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Luo, Wu,
Han, Jibo,
Zhang, Qiuyan,
Ji, Lijun,
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Pavlov, Valentin N.,
Zhuang, Zaishou,
Yang, Daona,
Yin, Lina,
Huang, Lijiang,
Liang, Guang (2023) to suppress inflammatory responses and oxidative stress. However, the underlying molecular
mechanisms have
Solnyshkina, O. A.,
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Bulatova, A. Z.,
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Bilyalov, A. R.,
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Pavlov, V. N. (2023) Sintering is a complex physical and
mechanical process, which is one of the most
important
in recent years, where the relative contribution of microRNAs (miRNAs) in the
mechanism of thrombus
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mechanism of time transformation is possible because a
Sufianov, Albert,
Begliarzade, Sema,
Kudriashov, Valentin,
Nafikova, Radmila,
Ilyasova, Tatiana,
Liang, Yanchao (2023) mechanism of miR-126 and miR-17/92 families in vascular endothelial cells, as well as the miR-143/145 family
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Beylerli, O. (2023) in the activation and transformation of T cells and other biological processes in asthma. The specific
mechanisms effectiveness in cellular therapy
and stemness in vivo with potential
mechanisms and applications.
Beylerli, Ozal,
Ju, Jiaming,
Beilerli, Aferin,
Gareev, Ilgiz,
Shumadalova, Alina,
Ilyasova, Tatiana,
Bai, Yunlong,
Yang, Baofeng (2023) -depth research into the molecular
mechanisms of AF and exploration of new treatment strategies based on research
Sharipov, R.A.,
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Vyaseleva, E.T.,
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Iagafarov, I.R.,
Kuserbaev, I.V.,
Gubaeva, E.A. (2023) considered almost incurable. To date, the
mechanisms of the development and progression of these groups