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Single-cell transcriptome profiling of the human developing spinal cord reveals a conserved genetic programme with human-specific features



Single cell transcriptome profiling of the human developing spinal cord reveals a conserved genetic programme with human specific features.


Regulating Muscle sentence examples within Factor Regulating Muscle



TDP-43 Regulation of AChE Expression Can Mediate ALS-Like Phenotype in Zebrafish



290-OR: High-Intensity Interval Training and Moderate-Intensity Continuous Training Induce Similar Modifications to Factors Regulating Skeletal Muscle Lipolysis


Regulating Muscle sentence examples within Gene Regulating Muscle



Hybrid Sequencing in Different Types of Goat Skeletal Muscles Reveals Genes Regulating Muscle Development and Meat Quality



312-OR: Functional Decline in Brown Adipose Progenitors during BAT Remodeling



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Regulating Muscle sentence examples within Mechanism Regulating Muscle



Targeting cancer via ribosome biogenesis: the cachexia perspective.



Genomic variants associated with the number and diameter of muscle fibers in pigs as revealed by a genome-wide association study.


Regulating Muscle sentence examples within regulating muscle mas



Withaferin A and Ovarian Cancer Antagonistically Regulate Skeletal Muscle Mass



Parkin sarcopenia in its tracks by improving mitochondrial health


Regulating Muscle sentence examples within regulating muscle protein



Myostatin and Related Factors Are Involved in Skeletal Muscle Protein Breakdown in Growing Broilers Exposed to Constant Heat Stress



Daily protein supplementation attenuates immobilization-induced blunting of postabsorptive muscle mTORC1 activation in middle age men.


Regulating Muscle sentence examples within regulating muscle growth



A potential negative regulation of myostatin in muscle growth during the intermolt stage in exopalaemon carinicauda.



MUSTN1 is an indispensable factor in the proliferation, differentiation and apoptosis of skeletal muscle satellite cells in chicken.


Regulating Muscle sentence examples within regulating muscle cell



Hyaluronic acid, CD44 and RHAMM regulate myoblast behavior during embryogenesis.



The thickness of poly-phenoxyethyl methacrylate brush interferes with cellular behavior and function of myofibers.


Regulating Muscle sentence examples within regulating muscle development



PDGF-PDGFR network differentially regulates, myogenic cell fate, migration, proliferation, and cell cycle progression.



Hybrid Sequencing in Different Types of Goat Skeletal Muscles Reveals Genes Regulating Muscle Development and Meat Quality


Regulating Muscle sentence examples within regulating muscle contraction



Ca2+-Dependent Glucose Transport in Skeletal Muscle by Diphlorethohydroxycarmalol, an Alga Phlorotannin: In Vitro and In Vivo Study



Acetylation of Sarcoplasmic and Myofibrillar Proteins were Associated with Ovine Meat Quality Attributes at Early Postmortem


Regulating Muscle sentence examples within regulating muscle fiber



Parsing the microRNA genetics basis regulating skeletal muscle fiber types and meat quality traits in pigs.



Lycopene promotes a fast-to-slow fiber type transformation through Akt/FoxO1 signaling pathway and miR-22-3p


Regulating Muscle sentence examples within regulating muscle innervating



Single-cell transcriptome profiling of the human developing spinal cord reveals a conserved genetic programme with human-specific features



Single cell transcriptome profiling of the human developing spinal cord reveals a conserved genetic programme with human specific features.


Regulating Muscle sentence examples within regulating muscle regeneration



Hsp90β interacts with MDM2 to suppress p53‐dependent senescence during skeletal muscle regeneration



Dual function of VGLL4 in muscle regeneration


Regulating Muscle sentence examples within regulating muscle metabolism



Targeting interleukin-1 for reversing fat browning and muscle wasting in infantile nephropathic cystinosis



Sarcopenic obesity in fatty liver


Regulating Muscle sentence examples within regulating muscle lipid



Neuropeptide ACP facilitates lipid oxidation and utilization during long-term flight in locusts



290-OR: High-Intensity Interval Training and Moderate-Intensity Continuous Training Induce Similar Modifications to Factors Regulating Skeletal Muscle Lipolysis


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10.1017/S0007114521001550

Comparison of the Effect of Soy protein and Whey protein on Body Composition: A Meta-Analysis of Randomized Clinical Trials.


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10.1101/2021.03.03.433740

Lack of Tgfbr1 and Acvr1b synergistically stimulates myofibre hypertrophy and accelerates muscle regeneration


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10.1101/2021.03.29.436986

GCN5 Maintains Muscle Integrity by Acetylating YY1 to Promote Dystrophin Expression



Effects of omega-7 palmitoleic acids on skeletal muscle differentiation in a hyperglycemic condition


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10.1016/j.cellsig.2021.110036

PDGF-PDGFR network differentially regulates, myogenic cell fate, migration, proliferation, and cell cycle progression.


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10.3389/fcell.2021.636498

Withaferin A and Ovarian Cancer Antagonistically Regulate Skeletal Muscle Mass


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10.1074/jbc.RA120.016012

The muscle-relaxing C-terminal peptide from troponin I populates a nascent helix, facilitating binding to tropomyosin with a potent therapeutic effect


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10.3389/fcell.2021.735374

The Role of Osteokines in Sarcopenia: Therapeutic Directions and Application Prospects



Glutathione in the Nervous System as a Potential Therapeutic Target to Control the Development and Progression of Amyotrophic Lateral Sclerosis



Myostatin and Related Factors Are Involved in Skeletal Muscle Protein Breakdown in Growing Broilers Exposed to Constant Heat Stress


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10.1016/j.ygcen.2021.113902

A potential negative regulation of myostatin in muscle growth during the intermolt stage in exopalaemon carinicauda.



Neuropeptide ACP facilitates lipid oxidation and utilization during long-term flight in locusts



Parsing the microRNA genetics basis regulating skeletal muscle fiber types and meat quality traits in pigs.



Ryanodine receptor calcium regulation in healthy and compromised skeletal muscle


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10.1016/j.yexcr.2021.112833

MUSTN1 is an indispensable factor in the proliferation, differentiation and apoptosis of skeletal muscle satellite cells in chicken.



Type II collagen from squid cartilage mediated myogenic IGF-I and irisin to activate the Ihh/PThrp and Wnt/β-catenin pathways to promote fracture healing in mice.


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10.1016/j.bbrep.2021.100930

Signature molecular changes in the skeletal muscle of hindlimb unloaded mice



Acetylation of Sarcoplasmic and Myofibrillar Proteins were Associated with Ovine Meat Quality Attributes at Early Postmortem


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10.1523/JNEUROSCI.2924-19.2021

Neural Substrates of Muscle Co-contraction during Dynamic Motor Adaptation



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