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一种具有 3D 打印潜力的超分子可注射丙烯酰化壳聚糖-三嗪基水凝胶,可用于组织工程应用。

A Supramolecular Injectable Methacryloyl Chitosan-Tricine-Based Hydrogel with 3D Printing Potential for Tissue Engineering Applications.

机构信息

Department of Chemistry, CICECO - Aveiro Institute of Materials, University of Aveiro, Campus Universitário de Santiago, Aveiro, 3810-193, Portugal.

出版信息

Macromol Biosci. 2024 Jan;24(1):e2300058. doi: 10.1002/mabi.202300058. Epub 2023 May 18.

Abstract

Printable hydrogels have attracted significant attention as versatile, tunable, and spatiotemporally controlled biomaterials for tissue engineering (TE) applications. Several chitosan-based systems are reported presenting low or no solubility in aqueous solutions at physiological pH. Herein, a novel neutrally charged, biomimetic, injectable, and cytocompatible dual-crosslinked (DC) hydrogel system based on a double functionalized chitosan (CHT) with methacryloyl and tricine moieties (CHTMA-Tricine), completely processable at physiological pH, with promising three-dimensional (3D) printing potential is presented. Tricine, an amino acid typically used in biomedicine, is capable of establishing supramolecular interactions (H-bonds) and is never explored as a hydrogel component for TE. CHTMA-Tricine hydrogels demonstrate significantly greater toughness (ranging from 656.5 ± 82.2 to 1067.5 ± 121.5 kJ m ) compared to CHTMA hydrogels (ranging from 382.4 ± 44.1 to 680.8 ± 104.5 kJ m ), highlighting the contribution of the supramolecular interactions for the overall reinforced 3D structure provided by tricine moieties. Cytocompatibility studies reveal that MC3T3-E1 pre-osteoblasts cells remain viable for 6 days when encapsulated in CHTMA-Tricine constructs, with semi-quantitative analysis showing ≈80% cell viability. This system's interesting viscoelastic properties allow the fabrication of multiple structures, which couple with a straightforward approach, will open doors for the design of advanced chitosan-based biomaterials through 3D bioprinting for TE.

摘要

可打印水凝胶作为多功能、可调谐和时空可控的组织工程(TE)应用生物材料引起了广泛关注。有报道称,几种壳聚糖基体系在生理 pH 下的水溶液中表现出低溶解度或无溶解度。本文提出了一种新型中性、仿生、可注射和细胞相容的双重交联(DC)水凝胶系统,该系统基于具有丙烯酰基和曲可林部分的双功能化壳聚糖(CHTMA-Tricine),完全可在生理 pH 下加工,具有良好的三维(3D)打印潜力。曲可林是一种常用于生物医学的氨基酸,能够建立超分子相互作用(氢键),但从未被探索作为 TE 用的水凝胶成分。与 CHTMA 水凝胶(范围为 382.4 ± 44.1 至 680.8 ± 104.5 kJ m )相比,CHTMA-Tricine 水凝胶表现出显著更高的韧性(范围为 656.5 ± 82.2 至 1067.5 ± 121.5 kJ m ),突出了超分子相互作用对由曲可林部分提供的整体增强的 3D 结构的贡献。细胞相容性研究表明,当包裹在 CHTMA-Tricine 构建体中时,MC3T3-E1 前成骨细胞在 6 天内保持存活,半定量分析显示≈80%的细胞活力。该系统有趣的粘弹性特性允许制造多种结构,与简单的方法相结合,将为通过 3D 生物打印设计用于 TE 的先进壳聚糖基生物材料开辟道路。

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