Gilyazova, Irina,
Gimalova, Galiya,
Nizamova, Aigul,
Nizamova, Aigul,
Ishbulatova, Ekaterina,
Pavlov, Valentin,
Khusnutdinova, Elza (2024) by sequences that do not code for proteins, much attention has been paid to
non-coding RNAs (nc
RNAsTransposable elements are important sources of miRNA, long
non-coding RNAs genes,
and their targets
Gilyazova, I.,
Timasheva, Ya.,
Karunas, A.,
Kazantseva, A.,
Sufianov, A.,
Mashkin, A.,
Korytina, G.,
Wang, Ya.,
Gareev, I.,
Khusnutdinova, E. (2023) factors of development and progression. Among them, this is the direct role of both viral
non-coding RNAsJiang, Jianhao,
Gareev, Ilgiz,
Ilyasova, Tatiana,
Shumadalova, Alina,
Du, Weijie,
Yang, Baofeng (2024) comprehension of the functioning of proteins, DNA, and the extensive array of coding and
noncoding RNAs but also
to disability or death. Micro
RNAs (mi
RNAs) are a class of
non-coding RNAs (about 18-22 nucleotides
) are short
non-coding RNAs with 18–22 nucleotides in length which function as key regulators of various
of long
noncoding RNAs and micro
RNAs from transposons, changes in the expression of which are observed
Agaverdiev, Murad,
Shamsov, Bedil,
Mirzoev, Sorbon,
Vardikyan, Andranik,
Encarnacion, Manuel Ramirez,
Nurmukhametov, Renat,
Beilerli, Aferin,
Zhang, Bohan,
Gareev, Ilgiz,
Pavlov, Valentin (2023) on the therapeutic use of SVF. Micro
RNAs (mi
RNAs) are also important regulators of cellular function and they have
Xu, Dongxiao,
Gareev, Ilgiz,
Beylerli, Ozal,
Pavlov, Valentin,
Le, Huang,
Shi, Huaizhang (2024) medical facilities. This study seeks to discern the pivotal micro
RNAs (mi
RNAs) and genes associated
Gilyazova, I.,
Ivanova, E.,
Pavlov, V.,
Khasanova, G.,
Khasanova, A.,
Izmailov, A.,
Asadullina, D.,
Gilyazova, G.,
Wang, G.,
Gareev, I.,
Beylerli, O. (2023) pathogenesis of HFRS is
required. Determination of the expression level of exosomal micro
RNAs (mi
RNAs