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| Open AccessMature adipocytes inhibit differentiation of myogenic cells but stimulate proliferation of fibro-adipogenic precursors derived from trout muscle in vitro
- Valentine Goffette
- , Nathalie Sabin
- & Jean-Charles Gabillard
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| Open AccessChanges in protein fluxes in skeletal muscle during sequential stages of muscle regeneration after acute injury in male mice
- Alec Bizieff
- , Maggie Cheng
- & Marc K. Hellerstein
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| Open AccessLineage tracing reveals a novel PDGFRβ+ satellite cell subset that contributes to myo-regeneration of chronically injured rotator cuff muscle
- Ayelet Dar
- , Angela Li
- & Frank A. Petrigliano
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| Open AccessSpecific and label-free endogenous signature of dystrophic muscle by Synchrotron deep ultraviolet radiation
- Laurence Dubreil
- , Noreddine Damane
- & Karl Rouger
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| Open AccessRemodeled eX vivo muscle engineered tissue improves heart function after chronic myocardial ischemia
- Marianna Cosentino
- , Carmine Nicoletti
- & Antonio Musarò
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| Open AccessVEGF overexpressed mesoangioblasts enhance urethral and vaginal recovery following simulated vaginal birth in rats
- Marina G. M. C. Mori da Cunha
- , Bernard K. van der Veer
- & Jan Deprest
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| Open AccessR-spondin3 is a myokine that differentiates myoblasts to type I fibres
- Yoshitaka Mita
- , Haonan Zhu
- & Nobuharu L. Fujii
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| Open AccessRNA-Seq analysis of a Pax3-expressing myoblast clone in-vitro and effect of culture surface stiffness on differentiation
- Louise Richardson
- , Dapeng Wang
- & Michelle Peckham
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| Open AccessCollagen-derived dipeptide Pro-Hyp administration accelerates muscle regenerative healing accompanied by less scarring after wounding on the abdominal wall in mice
- Shiro Jimi
- , Seiko Koizumi
- & Arman Saparov
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| Open AccessGlutamine supplementation stimulates cell proliferation in skeletal muscle and cultivated myogenic cells of low birth weight piglets
- Yaolu Zhao
- , Elke Albrecht
- & Steffen Maak
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| Open AccessRbm24 displays dynamic functions required for myogenic differentiation during muscle regeneration
- Raphaëlle Grifone
- , Audrey Saquet
- & De-Li Shi
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| Open AccessPersistent COUP-TFII expression underlies the myopathy and impaired muscle regeneration observed in resistance to thyroid hormone-alpha
- Paola Aguiari
- , Yan-Yun Liu
- & Anna Milanesi
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| Open AccessPDGFRα mediated survival of myofibroblasts inhibit satellite cell proliferation during aberrant regeneration of lacerated skeletal muscle
- Abinaya Sundari Thooyamani
- & Asok Mukhopadhyay
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| Open AccessChemoradiation impairs myofiber hypertrophic growth in a pediatric tumor model
- Nicole D. Paris
- , Jacob G. Kallenbach
- & Joe V. Chakkalakal
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| Open AccessLineage tracing reveals evidence of a popliteal lymphatic muscle progenitor cell that is distinct from skeletal and vascular muscle progenitors
- H. Mark Kenney
- , Richard D. Bell
- & Edward M. Schwarz
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| Open AccessFunctional skeletal muscle model derived from SOD1-mutant ALS patient iPSCs recapitulates hallmarks of disease progression
- Agnes Badu-Mensah
- , Xiufang Guo
- & James J. Hickman
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| Open AccessChromatin and transcriptome changes in human myoblasts show spatio-temporal correlations and demonstrate DPP4 inhibition in differentiated myotubes
- Tomasz J. Kolanowski
- , Natalia Rozwadowska
- & Maciej Kurpisz
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| Open AccessHeterogenetic parabiosis between healthy and dystrophic mice improve the histopathology in muscular dystrophy
- Aiping Lu
- , Ping Guo
- & Johnny Huard
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| Open AccessLow birth weight influences the postnatal abundance and characteristics of satellite cell subpopulations in pigs
- K. Stange
- , C. Miersch
- & M. Röntgen
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| Open AccessJanus effect of glucocorticoids on differentiation of muscle fibro/adipogenic progenitors
- Andrea Cerquone Perpetuini
- , Giulio Giuliani
- & Gianni Cesareni
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| Open AccessTrim33 (Tif1γ) is not required for skeletal muscle development or regeneration but suppresses cholecystokinin expression
- Cassie A. Parks
- , Katherine Pak
- & Andrew L. Mammen
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| Open AccessDistinct cell proliferation, myogenic differentiation, and gene expression in skeletal muscle myoblasts of layer and broiler chickens
- Yuma Nihashi
- , Koji Umezawa
- & Tomohide Takaya
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| Open AccessThe panniculus carnosus muscle: A novel model of striated muscle regeneration that exhibits sex differences in the mdx mouse
- Ola A. Bahri
- , Neia Naldaiz-Gastesi
- & Karl J. A. McCullagh
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| Open AccessMuscle satellite cells and impaired late stage regeneration in different murine models for muscular dystrophies
- Antonio F. Ribeiro Jr.
- , Lucas S. Souza
- & Mariz Vainzof
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| Open AccessCritical Limb Ischemia Induces Remodeling of Skeletal Muscle Motor Unit, Myonuclear-, and Mitochondrial-Domains
- Mahir Mohiuddin
- , Nan Hee Lee
- & Young C. Jang
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| Open AccessDysregulated autophagy in muscle precursor cells from humans with type 2 diabetes
- T. I. Henriksen
- , L. V. Wigge
- & C. Scheele
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| Open AccessThe Late Effects of Radiation Therapy on Skeletal Muscle Morphology and Progenitor Cell Content are Influenced by Diet-Induced Obesity and Exercise Training in Male Mice
- Donna D’Souza
- , Sophia Roubos
- & Michael De Lisio
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| Open AccessOsteogenic differentiation of skeletal muscle progenitor cells is activated by the DNA damage response
- M. Rosina
- , F. Langone
- & G. Cesareni
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| Open AccessThe immunosuppressant drug azathioprine restrains adipogenesis of muscle Fibro/Adipogenic Progenitors from dystrophic mice by affecting AKT signaling
- Alessio Reggio
- , Filomena Spada
- & Gianni Cesareni
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| Open AccessIsolation and characterization of myogenic precursor cells from human cremaster muscle
- Neia Naldaiz-Gastesi
- , María Goicoechea
- & Ander Izeta
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| Open AccessHuman skeletal muscle macrophages increase following cycle training and are associated with adaptations that may facilitate growth
- R. Grace Walton
- , Kate Kosmac
- & Charlotte A. Peterson
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| Open AccessIL-1β- and IL-4-polarized macrophages have opposite effects on adipogenesis of intramuscular fibro-adipogenic progenitors in humans
- C. Moratal
- , J. Raffort
- & C. Dani
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| Open AccessCCAAT/Enhancer Binding Protein β inhibits myogenic differentiation via ID3
- Hamood AlSudais
- , Neena Lala-Tabbert
- & Nadine Wiper-Bergeron
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| Open AccessThe imprinted gene Pw1/Peg3 regulates skeletal muscle growth, satellite cell metabolic state, and self-renewal
- Rosa Maria Correra
- , David Ollitrault
- & David A. Sassoon
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| Open AccessCOMP-Angiopoietin-1 accelerates muscle regeneration through N-cadherin activation
- Seock-Won Youn
- , Hyun-Chae Lee
- & Hyo-Soo Kim
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| Open AccessMaintaining bovine satellite cells stemness through p38 pathway
- Shijie Ding
- , G. N. M Swennen
- & Mark J. Post
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| Open AccessWnt7a induces satellite cell expansion, myofiber hyperplasia and hypertrophy in rat craniofacial muscle
- Cheng Xu
- , Huang Hanyao
- & Li Jingtao
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| Open AccessPerfect chronic skeletal muscle regeneration in adult spiny mice, Acomys cahirinus
- Malcolm Maden
- , Jason Orr Brant
- & Ketan Patel
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| Open AccessDecellularised skeletal muscles allow functional muscle regeneration by promoting host cell migration
- Anna Urciuolo
- , Luca Urbani
- & Paolo De Coppi
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| Open AccessPremyogenic progenitors derived from human pluripotent stem cells expand in floating culture and differentiate into transplantable myogenic progenitors
- Fusako Sakai-Takemura
- , Asako Narita
- & Yuko Miyagoe-Suzuki
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| Open AccessSMAD6 overexpression leads to accelerated myogenic differentiation of LMNA mutated cells
- Alexandre Janin
- , Delphine Bauer
- & Alexandre Méjat
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| Open AccessMuscle stem cell dysfunction impairs muscle regeneration in a mouse model of Down syndrome
- Bradley Pawlikowski
- , Nicole Dalla Betta
- & Bradley B. Olwin
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| Open AccessSmall-RNA sequencing identifies dynamic microRNA deregulation during skeletal muscle lineage progression
- David Castel
- , Meryem B. Baghdadi
- & Shahragim Tajbakhsh
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| Open AccessPotential use of superparamagnetic iron oxide nanoparticles for in vitro and in vivo bioimaging of human myoblasts
- Kamil R. Wierzbinski
- , Tomasz Szymanski
- & Maciej K. Kurpisz
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| Open AccessHDAC4 regulates satellite cell proliferation and differentiation by targeting P21 and Sharp1 genes
- Nicoletta Marroncelli
- , Marzia Bianchi
- & Viviana Moresi
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| Open AccessActive GSK3β and an intact β-catenin TCF complex are essential for the differentiation of human myogenic progenitor cells
- C. C. Agley
- , F. C. Lewis
- & S. D. R. Harridge
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| Open AccessIL-15 promotes human myogenesis and mitigates the detrimental effects of TNFα on myotube development
- Mary F. O’Leary
- , Graham R. Wallace
- & Simon W. Jones
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| Open AccessLevels of S100B protein drive the reparative process in acute muscle injury and muscular dystrophy
- Francesca Riuzzi
- , Sara Beccafico
- & Rosario Donato
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| Open AccessDirect reprogramming of fibroblasts into skeletal muscle progenitor cells by transcription factors enriched in undifferentiated subpopulation of satellite cells
- Naoki Ito
- , Isao Kii
- & Shin’ichi Takeda