Urology Department, Faculty of Medicine for Girls, Al Azhar University, Cairo, Egypt.
Engineering Applications of Lasers Department, National Institute of Laser Enhanced Sciences, Cairo University, Giza, Egypt.
Photochem Photobiol Sci. 2024 Feb;23(2):377-385. doi: 10.1007/s43630-023-00525-y. Epub 2024 Jan 27.
Improved sperm motility is necessary for successful sperm passage through the female genital system, efficacious fertilization, and a greater probability of pregnancy. By stimulating the mitochondrial respiratory chain, low-level laser photobiomodulation has been shown to increase sperm motility and velocity. The respiratory chain in mitochondria is the primary site of action for cytochrome c oxidase because it can absorb light in the visible and infrared ranges. The present study aimed to investigate the effects of red laser 650 nm, near infrared laser (NIR) 980 nm, and combination of both on human spermatozoa motility and DNA integrity at different doses. An in-vitro controlled trial was performed in Al Zahraa university hospital laboratory using thirty fresh human semen specimens. Samples were exposed to red laser 650 nm, near infrared laser (NIR) 980 nm, and combination of both for various irradiation times. Sperm motility for the test and control aliquots was assessed as recommended in the manual of WHO-2021. Sperm chromatin integrity was evaluated using the Sperm Chromatin Structure Assay. Results revealed almost 70%, 80% and 100% increase in the total motility after 3 min of the 650-nm, 980-nm and the combined laser irradiation, respectively. Additionally, the Sperm Chromatin Dispersion assay was carried out on sperm heads utilizing human sperm DNA fragmentation, demonstrating that none of the three laser types had any discernible effects.
提高精子的运动能力对于精子成功通过女性生殖系统、有效受精和提高怀孕概率是必要的。低水平激光光生物调节通过刺激线粒体呼吸链,已被证明可以增加精子的运动能力和速度。线粒体中的呼吸链是细胞色素 c 氧化酶的主要作用部位,因为它可以吸收可见光和红外线范围内的光。本研究旨在探讨红光 650nm、近红外光(NIR)980nm 以及两者联合应用于不同剂量对人精子运动能力和 DNA 完整性的影响。在 Al Zahraa 大学医院实验室进行了一项体外对照试验,使用了 30 份新鲜的人类精液标本。样本分别暴露于红光 650nm、近红外光(NIR)980nm 和两者的组合中,照射时间不同。按照世界卫生组织 2021 年手册的建议,评估了测试和对照等分试样的精子运动能力。利用精子染色质结构分析评估精子染色质完整性。结果显示,分别经过 3 分钟的 650nm、980nm 和联合激光照射后,总运动能力分别增加了近 70%、80%和 100%。此外,还利用人类精子 DNA 碎片化对精子头部进行了精子染色质弥散分析,结果表明这三种激光类型都没有明显的影响。