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Utrophin-dystrophin-deficient mice as a model for Duchenne muscular dystrophyThe Discovery of Novel Genomic, Transcriptomic, and Proteomic Biomarkers in Cardiovascular and Peripheral Vascular Disease: The State of the ArtCrystal structure of the transfer-RNA domain of transfer-messenger RNA in complex with SmpBSerum microRNAs are altered in various stages of chronic kidney disease: a preliminary studyDystrobrevin deficiency at the sarcolemma of patients with muscular dystrophy.Inorganic phosphate accelerates the migration of vascular smooth muscle cells: evidence for the involvement of miR-223.Modulation by prednisolone of calcium handling in skeletal muscle cells.tmRNA and associated ligands: a puzzling relationship.miR-223: An inflammatory oncomiR enters the cardiovascular field.Magnesium Attenuates Phosphate-Induced Deregulation of a MicroRNA Signature and Prevents Modulation of Smad1 and Osterix during the Course of Vascular Calcification.The Management of Cardiovascular Risk through Epigenetic BiomarkersmiR-126 Is Involved in Vascular Remodeling under Laminar Shear Stress.Roles and Clinical Applications of Biomarkers in Cardiovascular Disease.The highest affinity binding site of small protein B on transfer messenger RNA is outside the tRNA domain.Possible involvement of microRNAs in vascular damage in experimental chronic kidney disease.Roles and Clinical Applications of Biomarkers in Cardiovascular Disease 2017.miR-92a: A Novel Potential Biomarker of Rapid Aortic Valve Calcification.High inorganic phosphate concentration inhibits osteoclastogenesis by modulating miR-223.MicroRNA deregulation in symptomatic carotid plaque.microRNAs are dysregulated in the cerebral microvasculature of CKD mice.On the facultative requirement of the bacterial RNA chaperone, Hfq.Binding of the dystrophin second repeat to membrane di-oleyl phospholipids is dependent upon lipid packing.TRIMming down to TRIM37: Relevance to Inflammation, Cardiovascular Disorders, and Cancer in MULIBREY NanismSerum levels of miR-126 and miR-223 and outcomes in chronic kidney disease patientsA rapid preparation of primary cultures of mouse skeletal muscle cellsAntioxidant lazaroids enhance differentiation of C2 skeletal muscle cellsLazaroids enhance skeletal myogenesis in primary cultures of dystrophin-deficient mdx micealpha-Methylprednisolone promotes skeletal myogenesis in dystrophin-deficient and control mouse culturesInhibition of miR-223 expression using a sponge strategy decreases restenosis in rat injured carotids
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description
researcher ORCID ID = 0000-0002-7636-8480
@en
wetenschapper
@nl
name
Laurent Metzinger
@ast
Laurent Metzinger
@en
Laurent Metzinger
@es
Laurent Metzinger
@nl
type
label
Laurent Metzinger
@ast
Laurent Metzinger
@en
Laurent Metzinger
@es
Laurent Metzinger
@nl
prefLabel
Laurent Metzinger
@ast
Laurent Metzinger
@en
Laurent Metzinger
@es
Laurent Metzinger
@nl
P106
P31
P496
0000-0002-7636-8480