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α-硫辛酸的多功能固态医用胶水前体

Versatile Solid-State Medical Superglue Precursors of α-Lipoic Acid.

作者信息

Pal Subhajit, Salzman Erika E, Ramirez Dominic, Chen Hannah, Perez Cynthia A, Dale Katelyn, Ghosh Sujoy K, Lin Liwei, Messersmith Phillip B

机构信息

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

Department of Materials Science and Engineering, University of California, Berkeley, California 94720, United States.

出版信息

J Am Chem Soc. 2025 Apr 23;147(16):13377-13384. doi: 10.1021/jacs.4c18448. Epub 2025 Apr 10.

Abstract

α-Lipoic acid () is an attractive building block for medical adhesives. However, due to poor water solubility of and high hydrophobicity of poly(αLA), elevated temperatures, organic solvents, or complex preparations are typically required to obtain and deliver -based adhesives to biological tissue. Here, we report -based powder and low-viscosity liquid superglues that polymerize and bond rapidly upon contact with wet tissue. A monomeric mixture of sodium lipoate, and an activated ester of lipoic acid was used to formulate the versatile adhesives. Stress-strain measurements of the wet adhesives confirmed the high flexibility of the adhesive. Moreover, a small molecule regenerative drug was successfully incorporated into and released from the adhesive without altering the physical and adhesive properties. In vitro and in vivo studies of the developed adhesives confirmed their cell and tissue compatibility, biodegradability, and potential for sustained drug delivery. Moreover, due to the inherent ionic nature of the adhesives, they demonstrated high electric conductivity and sensitivity to deformation, allowing for the development of a tissue-adherent strain sensor.

摘要

α-硫辛酸()是医用粘合剂的一种有吸引力的构建模块。然而,由于的水溶性差以及聚(αLA)的高疏水性,通常需要高温、有机溶剂或复杂的制剂来制备并将基于的粘合剂递送至生物组织。在此,我们报道了基于的粉末状和低粘度液体强力胶水,它们在与湿组织接触时会迅速聚合并粘结。使用硫代苹果酸钠和硫辛酸的活化酯的单体混合物来配制这种多功能粘合剂。对湿粘合剂的应力-应变测量证实了粘合剂具有高柔韧性。此外,一种小分子再生药物成功地掺入粘合剂并从粘合剂中释放出来,而不会改变其物理和粘合性能。对所开发粘合剂的体外和体内研究证实了它们的细胞和组织相容性、生物可降解性以及持续药物递送的潜力。此外,由于粘合剂固有的离子性质,它们表现出高电导率和对变形的敏感性,从而能够开发出一种组织粘附应变传感器。

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