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使用牙髓来源细胞和蜂窝状磷酸三钙制备抗吸收硬组织。

Preparation of Absorption-Resistant Hard Tissue Using Dental Pulp-Derived Cells and Honeycomb Tricalcium Phosphate.

作者信息

Takabatake Kiyofumi, Nakano Keisuke, Kawai Hotaka, Inada Yasunori, Sukegawa Shintaro, Qiusheng Shan, Fushimi Shigeko, Tsujigiwa Hidetsugu, Nagatsuka Hitoshi

机构信息

Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry and Pharmaceutical Science, Okayama University, Okayama 700-8525, Japan.

Department of Oral and Maxillofacial Surgery, Kagawa Prefectural Central Hospital, Kagawa 760-8557, Japan.

出版信息

Materials (Basel). 2021 Jun 20;14(12):3409. doi: 10.3390/ma14123409.

Abstract

In recent years, there has been increasing interest in the treatment of bone defects using undifferentiated mesenchymal stem cells (MSCs) in vivo. Recently, dental pulp has been proposed as a promising source of pluripotent mesenchymal stem cells (MSCs), which can be used in various clinical applications. Dentin is the hard tissue that makes up teeth, and has the same composition and strength as bone. However, unlike bone, dentin is usually not remodeled under physiological conditions. Here, we generated odontoblast-like cells from mouse dental pulp stem cells and combined them with honeycomb tricalcium phosphate (TCP) with a 300 μm hole to create bone-like tissue under the skin of mice. The bone-like hard tissue produced in this study was different from bone tissue, i.e., was not resorbed by osteoclasts and was less easily absorbed than the bone tissue. It has been suggested that hard tissue-forming cells induced from dental pulp do not have the ability to induce osteoclast differentiation. Therefore, the newly created bone-like hard tissue has high potential for absorption-resistant hard tissue repair and regeneration procedures.

摘要

近年来,利用未分化的间充质干细胞(MSCs)在体内治疗骨缺损越来越受到关注。最近,牙髓被认为是一种有前景的多能间充质干细胞(MSCs)来源,可用于各种临床应用。牙本质是构成牙齿的硬组织,其组成和强度与骨骼相同。然而,与骨骼不同的是,牙本质在生理条件下通常不会重塑。在此,我们从小鼠牙髓干细胞中生成了成牙本质细胞样细胞,并将它们与孔径为300μm的蜂窝状磷酸三钙(TCP)相结合,在小鼠皮下形成骨样组织。本研究中产生的骨样硬组织与骨组织不同,即不会被破骨细胞吸收,且比骨组织更不易被吸收。有研究表明,由牙髓诱导产生的硬组织形成细胞没有诱导破骨细胞分化的能力。因此,新形成的骨样硬组织在抗吸收硬组织修复和再生程序方面具有很高的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a20/8234467/795f2819b624/materials-14-03409-g001.jpg

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