Departamento de Biofísica e Biometria, Instituto de Biologia Roberto Alcantara Gomes, Universidade do Estado do Rio de Janeiro, Avenida 28 de Setembro, 87, fundos, Vila Isabel, Rio de Janeiro, 20551030, Brazil.
Departamento de Ciências Fisiológicas, Instituto Biomédico, Universidade Federal do Estado do Rio de Janeiro, Rua Frei Caneca, 94, Rio de Janeiro, 20211040, Brazil.
Lasers Med Sci. 2021 Aug;36(6):1139-1150. doi: 10.1007/s10103-020-03196-8. Epub 2021 Jan 2.
Radiations emitted by low power radiation sources have been applied for therapeutic proposals due to their capacity of inactivating bacteria and cancer cells in photodynamic therapy and stimulating tissue cells in photobiomodulation. Exposure to these radiations could increase cell proliferation in bacterial cultures under stressful conditions. Cells in infected or not infected tissue injuries are also under stressful conditions and photobiomodulation-induced regenerative effect on tissue injuries could be related to effects on stressed cells. The understanding of the effects on cells under stressful conditions could render therapies based on photobiomodulation more efficient as well as expand them. Thus, the objective of this review was to update the studies reporting photobiomodulation on prokaryotic and eukaryotic cells under stress conditions. Exposure to radiations emitted by low power radiation sources could induce adaptive responses enabling cells to survive in stressful conditions, such as those experienced by bacteria in their host and by eukaryotic cells in injured tissues. Adaptive responses could be the basis for clinical photobiomodulation applications, either considering their contraindication for treatment of infected injuries or indication for treatment of injuries, inflammatory process resolution, or tissue regeneration.
由于低功率辐射源发射的辐射具有光动力疗法中灭活细菌和癌细胞以及光生物调节中刺激组织细胞的能力,因此已将其应用于治疗方案。暴露于这些辐射下可能会增加细菌培养物在应激条件下的细胞增殖。感染或未感染组织损伤的细胞也处于应激状态,光生物调节对组织损伤的再生作用可能与对应激细胞的作用有关。了解应激条件下细胞的作用可以使基于光生物调节的疗法更有效,并扩大其应用范围。因此,本综述的目的是更新报告低功率辐射源发射的辐射在应激条件下对原核和真核细胞的影响的研究。暴露于低功率辐射源发出的辐射下会诱导适应性反应,使细胞能够在应激条件下存活,例如细菌在其宿主中和真核细胞在受伤组织中所经历的条件。适应性反应可能是临床光生物调节应用的基础,无论是考虑到其对感染性损伤治疗的禁忌症,还是对损伤、炎症过程消退或组织再生治疗的适应症。