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Role of acid sphingomyelinase in the age-dependent dysregulation of sphingolipids turnover in the tissues of rats

In: General Physiology and Biophysics, vol. 35, no. 2
Nataliya Babenko - Vladimir Garkavenko - Galina Storozhenko - Olga Timofiychuk
Detaily:
Rok, strany: 2016, 195 - 205
O článku:
Old age-associated pathologies usually coincide with altered sphingolipid metabolism. In the present article, the role of acid sphingomyelinase (ASMase) in the age-dependent changes of sphingomyelin (SM) and ceramide contents in the tissues has been investigated by means of ASMase inhibitors, imipramine and zoledronic acid. It has been determined that ceramide content and ceramide/SM ratio increased, while SM level decreased in the heart, liver, blood serum and skeletal muscles of 24-month old rats in contrast to 3-month old animals. Injections of imipramine or zoledronic acid to 24-month old rats resulted in significant downregulation of ASMase in the liver and skeletal and heart muscles. The both inhibitors decreased the ceramide content and ceramide/SM ratio and increased the SM content in all tissues studied, except the heart, of old rats to the levels close to those observed in the young animals. Long-term treatment of rats by inhibitors, which have different mechanisms of action on ASMase, exerts the similar, but not equal effects on enzyme activity and SM turnover. In summary, the data above strongly suggest that the age-dependent up-regulation of ASMase plays an important role in the modulation of ceramide and SM contents in rat tissues and that imipramine and zoledronic acid are useful tools for SM turnover manipulation at old age.
Ako citovať:
ISO 690:
Babenko, N., Garkavenko, V., Storozhenko, G., Timofiychuk, O. 2016. Role of acid sphingomyelinase in the age-dependent dysregulation of sphingolipids turnover in the tissues of rats. In General Physiology and Biophysics, vol. 35, no.2, pp. 195-205. 0231-5882.

APA:
Babenko, N., Garkavenko, V., Storozhenko, G., Timofiychuk, O. (2016). Role of acid sphingomyelinase in the age-dependent dysregulation of sphingolipids turnover in the tissues of rats. General Physiology and Biophysics, 35(2), 195-205. 0231-5882.