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脐带动脉壁中糖胺聚糖的生物合成及其在早发性妊娠高血压综合征中的改变。

Glycosaminoglycan-biosynthesis in the wall of the umbilical cord artery and its alteration in EPH-gestosis.

作者信息

Romanowicz L, Bańkowski E, Galewska Z, Jaworski S

机构信息

Department of Biochemistry, Medical Academy of Białystok, Poland.

出版信息

Eur J Obstet Gynecol Reprod Biol. 1997 Mar;72(1):19-25. doi: 10.1016/s0301-2115(96)02651-6.

Abstract

The mechanism of edema, proteinuria, hypertension (EPH)-gestosis-associated premature replacement of hyaluronic acid by sulphated glycosaminoglycans (GAGs) in the umbilical cord arteries is not known. It may result from altered biosynthesis, a different degradation rate or a combination of both phenomena. In order to solve this problem, it was decided to evaluate the biosynthesis and degradation of newly synthesized GAGs in the umbilical cord arteries of control newborns and those delivered by mothers with EPH-gestosis. Incorporation of radioactive precursors ([14C]glucosamine and [35S]sulphate) into GAGs and degradation of newly synthesized GAGs using the pulse-chase experiment were evaluated. We found that the investigated tissue slices incorporated distinctly less [14C]glucosamine into hyaluronic acid in comparison to controls. In contrast to that, the biosynthesis of sulphated GAGs did not change significantly. However, the degradation of newly synthesized sulphated GAGs was distinctly slower than in control tissues. It may be concluded that an EPH-gestosis associated decrease in hyaluronic acid content in the umbilical cord artery is a result of decreased biosynthesis of this substance, whereas an increase in sulphated GAGs-content is rather a result of slower degradation of newly synthesized GAGs.

摘要

脐带动脉中水肿、蛋白尿、高血压(EPH)-妊娠中毒症相关的硫酸化糖胺聚糖(GAGs)过早取代透明质酸的机制尚不清楚。这可能是由于生物合成改变、降解速率不同或这两种现象共同作用所致。为了解决这个问题,研究人员决定评估对照新生儿以及患有EPH-妊娠中毒症的母亲所分娩新生儿的脐带动脉中新合成GAGs的生物合成和降解情况。通过脉冲追踪实验评估放射性前体([14C]葡糖胺和[35S]硫酸盐)掺入GAGs的情况以及新合成GAGs的降解情况。我们发现,与对照组相比,所研究的组织切片掺入到透明质酸中的[14C]葡糖胺明显减少。与此相反,硫酸化GAGs的生物合成没有显著变化。然而,新合成的硫酸化GAGs的降解明显比对照组织慢。可以得出结论,脐带动脉中与EPH-妊娠中毒症相关的透明质酸含量降低是该物质生物合成减少的结果,而硫酸化GAGs含量的增加则更可能是新合成GAGs降解减慢的结果。

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