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衰老的费希尔大鼠心脏中的线粒体代谢与底物竞争

Mitochondrial metabolism and substrate competition in the aging Fischer rat heart.

作者信息

McMillin J B, Taffet G E, Taegtmeyer H, Hudson E K, Tate C A

机构信息

Department of Pathology and Laboratory Medicine, University of Texas Medical School at Houston.

出版信息

Cardiovasc Res. 1993 Dec;27(12):2222-8. doi: 10.1093/cvr/27.12.2222.

Abstract

OBJECTIVE

The objective was to examine mitochondrial oxidative metabolism of long chain fatty acids and to compare it with glucose uptake and the generation of pressure-volume work in hearts from mature and aged rats.

METHODS

Hearts from mature (8 to 15 months of age) and old (28 to 30 months) Fischer 344 rats were perfused as working hearts with either 10 mM glucose or glucose plus 1 mM oleic acid (2% bovine serum albumin) and rates of glucose extraction were determined. Hearts were subjected to a stepwise increase in work load. In separate experiments, mitochondria were isolated from mature and old rat hearts and assayed for respiratory function, carnitine exchange, carnitine palmitoyltransferase activities, and phospholipid content.

RESULTS

Although there were no differences in peak work attained between the mature and old rats in the presence of either glucose alone or glucose plus oleic acid, glucose utilisation was significantly decreased by oleate in the mature animals only. No significant changes in either glutamate or succinate (+rotenone) supported respiration were found in heart mitochondria isolated from old rats compared with mature animals. In agreement with prior studies with the Wistar rat model of aging, significant decrements in the rates of palmitoylcarnitine oxidation and carnitine exchange were apparent in the old Fischer animals. A significant lowering of heart mitochondrial carnitine palmitoyltransferase I activity was also found in the old animals. A decrease in the amounts of carnitine loaded in mitochondria from old animals is consistent with reduced carnitine content in both mitochondria and whole hearts from aged Wistar and Fischer rats. A significant (23%) reduction in heart mitochondrial cardiolipin content from 30 month old Fischer rats suggests that this phospholipid may also contribute to the lower rates of carnitine and acylcarnitine transport across the mitochondrial inner membrane.

CONCLUSION

The limitation in the delivery of fatty acyl units to beta oxidation as measured in isolated heart mitochondria from old rats has a physiological correlate in the intact heart. The well documented suppression of glucose oxidation by fatty acids seen in the adult rat heart is not seen in old hearts, supporting the in vitro finding of decreased oxidation of palmitoylcarnitine with senescence.

摘要

目的

研究长链脂肪酸的线粒体氧化代谢,并将其与成熟和老年大鼠心脏中葡萄糖摄取及压力 - 容积功的产生进行比较。

方法

将成熟(8至15个月龄)和老年(28至30个月)的Fischer 344大鼠的心脏作为工作心脏,用10 mM葡萄糖或葡萄糖加1 mM油酸(2%牛血清白蛋白)进行灌注,并测定葡萄糖摄取率。使心脏的工作负荷逐步增加。在单独的实验中,从成熟和老年大鼠心脏中分离出线粒体,测定其呼吸功能、肉碱交换、肉碱棕榈酰转移酶活性和磷脂含量。

结果

尽管在单独使用葡萄糖或葡萄糖加油酸的情况下,成熟和老年大鼠达到的峰值功没有差异,但仅在成熟动物中,油酸显著降低了葡萄糖利用率。与成熟动物相比,从老年大鼠分离的心脏线粒体中,谷氨酸或琥珀酸(+鱼藤酮)支持的呼吸均未发现显著变化。与先前对Wistar大鼠衰老模型的研究一致,老年Fischer动物中棕榈酰肉碱氧化速率和肉碱交换明显降低。老年动物的心脏线粒体肉碱棕榈酰转移酶I活性也显著降低。老年动物线粒体中肉碱装载量的减少与衰老的Wistar和Fischer大鼠线粒体和全心脏中肉碱含量的降低一致。30个月龄Fischer大鼠心脏线粒体心磷脂含量显著降低(23%),表明这种磷脂可能也导致了肉碱和酰基肉碱跨线粒体内膜转运速率降低。

结论

在老年大鼠离体心脏线粒体中测得的脂肪酰基单位向β氧化的传递受限在完整心脏中有生理相关性。成年大鼠心脏中脂肪酸对葡萄糖氧化的明显抑制在老年心脏中未出现,这支持了体外研究中棕榈酰肉碱氧化随衰老而降低的发现。

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