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Calorie restriction protects against apoptosis, mitochondrial oxidative stress and increased calcium signaling through inhibition of TRPV1 channel in the hippocampus and dorsal root ganglion of rats
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F. Gültekin Et Al. , "Calorie restriction protects against apoptosis, mitochondrial oxidative stress and increased calcium signaling through inhibition of TRPV1 channel in the hippocampus and dorsal root ganglion of rats," Metabolic Brain Disease , vol.33, no.5, pp.1761-1774, 2018

Gültekin, F. Et Al. 2018. Calorie restriction protects against apoptosis, mitochondrial oxidative stress and increased calcium signaling through inhibition of TRPV1 channel in the hippocampus and dorsal root ganglion of rats. Metabolic Brain Disease , vol.33, no.5 , 1761-1774.

Gültekin, F., NAZIROĞLU, M., Savaş, H. B., & Çiğ, B., (2018). Calorie restriction protects against apoptosis, mitochondrial oxidative stress and increased calcium signaling through inhibition of TRPV1 channel in the hippocampus and dorsal root ganglion of rats. Metabolic Brain Disease , vol.33, no.5, 1761-1774.

Gültekin, FATİH Et Al. "Calorie restriction protects against apoptosis, mitochondrial oxidative stress and increased calcium signaling through inhibition of TRPV1 channel in the hippocampus and dorsal root ganglion of rats," Metabolic Brain Disease , vol.33, no.5, 1761-1774, 2018

Gültekin, FATİH Et Al. "Calorie restriction protects against apoptosis, mitochondrial oxidative stress and increased calcium signaling through inhibition of TRPV1 channel in the hippocampus and dorsal root ganglion of rats." Metabolic Brain Disease , vol.33, no.5, pp.1761-1774, 2018

Gültekin, F. Et Al. (2018) . "Calorie restriction protects against apoptosis, mitochondrial oxidative stress and increased calcium signaling through inhibition of TRPV1 channel in the hippocampus and dorsal root ganglion of rats." Metabolic Brain Disease , vol.33, no.5, pp.1761-1774.

@article{article, author={FATİH GÜLTEKİN Et Al. }, title={Calorie restriction protects against apoptosis, mitochondrial oxidative stress and increased calcium signaling through inhibition of TRPV1 channel in the hippocampus and dorsal root ganglion of rats}, journal={Metabolic Brain Disease}, year=2018, pages={1761-1774} }