Rastgar Sara, Movahedinia Abdolali, Salamat Negin, Salati Amirparviz, Zabihi Ebrahim
Department of Marine Biology, Faculty of Marine Sciences, Khorramshahr University of Marine Science and Technology, P.O. Box 669, Khorramshahr, Iran.
Department of Marine Biology, Faculty of Marine Sciences, University of Mazandaran, Babolsar, Iran.
Cytotechnology. 2018 Dec;70(6):1643-1654. doi: 10.1007/s10616-018-0256-y. Epub 2018 Oct 10.
The aim of this research was a comparative study on the isolation and culture of head kidney macrophages derived from Acipenser persicous and Rutilus frisii kutum as teleost and chondrostei species of fish. The macrophages were isolated by density gradient sedimentation, followed by adherence to a plastic surface. They exhibited strong phagocytic activity against bacteria. The effect of cell density, incubation time, FBS percentage, pH and temperatures on the cell number and viability were determined and compared. Also, the effect of light/dark regimen on viability, adherence, release of reactive oxygen species (ROS) and nitric oxide (NO) in the macrophages was determined. The results showed that the Caspian kutum macrophages were more sensitive to FBS percentage and cell density whereas the Persian sturgeon macrophages were more sensitive to pH of the cell culture media. The adherence and viability of the macrophages from both fish species firstly increased (P < 0.05) after exposure to a light/dark regimen, but then significantly decreased as did ROS and NO productions. For the first time, this study has determined the optimal conditions for primary culture of macrophages derived from sturgeons, and shows the unique effect of light on the biology of fish immune cells.
本研究旨在对源自波斯鲟和里海拟鲤这两种硬骨鱼纲和软骨硬鳞鱼纲鱼类的头肾巨噬细胞进行分离和培养的比较研究。通过密度梯度沉降法分离巨噬细胞,随后使其贴附于塑料表面。它们对细菌表现出强烈的吞噬活性。测定并比较了细胞密度、孵育时间、胎牛血清(FBS)百分比、pH值和温度对细胞数量和活力的影响。此外,还测定了光照/黑暗周期对巨噬细胞活力、贴附、活性氧(ROS)释放和一氧化氮(NO)释放的影响。结果表明,里海拟鲤巨噬细胞对FBS百分比和细胞密度更为敏感,而波斯鲟巨噬细胞对细胞培养基的pH值更为敏感。两种鱼类巨噬细胞的贴附性和活力在暴露于光照/黑暗周期后首先增加(P < 0.05),但随后显著下降,ROS和NO的产生也随之下降。本研究首次确定了源自鲟鱼的巨噬细胞原代培养的最佳条件,并显示了光照对鱼类免疫细胞生物学的独特影响。