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通过溶剂诱导相分离(SIPS)制备的 PDMS(星形)-PEG 水凝胶及其作为组织工程支架的潜在用途。

PDMS(star)-PEG hydrogels prepared via solvent-induced phase separation (SIPS) and their potential utility as tissue engineering scaffolds.

机构信息

Department of Biomedical Engineering, Texas A&M University, College Station, TX 77843-3120, USA.

出版信息

Acta Biomater. 2012 Dec;8(12):4324-33. doi: 10.1016/j.actbio.2012.07.034. Epub 2012 Jul 27.

Abstract

Inorganic-organic hydrogels based on methacrylated star polydimethylsiloxane (PDMS(star)-MA) and diacrylated poly(ethylene glycol) (PEG-DA) macromers were prepared via solvent-induced phase separation (SIPS). The macromers were combined in a dichloromethane precursor solution and sequentially photopolymerized, dried and hydrated. The chemical and physical properties of the hydrogels were further tailored by varying the number average molecular weight (M(n)) of PEG-DA (M(n)=3.4k and 6k gmol(-1)) as well as the weight percent ratio of PDMS(star)-MA (M(n)=7k gmol(-1)) to PEG-DA from 0:100 to 20:80. Compared to analogous hydrogels fabricated from aqueous precursor solutions, SIPS produced hydrogels with a macroporous morphology, a more even distribution of PDMS(star)-MA, increased modulus and enhanced degradation rates. The morphology, swelling ratio, mechanical properties, bioactivity, non-specific protein adhesion, controlled introduction of cell adhesion, and cytocompatibility of the hydrogels were characterized. As a result of their tunable properties, this library of hydrogels is useful to study material-guided cell behavior and ultimate tissue regeneration.

摘要

基于甲基丙烯酰化星型聚二甲基硅氧烷 (PDMS(star)-MA) 和二丙烯酰化聚乙二醇 (PEG-DA) 大分子单体的无机-有机水凝胶是通过溶剂诱导相分离 (SIPS) 制备的。大分子单体在二氯甲烷前体溶液中组合,并依次进行光聚合、干燥和水合。通过改变 PEG-DA 的数均分子量 (M(n))(M(n)=3.4k 和 6k gmol(-1)) 以及 PDMS(star)-MA (M(n)=7k gmol(-1)) 与 PEG-DA 的重量百分比比值 (0:100 至 20:80) 进一步调整水凝胶的化学和物理性质。与从水相前体溶液制备的类似水凝胶相比,SIPS 产生的水凝胶具有大孔形态、PDMS(star)-MA 分布更均匀、模量增加和降解速率提高。对水凝胶的形态、溶胀比、力学性能、生物活性、非特异性蛋白质黏附、细胞黏附的控制引入和细胞相容性进行了表征。由于其可调的性质,该水凝胶库可用于研究材料引导的细胞行为和最终的组织再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c15b/6420494/d47c6cfc4c4a/nihms-484323-f0001.jpg

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