Department of Restorative Dentistry, School of Dentistry, Universidade Federal de Minas Gerais, Av. Antônio Carlos, 6627, Pampulha, Belo Horizonte, MG, 31.270-901, Brazil.
Department of Oral Pathology and Surgery, School of Dentistry, Universidade Federal de Minas Gerais, Belo Horizonte, Minas Gerais, Brazil.
Sci Rep. 2020 Nov 6;10(1):19257. doi: 10.1038/s41598-020-76243-7.
Photobiomodulation is being widely applied for improving dermal or mucosal wound healing. However, the underlying cellular and molecular processes that directly contribute to its effects remain poorly understood. Pericytes are relevant cells involved in the wound microenvironment and could be one of the main targets of photobiomodulation due to their plasticity and perivascular localization. Herein, we investigate tissue repair under the photobiomodulation stimulus using a pericyte labeled (or reporter) transgenic mice. Using a model of two contralateral back wounds, one the control and the other photoactivated daily (660 nm, 20 mW, 0.71 W/cm, 5 J/cm, 7 s, 0.14 J), we showed an overall influx of immune and undifferentiated cells and higher mobilization of a potent pericyte subpopulation (Type-2 pericytes) in the photoactivated wounds in comparison to the controls. Doppler analysis showed a significant increase in the blood flow in the photoactivated wounds, while marked vascular supply was observed histologically. Histochemical analysis has indicated more advanced stages of tissue repair after photoactivation. These data suggest that photobiomodulation significantly accelerates tissue repair through its vascular effects with direct recruitment of pericytes to the injury site.
光生物调节被广泛应用于改善皮肤或黏膜伤口愈合。然而,其直接作用的潜在细胞和分子过程仍知之甚少。周细胞是参与伤口微环境的相关细胞,由于其可塑性和血管周定位,可能成为光生物调节的主要靶点之一。在此,我们使用周细胞标记(或报告)转基因小鼠研究光生物调节刺激下的组织修复。使用两个对侧背部伤口模型,一个作为对照,另一个每天进行光激活(660nm,20mW,0.71W/cm,5J/cm,7s,0.14J),我们发现与对照相比,光激活伤口中整体有更多的免疫和未分化细胞以及更强大的周细胞亚群(2 型周细胞)的动员。多普勒分析显示光激活伤口中的血流量显著增加,而组织学观察到明显的血管供应。组织化学分析表明,光激活后组织修复进入更高级阶段。这些数据表明,光生物调节通过直接募集周细胞到损伤部位来显著加速组织修复。