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[实验性高血压中的多胺与心血管肥大]

[Polyamines and cardiovascular hypertrophy in experimental hypertension].

作者信息

Mathy C, Carlier P, Yerna N, Rorive G

机构信息

Département de Médecine, Université de Liège, Belgique.

出版信息

Arch Mal Coeur Vaiss. 1987 Jun;80(6):777-82.

PMID:2959229
Abstract

UNLABELLED

Biochemical mechanisms which control cardiac and vascular response to hypertension are still unclear. Modifications of polyamines (putrescine, spermine, spermidine) may play a role in this phenomenon, since these molecules have been shown of importance in the control of tissue growth. Ornithine Decarboxylase (ODC) catalyses the first and probably the rate limiting step in the biosynthesis of the polyamines. We thus attempted to detect modification of ODC activity in renovascular hypertension in the rat (G1K-1C) and tried to correlate hypertrophic response and ODC activity in the aorta (Ao), the left (LV) and the right (RV) ventricles. In this experimental model, the aortic ODC activity increased at day 1 and 2, after clipping the renal artery, whereas in the LV the ODC activity increased after day 3 but stay high at least until day 7. The peak of ODC activity comes before the increase in DNA synthesis which occurs at day 4 in Ao, and the increase in protein turnover observed at day 7 in LV. No significant variation of ODC activity neither changes in DNA or protein biosynthesis rate are observed in the RV. In parallel with changes in ODC activity, an increase in spermidine and spermine content and mainly in the spermidine/spermine ratio is observed in the Ao and the LV confirming stimulation in polyamine biosynthesis in hypertensive tissues.

IN CONCLUSION

increase in ODC activity is observed only in these tissues that will develop hypertrophy or hyperplasia and this modification is observed before any increase in nucleic acids or protein tissues content or turnover rate.

摘要

未标记

控制心脏和血管对高血压反应的生化机制仍不清楚。多胺(腐胺、精胺、亚精胺)的修饰可能在这一现象中起作用,因为这些分子已被证明在控制组织生长中具有重要意义。鸟氨酸脱羧酶(ODC)催化多胺生物合成的第一步,可能也是限速步骤。因此,我们试图检测大鼠肾血管性高血压(G1K-1C)中ODC活性的变化,并试图将主动脉(Ao)、左心室(LV)和右心室(RV)的肥厚反应与ODC活性相关联。在这个实验模型中,肾动脉夹闭后第1天和第2天主动脉ODC活性增加,而左心室ODC活性在第3天后增加,但至少持续到第7天仍保持较高水平。ODC活性峰值出现在主动脉第4天DNA合成增加之前,以及左心室第7天观察到的蛋白质周转率增加之前。右心室未观察到ODC活性的显著变化,也未观察到DNA或蛋白质生物合成速率的变化。与ODC活性的变化同时,在主动脉和左心室中观察到亚精胺和精胺含量增加,主要是亚精胺/精胺比值增加,这证实了高血压组织中多胺生物合成受到刺激。

结论

仅在将发生肥大或增生的组织中观察到ODC活性增加,并且在核酸或蛋白质组织含量或周转率任何增加之前就观察到这种变化。

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