Lee, K.-S.; Kim, B.-Y.; Park, M.-J.; Deng, Y.; Kim, J.-M.; Kim, Y.-H.; Heo, E.-J.; Yoon, H.-J.; Lee, K.-Y.; Choi, Y.-S.;
et al. Bee Venom Induces Acute Inflammation through a H2O2-Mediated System That Utilizes Superoxide Dismutase. Toxins 2022, 14, 558.
https://doi.org/10.3390/toxins14080558
AMA Style
Lee K-S, Kim B-Y, Park M-J, Deng Y, Kim J-M, Kim Y-H, Heo E-J, Yoon H-J, Lee K-Y, Choi Y-S,
et al. Bee Venom Induces Acute Inflammation through a H2O2-Mediated System That Utilizes Superoxide Dismutase. Toxins. 2022; 14(8):558.
https://doi.org/10.3390/toxins14080558
Chicago/Turabian Style
Lee, Kwang-Sik, Bo-Yeon Kim, Min-Ji Park, Yijie Deng, Jin-Myung Kim, Yun-Hui Kim, Eun-Jee Heo, Hyung-Joo Yoon, Kyeong-Yong Lee, Yong-Soo Choi,
and et al. 2022. "Bee Venom Induces Acute Inflammation through a H2O2-Mediated System That Utilizes Superoxide Dismutase" Toxins 14, no. 8: 558.
https://doi.org/10.3390/toxins14080558
APA Style
Lee, K.-S., Kim, B.-Y., Park, M.-J., Deng, Y., Kim, J.-M., Kim, Y.-H., Heo, E.-J., Yoon, H.-J., Lee, K.-Y., Choi, Y.-S., & Jin, B.-R.
(2022). Bee Venom Induces Acute Inflammation through a H2O2-Mediated System That Utilizes Superoxide Dismutase. Toxins, 14(8), 558.
https://doi.org/10.3390/toxins14080558