Bateni Zahra, Azadi Leila, Tavalaee Marziyeh, Kiani-Esfahani Abbas, Fazilati Mohammad, Nasr-Esfahani Mohammad Hossein
Department of Reproductive Biotechnology at Reproductive Biomedicine Research Center, Royan Institute for Biotechnology , ACECR, Isfahan , Iran .
Syst Biol Reprod Med. 2014 Aug;60(4):245-50. doi: 10.3109/19396368.2014.897773. Epub 2014 Apr 7.
Despite extensive research carried out for optimization and commercialization of sperm cryopreservation media, percentage of motility and viability remain low following cryopreservation. These adverse effects have been partially ascribed to reactive oxygen species (ROS) production during cryopreservation. Therefore, we proposed that addition of a cell permeable antioxidant like Tempol, with superoxide dismutase (SOD) mimetic action, may overcome these effects in an optimized commercially available cryo-protective medium. Therefore, semen samples were cryopreserved in the presence or absence of Tempol. A concentration of 5 μM Tempol was defined as optimal since it significantly improved motility and viability post thawing and reduced DNA fragmented sperm. In addition, percentage of ROS positive sperm was reduced. These effects of Tempol can be attributed to cell permeability characteristic and ability to reduce superoxide production both at intra- and extra-cellular levels. Tempol may hold the potential for clinical applications.
尽管为优化精子冷冻保存培养基并将其商业化进行了广泛研究,但冷冻保存后精子的活力和存活率百分比仍然很低。这些不利影响部分归因于冷冻保存过程中活性氧(ROS)的产生。因此,我们提出添加一种具有超氧化物歧化酶(SOD)模拟作用的细胞可渗透抗氧化剂,如Tempol,可能会在优化的市售冷冻保护培养基中克服这些影响。因此,精液样本在有或没有Tempol的情况下进行冷冻保存。5μM的Tempol浓度被定义为最佳浓度,因为它能显著提高解冻后的活力和存活率,并减少DNA碎片化的精子。此外,ROS阳性精子的百分比降低。Tempol的这些作用可归因于其细胞通透性特征以及在细胞内和细胞外水平降低超氧化物产生的能力。Tempol可能具有临床应用潜力。