Jiang, Jianhao,
Gareev, Ilgiz,
Ilyasova, Tatiana,
Shumadalova, Alina,
Du, Weijie,
Yang, Baofeng (2024) -established ce
RNA networks, involving classical interactions between lncRNAs, microRNAs (miRNAs), and
messengerGilyazova, Irina,
Gimalova, Galiya,
Nizamova, Aigul,
Nizamova, Aigul,
Ishbulatova, Ekaterina,
Pavlov, Valentin,
Khusnutdinova, Elza (2024) , regulatory mechanisms, and therapeutic potential of ncRNAs including micro
RNA (mi
RNA), long nc
RNA (lnc
RNA RNAs (tRNAs) on their processing to form small non-coding RNAs. This is evidenced by the use of t
RNAXu, Dongxiao,
Gareev, Ilgiz,
Beylerli, Ozal,
Pavlov, Valentin,
Le, Huang,
Shi, Huaizhang (2024) differentially expressed mRNAs (DEGs) were pinpointed concerning IA. Subsequently, a mi
RNA-mRNA network
and Alzheimer's disease originated from SINE/MIRs that evolved from tRNAs, the role of tRNAs and the tRFs and t
RNAAsadullina, D.D.,
Gilyazova, I.R.,
Ivanova, E.A.,
Izmailova, S.M.,
Gilyazova, G.R.,
Pavlov, V.N.,
Khusnutdinova, E.K. (2024) . Disruption of mi
RNA regulation may affect ccRCC immunogenicity and response to ICI therapy, making them
Yalaev, Bulat,
Deev, Roman,
Tyurin, Anton,
Salakhov, Ramil,
Smirnov, Kirill,
Eremkina, Anna,
Mokrysheva, Natalia,
Minniakhmetov, Ildar,
Khusainova, Rita (2024) with microRNAs. Methods: The authors searched for associations of polymorphic variants of micro
RNA binding
Galimova, E.F.,
Gromenko, I.D.,
Gilyazova, I.R.,
Gromenko, D.D.,
Galimov, K.Sh.,
Abdeeva, G.R.,
Gromenko, Yu.Yu.,
Khusnutdinova, E.K.,
Galimov, Sh.N. (2024) (n = 19). The isolation of exosomal micro
RNA from ejaculate was performed using the exoRNeasy Midi