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用于程序性杀伤侵袭性肿瘤细胞的基质金属蛋白酶响应性水凝胶微孔板

Matrix metalloproteinase responsive hydrogel microplates for programmed killing of invasive tumour cells.

作者信息

Cook Alexander B, Palange Annalisa, Schlich Michele, Bellotti Elena, Brahmachari Sayanti, di Francesco Martina, Decuzzi Paolo

机构信息

Laboratory of Nanotechnology for Precision Medicine, Istituto Italiano di Tecnologia Via Morego 16163 Genova Italy

出版信息

RSC Appl Polym. 2023 Aug 14;1(1):19-29. doi: 10.1039/d3lp00057e. eCollection 2023 Sep 25.

Abstract

Interactive materials are an emerging class of systems that can offer control over response and adaptivity in polymer structures towards the meso- and macroscale. Here, we use enzyme regulated cleavage of peptide crosslinkers in polymer hydrogels to release a cytotoxic therapeutic nanoparticle with an adaptable mechanism. Hydrogel microplates were formed through polyethylene glycol/peptide photoinitiated thiol-ene chemistry in a soft-lithography process to give square plates of 20 by 20 μm with a height of 10 μm. The peptide was chosen to be degradable in the presence of matrix metalloproteinase 2/9 (MMP-2/9). The hydrogel material's mechanical properties, swelling, and protease degradation were characterised. The microfabricated hydrogels were loaded with docetaxel (DTXL) containing poly(dl-lactide--glycolide) (PLGA) nanoparticles, and characterised for enzyme responsivity, and toxicity to MMP-2/9 overexpressing brain cancer cell line U87-MG. A 5-fold decrease in EC was seen compared to free DTXL, and a 20-fold decrease was seen for the MMP responsive microplates a non-degradable control microplate. Potential applications of this system in post-resection glioblastoma treatment are envisioned.

摘要

交互式材料是一类新兴的系统,能够对聚合物结构中向中观和宏观尺度的响应及适应性进行控制。在此,我们利用聚合物水凝胶中肽交联剂的酶促裂解来释放具有适应性机制的细胞毒性治疗性纳米颗粒。通过聚乙二醇/肽光引发的硫醇-烯化学在软光刻工艺中形成水凝胶微孔板,得到边长为20×20μm、高度为10μm的方形板。选择在基质金属蛋白酶2/9(MMP-2/9)存在下可降解的肽。对水凝胶材料的力学性能、溶胀和蛋白酶降解进行了表征。将载有多西他赛(DTXL)的聚(dl-丙交酯-乙交酯)(PLGA)纳米颗粒负载到微加工的水凝胶中,并对其酶响应性以及对过表达MMP-2/9的脑癌细胞系U87-MG的毒性进行了表征。与游离DTXL相比,观察到EC降低了5倍,对于MMP响应微孔板 不可降解的对照微孔板,降低了20倍。设想了该系统在胶质母细胞瘤切除术后治疗中的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a74/10540463/ae20c48f85e6/d3lp00057e-f1.jpg

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