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萨赫勒山羊红细胞在非离子葡萄糖培养基中渗透裂解的表型变异

Phenotypic variations in osmotic lysis of Sahel goat erythrocytes in non-ionic glucose media.

作者信息

Igbokwe Nanacha Afifi, Igbokwe Ikechukwu Onyebuchi

出版信息

J Basic Clin Physiol Pharmacol. 2016 Mar;27(2):147-54. doi: 10.1515/jbcpp-2015-0036.

Abstract

BACKGROUND

Erythrocyte osmotic lysis in deionised glucose media is regulated by glucose influx, cation efflux, and changes in cell volume after water diffusion. Transmembrane fluxes may be affected by varied expression of glucose transporter protein and susceptibility of membrane proteins to glucose-induced glycosylation and oxidation in various physiologic states.

METHODS

Variations in haemolysis of Sahel goat erythrocytes after incubation in hyposmotic non-ionic glucose media, associated with sex, age, late pregnancy, and lactation, were investigated.

RESULTS

The osmotic fragility curve in glucose media was sigmoidal with erythrocytes from goats in late pregnancy (PRE) or lactation (LAC) or from kid (KGT) or middle-aged (MGT) goats. Non-sigmoidal phenotype occurred in yearlings (YGT) and old (OGT) goats. The composite fragility phenotype for males and non-pregnant dry (NPD) females was non-sigmoidal. Erythrocytes with non-sigmoidal curves were more stable than those with sigmoidal curves because of inflectional shift of the curve to the left. Erythrocytes tended to be more fragile with male than female sex, KGT and MGT than YGT and OGT, and LAC and PRE than NPD. Thus, sex, age, pregnancy, and lactation affected the haemolytic pattern of goat erythrocytes in glucose media.

CONCLUSIONS

The physiologic state of the goat affected the in vitro interaction of glucose with erythrocytes, causing variations in osmotic stability with variants of fragility phenotype. Variations in the effect of high extracellular glucose concentrations on the functions of membrane-associated glucose transporter, aquaporins, and the cation cotransporter were presumed to be relevant in regulating the physical properties of goat erythrocytes under osmotic stress.

摘要

背景

去离子葡萄糖培养基中的红细胞渗透裂解受葡萄糖内流、阳离子外流以及水扩散后细胞体积变化的调节。跨膜通量可能受葡萄糖转运蛋白表达变化以及膜蛋白在各种生理状态下对葡萄糖诱导的糖基化和氧化的敏感性影响。

方法

研究了萨赫勒山羊红细胞在低渗非离子葡萄糖培养基中孵育后溶血的变化,这些变化与性别、年龄、妊娠后期和泌乳有关。

结果

葡萄糖培养基中的渗透脆性曲线呈S形,妊娠后期(PRE)或泌乳期(LAC)山羊、幼龄(KGT)或中年(MGT)山羊的红细胞均如此。一岁龄(YGT)和老龄(OGT)山羊的红细胞呈现非S形表型。雄性和未孕干奶期(NPD)雌性的复合脆性表型为非S形。非S形曲线的红细胞比S形曲线的红细胞更稳定,因为曲线的拐点向左移动。雄性红细胞往往比雌性更脆弱,KGT和MGT比YGT和OGT更脆弱,LAC和PRE比NPD更脆弱。因此,性别、年龄、妊娠和泌乳会影响山羊红细胞在葡萄糖培养基中的溶血模式。

结论

山羊的生理状态影响葡萄糖与红细胞的体外相互作用,导致渗透稳定性随脆性表型变体而变化。高细胞外葡萄糖浓度对膜相关葡萄糖转运蛋白、水通道蛋白和阳离子共转运蛋白功能的影响变化,被认为与调节渗透应激下山羊红细胞的物理特性有关。

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