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用于皮肤等效物3D生物打印的基于纤维蛋白原的生物墨水。

Fibrinogen-Based Bioink for Application in Skin Equivalent 3D Bioprinting.

作者信息

Cavallo Aida, Al Kayal Tamer, Mero Angelica, Mezzetta Andrea, Guazzelli Lorenzo, Soldani Giorgio, Losi Paola

机构信息

Institute of Life Sciences, Scuola Superiore Sant'Anna, 56127 Pisa, Italy.

Institute of Clinical Physiology, National Research Council, 54100 Massa, Italy.

出版信息

J Funct Biomater. 2023 Sep 5;14(9):459. doi: 10.3390/jfb14090459.

Abstract

Three-dimensional bioprinting has emerged as an attractive technology due to its ability to mimic native tissue architecture using different cell types and biomaterials. Nowadays, cell-laden bioink development or skin tissue equivalents are still at an early stage. The aim of the study is to propose a bioink to be used in skin bioprinting based on a blend of fibrinogen and alginate to form a hydrogel by enzymatic polymerization with thrombin and by ionic crosslinking with divalent calcium ions. The biomaterial ink formulation, composed of 30 mg/mL of fibrinogen, 6% of alginate, and 25 mM of CaCl, was characterized in terms of homogeneity, rheological properties, printability, mechanical properties, degradation rate, water uptake, and biocompatibility by the indirect method using L929 mouse fibroblasts. The proposed bioink is a homogeneous blend with a shear thinning behavior, excellent printability, adequate mechanical stiffness, porosity, biodegradability, and water uptake, and it is in vitro biocompatible. The fibrinogen-based bioink was used for the 3D bioprinting of the dermal layer of the skin equivalent. Three different normal human dermal fibroblast (NHDF) densities were tested, and better results in terms of viability, spreading, and proliferation were obtained with 4 × 10 cell/mL. The skin equivalent was bioprinted, adding human keratinocytes (HaCaT) through bioprinting on the top surface of the dermal layer. A skin equivalent stained by live/dead and histological analysis immediately after printing and at days 7 and 14 of culture showed a tissuelike structure with two distinct layers characterized by the presence of viable and proliferating cells. This bioprinted skin equivalent showed a similar native skin architecture, paving the way for its use as a skin substitute for wound healing applications.

摘要

三维生物打印技术因其能够利用不同类型的细胞和生物材料模拟天然组织结构而成为一项颇具吸引力的技术。如今,载细胞生物墨水的研发或皮肤组织等效物仍处于早期阶段。本研究的目的是提出一种用于皮肤生物打印的生物墨水,该生物墨水基于纤维蛋白原和藻酸盐的混合物,通过与凝血酶的酶促聚合以及与二价钙离子的离子交联形成水凝胶。由30 mg/mL纤维蛋白原、6%藻酸盐和25 mM氯化钙组成的生物材料墨水配方,通过使用L929小鼠成纤维细胞的间接方法,在均匀性、流变学特性、可打印性、机械性能、降解率、吸水性和生物相容性方面进行了表征。所提出的生物墨水是一种均匀的混合物,具有剪切变稀行为、出色的可打印性、足够的机械刚度、孔隙率、生物降解性和吸水性,并且在体外具有生物相容性。基于纤维蛋白原的生物墨水用于皮肤等效物真皮层的三维生物打印。测试了三种不同的正常人皮肤成纤维细胞(NHDF)密度,以4×10⁶细胞/mL获得了在活力、铺展和增殖方面更好的结果。通过在真皮层顶表面进行生物打印添加人角质形成细胞(HaCaT),从而打印出皮肤等效物。在打印后以及培养第7天和第14天,通过活/死染色和组织学分析的皮肤等效物显示出具有两个不同层的组织样结构,其特征是存在有活力和增殖的细胞。这种生物打印的皮肤等效物显示出与天然皮肤相似的结构,为其作为伤口愈合应用的皮肤替代物的使用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f0d/10532308/efa95cae606b/jfb-14-00459-g001.jpg

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