Biomaterial Research Laboratory, Department of Material Science and Engineering, College of Chemistry and Materials, Jinan University, Guangzhou 510632, PR China.
Biomaterial Research Laboratory, Department of Material Science and Engineering, College of Chemistry and Materials, Jinan University, Guangzhou 510632, PR China; Engineering Research Center of Artificial Organs and Materials, Ministry of Education, Guangzhou 510632, PR China.
Int J Biol Macromol. 2023 Mar 15;231:123335. doi: 10.1016/j.ijbiomac.2023.123335. Epub 2023 Jan 20.
As a particular cell niche, natural bone extracellular matrix (ECM) is an organic-inorganic composite material formed by mineralization of liquid crystal (LC) collagen fiber network. However, designing bone repair materials that highly imitate the LC characteristic and composite components of natural bone ECM is a great challenge. Here, we report a novel kind of bone ECM-inspired biomineralization chitin whisker LC hydrogels. First, photocurable chitin whisker LC hydrogels with bone ECM-like chiral nematic LC state and viscoelasticity are created. Next, biomineralization, guided by LC hydrogels, is carried out to truly mimic the mineralization process of natural bone, so as to obtain the organic-inorganic composite materials with bone ECM-like microenvironment. The chitin whisker LC hydrogels exhibit superior biomineralization, protein adsorption and osteogenesis ability, more importantly, LC hydrogel with negatively charged -COOH groups is more conducive to biomineralization and shows more desirable osteogenic activity than that with positively charged -NH groups. Notably, compared with the pristine LC hydrogels, the biomineralization LC hydrogels display more favorable osteogenesis ability due to their bone ECM-like LC texture and bone-like hydroxyapatite. This study opens an avenue toward the design of bone ECM-inspired biomineralization chitin whisker LC hydrogels for bone regeneration.
作为一种特殊的细胞龛,天然骨细胞外基质(ECM)是由液晶(LC)胶原纤维网络矿化形成的有机-无机复合材料。然而,设计高度模拟天然骨 ECM 的 LC 特征和复合成分的骨修复材料是一个巨大的挑战。在这里,我们报告了一种新型的骨 ECM 启发的生物矿化几丁质晶须 LC 水凝胶。首先,创建了具有骨 ECM 样手性向列 LC 态和粘弹性的光固化几丁质晶须 LC 水凝胶。接下来,通过 LC 水凝胶进行生物矿化,真正模拟天然骨的矿化过程,从而获得具有骨 ECM 样微环境的有机-无机复合材料。几丁质晶须 LC 水凝胶表现出优异的生物矿化、蛋白质吸附和成骨能力,更重要的是,带负电荷 -COOH 基团的 LC 水凝胶比带正电荷 -NH 基团的 LC 水凝胶更有利于生物矿化,表现出更理想的成骨活性。值得注意的是,与原始 LC 水凝胶相比,由于其具有骨 ECM 样的 LC 结构和类骨羟基磷灰石,生物矿化 LC 水凝胶显示出更有利的成骨能力。这项研究为骨再生的骨 ECM 启发的生物矿化几丁质晶须 LC 水凝胶的设计开辟了一条新途径。