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不同甘油浓度培养基对绵羊红细胞体外活力的影响

Effect of Media with Different Glycerol Concentrations on Sheep Red Blood Cells' Viability In Vitro.

作者信息

Pasciu Valeria, Sotgiu Francesca D, Porcu Cristian, Berlinguer Fiammetta

机构信息

Department of Veterinary Medicine, University of Sassari, 07100 Sassari, Italy.

出版信息

Animals (Basel). 2021 May 28;11(6):1592. doi: 10.3390/ani11061592.

Abstract

The use of high doses of glycerol as a livestock feed supplement is followed by a rapid increase in plasma concentrations and consequently in plasma osmolality. Moreover, glycerol is a highly diffusible molecule that can readily permeate the red blood cell (RBC) membrane following a concentration gradient. A rise in glycerol plasma concentrations can thus alter RBC homeostasis. The present study aimed at investigating both glycerol osmotic effects on sheep RBCs and their oxidative response under in vitro conditions. Sheep blood samples were suspended in media supplemented with increasing glycerol concentrations (0, 25, 50, 100, 150, 200, 250, 300, 350, 400 mg/dL), which reflected those found in vivo in previous studies, and incubated at 37 °C for 4h. Thereafter, osmolality and hemolysis were determined in spent media, while cell extracts were used to assay intracellular concentration of glycerol, ATP, Ca ions, oxidative stress markers and reactive oxygen species (ROS).The study confirmed that glycerol intracellular concentrations are directly related with its concentration in the incubation media, as well as hemolysis ( < 0.001) which increased significantly at glycerol concentrations higher form 200 mg/dL. ROS intracellular level increased at all glycerol concentration tested ( < 0.01) and total thiols decreased at the highest concentrations. However, RBCs proved to be able to cope by activating their antioxidant defense system. Superoxide dismutase activity indeed increased at the highest glycerol concentrations ( < 0.001), while total antioxidant capacity and malonyldialdehyde, a typical product of lipid peroxidation by ROS, did not show significant changes. Moreover, no alterations in intracellular Ca ions and ATP concentrations were found. In conclusion, glycerol-induced hemolysis can be related to the induced osmotic stress. In sheep, nutritional treatments should be designed to avoid reaching glycerol circulating concentrations higher than 200 mg/dL.

摘要

高剂量甘油用作家畜饲料添加剂后,血浆浓度会迅速升高,进而导致血浆渗透压升高。此外,甘油是一种高度可扩散的分子,能够沿浓度梯度轻易穿透红细胞(RBC)膜。因此,甘油血浆浓度的升高会改变红细胞的稳态。本研究旨在调查体外条件下甘油对绵羊红细胞的渗透作用及其氧化反应。将绵羊血样悬浮于添加了递增甘油浓度(0、25、50、100、150、200、250、300、350、400mg/dL)的培养基中,这些浓度反映了先前研究中在体内发现的浓度,并在37℃下孵育4小时。此后,测定用过的培养基中的渗透压和溶血情况,同时使用细胞提取物检测细胞内甘油、ATP、钙离子、氧化应激标志物和活性氧(ROS)的浓度。研究证实,甘油细胞内浓度与其在孵育培养基中的浓度直接相关,溶血情况也是如此(P<0.001),当甘油浓度高于200mg/dL时,溶血显著增加。在所测试的所有甘油浓度下,细胞内ROS水平均升高(P<0.01),而在最高浓度下总硫醇减少。然而,红细胞通过激活其抗氧化防御系统证明能够应对。在最高甘油浓度下,超氧化物歧化酶活性确实增加(P<0.001),而总抗氧化能力和丙二醛(ROS脂质过氧化的典型产物)没有显著变化。此外,未发现细胞内钙离子和ATP浓度有改变。总之,甘油诱导的溶血可能与诱导的渗透应激有关。在绵羊中,营养处理应设计为避免甘油循环浓度高于200mg/dL。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39a8/8228453/54c2ded41dc4/animals-11-01592-g001.jpg

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