristic of the cancer microenvironment. Nanogels containing anionic monomer 2-carboxyethyl acrylate (CEA) and '-bis(acryloyl)cystamine (CBA) as a degradable crosslinker have been successfully synthesized via photoinitiated free radical polymerization. The loading process was conducted after polymerization by taking advantage of the electrostatic interaction between the negatively charged nanogels and the positively charged DOX. In this case, a high drug loading capacity (DLC) of up to 27.89% was achieved. The entrapment of DOX into a nanogel network could prevent DOX from aggregating in biological media at DOX concentrations up to ~160 µg/mL. Anionic nanogels had an average hydrodynamic diameter (d) of around 90 nm with a negative zeta (ζ) potential of around -25 mV, making them suitable for targeting cancer tissue via the enhanced permeation effect. DOX-loaded nanogels formed a stable dispersion in different biological media, including serum-enriched cell media. In the presence of glutathione (GSH) and reduced pH, drug release was enhanced, which proves dual responsivity. An in vitro study using the HCT 116 colon cancer cell line demonstrated the enhanced cytotoxic effect of the NG-CBA/DOX-1 nanogel compared to free DOX. Taken together, pH/reduction dual-responsive nanogels show promise as drug delivery systems for anticancer therapy.

摘要

使用能够通过生物信号调节治疗释放的智能纳米载体,可以防止纳米载体循环过程中细胞毒性药物过早释放而导致的不良细胞毒性。在本报告中,合成了基于 pH/还原双重响应纳米凝胶的可降解纳米载体,以包封盐酸阿霉素(DOX),并在癌症微环境特征条件下特异性促进 DOX 的释放。通过光引发自由基聚合成功合成了含有阴离子单体 2-羧乙基丙烯酰胺(CEA)和双(丙烯酰基)半胱氨酸(CBA)作为可降解交联剂的纳米凝胶。聚合后通过纳米凝胶与带正电荷的 DOX 之间的静电相互作用进行载药过程。在这种情况下,实现了高达 27.89%的高载药量(DLC)。DOX 被包埋在纳米凝胶网络中,可以防止 DOX 在 DOX 浓度高达约 160μg/mL 的生物介质中聚集。阴离子纳米凝胶的平均水动力直径(d)约为 90nm,带负电荷的 ζ 电位约为-25mV,使其适合通过增强的渗透效应靶向癌症组织。载有 DOX 的纳米凝胶在不同的生物介质中形成稳定的分散体,包括富含血清的细胞培养基。在谷胱甘肽(GSH)和还原 pH 的存在下,药物释放得到增强,证明了双重响应性。使用 HCT 116 结肠癌细胞系进行的体外研究表明,与游离 DOX 相比,NG-CBA/DOX-1 纳米凝胶具有增强的细胞毒性作用。综上所述,pH/还原双重响应纳米凝胶有望成为抗癌治疗的药物递送系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e38/9505369/c114f4f47b74/molecules-27-05983-g001.jpg

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