V.N. Pavlov,
Beylerli, O.,
Gareev, I.,
Torres Solis, L.F.,
Solís Herrera, A.,
Aliev, G. (2020) and complications including ICH. For instance, the
mechanisms by which COVID-19 may contribute to hemorrhagic stroke
Mukhametov, U.F.,
Lyulin, S.V.,
Borzunov, D.Y.,
Gareev, I.F.,
Beylerli, O.A.,
Sufianov, A.A. (2022) to ectopic bone formation in soft tissues. Although the molecular
mechanism of HO is not fully understood
Gilyazova, I.,
Timasheva, Ya.,
Karunas, A.,
Kazantseva, A.,
Sufianov, A.,
Mashkin, A.,
Korytina, G.,
Wang, Ya.,
Gareev, I.,
Khusnutdinova, E. (2023) forms of the disease. A lot of literature data is devoted to the pathogenetic
mechanisms of COVID-19
Usman, M.,
Beilerli, A.,
Sufianov, A.,
Kudryashov, V.,
Ilyasova, T.,
Balaev, P.,
Danilov, A.,
Lu, H.,
Gareev, I. (2023) ,
and its
mechanism may be related to its effect on DNA damage repair, gastric
cancer cell stemness, cell
common intracranial tumor. Despite this situation, the molecular
mechanism of pituitary adenoma formation
Yao, JW,
Du, YM,
Liu, JS,
Gareev, I,
Yang, G,
Kang, XH,
Wang, XX,
Beylerli, O,
Chen, X (2021) . Therefore, we reviewed studies on expression of hypoxia-related lncRNAs and relevant molecular
mechanismBeilerli, A.,
Gareev, I.,
Beylerli, O.,
Yang, G.,
V.N. Pavlov,
Aliev, G.,
Ahmad, A. (2022) , we elaborate the characteristics, functions and
mechanisms of action of circRNAs in cancer. We also
GAREEV, I.F.,
BEILERLI, O.A.,
ALIEV, G.M.,
PAVLOV, VALENTIN,
IZMAILOV, ADEL,
ZHANG, YIWEI,
LIANG, YANCHAO,
YANG, GUANG (2020) mortality among patients. Unfortunately, the molecular
mechanisms of the development and rupture of IAs