S. Y. Park Et Al. , "Dimethyl itaconate attenuates palmitate-induced insulin resistance in skeletal muscle cells through the AMPK/FGF21/PPARδ-mediated suppression of inflammation," Life Sciences , vol.287, 2021
Park, S. Y. Et Al. 2021. Dimethyl itaconate attenuates palmitate-induced insulin resistance in skeletal muscle cells through the AMPK/FGF21/PPARδ-mediated suppression of inflammation. Life Sciences , vol.287 .
Park, S. Y., Lee, H. J., Song, J., Shin, Y. K., HASSIBELNABY, M. A., Ramadan, A., ... HACIMÜFTÜOĞLU, A.(2021). Dimethyl itaconate attenuates palmitate-induced insulin resistance in skeletal muscle cells through the AMPK/FGF21/PPARδ-mediated suppression of inflammation. Life Sciences , vol.287.
Park, Seung Et Al. "Dimethyl itaconate attenuates palmitate-induced insulin resistance in skeletal muscle cells through the AMPK/FGF21/PPARδ-mediated suppression of inflammation," Life Sciences , vol.287, 2021
Park, Seung Y. Et Al. "Dimethyl itaconate attenuates palmitate-induced insulin resistance in skeletal muscle cells through the AMPK/FGF21/PPARδ-mediated suppression of inflammation." Life Sciences , vol.287, 2021
Park, S. Y. Et Al. (2021) . "Dimethyl itaconate attenuates palmitate-induced insulin resistance in skeletal muscle cells through the AMPK/FGF21/PPARδ-mediated suppression of inflammation." Life Sciences , vol.287.
@article{article, author={Seung Yeon Park Et Al. }, title={Dimethyl itaconate attenuates palmitate-induced insulin resistance in skeletal muscle cells through the AMPK/FGF21/PPARδ-mediated suppression of inflammation}, journal={Life Sciences}, year=2021}