Research properties of the environment on basis of vegetable components from extract soy at the cryopreservation of sperm of bulls

M. Aidos, S. Aljan, Alshinbaev Orynbasar
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引用次数: 1

Abstract

By cryobiological, immunological and biophysical methods it is established that in the mechanism of temperature shock of cell the leading role is assigned to osmosis, and instant movement of water through it at the expense of an equilibration of osmotic pressure that is the reason of destruction of a cell membrane deprives a cytoplasmic membrane of properties of semipermeability. It was studied the fortification mechanism sperm when cooling and it is established that the fortificant accumulates on surfaces of a cell and creates a hydrophobic phase that slows down the osmotic action connected with an balancing  of concentration gradients in ''cell-wednesday'' system. It is established, also, that the protective layer is created on a cytoplasmatic membrane on an extent of 2-5 minutes from the moment of its contact with an anti-shock component – fortificanty and then strongly is kept on it even at reusable washing of cells by isotonic environments. These theoretical research were taken as a basis of a technique of determination of anti-shock properties of cryoresistance various the bioactive substances and biochemical connections by search, development and improvement of environments for a cryopreservation of sperm of different types of animals. When freezing sperm in nitrogen, an obligatory component of the cryoprotective environment is the native yolk of eggs containing many phospholipids and lipoproteins which at interaction with plasma membranes sperm modify them by increase of resistant and stability. Being adsorbed by lipophilic and hydrophilic sites of plasma membranes lipid complexes almost by 2-3 times thickencell membrane that gives stability to sperm to extreme temperature, osmotic, immunological, physical and chemical and mechanical to damages.
以大豆提取物植物成分为基础研究公牛精子低温保存的环境特性
通过低温生物学、免疫学和生物物理学的方法,我们确定了在细胞温度冲击的机制中,渗透是起主导作用的,水通过它的瞬间运动是以破坏渗透压的平衡为代价的,这是细胞膜破坏的原因,剥夺了细胞质膜的半渗透性。研究了精子冷却时的强化机制,确定了强化剂在细胞表面积聚并形成疏水相,减缓了与“细胞-星期三”系统浓度梯度平衡相关的渗透作用。此外,可以确定的是,在细胞质膜与抗冲击成分接触后的2-5分钟内,保护层会在细胞质膜上形成,即使在等渗环境中重复洗涤细胞时,保护层也会牢固地保持在细胞质膜上。这些理论研究为通过寻找、开发和改善不同种类动物精子的低温保存环境来测定其抗低温冲击性能、各种生物活性物质和生物化学联系奠定了基础。当在氮气中冷冻精子时,冷冻保护环境的一个必要组成部分是含有许多磷脂和脂蛋白的卵子的天然蛋黄,这些磷脂和脂蛋白与质膜相互作用,精子通过增加抗性和稳定性来修饰它们。由于质膜的亲脂和亲水部位的脂质复合物几乎被2-3倍厚的细胞膜所吸附,使精子在极端温度、渗透、免疫、物理化学和机械损伤下保持稳定性。
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