Gareev, Ilgiz,
Beylerli, Ozal,
Ahmad, Aamir,
Ilyasova, Tatiana,
Shi, Huaizhang,
Chekhonin, Vladimir (2024) mode of miRNAs/
target genes regulation in the development and progression of IA and TAA/AAA. The aim
endogenous non-coding RNAs orchestrating post-transcriptional
gene expression, have garnered substantial
Wang, Chunlei,
Beylerli, Ozal,
Gu, Yan,
Xu, Shancai,
Ji, Zhiyong,
Ilyasova, Tatiana,
Gareev, Ilgiz,
Chekhonin, Vladimir (2024) led to a significant advancement in
gene expression analysis platforms. Microarray analysis has gained
are mainly limited to determining the role of protein-coding
genes, near or within which these polymorphisms
Lenkova, Ksenia,
Khusainova, Rita,
Minyazeva, Raushaniya,
Zaripova, Aliya,
Gilyazova, Irina,
Mokrysheva, Natalia,
Minniakhmetov, Ildar (2024) . Methods: We utilized a custom next-generation sequencing (NGS) panel
targeting 48
genes implicated
in the field of the early diagnosis and
targeted therapy of the disease. The Runt-related transcription factor
Ayupova, Guzel,
Litvinov, Sergey,
Akhmetova, Vita,
Minniakhmetov, Ildar,
Mokrysheva, Natalia,
Khusainova, Rita (2024) regulator
gene (CFTR) mutations in the population, which is determined by genetic diversity and ethnicity
., through
gene repression. A growing number of studies have demonstrated miRNAs deregulation in various
Ретроэлементы как мишени таргетной терапии опухолей (обзор) in
targeted antitumor therapy (review). Research Results in Biomedicine. 2024; 10(1): 5-22. Russian]. DOI: 10
a combination of prototype M1 and M2
genes. Our review focuses on novel mechanisms involved