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骨膜蛋白是牙髓和牙本质复合体再生以及干细胞条件培养基移植中牙周膜宿主微环境的候选调节因子。

Periostin Is a Candidate Regulator of the Host Microenvironment in Regeneration of Pulp and Dentin Complex and Periodontal Ligament in Transplantation with Stem Cell-Conditioned Medium.

作者信息

Sakatoku Shintarou, Hayashi Yuki, Futenma Taku, Sugita Yoshihiko, Ishizaka Ryo, Nawa Hiroyuki, Iohara Koichiro

机构信息

Department of Pediatric Dentistry, School of Dentistry, Aichi-Gakuin University, Suemoridouri 2-11, Chikusa-ku, Nagoya 464-8651, Aichi, Japan.

Department of Oral Pathology and Forensic Odontology, School of Dentistry, Aichi Gakuin University, 1-1-100 Kusumoto-cho, Chikusa-ku, Nagoya 464-8650, Aichi, Japan.

出版信息

Stem Cells Int. 2024 Feb 23;2024:7685280. doi: 10.1155/2024/7685280. eCollection 2024.

Abstract

PURPOSE

The microenvironment is required for tissues to maintain their properties . This microenvironment encompasses the types and three-dimensional arrangement of cells forming the tissues, and their interactions with neighboring cells and extracellular matrices, as represented by the stem cell niche. Tissue regeneration depends not on the original tissue source of the transplanted cells, but on the microenvironment in which they are transplanted. We have previously reported pulp regeneration in a heterotopic root graft model by transplantation of conditioned medium alone, which suggests that host-derived cells expressing receptors for migration factors in conditioned medium migrate into the root canal and cause pulp regeneration. Regenerative medicine is needed to restore the original function of complex tissues. To achieve this, it is necessary to reproduce the changes in the microenvironment of the host tissue that accompany the regenerative response. Therefore, it is important to reproduce the microenvironment for further development of tissue regeneration therapy. Periostin is also found in the epithelial-mesenchymal junction, with expression sites that differ depending on the mineralized matrix stage, and is involved in regulation of calcification.

METHODS

We investigate whether periostin contributes to microenvironmental changes in regenerated pulp tissue. Dental pulp stem cells were induced into dentin, and gene expression of DSPP, nestin, DMP1, Runx2, and periostin was analyzed by qPCR and protein expression by IHC. Similarly, gene expression was analyzed using qPCR and protein expression using IHC in regenerated dental pulp obtained by ectopic transplantation.

RESULTS

Since these regenerated tissues were observable on the same slice, it was possible to understand changes in the microenvironment within the tissues.

CONCLUSIONS

Periostin promoted proliferation of pulp stem cells, migration in type I collagen, and calcification in regenerated pulp, which strongly suggests that periostin is a promising candidate as a factor that contributes to the microenvironment of regenerated pulp.

摘要

目的

组织维持其特性需要微环境。这种微环境包括构成组织的细胞类型和三维排列,以及它们与邻近细胞和细胞外基质的相互作用,如干细胞龛所代表的那样。组织再生不取决于移植细胞的原始组织来源,而是取决于它们被移植到的微环境。我们之前报道了在异位根移植模型中仅通过移植条件培养基实现牙髓再生,这表明在条件培养基中表达迁移因子受体的宿主来源细胞迁移到根管并导致牙髓再生。再生医学对于恢复复杂组织的原始功能是必要的。要实现这一点,有必要重现宿主组织在再生反应过程中微环境的变化。因此,重现微环境对于组织再生治疗的进一步发展很重要。骨膜蛋白也存在于上皮 - 间充质交界处,其表达位点因矿化基质阶段而异,并参与钙化调节。

方法

我们研究骨膜蛋白是否有助于再生牙髓组织的微环境变化。将牙髓干细胞诱导分化为牙本质,通过qPCR分析DSPP、巢蛋白、DMP1、Runx2和骨膜蛋白的基因表达,并通过免疫组化分析蛋白表达。同样,在异位移植获得的再生牙髓中,通过qPCR分析基因表达并通过免疫组化分析蛋白表达。

结果

由于这些再生组织在同一切片上可观察到,因此有可能了解组织内微环境的变化。

结论

骨膜蛋白促进牙髓干细胞增殖、在I型胶原中的迁移以及再生牙髓中的钙化,这强烈表明骨膜蛋白作为一种有助于再生牙髓微环境的因子是一个有前途的候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f43d/10907099/6ba11f9654c7/SCI2024-7685280.001.jpg

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