Mohás-Cseh, J.; Molnár, G.A.; Pap, M.; Laczy, B.; Vas, T.; Kertész, M.; Németh, K.; Hetényi, C.; Csikós, O.; Tóth, G.K.;
et al. Incorporation of Oxidized Phenylalanine Derivatives into Insulin Signaling Relevant Proteins May Link Oxidative Stress to Signaling Conditions Underlying Chronic Insulin Resistance. Biomedicines 2022, 10, 975.
https://doi.org/10.3390/biomedicines10050975
AMA Style
Mohás-Cseh J, Molnár GA, Pap M, Laczy B, Vas T, Kertész M, Németh K, Hetényi C, Csikós O, Tóth GK,
et al. Incorporation of Oxidized Phenylalanine Derivatives into Insulin Signaling Relevant Proteins May Link Oxidative Stress to Signaling Conditions Underlying Chronic Insulin Resistance. Biomedicines. 2022; 10(5):975.
https://doi.org/10.3390/biomedicines10050975
Chicago/Turabian Style
Mohás-Cseh, Judit, Gergő Attila Molnár, Marianna Pap, Boglárka Laczy, Tibor Vas, Melinda Kertész, Krisztina Németh, Csaba Hetényi, Orsolya Csikós, Gábor K. Tóth,
and et al. 2022. "Incorporation of Oxidized Phenylalanine Derivatives into Insulin Signaling Relevant Proteins May Link Oxidative Stress to Signaling Conditions Underlying Chronic Insulin Resistance" Biomedicines 10, no. 5: 975.
https://doi.org/10.3390/biomedicines10050975
APA Style
Mohás-Cseh, J., Molnár, G. A., Pap, M., Laczy, B., Vas, T., Kertész, M., Németh, K., Hetényi, C., Csikós, O., Tóth, G. K., Reményi, A., & Wittmann, I.
(2022). Incorporation of Oxidized Phenylalanine Derivatives into Insulin Signaling Relevant Proteins May Link Oxidative Stress to Signaling Conditions Underlying Chronic Insulin Resistance. Biomedicines, 10(5), 975.
https://doi.org/10.3390/biomedicines10050975