Gareev, Ilgiz,
Beylerli, Ozal,
Yang, Guang,
Izmailov, Adel,
Shi, Huaizhang,
Sun, Jinxian,
Zhao, Boxian,
Liu, Binbing,
Zhao, Shiguang (2021) , such as
blood or cerebrospinal fluid (CSF), numerous miRNAs, called
circulating miRNAs, have been detected
GAREEV, I.,
YANG, G.,
SUN, J.,
BEYLERLI, O.,
CHEN, X.,
ZHANG, D.,
ZHAO, B.,
ZHANG, R.,
SUN, Z.,
YANG, Q.,
LI, L.,
ZHAO, S.,
PAVLOV, V.,
SAFIN, S. (2020) . In the peripheral
blood,
circulating miRNAs will be present at a remarkably steady level. In the present study, we
Bulgakova, NA,
Vasilyeva, NA,
Imelbaeva, EA,
Shikova, YV,
Vasiliev, EA,
Salikhova, DI (2021) 16+ cells, phagocytic activity, and
circulating immune complexes in the
blood. An increase
YANG, G.,
SUN, J.,
SHI, H.,
ZHAO, S.,
GAREEV, I.,
BEYLERLI, O.,
PAVLOV, V.,
IZMAILOV, A. (2020) in human body fluids, such as
blood, saliva, cerebrospinal fluid, and urine.
Circulating mi
BEYLERLI, OZAL,
BEERAKA, NARASIMHA M.,
GAREEV, ILGIZ,
PAVLOV, VALENTIN,
YANG, GUANG,
LIANG, YANCHAO,
ALIEV, GJUMRAKCH (2020) proteins are regulated by miRNAs, which ultimately control basic cellular
mechanisms, including cell
Tyurin, A.V.,
Salimgareeva, M.K.,
Miniakhmetov, I.R.,
Khusainova, R.I.,
Samorodov, A.,
Pavlov, V.N.,
Kzhyshkowska, J. (2022) numbers of B-lymphocytes and double positive T-lymphocytes in the peripheral
blood were significantly
Gareev, I,
Beylerli, O,
Wang, CL,
Sokhatskii, A,
Liang, YC,
Xiang, H,
Liu, CY,
Xu, X,
Guang, Y (2022) extracellular forms of miRNAs.
Circulating miRNAs have been detected in the
blood circulation and other body
with massive
blood loss are part of the
mechanism of adaptation to hypoxia, which automatically changes