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pH 通用儿茶酚-胺化学用于多功能透明质酸生物粘合剂。

pH-Universal Catechol-Amine Chemistry for Versatile Hyaluronic Acid Bioadhesives.

机构信息

Department of Biotechnology, Yonsei University, Seoul, 03722, Republic of Korea.

CellArtgen Inc., Seoul, 03722, Republic of Korea.

出版信息

Small. 2022 Oct;18(41):e2202729. doi: 10.1002/smll.202202729. Epub 2022 Aug 21.

Abstract

Catechol, a major mussel-inspired underwater adhesive moiety, has been used to develop functional adhesive hydrogels for biomedical applications. However, oxidative catechol chemistry for interpolymer crosslinking and adhesion is exclusively effective under alkaline conditions, with limited applications in non-alkaline conditions. To overcome this limitation, pH-universal catechol-amine chemistry to recapitulate naturally occurring biochemical events induced by pH variation in the mussel foot is suggested. Aldehyde moieties are introduced to hyaluronic acid (HA) by partial oxidation, which enables dual-mode catechol tethering to the HA via both stable amide and reactive secondary amine bonds. Because of the presence of additional reactive amine groups, the resultant aldehyde-modified HA conjugated with catechol (AH-CA) is effectively crosslinked in acidic and neutral pH conditions. The AH-CA hydrogel exhibits not only fast gelation via active crosslinking regardless of pH conditions, but also strong adhesion and excellent biocompatibility. The hydrogel enables rapid and robust wound sealing and hemostasis in neutral and alkaline conditions. The hydrogel also mediates effective therapeutic stem cell and drug delivery even in dynamic and harsh environments, such as a motile heart and acidic stomach. Therefore, the AH-CA hydrogel can serve as a versatile biomaterial in a wide range of pH conditions in vivo.

摘要

儿茶酚是贻贝启发的水下黏附性主要成分之一,已被用于开发用于生物医学应用的功能性黏附水凝胶。然而,用于聚合物间交联和黏附的氧化儿茶酚化学仅在碱性条件下有效,在非碱性条件下应用有限。为了克服这一限制,建议使用 pH 通用儿茶酚-胺化学来重现贻贝足部 pH 变化诱导的天然生化事件。通过部分氧化将醛基引入透明质酸 (HA) 中,这使得儿茶酚能够通过稳定的酰胺和反应性仲胺键两种方式与 HA 进行双模式键合。由于存在额外的反应性胺基团,所得的醛修饰的透明质酸与儿茶酚缀合 (AH-CA) 在酸性和中性 pH 条件下有效交联。AH-CA 水凝胶不仅在无论 pH 条件下都能通过活性交联快速凝胶化,而且还具有很强的黏附性和良好的生物相容性。该水凝胶可在中性和碱性条件下迅速有效地密封和止血。该水凝胶甚至在动态和恶劣的环境(如活动的心脏和酸性胃)中也能介导有效的治疗性干细胞和药物输送。因此,AH-CA 水凝胶可以作为一种在体内广泛 pH 条件下具有多功能的生物材料。

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