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机械调优对脱细胞羊膜生物墨水可打印性的影响及其在软组织构建物细胞负载生物打印中的应用。

The impact of mechanical tuning on the printability of decellularized amniotic membrane bioinks for cell-laden bioprinting of soft tissue constructs.

机构信息

Center for Nanoscience and Nanotechnology, Institute for Convergence Science & Technology, Sharif University of Technology, P.O. Box 14588-89694, Tehran, Iran.

Department of Nanobiotechnology, Faculty of Biological Sciences, Tarbiat Modares University, P.O. Box 14115-175, Tehran, Iran.

出版信息

Sci Rep. 2024 Nov 29;14(1):29697. doi: 10.1038/s41598-024-80973-3.

Abstract

Decellularized extracellular matrix (dECM) bioinks hold significant potential in the 3D bioprinting of tissue-engineered constructs (TECs). While 3D bioprinting allows for the creation of custom-designed TECs, the development of bioinks based solely on dAM, without the inclusion of supporting agents or chemical modifications, remains underexplored. In this study, we present the concentration-dependent printability and rheological properties of dAM bioinks, along with an analysis of their in vitro cellular responses. Our findings demonstrate that increasing dAM concentrations, within the range of 1 to 3% w/v, enhances the mechanical moduli of the bioinks, enabling the 3D printing of flat structures with superior shape fidelity. In vitro assays reveal high cell viability across all dAM bioink formulations; however, at 3% w/v, the bioink tends to impede fibroblast proliferation, resulting in round cell morphology. We propose that bioinks containing 2% w/v dAM strike an optimal balance, providing fine-resolved features and a supportive microenvironment for fibroblasts, promoting elongated spindle-like morphology and enhanced proliferation. These results underscore the importance of dAM concentration in regulating the properties and performance of bioinks, particularly regarding cell viability and morphology, for the successful 3D bioprinting of soft tissues.

摘要

脱细胞细胞外基质(dECM)生物墨水在组织工程构建体(TECs)的 3D 生物打印中具有重要的潜力。虽然 3D 生物打印允许创建定制设计的 TECs,但仅基于 dAM 开发生物墨水,而不包含支持剂或化学修饰,仍然未得到充分探索。在这项研究中,我们介绍了 dAM 生物墨水的浓度依赖性可打印性和流变特性,并分析了它们的体外细胞反应。我们的研究结果表明,在 1%至 3%w/v 的范围内增加 dAM 浓度可以提高生物墨水的机械模量,从而能够 3D 打印具有卓越形状保真度的平面结构。体外实验表明,所有 dAM 生物墨水配方的细胞存活率都很高;然而,在 3%w/v 时,生物墨水往往会阻碍成纤维细胞的增殖,导致细胞形态呈圆形。我们提出,含有 2%w/v dAM 的生物墨水达到了最佳平衡,为成纤维细胞提供了精细分辨的特征和支持性的微环境,促进了伸长的纺锤形形态和增强的增殖。这些结果强调了 dAM 浓度在调节生物墨水的性质和性能方面的重要性,特别是在细胞活力和形态方面,对于成功地 3D 生物打印软组织至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b3f/11606975/47a8ee381072/41598_2024_80973_Fig1_HTML.jpg

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