Sun, J.X.,
Sun, Z.Y.,
Gareev, I,
Yan, T,
Chen, X,
Ahmad, A,
Zhang, D.M.,
Zhao, B.X.,
Beylerli, O.,
Yang, G.,
Zhao, S.G. (2021) to quantitative real-time polymerase
chain reaction (qRT-PCR) analysis for the exosomal miR-2276-5p expression
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) without ICH (control group) were collected and subjected to quantitative real-time polymerase
chainNABOKA, Y.L.,
MAVZYUTOV, A.R.,
KOGAN, M.I.,
GUDIMA, I.A.,
IVANOV, S.N.,
NABER, K.G. (2020) of bacteriuria (102 CFU/mL) were analysed by polymerase
chain reaction for the presence of the following
Beylerli, O.,
Khasanov, D.,
Gareev, I.,
Valitov, E.,
Sokhatskii, A.,
Wang, C.,
Pavlov, V.,
Khasanova, G.,
Ahmad, A. (2021) transcription polymerase
chain reaction (qRT-PCR) analyses of tumor tissue and plasma. Methods: Plasma and PA
Mukhammadiyeva, G.F.,
Shaikhlislamova, E.R.,
Karimov, D.D.,
Karimov, D.O.,
Repina, E.F.,
Yakupova, T.G.,
Kudoyarov, E.R. (2024) variants were determined using a real-time polymerase
chain reaction. The polymorphic variant rs16944
Beilerli, Aferin,
Begliarzade, Sema,
Sufianov, Albert,
Ilyasova, Tatiana,
Liang, Yanchao,
Beylerli, Ozal (2022) using reverse transcription polymerase
chain reaction (qRT-PCR). The diagnostic and prognostic value
Dobrodeeva, V.S.,
Shnayder, N.A.,
Novitsky, M.A.,
Asadullin, A.R.,
Vaiman, E.E.,
Petrova, M.M.,
Limankin, O.V.,
Neznanov, N.G.,
Garganeeva, N.P.,
Nasyrova, R.F. (2022) in the
chain of interaction to target receptors for APs, agouti-related peptide receptors
Wu, JN,
Al-Zahrani, A,
Beylerli, O,
Sufianov, R,
Talybov, R,
Meshcheryakova, S,
Sufianova, G,
Gareev, I,
Sufianov, A (2022) polymerase
chain reaction (qRT-PCR) was carried out to measure the pre- and postoperative plasma levels of mi