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天然衍生双网络水凝胶在柔性黏附传感器中的应用。

Naturally derived double-network hydrogels with application as flexible adhesive sensors.

机构信息

School of Mechanics and Safety Engineering, Zhengzhou University, Zhengzhou 450001, China.

School of Mechanics and Safety Engineering, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Int J Biol Macromol. 2024 Oct;277(Pt 2):134131. doi: 10.1016/j.ijbiomac.2024.134131. Epub 2024 Jul 27.

DOI:10.1016/j.ijbiomac.2024.134131
PMID:39074703
Abstract

Hydrogels have been widely used in the biomedical field, including wearable sensors and biological adhesives. However, achieving a balance between various functionalities, such as wet adhesion, stable conductivity, and biocompatibility, in one customized hydrogel has been a challenging issue. In this study, we developed a multifunctional hydrogel comprising recombinant human collagen (RHC) and aldehyde-modified sodium alginate (Ald-alginate), which was primarily crosslinked through a Schiff-base reaction and metal chelation. Due to the combination of a dynamic covalent crosslinking network (imine linkage between RHC and Ald-alginate) and a dynamic ionic crosslinking network (ionic bonding between Ca and Ald-alginate), the hydrogel exhibited excellent self-healing and injectable behaviors. Benefiting from the high Ca content, the hydrogel also attained antifreezing and conductivity properties. In addition to its excellent conductivity and biocompatibility, the hydrogel exhibited strong wet tissue adhesion ability and could adhere rapidly and strongly to the surfaces of various objects or biological tissues, forming a good sealing environment. Moreover, the hydrogel could be directly adhered to a tissue surface as a flexible sensor to accurately detect physiological signals. The versatility of this multifunctional hydrogel will open new avenues for biomedical applications, such as bioadhesives and biosensing.

摘要

水凝胶在生物医学领域得到了广泛应用,包括可穿戴传感器和生物粘合剂。然而,在一个定制化的水凝胶中实现各种功能(如湿黏附性、稳定的导电性和生物相容性)之间的平衡一直是一个具有挑战性的问题。在本研究中,我们开发了一种多功能水凝胶,由重组人胶原蛋白(RHC)和醛修饰的海藻酸钠(Ald-alginate)组成,主要通过席夫碱反应和金属螯合交联。由于动态共价交联网络(RHC 和 Ald-alginate 之间的亚胺键)和动态离子交联网络(Ca 和 Ald-alginate 之间的离子键)的结合,水凝胶表现出优异的自修复和可注射性能。得益于高 Ca 含量,水凝胶还具有抗冻结和导电性。除了出色的导电性和生物相容性外,水凝胶还具有很强的湿组织黏附能力,能够快速且牢固地黏附在各种物体或生物组织的表面,形成良好的密封环境。此外,水凝胶可以直接黏附在组织表面作为柔性传感器,以准确地检测生理信号。这种多功能水凝胶的多功能性将为生物医学应用开辟新的途径,如生物粘合剂和生物传感。

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