Ma, X.; Hua, X.; Peng, X.; Yang, Z.; Wang, Y.; Zhang, Q.; Wang, L.; Wang, S.; Valdivia, H.H.; Xiao, L.;
et al. OpiCa1 Modulates Cardiomyocyte Viability Through PI3K/Akt Inhibition with Minimal Systemic Impact Beyond RyR Targeting. Toxins 2025, 17, 550.
https://doi.org/10.3390/toxins17110550
AMA Style
Ma X, Hua X, Peng X, Yang Z, Wang Y, Zhang Q, Wang L, Wang S, Valdivia HH, Xiao L,
et al. OpiCa1 Modulates Cardiomyocyte Viability Through PI3K/Akt Inhibition with Minimal Systemic Impact Beyond RyR Targeting. Toxins. 2025; 17(11):550.
https://doi.org/10.3390/toxins17110550
Chicago/Turabian Style
Ma, Xiaofen, Xiaoyu Hua, Xiao Peng, Zhixiao Yang, Yi Wang, Qian Zhang, Lianbo Wang, Shumin Wang, Héctor H. Valdivia, Liang Xiao,
and et al. 2025. "OpiCa1 Modulates Cardiomyocyte Viability Through PI3K/Akt Inhibition with Minimal Systemic Impact Beyond RyR Targeting" Toxins 17, no. 11: 550.
https://doi.org/10.3390/toxins17110550
APA Style
Ma, X., Hua, X., Peng, X., Yang, Z., Wang, Y., Zhang, Q., Wang, L., Wang, S., Valdivia, H. H., Xiao, L., & Wang, M.
(2025). OpiCa1 Modulates Cardiomyocyte Viability Through PI3K/Akt Inhibition with Minimal Systemic Impact Beyond RyR Targeting. Toxins, 17(11), 550.
https://doi.org/10.3390/toxins17110550