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Red light improves spermatozoa motility and does not induce oxidative DNA damage

机译:红灯改善精子毒力,不会诱导氧化DNA损伤

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摘要

The ability to successfully fertilize ova relies upon the swimming ability of spermatozoa. Both in humans and in animals, sperm motility has been used as a metric for the viability of semen samples. Recently, several studies have examined the efficacy of low dosage red light exposure for cellular repair and increasing sperm motility. Of prime importance to the practical application of this technique is the absence of DNA damage caused by radiation exposure. In this study, we examine the effect of 633?nm coherent, red laser light on sperm motility using a novel wavelet-based algorithm that allows for direct measurement of curvilinear velocity under red light illumination. This new algorithm gives results comparable to the standard computer-assisted sperm analysis (CASA) system. We then assess the safety of red light treatment of sperm by analyzing, (1) the levels of double-strand breaks in the DNA, and (2) oxidative damage in the sperm DNA. The results demonstrate that for the parameters used there are insignificant differences in oxidative DNA damage as a result of irradiation.
机译:成功施肥卵子的能力依赖于精子的游泳能力。无论是在人类和动物中,精子运动都被用作精液样品的可行性的度量。最近,几项研究检测了低剂量红光暴露对细胞修复和提高精子运动的功效。对这种技术的实际应用的主要重要性是由于辐射暴露引起的DNA损伤。在这项研究中,我们使用一种基于小波的算法研究了633·nm相干,红色激光对精子运动的影响,该算法允许在红光照明下直接测量曲线速度的曲线速度。该新算法提供了与标准计算机辅助精子分析(CASA)系统相当的结果。然后,通过分析来评估精子的红光处理的安全性,(1)DNA中的双链断裂水平,和(2)精子DNA中的氧化损伤。结果表明,对于使用的参数,由于照射而导致氧化DNA损伤存在微不足道的差异。

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