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使用脱细胞心包与细胞共培养进行体外组织重建以促进韧带再生

In Vitro Tissue Reconstruction Using Decellularized Pericardium Cultured with Cells for Ligament Regeneration.

作者信息

Suzuki Mika, Kimura Tsuyoshi, Yoshida Yukina, Kobayashi Mako, Hashimoto Yoshihide, Takahashi Hironobu, Shimizu Tatsuya, Anzai Shota, Nakamura Naoko, Kishida Akio

机构信息

Department of Material-Based Medical Engineering, Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University, Tokyo 101-0062, Japan.

Institute of Advanced Biomedical Engineering and Science, Tokyo Women's Medical University, Tokyo 162-8666, Japan.

出版信息

Polymers (Basel). 2022 Jun 10;14(12):2351. doi: 10.3390/polym14122351.

Abstract

Recent applications of decellularized tissues have included the ectopic use of their sheets and powders for three-dimensional (3D) tissue reconstruction. Decellularized tissues are fabricated with the desired functions to employ them to a target tissue. The aim of this study was to develop a 3D reconstruction method using a recellularized pericardium to overcome the difficulties in cell infiltration into tight and dense tissues, such as ligament and tendon tissues. Decellularized pericardial tissues were prepared using the high hydrostatic pressurization (HHP) and surfactant methods. The pericardium consisted of bundles of aligned fibers. The bundles were slightly disordered in the surfactant decellularization method compared to the HHP decellularization method. The mechanical properties of the pericardium were maintained after the HHP and surfactant decellularizations. The HHP-decellularized pericardium was rolled up into a cylindrical formation. Its mechanical behavior was similar to that of a porcine anterior cruciate ligament in tensile testing. NIH3T3, C2C12, and mesenchymal stem cells were adhered with elongation and alignment on the HHP- and surfactant-decellularized pericardia, with dependences on the cell type and decellularization method. When the recellularized pericardium was rolled up into a cylinder formation and cultured by hanging circulation for 2 days, the cylinder formation and cellular elongation and alignment were maintained on the decellularized pericardium, resulting in a layer structure of cells in a cross-section. According to these results, the 3D-reconstructed decellularized pericardium with cells has the potential to be an attractive alternative to living tissues, such as ligament and tendon tissues.

摘要

脱细胞组织的近期应用包括将其薄片和粉末异位用于三维(3D)组织重建。制备具有所需功能的脱细胞组织以将其应用于目标组织。本研究的目的是开发一种使用再细胞化心包的3D重建方法,以克服细胞浸润到紧密和致密组织(如韧带和肌腱组织)中的困难。使用高静水压(HHP)和表面活性剂方法制备脱细胞心包组织。心包由排列成束的纤维组成。与HHP脱细胞方法相比,在表面活性剂脱细胞方法中束状结构略有紊乱。HHP和表面活性剂脱细胞后心包的力学性能得以保持。HHP脱细胞心包被卷成圆柱形结构。其力学行为在拉伸试验中与猪前交叉韧带相似。NIH3T3、C2C12和间充质干细胞在HHP和表面活性剂脱细胞心包上伸长并排列附着,这取决于细胞类型和脱细胞方法。当再细胞化心包被卷成圆柱形结构并通过悬挂循环培养2天时,圆柱形结构以及细胞的伸长和排列在脱细胞心包上得以保持,在横截面上形成细胞层结构。根据这些结果,具有细胞的3D重建脱细胞心包有可能成为韧带和肌腱组织等活组织的有吸引力的替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8915/9229290/daf06cb2775b/polymers-14-02351-g001.jpg

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