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儿茶酚功能化弹性蛋白样多肽作为组织粘合剂。

Catechol-Functionalized Elastin-like Polypeptides as Tissue Adhesives.

机构信息

Department of Bioengineering, University of California, Berkeley, Berkeley, California 94720, United States.

Tsinghua Berkeley Shenzhen Institute, Berkeley, California 94720, United States.

出版信息

Biomacromolecules. 2020 Jul 13;21(7):2938-2948. doi: 10.1021/acs.biomac.0c00740. Epub 2020 Jun 29.

Abstract

Adhesives can potentially be used to achieve fast and efficient wound closure; however, current products show poor bonding on wet surfaces, undergo swelling, and lack adequate biocompatibility. We designed a hydrogel adhesive with recombinant elastin-like polypeptides (ELPs), which are flexible proteins that can be customized for biomedical needs. The adhesive proteins are synthesized by chemically modifying the ELPs with dopamine, which contain adhesive catechol moieties. The resulting catechol-functional ELPs or Cat-ELPs can form flexible hydrogels that show stable swelling in aqueous conditions at 37 °C. We demonstrate their flexibility and viscoelastic properties through rheology. We also show the advantage of using customizable recombinant proteins to improve the material biological properties by demonstrating improved fibroblast binding on Cat-ELP by adding ELP with "RGD" peptides. We further confirmed biocompatibility and biodegradation of Cat-ELP hydrogels by implanting them in mice and monitoring for 10 weeks. Finally, we tested the bonding strength of the adhesives on porcine skin through tensile pull-off and lap-shear testing, in which we found strengths of 37 and 39 kPa, respectively. We demonstrated the tensile bonding strength by suspending a 2 kg mass on a one square inch (6.5 cm) skin sample. As our adhesives are developed further, our strategy combining recombinant protein engineering and chemical modification will help yield an ideal bioadhesive for wound closure.

摘要

胶粘剂有可能被用于实现快速高效的伤口闭合;然而,目前的产品在湿表面的黏合性差、会发生肿胀,并且缺乏足够的生物相容性。我们设计了一种水凝胶胶粘剂,其中含有重组弹性蛋白样多肽 (ELP),这是一种具有柔韧性的蛋白质,可根据生物医学需求进行定制。通过化学修饰 ELP 使其带上多巴胺,得到的黏附性儿茶酚官能化 ELP 或 Cat-ELP 可以形成在 37°C 下在水性条件下具有稳定溶胀的柔性水凝胶。我们通过流变学证明了它们的柔韧性和黏弹性。我们还通过添加含有“RGD”肽的 ELP 来证明使用可定制重组蛋白改善材料生物特性的优势,从而展示了 Cat-ELP 对成纤维细胞结合能力的提高。我们进一步通过在小鼠体内植入 Cat-ELP 水凝胶并监测 10 周,证实了 Cat-ELP 水凝胶的生物相容性和可降解性。最后,我们通过拉伸剥离和搭接剪切测试来测试胶粘剂在猪皮上的黏合强度,分别得到 37 和 39 kPa 的强度。我们通过将 2 千克的质量悬挂在一平方英寸(6.5 厘米)的皮肤样本上,证明了拉伸黏合强度。随着我们的胶粘剂的进一步发展,我们将重组蛋白工程和化学修饰相结合的策略将有助于开发出理想的用于伤口闭合的生物胶粘剂。

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