LV, L.,
ZHANG, L.,
LI, R.,
LI, Y.,
YANG, R.,
LI, C.,
FANG, R.,
SHABANOVA, A.,
LI, X.,
LIU, Y.,
LIANG, H.,
ZHOU, Y.,
SHAN, H.,
ZHENG, N. (2020) on the heart. This study's aim was to investigate whether Met could ameliorate cardiac conduction delay and
itsZhou, Qi,
Zhang, Daming,
Chen, Xin,
Yang, Zhao,
Liu, Zhihui,
Wei, Baixing,
Jin, Mei,
Feng, Kairu,
Guo, Chunmei,
Sun, Junying,
Chen, Sheng,
Zhang, Ruijia,
Piao, Xiai,
Gareev, Ilgiz,
Sun, Zhenying,
Wang, Xiaoxiong,
Li, Lili,
Zhao, Shiguang,
Yang, Guang (2020) ). However,
its function in predicting the prognosis of ICH has not been verified on large cases.
Patients
treatment and
its absence was noted at 261
(92.3%) and 22 (7.8%) children with JIA respectively
Ye, L.,
Chen, X.,
Wang, M.,
Jin, L.,
Zhuang, Z.,
Yang, D.,
Guan, X.,
Samorodov, A.V.,
Pavlov, V.N.,
Chattipakorn, N.,
Feng, J.,
Wang, Y.,
Luo, W.,
Liang, G. (2021) is attributed to
its potential to inhibit JNK activation, which led to reduced pro-inflammatory cytokine
Timasheva, Y,
Badykov, M,
Akhmadishina, L,
Nasibullin, T,
Badykova, E,
Pushkareva, A,
Plechev, V,
Sagitov, I,
Zagidullin, N (2021) by the inability of sinoatrial node to perform
its pacemaker function. Our aim was to identify genetic predictors
Yanchao, L.,
Sibin, Z.,
Gareev, I.,
Huan, X.,
Junfei, Z.,
Chunyang, L.,
Beylerli, O.,
Sufianov, A.,
Chao, Y.,
Yuyan, G.,
Xun, X.,
Ahmad, A. (2022) : With COVID-19 being a relatively new disease, associations have been proposed for
its connections
Shilov, S.V.,
Ustenova, G.O.,
Kiyekbayeva, L.N.,
Korotetskiy, I.S.,
Kudashkina, N.V.,
Zubenko, N.V.,
Parenova, R.A.,
Jumagaziyeva, A.B.,
Iskakbayeva, Z.A.,
Kenesheva, S.T. (2022) and
its derivatives in the extracts was confirmed. The concentration of naphthoquinones during CO2