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skúsený hraničné zisk myomir heart marker send rad Bojová loď

MyomiR family. The figure depicts the structure of a pre-miR-206 stem... |  Download Scientific Diagram
MyomiR family. The figure depicts the structure of a pre-miR-206 stem... | Download Scientific Diagram

The Emerging Role of miR-208a in the Heart | DNA and Cell Biology
The Emerging Role of miR-208a in the Heart | DNA and Cell Biology

Small changes can make a big difference — MicroRNA regulation of cardiac  hypertrophy - Journal of Molecular and Cellular Cardiology
Small changes can make a big difference — MicroRNA regulation of cardiac hypertrophy - Journal of Molecular and Cellular Cardiology

The MicroRNA-92a/Sp1/MyoD Axis Regulates Hypoxic Stimulation of Myogenic  Lineage Differentiation in Mouse Embryonic Stem Cells: Molecular Therapy
The MicroRNA-92a/Sp1/MyoD Axis Regulates Hypoxic Stimulation of Myogenic Lineage Differentiation in Mouse Embryonic Stem Cells: Molecular Therapy

MicroRNA-24-3p promotes skeletal muscle differentiation and regeneration by  regulating HMGA1 | bioRxiv
MicroRNA-24-3p promotes skeletal muscle differentiation and regeneration by regulating HMGA1 | bioRxiv

Muscle-specific microRNAs in skeletal muscle development - ScienceDirect
Muscle-specific microRNAs in skeletal muscle development - ScienceDirect

Genomic Profiling of Messenger RNAs and MicroRNAs Reveals Potential  Mechanisms of TWEAK-Induced Skeletal Muscle Wasting in Mice | PLOS ONE
Genomic Profiling of Messenger RNAs and MicroRNAs Reveals Potential Mechanisms of TWEAK-Induced Skeletal Muscle Wasting in Mice | PLOS ONE

Frontiers | miR-133: A Suppressor of Cardiac Remodeling?
Frontiers | miR-133: A Suppressor of Cardiac Remodeling?

Can miRNAs be a predictive marker for coronary artery disease? | BioVendor  R&D
Can miRNAs be a predictive marker for coronary artery disease? | BioVendor R&D

MyomiR expression profile in red and white skeletal muscle fibers of... |  Download Scientific Diagram
MyomiR expression profile in red and white skeletal muscle fibers of... | Download Scientific Diagram

microRNAs in cardiovascular development - Journal of Molecular and Cellular  Cardiology
microRNAs in cardiovascular development - Journal of Molecular and Cellular Cardiology

miR-223-3p and miR-24-3p as novel serum-based biomarkers for myotonic  dystrophy type 1: Molecular Therapy - Methods & Clinical Development
miR-223-3p and miR-24-3p as novel serum-based biomarkers for myotonic dystrophy type 1: Molecular Therapy - Methods & Clinical Development

MyomiR: muscle-specific microRNA. | Download Table
MyomiR: muscle-specific microRNA. | Download Table

Cells | Free Full-Text | MiRiad Roles for MicroRNAs in Cardiac Development  and Regeneration
Cells | Free Full-Text | MiRiad Roles for MicroRNAs in Cardiac Development and Regeneration

Frontiers | Skeletal Muscle myomiR Are Differentially Expressed by  Endurance Exercise Mode and Combined Essential Amino Acid and Carbohydrate  Supplementation
Frontiers | Skeletal Muscle myomiR Are Differentially Expressed by Endurance Exercise Mode and Combined Essential Amino Acid and Carbohydrate Supplementation

MyomiR: muscle-specific microRNA. | Download Table
MyomiR: muscle-specific microRNA. | Download Table

Circulating myomiRs: a new class of biomarkers to monitor skeletal muscle  in physiology and medicine - Siracusa - 2018 - Journal of Cachexia,  Sarcopenia and Muscle - Wiley Online Library
Circulating myomiRs: a new class of biomarkers to monitor skeletal muscle in physiology and medicine - Siracusa - 2018 - Journal of Cachexia, Sarcopenia and Muscle - Wiley Online Library

Hmgb3 Is Regulated by MicroRNA-206 during Muscle Regeneration | PLOS ONE
Hmgb3 Is Regulated by MicroRNA-206 during Muscle Regeneration | PLOS ONE

Evidence of MyomiR network regulation of β-myosin heavy chain gene  expression during skeletal muscle atrophy | Physiological Genomics
Evidence of MyomiR network regulation of β-myosin heavy chain gene expression during skeletal muscle atrophy | Physiological Genomics

Cells | Free Full-Text | MicroRNAs in Cancer and Cardiovascular Disease
Cells | Free Full-Text | MicroRNAs in Cancer and Cardiovascular Disease

Comparative RNA-sequencing analysis of myocardial and circulating small  RNAs in human heart failure and their utility as biomarkers | PNAS
Comparative RNA-sequencing analysis of myocardial and circulating small RNAs in human heart failure and their utility as biomarkers | PNAS

Comprehensive Analysis of Circulating microRNA Specific to the Liver, Heart,  and Skeletal Muscle of Cynomolgus Monkeys - Takuma Iguchi, Noriyo Niino,  Satoshi Tamai, Ken Sakurai, Kazuhiko Mori, 2017
Comprehensive Analysis of Circulating microRNA Specific to the Liver, Heart, and Skeletal Muscle of Cynomolgus Monkeys - Takuma Iguchi, Noriyo Niino, Satoshi Tamai, Ken Sakurai, Kazuhiko Mori, 2017

Comprehensive Analysis of Circulating microRNA Specific to the Liver, Heart,  and Skeletal Muscle of Cynomolgus Monkeys - Takuma Iguchi, Noriyo Niino,  Satoshi Tamai, Ken Sakurai, Kazuhiko Mori, 2017
Comprehensive Analysis of Circulating microRNA Specific to the Liver, Heart, and Skeletal Muscle of Cynomolgus Monkeys - Takuma Iguchi, Noriyo Niino, Satoshi Tamai, Ken Sakurai, Kazuhiko Mori, 2017

MicroRNA-33 Inhibits Adaptive Thermogenesis and Adipose Tissue Beiging |  Arteriosclerosis, Thrombosis, and Vascular Biology
MicroRNA-33 Inhibits Adaptive Thermogenesis and Adipose Tissue Beiging | Arteriosclerosis, Thrombosis, and Vascular Biology

MicroRNA-24-3p promotes skeletal muscle differentiation and regeneration by  regulating HMGA1 | bioRxiv
MicroRNA-24-3p promotes skeletal muscle differentiation and regeneration by regulating HMGA1 | bioRxiv