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HERS 球体在牙齿再生中的治疗潜力。

Therapeutic potential of HERS spheroids in tooth regeneration.

机构信息

State Key Laboratory of Oral Disease, West China Hospital of Stomatology, Sichuan University, Chengdu, China.

National Engineering Laboratory for Oral Regenerative Medicine, West China Hospital of Stomatology, Sichuan University, Chengdu, China.

出版信息

Theranostics. 2020 Jun 12;10(16):7409-7421. doi: 10.7150/thno.44782. eCollection 2020.

Abstract

Hertwig's epithelial root sheath (HERS) plays indispensable roles in tooth root development, including controlling the shape and number of roots, dentin formation, and helping generate the cementum. Based on these characteristics, HERS cell is a potential seed cell type for tooth-related tissue regeneration. However, the application is severely limited by a lack of appropriate culture methods and small cell numbers. Here, we constructed a 3D culture method to expand functional HERS cells into spheroids, and investigated characteristics and application of dental tissue regeneration of these spheroids. HERS spheroids and HERS cells (2D monolayer culture) were compared in terms of biological characteristics (such as proliferation, self-renewal capacity, and stemness) and functions (including differentiation potential and inductive ability of dentin formation) both and . Further, transcriptome analysis was utilized to reveal the molecular mechanisms of their obvious differences. HERS spheroids showed obvious superiority in biological characteristics and functions compared to 2D monolayers of HERS cells . , HERS spheroids generated more mineralized tissue; when combined with dental papilla cells (DPCs), HERS spheroids contributed to dentin-like tissue formation. Moreover, the generation and expansion of HERS spheroids rely to some degree on the HIF-1 pathway. HERS spheroid generation is beneficial for functional HERS cell expansion and can provide a useful cell source for further tooth regeneration and mechanistic research. Notably, HIF-1 pathway plays a critical role in HERS spheroid formation and function.

摘要

赫特维希上皮根鞘(HERS)在牙根发育中起着不可或缺的作用,包括控制牙根的形状和数量、牙本质形成以及帮助生成牙骨质。基于这些特性,HERS 细胞是牙齿相关组织再生的潜在种子细胞类型。然而,由于缺乏适当的培养方法和细胞数量较少,其应用受到严重限制。

在这里,我们构建了一种 3D 培养方法,将功能性 HERS 细胞扩增为球体,并研究了这些球体在牙齿组织再生方面的特性和应用。我们比较了 HERS 球体和 HERS 细胞(2D 单层培养)在生物学特性(如增殖、自我更新能力和干细胞特性)和功能(包括分化潜力和牙本质形成的诱导能力)方面的差异。此外,还利用转录组分析揭示了它们明显差异的分子机制。

与 2D 单层 HERS 细胞相比,HERS 球体在生物学特性和功能方面表现出明显的优势。例如,HERS 球体具有更高的增殖能力、自我更新能力和干细胞特性,并且能够分化为多种牙齿细胞类型,形成更丰富的矿化组织。当与牙髓细胞(DPCs)结合时,HERS 球体有助于牙本质样组织的形成。此外,HERS 球体的生成和扩增在一定程度上依赖于 HIF-1 通路。

HERS 球体的生成有利于功能性 HERS 细胞的扩增,并可为进一步的牙齿再生和机制研究提供有用的细胞来源。值得注意的是,HIF-1 通路在 HERS 球体的形成和功能中起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b6b/7330840/9ad5d3ad95d0/thnov10p7409g001.jpg

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