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基于丝素蛋白的具有半结晶微嵌段的形状记忆有机水凝胶。

Silk Fibroin-Based Shape-Memory Organohydrogels with Semicrystalline Microinclusions.

机构信息

Department of Chemistry, Istanbul Technical University, Maslak, Istanbul 34469, Turkey.

Department of Molecular Biology and Genetics, Istanbul Technical University, Maslak, Istanbul 34469, Turkey.

出版信息

ACS Appl Bio Mater. 2023 Apr 17;6(4):1594-1603. doi: 10.1021/acsabm.3c00017. Epub 2023 Mar 15.

Abstract

Inspired by nature, we designed organohydrogels (OHGs) consisting of a silk fibroin (SF) hydrogel as the continuous phase and the hydrophobic microinclusions based on semicrystalline poly(-octadecyl acrylate) (PC18A) as the dispersed phase. SF acts as a self-emulsifier to obtain oil-in-water emulsions, and hence, it is a versatile and green alternative to chemical emulsifiers. We first prepared a stable oil-in-water emulsion without an external emulsifier by dispersing the -octadecyl acrylate (C18A) monomer in an aqueous SF solution. To stabilize the emulsions for longer times, gelation in the continuous SF phase was induced by the addition of ethanol, which is known to trigger the conformational transition in SF from random coil to β-sheet structures. In the second step, in situ polymerization of C18A droplets in the emulsion system was conducted under UV light in the presence of a photoinitiator to obtain high-strength OHGs with shape-memory function, and good cytocompatibility. The incorporation of hydrophilic ,-dimethylacrylamide and noncrystallizable hydrophobic lauryl methacrylate units in the hydrogel and organogel phases of OHGs, respectively, further improved their mechanical and shape-memory properties. The shape-memory OHGs presented here exhibit switchable viscoelasticity and mechanics, a high Young's modulus (up to 4.3 ± 0.1 MPa), compressive strength (up to 2.5 ± 0.1 MPa), and toughness (up to 0.68 MPa).

摘要

受自然启发,我们设计了由丝素蛋白(SF)水凝胶作为连续相和基于半结晶聚(十八烷基丙烯酸酯)(PC18A)的疏水性微区作为分散相组成的有机水凝胶(OHGs)。SF 作为自乳化剂来获得油包水乳液,因此,它是化学乳化剂的一种通用且环保的替代品。我们首先通过将十八烷基丙烯酸酯(C18A)单体分散在 SF 水溶液中来制备无外加乳化剂的稳定油包水乳液。为了使乳液更稳定更长时间,通过添加乙醇来引发连续 SF 相中的凝胶化,这是众所周知的引发 SF 从无规线团到β-折叠结构的构象转变。在第二步中,在光引发剂存在下,通过紫外光在乳液体系中的 C18A 液滴原位聚合,得到具有形状记忆功能和良好细胞相容性的高强度 OHGs。亲水的 -二甲基丙烯酰胺和非结晶性疏水性月桂基甲基丙烯酸酯单元分别掺入 OHGs 的水凝胶和有机凝胶相中,进一步改善了它们的机械性能和形状记忆性能。这里呈现的形状记忆 OHGs 表现出可切换的粘弹性和力学性能,高杨氏模量(高达 4.3±0.1MPa)、压缩强度(高达 2.5±0.1MPa)和韧性(高达 0.68MPa)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28b5/10114111/5dcb812424d5/mt3c00017_0013.jpg

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