Instituto de Investigaciones Biomédicas i2e3, Santa Coloma de Gramenet, Barcelona, Spain.
Aesthetic Plast Surg. 2021 Aug;45(4):1826-1842. doi: 10.1007/s00266-021-02173-y. Epub 2021 Feb 22.
BACKGROUND: Mesenchymal stem cell-based therapy is known to have the potential to induce angiogenesis. However, there are still some limitations regarding their clinical application. Photomodulation/photobiomodulation is non-invasive and non-toxic phototherapy able to stimulate cell viability, proliferation, differentiation, and migration, when the right irradiation parameters are applied. A review of the published articles on human conditioned-by-photobiomodulation mesenchymal cells in an in vitro set up was carried out. Our aim was to describe the studies' results and identify any possible tendency that might highlight the most suitable procedures. METHODS: A search in English of the PubMed database was carried out with the search criteria: photobiomodulation or photoactivation or photomodulation, and mesenchymal cells. All irradiations applied in vitro, on human mesenchymal cells, with wavelengths ranged from 600 to 1000 nm. RESULTS: The search yielded 42 original articles and five reviews. Finally, 37 articles were selected with a total of 43 procedures. Three procedures (7.0%) from 620 to 625 nm; 26 procedures (60.5%) from 625 to 740 nm; 13 procedures (30.2%) from 740 to 1000 nm; and one procedure (2.3%) with combinations of wavelengths. Of the 43 procedures, 14 assessed cell viability (n = 14/43, 32.6%); 34 cell proliferation (n = 34/43, 79.1%); 19 cell differentiation (n = 19/43, 44.2%); and three cell migration (n = 3/43, 7.0%). CONCLUSIONS: Photobiomodulation is a promising technology that can impact on cell viability, differentiation, proliferation, or migration, leading to enhance its regenerative capacity. NO LEVEL ASSIGNED: This journal requires that authors assign a level of evidence to each submission to which Evidence-Based Medicine rankings are applicable. This excludes Review Articles, Book Reviews, and manuscripts that concern Basic Science, Animal Studies, Cadaver Studies, and Experimental Studies. For a full description of these Evidence-Based Medicine ratings, please refer to the Table of Contents or the online Instructions to Authors www.springer.com/00266 .
背景:间充质干细胞疗法具有诱导血管生成的潜力。然而,在临床应用方面仍存在一些局限性。光调节/光生物调节是一种非侵入性、无毒的光疗方法,当应用正确的辐照参数时,能够刺激细胞活力、增殖、分化和迁移。对已发表的关于在体外条件下经光生物调节的间充质细胞的文献进行了综述。我们的目的是描述这些研究的结果,并确定任何可能突出最适用程序的趋势。
方法:在 PubMed 数据库中以光生物调节或光激活或光调节和间充质细胞为检索词进行英文检索。所有体外应用的照射,均针对人类间充质细胞,波长范围为 600 至 1000nm。
结果:检索得到 42 篇原始文章和 5 篇综述。最终,选择了 37 篇文章,共计 43 项研究。3 项研究(7.0%)采用 620 至 625nm 波长;26 项研究(60.5%)采用 625 至 740nm 波长;13 项研究(30.2%)采用 740 至 1000nm 波长;1 项研究(2.3%)采用混合波长。在 43 项研究中,有 14 项评估了细胞活力(n=14/43,32.6%);34 项评估了细胞增殖(n=34/43,79.1%);19 项评估了细胞分化(n=19/43,44.2%);3 项评估了细胞迁移(n=3/43,7.0%)。
结论:光生物调节是一种很有前途的技术,可以影响细胞活力、分化、增殖或迁移,从而提高其再生能力。
未分级:本刊要求作者对每一篇可适用循证医学分级的投稿进行分级。这排除了综述文章、书评和涉及基础科学、动物研究、尸体研究和实验研究的手稿。有关这些循证医学分级的完整描述,请参考目录或在线作者指南 www.springer.com/00266。
Aesthetic Plast Surg. 2021-8
Aesthetic Plast Surg. 2015-10
Aesthetic Plast Surg. 2024-9-13
Aesthetic Plast Surg. 2020-2
Aesthetic Plast Surg. 2022-8
Aesthetic Plast Surg. 2020-6
Lasers Med Sci. 2020-6-22
J Lasers Med Sci. 2024-4-17
Lasers Med Sci. 2023-11-20
Regen Biomater. 2023-3-24
Bull Exp Biol Med. 2023-2
Biochem Biophys Res Commun. 2019-4-24
J Biol Regul Homeost Agents. 2018
Lasers Med Sci. 2019-6