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超高模量水凝胶模拟人体软骨。

Ultra-High Modulus Hydrogels Mimicking Cartilage of the Human Body.

机构信息

Department of Biomedical Engineering, Texas A&M University, College Station, TX, 77843-3003, USA.

Department of Biomedical Engineering, Rensselaer Polytechnic Institute, Troy, NY, 12180-3590, USA.

出版信息

Macromol Biosci. 2022 Nov;22(11):e2200283. doi: 10.1002/mabi.202200283. Epub 2022 Sep 7.

Abstract

The human body is comprised of numerous types of cartilage with a range of high moduli, despite their high hydration. Owing to the limitations of cartilage tissue healing and biological grafting procedures, synthetic replacements have emerged but are limited by poorly matched moduli. While conventional hydrogels can achieve similar hydration to cartilage tissues, their moduli are substantially inferior. Herein, triple network (TN) hydrogels are prepared to synergistically leverage intra-network electrostatic repulsive and hydrophobic interactions, as well as inter-network electrostatic attractive interactions. They are comprised of an anionic 1 network, a neutral 2 network (capable of hydrophobic associations), and a cationic 3 network. Collectively, these interactions act synergistically as effective, yet dynamic crosslinks. By tuning the concentration of the cationic 3 network, these TN hydrogels achieve high moduli of ≈1.5 to ≈3.5 MPa without diminishing cartilage-like water contents (≈80%), strengths, or toughness values. This unprecedented combination of properties poises these TN hydrogels as cartilage substitutes in applications spanning articulating joints, intervertebral discs (IVDs), trachea, and temporomandibular joint disc (TMJ).

摘要

人体由多种类型的软骨组成,这些软骨的模量很高,尽管它们的水合程度很高。由于软骨组织愈合和生物移植程序的限制,已经出现了合成替代品,但这些替代品受到模量匹配不佳的限制。虽然传统的水凝胶可以达到与软骨组织相似的水合程度,但它们的模量要低得多。本文制备了三重网络(TN)水凝胶,以协同利用网络内静电排斥和疏水相互作用以及网络间静电吸引相互作用。它们由阴离子 1 网络、中性 2 网络(能够发生疏水缔合)和阳离子 3 网络组成。这些相互作用协同作用,形成有效的、动态的交联。通过调节阳离子 3 网络的浓度,这些 TN 水凝胶的模量可达到约 1.5 至 3.5 MPa,而不会降低类似软骨的含水量(约 80%)、强度或韧性值。这种前所未有的性能组合使这些 TN 水凝胶有望成为关节、椎间盘(IVD)、气管和颞下颌关节盘(TMJ)等应用中的软骨替代品。

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