Department of Dermatology, Vitiligo Research Chair, College of Medicine, King Saud University, Riyadh, Saudi Arabia.
Lasers Med Sci. 2012 Jan;27(1):237-49. doi: 10.1007/s10103-011-0885-2. Epub 2011 Jan 28.
The aim of this work is to review the available literature on the details of low-level laser therapy (LLLT) use for the enhancement of the proliferation of various cultured cell lines including stem cells. A cell culture is one of the most useful techniques in science, particularly in the production of viral vaccines and hybrid cell lines. However, the growth rate of some of the much-needed mammalian cells is slow. LLLT can enhance the proliferation rate of various cell lines. Literature review from 1923 to 2010. By investigating the outcome of LLLT on cell cultures, many articles report that it produces higher rates of ATP, RNA, and DNA synthesis in stem cells and other cell lines. Thus, LLLT improves the proliferation of the cells without causing any cytotoxic effects. Mainly, helium neon and gallium-aluminum-arsenide (Ga-Al-As) lasers are used for LLLT on cultured cells. The results of LLLT also vary according to the applied energy density and wavelengths to which the target cells are subjected. This review suggests that an energy density value of 0.5 to 4.0 J/cm(2) and a visible spectrum ranging from 600 to 700 nm of LLLT are very helpful in enhancing the proliferation rate of various cell lines. With the appropriate use of LLLT, the proliferation rate of cultured cells, including stem cells, can be increased, which would be very useful in tissue engineering and regenerative medicine.
本研究旨在综述低水平激光疗法(LLLT)在促进多种细胞系(包括干细胞)增殖方面的应用细节。细胞培养是科学中最有用的技术之一,特别是在生产病毒疫苗和杂交细胞系方面。然而,一些急需的哺乳动物细胞的生长速度较慢。LLLT 可以提高多种细胞系的增殖速度。1923 年至 2010 年的文献回顾。通过研究 LLLT 对细胞培养的结果,许多文章报道它能提高干细胞和其他细胞系中 ATP、RNA 和 DNA 合成的速率。因此,LLLT 在不产生细胞毒性作用的情况下提高了细胞的增殖能力。氦氖(He-Ne)和砷化镓铝(Ga-Al-As)激光器主要用于培养细胞的 LLLT。LLLT 的结果还根据目标细胞所接受的应用能量密度和波长而有所不同。本综述表明,0.5 至 4.0 J/cm(2)的能量密度值和 600 至 700nm 的可见光谱对提高多种细胞系的增殖速率非常有帮助。适当使用 LLLT 可以提高包括干细胞在内的培养细胞的增殖速度,这在组织工程和再生医学中非常有用。