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基于乙二醛腙键的聚乙二醇水凝胶用于阿霉素的共价包埋和控制释放

Glyoxylic Hydrazone Linkage-Based PEG Hydrogels for Covalent Entrapment and Controlled Delivery of Doxorubicin.

机构信息

Department of Chemistry , Indian Institute of Technology Ropar , Rupnagar 140 001 , Punjab , India.

出版信息

Biomacromolecules. 2019 Jun 10;20(6):2174-2184. doi: 10.1021/acs.biomac.9b00020. Epub 2019 May 7.

Abstract

Precise local delivery of chemotherapeutic agents employing an injectable depot could be a promising approach to achieve spatiotemporal control over the drug release along with minimizing the challenges associated with the systemic delivery of chemotherapeutic agents. In this regard, we report the development and evaluation of a poly(ethylene glycol) (PEG) hydrogel-based drug delivery platform for the covalent entrapment and sustained release of chemotherapeutic agents. The hydrogels were fabricated by cross-linking of 8-arm PEG glyoxylic aldehyde and 8-arm PEG hydrazine using glyoxylic hydrazone linkages, without employing small-molecule cross-linkers. The hydrogels displayed pH-responsive gelation and swelling pattern along with mechanical robustness, with storage modulus of up to 1650 Pa. Owing to the reversible nature of glyoxylic hydrazone linkages, hydrogels exhibited excellent thixotropic and self-healing characteristics. Doxorubicin (DOX) was covalently entrapped into the hydrogel matrix by attaching it to 8-arm PEG hydrazine in substoichiometric ratios, prior to fabrication of hydrogels. A controlled release of up to 81.33% DOX was obtained from 5% hydrogels after 40 days at tumoral pH (6.4 ± 0.05) and only 42.87% DOX at physiological pH (7.4 ± 0.05). The 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay and three-dimensional cell encapsulation studies using NIH-3T3 cell lines demonstrated the biocompatible nature of polymers as well as the hydrogel matrix. The multicellular tumor spheroid growth suppression studies demonstrated a 40.50% reduction in tumor area for the PEG-DOX conjugate, while a 29.27% reduction for hydrogel release media and 51.9% for the DOX. Both PEG-DOX and the release media were internalized into A549 cells, causing cell death. The present strategy can be employed for long-term sustained delivery of chemotherapeutic agents to locally accessible tumors or sites adjacent to tumor.

摘要

通过可注射储库精确地局部递药可能是一种很有前途的方法,可以实现药物释放的时空控制,同时最大限度地减少与全身递药相关的挑战。在这方面,我们报告了一种基于聚乙二醇(PEG)水凝胶的药物递送平台的开发和评估,用于共价包封和持续释放化疗药物。该水凝胶是通过 8 臂 PEG 乙二醛和 8 臂 PEG 腙在乙二醛腙键的作用下交联形成的,而无需使用小分子交联剂。水凝胶显示出 pH 响应的凝胶化和溶胀模式,以及机械强度,其存储模量高达 1650 Pa。由于乙二醛腙键的可逆性质,水凝胶表现出优异的触变和自修复特性。阿霉素(DOX)通过将其与亚化学计量比的 8 臂 PEG 腙连接,在水凝胶制备之前共价包封在水凝胶基质中。在肿瘤 pH(6.4 ± 0.05)下,5%的水凝胶 40 天后可达到高达 81.33%DOX 的控制释放,而在生理 pH(7.4 ± 0.05)下仅达到 42.87%DOX。3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴盐(MTT)测定法和使用 NIH-3T3 细胞系的三维细胞包封研究表明,聚合物和水凝胶基质具有生物相容性。多细胞肿瘤球体生长抑制研究表明,PEG-DOX 缀合物的肿瘤面积减少了 40.50%,而水凝胶释放介质减少了 29.27%,DOX 减少了 51.9%。PEG-DOX 和释放介质都被内化到 A549 细胞中,导致细胞死亡。该策略可用于将化疗药物长期持续递送到局部可及的肿瘤或紧邻肿瘤的部位。

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