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1Conference
المؤلفون: Weist, Michael R, BenDavid, Ethan, Munguia, Melanie L, Reyes, Jessica, Chen, Ximin, Parisi, Giulia, Cui, Jiajia, Foord, Orit, Johnston, Jim
المصدر: Regular Abstracts – Part 2 ; page A1793-A1793
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2Academic Journal
المؤلفون: Akhavan, David, Alizadeh, Darya, Wang, Dongrui, Weist, Michael R., Shepphird, Jennifer K., Brown, Christine E.
المساهمون: California Institute for Regenerative Medicine, Kenneth T. and Eileen L. Norris Foundation, National Cancer Institute, Gateway for Cancer Research, Ben and Catherine Ivy Foundation
المصدر: Immunological Reviews ; volume 290, issue 1, page 60-84 ; ISSN 0105-2896 1600-065X
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3Academic Journal
المؤلفون: Sta Maria, Naomi S., Barnes, Samuel R., Weist, Michael R., Colcher, David, Raubitschek, Andrew A., Jacobs, Russell E.
المصدر: PLoS ONE, 10(11), Art. No. e0142767, (2015-11-10)
Relation: https://doi.org/10.1371/journal.pone.0142767; https://www.ncbi.nlm.nih.gov/pmc/PMC4640510; eprintid:62124
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4Academic Journal
المؤلفون: Weist, Michael R., Wellington, Michael S., Bermudez, Jacob E., Kostrominova, Tatiana Y., Mendias, Christopher L., Arruda, Ellen M., Larkin, Lisa M.
مصطلحات موضوعية: Tissue Engineering, Engineered Skeletal Muscle, Scaffoldless, Transforming Growth Factor Beta‐1, Extracellular Matrix, Medicine (General), Health Sciences
وصف الملف: application/pdf
Relation: Weist, Michael R.; Wellington, Michael S.; Bermudez, Jacob E.; Kostrominova, Tatiana Y.; Mendias, Christopher L.; Arruda, Ellen M.; Larkin, Lisa M. (2013). "TGF‐β1 enhances contractility in engineered skeletal muscle." Journal of Tissue Engineering and Regenerative Medicine 7(7): 562-571.; https://hdl.handle.net/2027.42/98828; Journal of Tissue Engineering and Regenerative Medicine; Robbins JR, Evanko SP, Vogel KG. 1997; Mechanical loading and TGF‐beta regulate proteoglycan synthesis in tendon. Arch Biochem Biophys 342: 203 – 211.; Roberts AB, Sporn MB, Assoian RK et al. 1986; Transforming growth factor type beta: rapid induction of fibrosis and angiogenesis in vivo and stimulation of collagen formation in vitro. Proc Natl Acad Sci U S A 83: 4167 – 4171.; Rossi CA, Pozzobon M, De Coppi P. 2010; Advances in musculoskeletal tissue engineering: moving towards therapy. Organogenesis 6: 167 – 172.; Rowe J, Chen Q, Domire ZJ et al. 2010; Effect of collagen digestion on the passive elastic properties of diaphragm muscle in rat. Med Eng Phys 32: 90 – 94.; Schultze‐Mosgau S, Blaese MA, Grabenbauer G et al. 2004; Smad‐3 and Smad‐7 expression following anti‐transforming growth factor beta 1 (TGF‐beta‐1)‐treatment in irradiated rat tissue. Radiother Oncol 70: 249 – 259.; Seale P, Sabourin LA, Girgis‐Gabardo A et al. 2000; Pax7 is required for the specification of myogenic satellite cells. Cell 102: 777 – 786.; Stauber WT, Knack KK, Miller GR et al. 1996; Fibrosis and intercellular collagen connections from four weeks of muscle strains. Muscle Nerve 19: 423 – 430.; Stern HM, Lin‐Jones J, Hauschka SD. 1997; Synergistic interactions between bFGF and a TGF‐beta family member may mediate myogenic signals from the neural tube. Development 124: 3511 – 3523.; Tatsumi R, Anderson JE, Nevoret CJ et al. 1998; HGF/SF is present in normal adult skeletal muscle and is capable of activating satellite cells. Dev Biol 194: 114 – 128.; Vaidya TB, Rhodes SJ, Taparowsky EJ et al. 1989; Fibroblast growth factor and transforming growth factor beta repress transcription of the myogenic regulatory gene MyoD1. Mol Cell Biol 9: 3576 – 3579.; Whittemore LA, Song K, Li X, Aghajanian J et al. 2003; Inhibition of myostatin in adult mice increases skeletal muscle mass and strength. Biochem Biophys Res Commun 300: 965 – 971.; Williams ML, Kostrominova TY, Arruda EM et al. 2011; Effect of Implantation on engineered skeletal muscle constructs. Revision Submitted for Publication in Tissue Engineering and Regenerative Medicine, September 12, 2011.; Zhang Y, Feng X, We R et al. 1996; Receptor‐associated Mad homologues synergize as effectors of the TGF‐beta response. Nature 383: 168 – 172.; Heinemeier KM, Olesen JL, Haddad F et al. 2009; Effect of unloading followed by reloading on expression of collagen and related growth factors in rat tendon and muscle. J Appl Physiol 106: 178 – 186.; Heymann S, Koudrova M, Arnold H et al. 1996; Regulation and function of SF/HGF during migration of limb muscle precursor cells in chicken. Dev Biol 180: 566 – 578.; Huijing PA. 1999; Muscle as a collagen fiber reinforced composite: a review of force transmission in muscle and whole limb. J Biomech 32: 329 – 345.; Ignotz RA, Endo T, Massague J. 1987; Regulation of fibronectin and type I collagen mRNA levels by transforming growth factor‐beta. J Biol Chem 262: 6443 – 6446.; Kjaer M, Magnusson P, Krogsgaard M et al. 2006; Extracellular matrix adaptation of tendon and skeletal muscle to exercise. J Anat 208: 445 – 450.; Kollias HD, McDermott JC. 2008; Transforming growth factor‐beta and myostatin signaling in skeletal muscle. J Appl Physiol 104: 579 – 587.; Kontrogianni‐Konstantopoulos A, Ackermann MA, Bowman AL et al. 2009; Muscle giants: molecular scaffolds in sarcomerogenesis. Physiol Rev 89: 1217 – 1267.; Larkin LM, Calve S, Kostrominova TY et al. 2006; Structure and functional evaluation of tendon‐skeletal muscle constructs engineered in vitro. Tissue Eng 12: 3149 – 3158.; Law PK, Goodwin TG, Fang Q et al. 1993; Cell transplantation as an experimental treatment for Duchenne muscular dystrophy. Cell Transplant 2: 485 – 505.; Lawson MA, Purslow PP. 2001; Development of components of the extracellular matrix, basal lamina and sarcomere in chick quadriceps and pectoralis muscles. Br Poult Sci 42: 315 – 320.; Leask A, Abraham DJ. 2004; TGF‐beta signaling and the fibrotic response. FASEB J 18: 816 – 827.; Levenberg S, Rouwkema J, Macdonald M et al. 2005; Engineering vascularized skeletal muscle tissue. Nat Biotechnol 23: 879 – 884.; Li Y, Foster W, Deasy BM, Chan Y et al. 2004; Transforming growth factor‐beta1 induces the differentiation of myogenic cells into fibrotic cells in injured skeletal muscle: a key event in muscle fibrogenesis. Am J Pathol 164: 1007 – 1019.; Luna A, Meister HP, Szanto PB. 1968; Esophageal varices in the absence of cirrhosis, Incidence and characteristics in congestive heart failure and neoplasm of the liver. Am J Clin Pathol 49: 710 – 717.; Macias‐Silva M, Abdollah S, Hoodless PA et al. 1996; MADR2 is a substrate of the TGF‐beta receptor and its phosphorylation is required for nuclear accumulation and signaling. Cell 87: 1215 – 1224.; Mathew SJ, Hansen JM, Merrell AJ et al. 2011; Connective tissue fibroblasts and Tcf4 regulate myogenesis. Development 138: 371 – 384.; McLennan IS, Koishi K. 1997; Cellular localisation of transforming growth factor ‐beta 2 and ‐beta 3 (TGF‐beta2, TGF‐beta3) in damaged and regenerating skeletal muscles. Dev Dyn 208: 278 – 289.; Miller JB, Everitt EA, Smith TH et al. 1993; Cellular and molecular diversity in skeletal muscle development: news from in vitro and in vivo. Bioessays 15: 191 – 196.; Miura T, Kishioka Y, Wakamatsu J et al. 2010; Interaction between myostatin and extracellular matrix components. Anim Sci J 81: 102 – 107.; Olguin HC, Santander C, Brandan E. 2003; Inhibition of myoblast migration via decorin expression is critical for normal skeletal muscle differentiation. Dev Biol 259: 209 – 224.; Powell CA, Smiley BL, Mills J et al. 2002; Mechanical stimulation improves tissue‐engineered human skeletal muscle. Am J Physiol Cell Physiol 283: C1557 – C1565.; Pryce BA, Watson SS, Murchison ND et al. 2009; Recruitment and maintenance of tendon progenitors by TGF‐beta signaling are essential for tendon formation. Development 136: 1351 – 1361.; Purslow PP. 2002; The structure and functional significance of variations in the connective tissue within muscle. 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In Vitro Cell Dev Biol Anim 39: 434 – 439.; Beach RL, Burton WV, Hendricks WJ et al. 1982; Extracellular matrix synthesis by skeletal muscle in culture. Proteins and effect of enzyme degradation. J Biol Chem 257: 11437 – 11442.; Buck CA, Horwitz AF. 1987; Cell surface receptors for extracellular matrix molecules. Annu Rev Cell Biol 3: 179 – 205.; Buckingham M. 1994; Muscle differentiation. Which myogenic factors make muscle? Curr Biol 4: 61 – 63.; Chen Q, Sivakumar P, Barley C et al. 2007; Potential role for heparan sulfate proteoglycans in regulation of transforming growth factor‐beta (TGF‐beta) by modulating assembly of latent TGF‐beta‐binding protein‐1. J Biol Chem 282: 26418 – 26430.; Croci S, Landuzzi L, Astolfi A et al. 2004; Inhibition of connective tissue growth factor (CTGF/CCN2) expression decreases the survival and myogenic differentiation of human rhabdomyosarcoma cells. Cancer Res 64: 1730 – 1736.; DiEdwardo CA, Petrosko P, Acarturk TO et al. 1999; Muscle tissue engineering. Clin Plast Surg 26: 647 – 656.; Duncan MR, Frazier KS, Abramson S et al. 1999; Connective tissue growth factor mediates transforming growth factor beta‐induced collagen synthesis: down‐regulation by cAMP. FASEB J 13: 1774 – 1786.; Fauza DO, Marler JJ, Koka R et al. 2001; Fetal tissue engineering: diaphragmatic replacement. J Pediatr Surg 36: 146 – 151.
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5Academic Journal
المؤلفون: Weist, Michael R., Starr, Renate, Aguilar, Brenda, Chea, Junie, Miles, Joshua K., Poku, Erasmus, Gerdts, Ethan, Xin Yang, Priceman, Saul J., Forman, Stephen J., Colcher, David, Brown, Christine E., Shively, John E.
المصدر: Journal of Nuclear Medicine; Oct2018, Vol. 59 Issue 10, p1531-1537, 7p, 1 Diagram, 3 Graphs
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6
المؤلفون: Weist, Michael R., Wellington, Michael S., Bermudez, Jacob E., Kostrominova, Tatiana Y., Mendias, Christopher L., Arruda, Ellen M., Larkin, Lisa M.
مصطلحات موضوعية: Transforming Growth Factor beta1, Satellite Cells, Skeletal Muscle, Tissue Engineering, Muscle Fibers, Skeletal, Animals, Muscle Proteins, Female, Article, Cells, Cultured, Rats, Inbred F344, Extracellular Matrix, Muscle Contraction, Rats
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7Academic Journal
المؤلفون: Ahrens, Bradley J., Lin Li, Ciminera, Alexandra K., Chea, Junie, Poku, Erasmus, Bading, James R., Weist, Michael R., Miller, Marcia M., Colcher, David M., Shively, John E.
المصدر: Journal of Nuclear Medicine; Sep2017, Vol. 58 Issue 9, p1373-1379, 7p, 2 Color Photographs, 1 Black and White Photograph, 3 Diagrams, 2 Charts, 1 Graph