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通过苯乙烯基芘的可逆[2 + 2]光环加成实现聚合物链的波长选择性耦合和解耦以构建细胞相容性光动力水凝胶

Wavelength-Selective Coupling and Decoupling of Polymer Chains via Reversible [2 + 2] Photocycloaddition of Styrylpyrene for Construction of Cytocompatible Photodynamic Hydrogels.

作者信息

Truong Vinh X, Li Fanyi, Ercole Francesca, Forsythe John S

机构信息

Department of Materials Science and Engineering, Monash Institute of Medical Engineering, Monash University, Clayton, 3800 VIC, Australia.

̀CSIRO Manufacturing, Bayview Avenue, Clayton, VIC 3168, Australia.

出版信息

ACS Macro Lett. 2018 Apr 17;7(4):464-469. doi: 10.1021/acsmacrolett.8b00099. Epub 2018 Mar 26.

Abstract

Reversible photocycloaddition reactions have previously been employed in chemical cross-linking for the preparation of biomaterial scaffolds. However, the processes require activation by high-energy UV light, rendering them unsuitable for modification in biological environments. Here we demonstrate that the [2 + 2] photocycloaddition of styrylpyrene can be activated by visible light at λ = 400-500 nm, enabling rapid and effective conjugation and cross-linking of poly(ethylene glycol) (PEG) in water and under mild irradiation conditions ( = 20 mW cm). Notably, the reversion of the cycloaddition can be triggered by low-energy UV light at λ = 340 nm, which allows for efficient cleavage of the dimer adduct. Using this wavelength-gated reversible photochemical reaction we are able to prepare PEG hydrogels and modulate their mechanical properties in a bidirectional manner. We also demonstrate healing of the fractured hydrogel by external light triggers. Furthermore, we show that human mesenchymal stem cells can be encapsulated within the gels with high viability post encapsulation. This photochemical approach is therefore anticipated to be highly useful in studies of cell mechanotransduction, with relevance to disease progression and tissue regeneration.

摘要

可逆光环加成反应此前已用于化学交联以制备生物材料支架。然而,这些过程需要高能紫外光激活,使其不适用于生物环境中的修饰。在此,我们证明了苯乙烯基芘的[2 + 2]光环加成反应可由波长为400 - 500 nm的可见光激活,从而能够在水中以及温和的辐照条件下(20 mW/cm²)实现聚乙二醇(PEG)的快速有效共轭和交联。值得注意的是,环加成反应的逆转可由波长为340 nm的低能紫外光触发,这使得二聚体加合物能够有效裂解。利用这种波长门控的可逆光化学反应,我们能够制备PEG水凝胶并以双向方式调节其机械性能。我们还展示了通过外部光触发使断裂的水凝胶愈合。此外,我们表明人骨髓间充质干细胞在封装后能够以高活力封装在凝胶中。因此,这种光化学方法预计在细胞机械转导研究中非常有用,与疾病进展和组织再生相关。

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