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Silymarin attenuated nonalcoholic fatty liver disease through the regulation of endoplasmic reticulum stress proteins GRP78 and XBP-1 in mice
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E. ŞAHİN Et Al. , "Silymarin attenuated nonalcoholic fatty liver disease through the regulation of endoplasmic reticulum stress proteins GRP78 and XBP-1 in mice," Journal of Food Biochemistry , vol.44, no.6, 2020

ŞAHİN, E. Et Al. 2020. Silymarin attenuated nonalcoholic fatty liver disease through the regulation of endoplasmic reticulum stress proteins GRP78 and XBP-1 in mice. Journal of Food Biochemistry , vol.44, no.6 .

ŞAHİN, E., Bagci, R., Bektur Aykanat, N. E., Kacar, S., & ŞAHİNTÜRK, V., (2020). Silymarin attenuated nonalcoholic fatty liver disease through the regulation of endoplasmic reticulum stress proteins GRP78 and XBP-1 in mice. Journal of Food Biochemistry , vol.44, no.6.

ŞAHİN, ERHAN Et Al. "Silymarin attenuated nonalcoholic fatty liver disease through the regulation of endoplasmic reticulum stress proteins GRP78 and XBP-1 in mice," Journal of Food Biochemistry , vol.44, no.6, 2020

ŞAHİN, ERHAN Et Al. "Silymarin attenuated nonalcoholic fatty liver disease through the regulation of endoplasmic reticulum stress proteins GRP78 and XBP-1 in mice." Journal of Food Biochemistry , vol.44, no.6, 2020

ŞAHİN, E. Et Al. (2020) . "Silymarin attenuated nonalcoholic fatty liver disease through the regulation of endoplasmic reticulum stress proteins GRP78 and XBP-1 in mice." Journal of Food Biochemistry , vol.44, no.6.

@article{article, author={ERHAN ŞAHİN Et Al. }, title={Silymarin attenuated nonalcoholic fatty liver disease through the regulation of endoplasmic reticulum stress proteins GRP78 and XBP-1 in mice}, journal={Journal of Food Biochemistry}, year=2020}