建立人类牙髓组织的三维外植体培养。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2024-08-30 Epub Date: 2024-07-12 DOI:10.15283/ijsc23105
Eun Jin Seo, Soyoung Park, Eungyung Lee, Yang Hoon Huh, Ye Eun Ha, Gabor J Tigyi, Taesung Jeong, Il Ho Jang, Jonghyun Shin
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引用次数: 0

摘要

牙科组织中的间充质干细胞具有分化为不同牙科系的特性,作为牙科再生医学的重要手段,蕴含着巨大的潜力。在各种牙科组织中,牙髓含有维持牙本质平衡的干细胞、祖细胞和牙本质母细胞。由于活组织是三维(3D)结构,传统的干细胞培养方法存在局限性。最近,类器官培养的发展成功地再现了三维结构,并推进了不同类型的组装。本研究采用类器官培养法建立了人类牙髓组织的三维外植体培养方案。从人类牙齿中分离出牙髓后,将完整的牙髓组织置于两层 Matrigel 之间并加入培养基。前牙本质层的网状生长持续了一个月,并在接近末期观察到牙本质的随机堆积。电子显微镜显示了牙本质的细胞组织和原位发育,免疫组化显示了牙本质细胞和干细胞标记物在生长区的表达。人类牙髓的三维外植体培养将为了解牙齿内部的干细胞生物学和开发再生医学提供一个新的平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Establishing Three-Dimensional Explant Culture of Human Dental Pulp Tissue.

Mesenchymal stem cells in the dental tissue indicate a disposition for differentiation into diverse dental lineages and contain enormous potential as the important means for regenerative medicine in dentistry. Among various dental tissues, the dental pulp contains stem cells, progenitor cells and odontoblasts for maintaining dentin homeostasis. The conventional culture of stem cells holds a limit as the living tissue constitutes the three-dimensional (3D) structure. Recent development in the organoid cultures have successfully recapitulated 3D structure and advanced to the assembling of different types. In the current study, the protocol for 3D explant culture of the human dental pulp tissue has been established by adopting the organoid culture. After isolating dental pulp from human tooth, the intact tissue was placed between two layers for Matrigel with addition of the culture medium. The reticular outgrowth of pre-odontoblast layer continued for a month and the random accumulation of dentin was observed near the end. Electron microscopy showed the cellular organization and in situ development of dentin, and immunohistochemistry exhibited the expression of odontoblast and stem cell markers in the outgrowth area. Three-dimensional explant culture of human dental pulp will provide a novel platform for understanding stem cell biology inside the tooth and developing the regenerative medicine.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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