The effect of bioactive glass content on synthesis and bioactivity of composite poly (lactic-co-glycolic acid)/bioactive glass substrate for tissue engineering.
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[1] C. Klein,et al. Biodegradation behavior of various calcium phosphate materials in bone tissue. , 1983, Journal of biomedical materials research.
[2] G. Boering,et al. Resorbable materials of poly(L-lactide). VII. In vivo and in vitro degradation. , 1987, Biomaterials.
[3] P. T. Nielsen,et al. Histologic analysis of a retrieved hydroxyapatite-coated femoral prosthesis. , 1991, Clinical orthopaedics and related research.
[4] P Ducheyne,et al. Bioactive glass particulate material as a filler for bone lesions. , 2008, Journal of oral rehabilitation.
[5] C. Devlin,et al. Dexamethasone induction of osteoblast mRNAs in rat marrow stromal cell cultures , 1991, Journal of cellular physiology.
[6] P. Guigui,et al. Quantitative histomorphometric evaluation of spinal arthrodesis after biphasic calcium phosphate ceramic implantation in sheep , 1992 .
[7] Y Ikada,et al. In vitro and in vivo studies on bioabsorbable ultra-high-strength poly(L-lactide) rods. , 1992, Journal of biomedical materials research.
[8] Histologic studies of failed dental implants: A retrieval analysis of four different oral implant designs , 1992 .
[9] P. Ducheyne,et al. BIOACTIVE GLASS PARTICLES OF NARROW SIZE RANGE: A NEW MATERIAL FOR THE REPAIR OF BONE DEFECTS , 1993, Implant dentistry.
[10] V. Goldberg,et al. The biology of bone grafts. , 1993, Seminars in arthroplasty.
[11] J. Hollinger,et al. Incorporation of polylactide-polyglycolide in a cortical defect: neoosteogenesis in a bone chamber. , 1993, Journal of Biomedical Materials Research.
[12] C. Laurencin,et al. Osteoblast-like cell (MC3T3-E1) proliferation on bioerodible polymers: an approach towards the development of a bone-bioerodible polymer composite material. , 1993, Biomaterials.
[13] P. Ducheyne,et al. Effect of bioadctive glass templates on osteoblast proliferation and in vitro synthesis of bone‐like tissue , 1994 .
[14] R. Giardino,et al. Resorbable Device for Fracture Fixation: In Vivo Degradation and Mechanical Behaviour , 1995, International Journal of Artificial Organs.
[15] R. A. Forster,et al. Alternatives to Autogenous Bone Graft: Efficacy and Indications , 1995, The Journal of the American Academy of Orthopaedic Surgeons.
[16] S. Kasugai,et al. Evaluation of implant materials (hydroxyapatite, glass-ceramics, titanium) in rat bone marrow stromal cell culture. , 1996, Biomaterials.
[17] M J Yaszemski,et al. Bone formation by three-dimensional stromal osteoblast culture in biodegradable polymer scaffolds. , 1997, Journal of Biomedical Materials Research.
[18] P. Ducheyne,et al. Formation of surface reaction products on bioactive glass and their effects on the expression of the osteoblastic phenotype and the deposition of mineralized extracellular matrix. , 1997, Biomaterials.
[19] J. Davies,et al. Viable bone formation in porous hydroxyapatite: marrow cell-derived in vitro bone on the surface of ceramics. , 1997, Bio-medical materials and engineering.
[20] P. Ducheyne,et al. Porous bioactive glass and hydroxyapatite ceramic affect bone cell function in vitro along different time lines. , 1997, Journal of biomedical materials research.
[21] K. Ohya,et al. Behavior of bone marrow cells cultured on three different coatings of gel-derived bioactive glass-ceramics at early stages of cell differentiation. , 1998, Journal of biomedical materials research.
[22] M J Yaszemski,et al. Three-dimensional culture of rat calvarial osteoblasts in porous biodegradable polymers. , 1998, Biomaterials.
[23] J. Davies,et al. Attachment, morphology, and protein expression of rat marrow stromal cells cultured on charged substrate surfaces. , 1998, Journal of biomedical materials research.
[24] S. Radin,et al. Si-Ca-P xerogels and bone morphogenetic protein act synergistically on rat stromal marrow cell differentiation in vitro. , 1998, Journal of biomedical materials research.
[25] H. Nakajima,et al. Al2O3 doped apatite-wollastonite containing glass ceramic provokes osteogenic differentiation of marrow stromal stem cells. , 1999, Journal of biomedical materials research.
[26] P. Ducheyne,et al. Effect of serum proteins on osteoblast adhesion to surface‐modified bioactive glass and hydroxyapatite , 1999, Journal of Orthopaedic Research.
[27] F. Lin,et al. The merit of sintered PDLLA/TCP composites in management of bone fracture internal fixation. , 1999, Artificial organs.
[28] A. Mikos,et al. Modulation of marrow stromal cell function using poly(D,L-lactic acid)-block-poly(ethylene glycol)-monomethyl ether surfaces. , 1999, Journal of biomedical materials research.
[29] M. Vallet‐Regí,et al. In vitro bioactivity and gentamicin release from glass-polymer-antibiotic composites. , 2000, Journal of biomedical materials research.
[30] E. J. Eschbach,et al. Assessment of resorbable bioactive material for grafting of critical‐size cancellous defects , 2000, Journal of Orthopaedic Research.
[31] P. Ducheyne,et al. New bioactive, degradable composite microspheres as tissue engineering substrates. , 2000, Journal of biomedical materials research.
[32] C T Laurencin,et al. Poly(lactide-co-glycolide)/hydroxyapatite delivery of BMP-2-producing cells: a regional gene therapy approach to bone regeneration. , 2001, Biomaterials.
[33] R Langer,et al. Selective differentiation of mammalian bone marrow stromal cells cultured on three-dimensional polymer foams. , 2001, Journal of biomedical materials research.
[34] L. Francis,et al. Porous polymer/bioactive glass composites for soft-to-hard tissue interfaces. , 2002, Journal of biomedical materials research.
[35] Cato T Laurencin,et al. Tissue engineered microsphere-based matrices for bone repair: design and evaluation. , 2002, Biomaterials.
[36] Aldo R. Boccaccini,et al. Bioresorbable and bioactive polymer/Bioglass® composites with tailored pore structure for tissue engineering applications , 2003 .
[37] P. Griss,et al. Vergleichende experimentelle untersuchungen an Al2O3-keramik und mit mod. Bioglas (L. L. Hench) beschichteter Al2O3-keramik , 1978, Archives of orthopaedic and traumatic surgery.
[38] R. Langer. 1994 whitaker lecture: Polymers for drug delivery and tissue engineering , 1995, Annals of Biomedical Engineering.