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Regulation and mechanism of action of miRNAs on insulin resistance in skeletal musclesRegulation and mechanism of action of miRNAs on insulin resistance in skeletal muscles

CAN MIRNAS BE CONSIDERED AS DIAGNOSTIC AND THERAPEUTIC MOLECULES IN ISCHEMIC STROKE PATHOGENESIS?-CURRENT STATUS recovery of brain cellular compartment. MicroRNAs (miRNA) are endogenously expressed small non-coding RNA

P53 long noncoding RNA regulatory network in cancer developmentStudies have suggested that aberrant expression of lncRNAs as a molecular‐genomic signature may

MiRNA regulated therapeutic potential of the stromal vascular fraction: Current clinical applications - A systematic review: SVF and miRNAs on the therapeutic use of SVF. MicroRNAs (miRNAs) are also important regulators of cellular function and they have

Association of Polymorphic Loci of Long Noncoding RNA Genes (H19, MEG3, MALAT1, LINC00305, LINC00261, LINC02227, and CDKN2B-AS1) with Chronic Obstructive Pulmonary Disease function, and acceleration of cellular senescence. Long noncoding RNAs (lncRNAs) function as critical

НЕКОДИРУЮЩИЕ РНК КАК ТЕРАПЕВТИЧЕСКИЕ МИШЕНИ ПРИ ТРАВМЕ СПИННОГО МОЗГАNON-CODING RNAS AS THERAPEUTIC TARGETS IN SPINAL CORD INJURY

Binase cleaves cellular noncoding RNAs and affects coding mRNAs RNAs. Cleavage of RNA in cancer cells is the main reason for the cytotoxic effects of exogenic RNases

Antitumour activity of the ribonuclease binase from bacillus pumilus in the RLS40 tumour model is associated with the reorganisation of the miRNA network and reversion of cancer‐related cascades to normal functioning of the RNase binase from Bacillus pumilus on small non‐coding regulatory RNAs in the context of mouse RLS40

Deregulation mechanisms and therapeutic opportunities of p53-responsive microRNAs in diffuse large B-cell lymphoma ribonucleic acids (microRNAs) in p53-signaling cellular stress has been studied. MicroRNAs are the small non-coding

EPIGENETIC MECHANISMS OF THE PATHOGENESIS OF MULTIPLE SCLEROSIS mechanisms regulating gene expression, such as DNA methylation, histone acetylation, and microRNAs, play

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