Suppr超能文献

衰老大鼠肾脏中前列环素和血栓素生物合成及其分解代谢酶活性的变化。

Changes in prostacyclin and thromboxane biosynthesis and their catabolic enzyme activity in kidneys of aging rats.

作者信息

Chang W C, Tai H H

出版信息

Life Sci. 1984 Mar 26;34(13):1269-80. doi: 10.1016/0024-3205(84)90550-2.

Abstract

The effects of aging on the prostacyclin and thromboxane biosynthesis and prostaglandin catabolic enzyme activity in rat kidney were investigated. The prostacyclin biosynthesis, using arachidonic acid as substrate, was the greatest in young kidneys (2 months old) and then progressively decreased in mature (12 months old) and old (24 months old) kidneys, while thromboxane biosynthetic activity showed no significant change as a function of age. When prostaglandin H2 was used as substrate, the prostacyclin and thromboxane biosynthesis showed similar results as when arachidonic acid was used as substrate; the prostacyclin biosynthesis progressively decreased and thromboxane biosynthesis showed no significant change as a function of age. The fatty acid cyclooxygenase in kidney was measured by a specific radioimmunoassay. No significant change in renal fatty acid cyclooxygenase as a function of age was found. Thus, we concluded that the progressive decrease in renal prostacyclin biosynthesis as a function of age is due to a defect in prostacyclin synthetase in aged kidneys. The prostaglandin catabolic enzyme, NAD+-dependent 15-hydroxyprostaglandin dehydrogenase, in kidneys was also investigated. The enzyme activity progressively decreased as a function of age, which suggested a decrease in the metabolism of thromboxane A2 in aged kidneys. The present results, indicating a decrease in renal prostacyclin biosynthesis and renal 15-hydroxyprostaglandin dehydrogenase activity with aging, might contribute to a plausible explanation of the progressive decrease in renal functions in the elderly.

摘要

研究了衰老对大鼠肾脏中前列环素和血栓素生物合成以及前列腺素分解代谢酶活性的影响。以花生四烯酸为底物时,前列环素生物合成在年轻肾脏(2个月大)中最高,然后在成熟肾脏(12个月大)和老年肾脏(24个月大)中逐渐降低,而血栓素生物合成活性并未随年龄增长发生显著变化。当以前列腺素H2为底物时,前列环素和血栓素生物合成的结果与以花生四烯酸为底物时相似;前列环素生物合成逐渐降低,血栓素生物合成并未随年龄增长发生显著变化。通过特定的放射免疫分析法测定肾脏中的脂肪酸环氧化酶。未发现肾脏脂肪酸环氧化酶随年龄增长有显著变化。因此,我们得出结论,肾脏中前列环素生物合成随年龄增长逐渐降低是由于老年肾脏中前列环素合成酶存在缺陷。还研究了肾脏中的前列腺素分解代谢酶,即NAD⁺依赖性15-羟基前列腺素脱氢酶。该酶活性随年龄增长逐渐降低,这表明老年肾脏中血栓素A2的代谢减少。目前的结果表明,随着衰老,肾脏中前列环素生物合成和肾脏15-羟基前列腺素脱氢酶活性降低,这可能有助于合理解释老年人肾功能的逐渐下降。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验