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光生物调节疗法诱导的伤口愈合和细胞动力学,包括间充质和牙髓干细胞:拔牙后大鼠牙槽窝保存效果的实例及文献复习。

Wound Healing and Cell Dynamics Including Mesenchymal and Dental Pulp Stem Cells Induced by Photobiomodulation Therapy: An Example of Socket-Preserving Effects after Tooth Extraction in Rats and a Literature Review.

机构信息

Department of Geriatric Dentistry, Osaka Dental University, Osaka 546-0032, Japan.

Department of Anesthesiology, Osaka Dental University, Osaka 540-0008, Japan.

出版信息

Int J Mol Sci. 2020 Sep 18;21(18):6850. doi: 10.3390/ijms21186850.

Abstract

High-intensity laser therapy (HILT) and photobiomodulation therapy (PBMT) are two types of laser treatment. According to recent clinical reports, PBMT promotes wound healing after trauma or surgery. In addition, basic research has revealed that cell differentiation, proliferation, and activity and subsequent tissue activation and wound healing can be promoted. However, many points remain unclear regarding the mechanisms for wound healing induced by PBMT. Therefore, in this review, we present an example from our study of HILT and PBMT irradiation of tooth extraction wounds using two types of lasers with different characteristics (diode laser and carbon dioxide laser). Then, the effects of PBMT on the wound healing of bone tissues are reviewed from histological, biochemical, and cytological perspectives on the basis of our own study of the extraction socket as well as studies by other researchers. Furthermore, we consider the feasibility of treatment in which PBMT irradiation is applied to stem cells including dental pulp stem cells, the theme of this Special Issue, and we discuss research that has been reported on its effect.

摘要

高强度激光疗法(HILT)和光生物调节疗法(PBMT)是两种类型的激光治疗。根据最近的临床报告,PBMT 可促进创伤或手术后的伤口愈合。此外,基础研究表明,细胞分化、增殖和活性以及随后的组织激活和伤口愈合都可以得到促进。然而,关于 PBMT 诱导伤口愈合的机制仍有许多不清楚的地方。因此,在本综述中,我们以我们使用两种具有不同特性的激光(二极管激光和二氧化碳激光)照射拔牙伤口的 HILT 和 PBMT 照射为例,从组织学、生化和细胞学的角度综述了 PBMT 对骨组织伤口愈合的影响。此外,我们还考虑了将 PBMT 照射应用于包括牙髓干细胞在内的干细胞治疗的可行性,这是本期特刊的主题,并讨论了已报道的关于其效果的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc67/7555322/45642b346f1d/ijms-21-06850-g001.jpg

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