Suppr超能文献

多功能黄原胶基支持浴材料与多种交联机制兼容:流变性能、可印刷性和细胞相容性研究。

Versatile xanthan gum-based support bath material compatible with multiple crosslinking mechanisms: rheological properties, printability, and cytocompatibility study.

机构信息

Department of Materials Science and Engineering, Monash University, Clayton, Australia.

ARC Training Centre for Cell and Tissue Engineering Technologies, Monash University, Clayton, Australia.

出版信息

Biofabrication. 2024 Apr 11;16(3). doi: 10.1088/1758-5090/ad39a8.

Abstract

Extrusion-based bioprinting is a promising technology for the fabrication of complex three-dimensional (3D) tissue-engineered constructs. To further improve the printing accuracy and provide mechanical support during the printing process, hydrogel-based support bath materials have been developed. However, the gel structure of some support bath materials can be compromised when exposed to certain bioink crosslinking cues, hence their compatibility with bioinks can be limited. In this study, a xanthan gum-based composite support material compatible with multiple crosslinking mechanisms is developed. Different support bath materials can have different underlying polymeric structures, for example, particulate suspensions and polymer solution with varying supramolecular structure) and these properties are governed by a variety of different intermolecular interactions. However, common rheological behavior can be expected because they have similar demonstrated performance and functionality. To provide a detailed exploration/identification of the common rheological properties expressed by different support bath materials from a unified perspective, benchmark support bath materials from previous studies were prepared. A comparative rheological study revealed both the structural and shear behavior characteristics shared by support bath materials, including yield stress, gel complex moduli, shear-thinning behavior, and self-healing properties. Gel structural stability and functionality of support materials were tested in the presence of various crosslinking stimuli, confirming the versatility of the xanthan-based support material. We further investigated the effect of support materials and the diameter of extrusion needles on the printability of bioinks to demonstrate the improvement in bioink printability and structural integrity. Cytotoxicity and cell encapsulation viability tests were carried out to confirm the cell compatibility of the xanthan gum-based support bath material. We propose and demonstrate the versatility and compatibility of the novel support bath material and provide detailed new insight into the essential properties and behavior of these materials that serve as a guide for further development of support bath-based 3D bioprinting.

摘要

基于挤出的生物打印技术是制造复杂三维(3D)组织工程构建体的有前途的技术。为了进一步提高打印精度并在打印过程中提供机械支撑,已经开发了基于水凝胶的支撑浴材料。然而,当某些生物墨水交联信号暴露时,一些支撑浴材料的凝胶结构可能会受到影响,因此它们与生物墨水的兼容性可能会受到限制。在这项研究中,开发了一种与多种交联机制兼容的黄原胶基复合支撑材料。不同的支撑浴材料可以具有不同的基础聚合物结构,例如具有不同超分子结构的颗粒悬浮液和聚合物溶液),这些性质由各种不同的分子间相互作用控制。然而,可以预期具有相似表现性能和功能的常见流变行为。为了从统一的角度详细探索/识别不同支撑浴材料表现出的常见流变特性,从先前的研究中制备了基准支撑浴材料。比较流变学研究揭示了支撑浴材料共有的结构和剪切行为特性,包括屈服应力、凝胶复合模量、剪切变稀行为和自修复特性。在存在各种交联刺激的情况下测试支撑材料的凝胶结构稳定性和功能,证实了基于黄原胶的支撑材料的多功能性。我们进一步研究了支撑材料和挤出针的直径对生物墨水可打印性的影响,以证明生物墨水可打印性和结构完整性的提高。进行了细胞毒性和细胞包封活力测试,以确认基于黄原胶的支撑浴材料的细胞相容性。我们提出并证明了新型支撑浴材料的多功能性和兼容性,并提供了这些材料基本性质和行为的详细新见解,为基于支撑浴的 3D 生物打印的进一步发展提供了指导。

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