. In this context, circular
RNAs (circ
RNAs) have emerged as an intriguing area of investigation, offering promise
Gao, Xin,
Huang, Yanming,
Wei, Tonghui,
Xue, Jingmin,
Iurii, Filippov,
Yang, Laishou,
Wang, Liying,
Li, Hao,
Mo, Genshen,
Huang, Yuze,
Xie, Haonan,
Wang, Hang,
Lou, Shenghan,
Han, Peng (2025) .
Long non-coding RNAs (lnc
RNAs) have emerged as important regulators of various biological processes
into specific loci of the genome with the activation of brain-specific genes. In addition, proteins and
non-codingBeilerli, A.,
Kudriashov, V.,
Sufianov, A.,
Kostin, A.,
Begliarzade, S.,
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Liang, Ya.,
Mukhamedzyanov, A.,
Beylerli, O. (2023) conditions is still the subject of numerous studies. Recent studies point to the involvement of micro
RNAs (mi
RNAs) are short
non-coding RNAs with 18–22 nucleotides in length which function as key regulators of various
Gareev, I,
Beylerli, O,
Wang, CL,
Sokhatskii, A,
Liang, YC,
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Guang, Y (2022) diagnosis, and treatment of brain AVMs are some of the urgent problems in neurosurgery. Micro
RNAs (mi
RNAsGareev, Ilgiz,
Beylerli, Ozal,
Ahmad, Aamir,
Ilyasova, Tatiana,
Shi, Huaizhang,
Chekhonin, Vladimir (2024) of the known protein-
coding genes, circular
RNAs (circ
RNAs), a relatively new and rapidly evolving large family
Gilyazova, Irina,
Ivanova, Elizaveta,
Gupta, Himanshu,
Mustafin, Artur,
Ishemgulov, Ruslan,
Izmailov, Adel,
Gilyazova, Gulshat,
Pudova, Elena,
Pavlov, Valentin,
Khusnutdinova, Elza (2023) , there is an urgent need for promising markers, which may be fulfilled by small
non-coding RNAs known as micro
RNAs (mi
RNAsLIU, Z.,
WANG, X.,
YANG, G.,
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ZHANG, R.,
YE, J.,
ZHONG, Y.,
HU, J.,
OZAL, B.,
ZHAO, S. (2020) Long noncoding
RNAs (lnc
RNAs) serve as competitive endogenous
RNAs (ce
RNAs) that play significant