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琼脂糖-明胶生物墨水的开发用于基于挤出的生物打印和细胞包封。

Development of agarose-gelatin bioinks for extrusion-based bioprinting and cell encapsulation.

机构信息

School of Pharmacy, Faculty of Medical and Health Sciences, University of Auckland, Private Bag 92019, Auckland, New Zealand.

Department of Pharmacology and Clinical Pharmacology, Faculty of Medical and Health Sciences, University of Auckland, Private Bag 92019, Auckland, New Zealand.

出版信息

Biomed Mater. 2022 Jun 15;17(5). doi: 10.1088/1748-605X/ac759f.

Abstract

Three-dimensional bioprinting continues to advance as an attractive biofabrication technique to employ cell-laden hydrogel scaffolds in the creation of precise, user-defined constructs that can recapitulate the native tissue environment. Development and characterisation of new bioinks to expand the existing library helps to open avenues that can support a diversity of tissue engineering purposes and fulfil requirements in terms of both printability and supporting cell attachment. In this paper, we report the development and characterisation of agarose-gelatin (AG-Gel) hydrogel blends as a bioink for extrusion-based bioprinting. Four different AG-Gel hydrogel blend formulations with varying gelatin concentration were systematically characterised to evaluate suitability as a potential bioink for extrusion-based bioprinting. Additionally, autoclave and filter sterilisation methods were compared to evaluate their effect on bioink properties. Finally, the ability of the AG-Gel bioink to support cell viability and culture after printing was evaluated using SH-SY5Y cells encapsulated in bioprinted droplets of the AG-Gel. All bioink formulations demonstrate rheological, mechanical and swelling properties suitable for bioprinting and cell encapsulation. Autoclave sterilisation significantly affected the rheological properties of the AG-Gel bioinks compared to filter sterilisation. SH-SY5Y cells printed and differentiated into neuronal-like cells using the developed AG-Gel bioinks demonstrated high viability (>90%) after 23 d in culture. This study demonstrates the properties of AG-Gel as a printable and biocompatible material applicable for use as a bioink.

摘要

三维生物打印作为一种有吸引力的生物制造技术不断发展,它采用细胞负载水凝胶支架来创建精确的、用户定义的结构,可以再现天然组织环境。开发和表征新的生物墨水来扩展现有库有助于开辟途径,支持多种组织工程目的,并满足打印性和支持细胞附着的要求。在本文中,我们报告了琼脂糖-明胶(AG-Gel)水凝胶混合物作为挤出式生物打印生物墨水的开发和特性。系统地表征了四种不同的 AG-Gel 水凝胶混合物配方,其明胶浓度不同,以评估其作为挤出式生物打印潜在生物墨水的适用性。此外,还比较了高压灭菌和过滤灭菌方法,以评估它们对生物墨水性质的影响。最后,使用封装在 AG-Gel 生物打印液滴中的 SH-SY5Y 细胞评估了 AG-Gel 生物墨水在打印后支持细胞活力和培养的能力。所有生物墨水配方均表现出适合生物打印和细胞封装的流变学、机械和溶胀性能。与过滤灭菌相比,高压灭菌显著影响了 AG-Gel 生物墨水的流变性能。使用开发的 AG-Gel 生物墨水打印和分化的 SH-SY5Y 细胞在培养 23 天后显示出高活力(>90%)。这项研究证明了 AG-Gel 作为一种可打印和生物相容材料的特性,可适用于生物墨水的应用。

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