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二价金属阳离子对光交联蛋白工程水凝胶构象、弹性行为和控制释放的影响。

Effect of Divalent Metal Cations on the Conformation, Elastic Behavior, and Controlled Release of a Photocrosslinked Protein Engineered Hydrogel.

机构信息

Department of Chemical and Biomolecular Engineering, New York University Tandon School of Engineering, Brooklyn, New York 11201, United States.

Department of Chemistry, New York University, New York, New York 10003, United States.

出版信息

ACS Appl Bio Mater. 2021 Apr 19;4(4):3587-3597. doi: 10.1021/acsabm.1c00091. Epub 2021 Mar 24.

Abstract

We investigate the effect of Zn, Cu, and Ni coordination on the conformation, mechanical properties, contraction, and small-molecule drug encapsulation and release of a photocrosslinked protein-engineered hydrogel, CEC-D. The treatment of the CEC-D hydrogel with divalent metal (M) results in significant conformational changes where a loss in structure is observed with Zn, while both Cu and Ni induce a blueshift. The relationship of M to mechanical properties illustrates a trend, while the CEC-D hydrogel in the presence of 2 mM Cu reveals the highest increase in ' to 14.4 ± 0.7 kPa followed by 9.7 ± 0.9 kPa by addition of 2 mM Zn, and a decrease to 1.1 ± 0.2 kPa is demonstrated in the presence of 2 mM Ni. A similar observation in M responsiveness emerges where CEC-D hydrogels contract into a condensed state of 2.6-fold for Cu, 2.4-fold for Zn, and 1.6-fold for Ni. Furthermore, CEC-D hydrogels coordinated with M demonstrate control over the encapsulation and release of the small molecule curcumin. The trend of release is opposite of the mechanical and contraction properties with a 70.0 ± 5.3% release with Ni, 64.2 ± 1.2% release with Zn, and 42.3 ± 11.3 release with Cu. Taken together, these results indicate that the CEC-D hydrogel tuned by M is a promising drug delivery platform with tunable physicochemical properties.

摘要

我们研究了 Zn、Cu 和 Ni 配位对光交联蛋白工程水凝胶 CEC-D 的构象、力学性能、收缩以及小分子药物包封和释放的影响。用二价金属(M)处理 CEC-D 水凝胶会导致显著的构象变化,其中 Zn 导致结构丧失,而 Cu 和 Ni 则导致蓝移。M 与力学性能的关系表明了一种趋势,而在存在 2mM Cu 的情况下,CEC-D 水凝胶的 '增加到 14.4 ± 0.7kPa,随后添加 2mM Zn 增加到 9.7 ± 0.9kPa,而存在 2mM Ni 时则降低到 1.1 ± 0.2kPa。在 M 响应性方面也观察到类似的情况,其中 CEC-D 水凝胶在 Cu 存在下收缩到 2.6 倍的凝聚态,在 Zn 存在下收缩到 2.4 倍,在 Ni 存在下收缩到 1.6 倍。此外,与 M 配位的 CEC-D 水凝胶可以控制小分子姜黄素的包封和释放。释放趋势与力学和收缩性能相反,Ni 释放 70.0 ± 5.3%,Zn 释放 64.2 ± 1.2%,Cu 释放 42.3 ± 11.3%。总之,这些结果表明,经 M 调谐的 CEC-D 水凝胶是一种具有可调理化性质的有前途的药物输送平台。

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