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通过交替浸泡制备矿化心包用于软硬区域间组织应用。

Preparation of mineralized pericardium by alternative soaking for soft-hard interregional tissue application.

作者信息

Suzuki Mika, Kimura Tsuyoshi, Nakano Yuta, Kobayashi Mako, Okada Masahiro, Matsumoto Takuya, Nakamura Naoko, Hashimoto Yoshihide, Kishida Akio

机构信息

Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University, Tokyo, Japan.

Department of Biomaterials, Okayama University, Okayama, Japan.

出版信息

J Biomed Mater Res A. 2023 Feb;111(2):198-208. doi: 10.1002/jbm.a.37445. Epub 2022 Sep 7.

Abstract

Recent applications of decellularized tissues include the ectopic use of sheets and powders for three-dimensional (3D) tissue reconstruction. Decellularized tissues are modified (or fabricated) with the desired functions for application to the target (transplanted or used) tissue, including soft-hard interregional tissues, such as ligaments, tendons, and periodontal ligaments. This study aimed to prepare a mineralized decellularized pericardium to construct a soft-hard interregional tissue by 3D fabrication of decellularized pericardium, for example, rolling up to a cylindrical form. The decellularized pericardial tissue was prepared using the high hydrostatic pressurization (HHP) and surfactants method. The pericardium consisted of bundles of aligned fibers, and the bundles were slightly disordered when prepared with the surfactant decellularization method compared with that prepared using the HHP decellularization method. Mineralization of the decellularized pericardium was performed using an alternate soaking process with various cycles. The surface of the decellularized pericardium was covered with calcium phosphate precipitates, which accumulated on the surface with an increasing number of soaking cycles. The inside of the HHP decellularized pericardium was mineralized uniformly, whereas the mineralization of the decellularized pericardium decreased toward the interior. These findings suggest that the decellularization method strongly affects the structure and mineralized parts of the decellularized pericardium. The mineralized decellularized pericardium could be a candidate material for reconstructing alternative interregional tissues, such as ligaments and tendons.

摘要

脱细胞组织的近期应用包括将薄片和粉末异位用于三维(3D)组织重建。脱细胞组织通过对其进行修饰(或制备)以具备所需功能,从而应用于目标(移植或使用的)组织,包括软硬相间的区域间组织,如韧带、肌腱和牙周韧带。本研究旨在制备矿化脱细胞心包,通过对脱细胞心包进行3D构建(例如卷成圆柱形)来构建软硬相间的区域间组织。采用高静水压(HHP)和表面活性剂法制备脱细胞心包组织。心包由排列整齐的纤维束组成,与使用HHP脱细胞法制备的相比,用表面活性剂脱细胞法制备时纤维束略显紊乱。采用交替浸泡法对脱细胞心包进行不同次数的矿化处理。脱细胞心包表面覆盖有磷酸钙沉淀,随着浸泡次数的增加,沉淀在表面不断累积。HHP脱细胞心包内部均匀矿化,而脱细胞心包向内部的矿化程度降低。这些发现表明,脱细胞方法对脱细胞心包的结构和矿化部位有很大影响。矿化脱细胞心包可能是重建替代区域间组织(如韧带和肌腱)的候选材料。

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