Chen Tianhong, Jiang Haihong, Zhang Ruoxuan, He Fan, Han Ning, Wang Zhimin, Jia Jia
School of Life Sciences, Shanghai University, Shanghai, China.
Sino-Swiss Institute of Advanced Technology, School of Micro-electronics, Shanghai University, Shanghai, China.
Mater Today Bio. 2024 Nov 23;29:101366. doi: 10.1016/j.mtbio.2024.101366. eCollection 2024 Dec.
Vessel scaffolds are crucial for treating cardiovascular diseases (CVDs). It is currently feasible to fabricate vessel scaffolds from a variety of materials using traditional fabrication methods, but the risks of thrombus formation, chronic inflammation, and atherosclerosis associated with these scaffolds have led to significant limitations in the clinical usages. Bioprinting, as an emerging technology, has great potential in constructing implantable vessel scaffolds. During the fabrication of the constructs, the biomaterials used for bioprinting have offered significant contributions for the successful fabrications of the vessel scaffolds. Herein, we review recent advances in biomaterials for bioprinting implantable vessel scaffolds. First, we briefly introduce the requirements for implantable vessel scaffolds and its conventional manufacturing methods. Next, a brief overview of the classic methods for bioprinting vessel scaffolds is presented. Subsequently, we provide an in-depth analysis of the properties of the representative natural, synthetic, composite and hybrid biomaterials that can be used for bioprinting implantable vessel scaffolds. Ultimately, we underscore the necessity of leveraging biocompatibility and printability for biomaterials, and explore the unmet needs and potential applications of these biomaterials in the field of bioprinted implantable vessel scaffolds.
血管支架对于治疗心血管疾病至关重要。目前,使用传统制造方法从多种材料制造血管支架是可行的,但与这些支架相关的血栓形成、慢性炎症和动脉粥样硬化风险导致其临床应用存在重大局限性。生物打印作为一项新兴技术,在构建可植入血管支架方面具有巨大潜力。在构建物的制造过程中,用于生物打印的生物材料为血管支架的成功制造做出了重大贡献。在此,我们综述用于生物打印可植入血管支架的生物材料的最新进展。首先,我们简要介绍可植入血管支架的要求及其传统制造方法。接下来,对生物打印血管支架的经典方法进行简要概述。随后,我们深入分析可用于生物打印可植入血管支架的代表性天然、合成、复合和混合生物材料的特性。最后,我们强调生物材料利用生物相容性和可打印性的必要性,并探索这些生物材料在生物打印可植入血管支架领域未满足的需求和潜在应用。