Sustained Release of TGFβ3 from PLGA Microspheres and Its Effect on Early Osteogenic Differentiation of Human Mesenchymal Stem Cells
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Jeremy J. Mao | J. Mao | L. Hong | P. Clark | Liu Hong | Paul A. Clark | E. Moioli | Eduardo K. Moioli | Jesse Guardado | Jesse Guardado
[1] J. Richman,et al. Tooth induction and temporal patterning in palatal epithelium of fetal mice. , 1986, The American journal of anatomy.
[2] J. McPherson,et al. Exogenous transforming growth factor-beta 2 enhances connective tissue formation and wound strength in guinea pig dermal wounds healing by secondary intent. , 1990, Annals of surgery.
[3] H. Moses,et al. Spatial and temporal patterns of immunoreactive transforming growth factor beta 1, beta 2, and beta 3 during excisional wound repair. , 1993, The American journal of pathology.
[4] P. Puolakkainen,et al. Stimulation of bone healing by transforming growth factor-beta 1 released from polymeric or ceramic implants. , 1994, Journal of applied biomaterials : an official journal of the Society for Biomaterials.
[5] D. Maysinger,et al. In vitro effects of brain derived neurotrophic factor released from microspheres. , 1994, Neuroreport.
[6] Buddy D. Ratner,et al. Biomaterials Science: An Introduction to Materials in Medicine , 1996 .
[7] L. Opperman,et al. TGF‐β1, TGF‐β2, and TGF‐β3 Exhibit Distinct Patterns of Expression During Cranial Suture Formation and Obliteration In Vivo and In Vitro , 1997 .
[8] S. Radin,et al. In vitro release kinetics of biologically active transforming growth factor-β1 from a novel porous glass carrier , 1997 .
[9] A. Mikos,et al. Inhibition of smooth muscle cell growth in vitro by an antisense oligodeoxynucleotide released from poly(DL-lactic-co-glycolic acid) microparticles. , 1997, Journal of biomedical materials research.
[10] L. Opperman,et al. TGF-beta 1, TGF-beta 2, and TGF-beta 3 exhibit distinct patterns of expression during cranial suture formation and obliteration in vivo and in vitro. , 1997, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[11] K. Park,et al. Indirect mitogenic effect of transforming growth factor-beta on cell proliferation of subconjunctival fibroblasts. , 1998, Investigative ophthalmology & visual science.
[12] W. J. Irwin,et al. Development of a sustained-release biodegradable polymer delivery system for site-specific delivery of oligonucleotides: characterization of P(LA-GA) copolymer microspheres in vitro. , 1998, Journal of drug targeting.
[13] C. Rey,et al. Basic fibroblast growth factor adsorption and release properties of calcium phosphate. , 1998, Journal of biomedical materials research.
[14] G. Seong,et al. TGF-beta s stimulate cell proliferation via an autocrine production of FGF-2 in corneal stromal fibroblasts. , 1998, Current eye research.
[15] A. Pandit,et al. The effect of TGF-beta delivered through a collagen scaffold on wound healing. , 1999, Journal of investigative surgery : the official journal of the Academy of Surgical Research.
[16] Cohen Mm. Craniofacial disorders caused by mutations in homeobox genes MSX1 and MSX2. , 2000 .
[17] M J Yaszemski,et al. Effects of transforming growth factor beta1 released from biodegradable polymer microparticles on marrow stromal osteoblasts cultured on poly(propylene fumarate) substrates. , 2000, Journal of biomedical materials research.
[18] M. Cohen. Craniofacial disorders caused by mutations in homeobox genes MSX1 and MSX2. , 2000, Journal of craniofacial genetics and developmental biology.
[19] M. Longaker,et al. Regional Differentiation of Cranial Suture‐Associated Dura Mater In Vivo and In Vitro: Implications for Suture Fusion and Patency , 2000, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[20] B L Currier,et al. Biological activity of rhBMP-2 released from PLGA microspheres. , 2000, Journal of biomechanical engineering.
[21] J L Cleland,et al. Development of poly-(D,L-lactide--coglycolide) microsphere formulations containing recombinant human vascular endothelial growth factor to promote local angiogenesis. , 2001, Journal of controlled release : official journal of the Controlled Release Society.
[22] W. Liu,et al. Differential expression of transforming growth factor-beta receptors I and II and activation of Smad 3 in keloid fibroblasts. , 2001, Plastic and reconstructive surgery.
[23] Robert Langer,et al. Controlled‐release of IGF‐I and TGF‐β1 in a photopolymerizing hydrogel for cartilage tissue engineering , 2001, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[24] A. Mikos,et al. TGF-&bgr;1 Release from Biodegradable Polymer Microparticles: Its Effects on Marrow Stromal Osteoblast Function , 2001, The Journal of bone and joint surgery. American volume.
[25] R. Rees,et al. TGF-beta3 in the treatment of pressure ulcers: a preliminary report. , 2001, Advances in skin & wound care.
[26] M. Ferguson,et al. TGF-beta(3)-induced chondroitin sulphate proteoglycan mediates palatal shelf adhesion. , 2002, Developmental biology.
[27] L. Shum,et al. TGF-beta-3 Promotes Scarless Repair of Cleft Lip in Mouse Fetuses , 2002, Journal of dental research.
[28] F. Verrecchia,et al. Transforming Growth Factor-β Signaling Through the Smad Pathway: Role in Extracellular Matrix Gene Expression and Regulation , 2002 .
[29] A. Moursi,et al. Transforming growth factor‐beta 3(Tgf‐β3) in a collagen gel delays fusion of the rat posterior interfrontal suture in vivo , 2002, The Anatomical record.
[30] S. Feng,et al. Effects of material hydrophobicity on physical properties of polymeric microspheres formed by double emulsion process. , 2002, Journal of controlled release : official journal of the Controlled Release Society.
[31] J. Jansen,et al. Release of bioactive transforming growth factor beta(3) from microtextured polymer surfaces in vitro and in vivo. , 2002, Tissue engineering.
[32] Galanis,et al. Transforming growth factor‐β3 (Tgf‐β3) down‐regulates Tgf‐β receptor type I (Tβr‐I) during rescue of cranial sutures from osseous obliteration , 2002 .
[33] M. Post,et al. TGF-beta 3 expression during umbilical cord development and its alteration in pre-eclampsia. , 2002, Placenta.
[34] J. Mao,et al. Mechanobiology of Craniofacial Sutures , 2002, Journal of dental research.
[35] H. Losken,et al. Rescue of coronal suture fusion using transforming growth factor-beta 3 (Tgf-beta 3) in rabbits with delayed-onset craniosynostosis. , 2003, The anatomical record. Part A, Discoveries in molecular, cellular, and evolutionary biology.
[36] L. Shum,et al. TGF-beta 3 decreases type I collagen and scarring after labioplasty. , 2003, Journal of dental research.
[37] Antonios G Mikos,et al. Advances in drug delivery for articular cartilage. , 2003, Journal of controlled release : official journal of the Controlled Release Society.
[38] L. Shum,et al. TGF-β3 Decreases Type I Collagen and Scarring after Labioplasty , 2003 .
[39] J. Torrado,et al. Effect of c-Sterilization Process on PLGA Microspheres Loaded with Insulin-Like Growth Factor - I (IGF-I) , 2003, Journal of biomaterials applications.
[40] J. Mao,et al. Tissue-engineered Neogenesis of Human-shaped Mandibular Condyle from Rat Mesenchymal Stem Cells , 2003, Journal of dental research.
[41] R. Langer,et al. A method to protect sensitive molecules from a light-induced polymerizing environment. , 2003, Journal of pharmaceutical sciences.
[42] A. G. Ding,et al. Determination of water-soluble acid distribution in poly(lactide-co-glycolide). , 2004, Journal of pharmaceutical sciences.
[43] Y. Tabata,et al. Tissue-engineered trachea from sheep marrow stromal cells with transforming growth factor beta2 released from biodegradable microspheres in a nude rat recipient. , 2004, The Journal of thoracic and cardiovascular surgery.
[44] Robert Langer,et al. Controlled Delivery Systems for Proteins Based on Poly(Lactic/Glycolic Acid) Microspheres , 1991, Pharmaceutical Research.
[45] A. Mauviel,et al. TGF-beta-induced SMAD signaling and gene regulation: consequences for extracellular matrix remodeling and wound healing. , 2004, Journal of dermatological science.
[46] G. Boivin,et al. Mesenchymal stem cells used for rabbit tendon repair can form ectopic bone and express alkaline phosphatase activity in constructs , 2004, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[47] Peter X Ma,et al. The release profiles and bioactivity of parathyroid hormone from poly(lactic-co-glycolic acid) microspheres. , 2004, Biomaterials.
[48] Philippe Menei,et al. In vitro study of GDNF release from biodegradable PLGA microspheres. , 2004, Journal of controlled release : official journal of the Controlled Release Society.
[49] E. Carro,et al. Microspheres containing insulin-like growth factor I for treatment of chronic neurodegeneration. , 2004, Biomaterials.
[50] Henry C. Vasconez,et al. Enhancement of Bone Growth by Sustained Delivery of Recombinant Human Bone Morphogenetic Protein-2 in a Polymeric Matrix , 2001, Pharmaceutical Research.
[51] R. Koepsel,et al. Transforming Growth Factor-β Isoform Expression in the Perisutural Tissues of Craniosynostotic Rabbits , 2004 .
[52] S. O'Kane,et al. Scar-free healing: from embryonic mechanisms to adult therapeutic intervention. , 2004, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[53] J. Mao,et al. Tissue-engineered Rabbit Cranial Suture from Autologous Fibroblasts and BMP2 , 2004, Journal of dental research.
[54] R. Herrero-Vanrell,et al. Study of gamma-irradiation effects on aciclovir poly(D,L-lactic-co-glycolic) acid microspheres for intravitreal administration. , 2004, Journal of controlled release : official journal of the Controlled Release Society.
[55] Jeremy J Mao,et al. Mesenchymal stem cells: isolation and therapeutics. , 2004, Stem cells and development.
[56] Jeremy J Mao,et al. Growth and development: hereditary and mechanical modulations. , 2004, American journal of orthodontics and dentofacial orthopedics : official publication of the American Association of Orthodontists, its constituent societies, and the American Board of Orthodontics.
[57] Nesrin Hasirci,et al. Prolonged cytotoxic effect of colchicine released from biodegradable microspheres. , 2004, Journal of biomedical materials research. Part B, Applied biomaterials.
[58] A. Mauviel,et al. TGF-β-induced SMAD signaling and gene regulation : consequences for extracellular matrix remodeling and wound healing , 2004 .
[59] Adel Alhadlaq,et al. Adult Stem Cell Driven Genesis of Human-Shaped Articular Condyle , 2004, Annals of Biomedical Engineering.
[60] M. Garcia‐Fuentes,et al. Design and characterization of a new drug nanocarrier made from solid-liquid lipid mixtures. , 2005, Journal of colloid and interface science.
[61] J. Mano,et al. Chitosan-Based Particles as Controlled Drug Delivery Systems , 2004, Drug delivery.
[62] Wenlei Jiang,et al. Biodegradable poly(lactic-co-glycolic acid) microparticles for injectable delivery of vaccine antigens. , 2005, Advanced drug delivery reviews.