Use of Cell-Based Approaches in Maxillary Sinus Augmentation Procedures
暂无分享,去创建一个
[1] A. Gonshor,et al. Histologic evaluation of a stem cell-based sinus-augmentation procedure. , 2009, Journal of periodontology.
[2] Thomas J Webster,et al. Arginine-glycine-aspartic acid modified rosette nanotube-hydrogel composites for bone tissue engineering. , 2009, Biomaterials.
[3] J. Huard,et al. Bone regeneration mediated by BMP4-expressing muscle-derived stem cells is affected by delivery system. , 2009, Tissue engineering. Part A.
[4] A. Gahleitner,et al. Are culture-expanded autogenous bone cells a clinically reliable option for sinus grafting? , 2009, Clinical oral implants research.
[5] Shelley E. Brown,et al. Phenotypic characterization, osteoblastic differentiation, and bone regeneration capacity of human embryonic stem cell-derived mesenchymal stem cells. , 2009, Stem Cells and Development.
[6] J. H. Kim,et al. In vivo osteogenic differentiation of human adipose-derived stem cells in an injectable in situ-forming gel scaffold. , 2009, Tissue engineering. Part A.
[7] M. Ueda,et al. Injectable tissue-engineered bone using autogenous bone marrow-derived stromal cells for maxillary sinus augmentation: clinical application report from a 2-6-year follow-up. , 2008, Tissue engineering. Part A.
[8] M. Soleimani,et al. Sinus augmentation using human mesenchymal stem cells loaded into a beta-tricalcium phosphate/hydroxyapatite scaffold. , 2008, Oral surgery, oral medicine, oral pathology, oral radiology, and endodontics.
[9] S. Gittens,et al. Maxillary sinus floor elevation using a tissue-engineered bone complex with OsteoBone and bMSCs in rabbits. , 2008, Clinical oral implants research.
[10] Clemens A van Blitterswijk,et al. Cell based bone tissue engineering in jaw defects. , 2008, Biomaterials.
[11] Andreas Thor,et al. Bone substitutes and growth factors as an alternative/complement to autogenous bone for grafting in implant dentistry. , 2008, Periodontology 2000.
[12] C. Marchetti,et al. Mesenchymal stem cells and platelet-rich plasma enhance bone formation in sinus grafting: a histomorphometric study in minipigs. , 2008, Journal of clinical periodontology.
[13] I. Springer,et al. Missing osteogenic effect of expanded autogenous osteoblast-like cells in a minipig model of sinus augmentation with simultaneous dental implant installation. , 2008, Clinical oral implants research.
[14] H. Kagami,et al. Injectable Bone Applied for Ridge Augmentation and Dental Implant Placement: Human Progress Study , 2008, Implant dentistry.
[15] A. Caplan. Adult mesenchymal stem cells for tissue engineering versus regenerative medicine , 2007, Journal of cellular physiology.
[16] Paolo Giannoni,et al. A tissue engineering approach to bone repair in large animal models and in clinical practice. , 2007, Biomaterials.
[17] H. De Bruyn,et al. A literature review on biomaterials in sinus augmentation procedures. , 2007, Clinical implant dentistry and related research.
[18] D. Smiler,et al. A Histomorphogenic Analysis of Bone Grafts Augmented With Adult Stem Cells , 2007, Implant dentistry.
[19] N. Gellrich,et al. Bone formation after sinus augmentation with engineered bone. , 2007, Clinical oral implants research.
[20] Clemens A van Blitterswijk,et al. Cell-Based Bone Tissue Engineering , 2007, PLoS medicine.
[21] Jennifer H Elisseeff,et al. Collagen mimetic peptide-conjugated photopolymerizable PEG hydrogel. , 2006, Biomaterials.
[22] I. Springer,et al. Two techniques for the preparation of cell-scaffold constructs suitable for sinus augmentation: steps into clinical application. , 2006, Tissue engineering.
[23] G. Im,et al. Mesenchymal stem cells for tissue engineering and regenerative medicine , 2006, Biomedical materials.
[24] Myron Nevins,et al. De novo bone induction by recombinant human bone morphogenetic protein-2 (rhBMP-2) in maxillary sinus floor augmentation. , 2005, Journal of oral and maxillofacial surgery : official journal of the American Association of Oral and Maxillofacial Surgeons.
[25] A. Caplan. Review: mesenchymal stem cells: cell-based reconstructive therapy in orthopedics. , 2005, Tissue engineering.
[26] R. Ewers,et al. Three-dimensional composites manufactured with human mesenchymal cambial layer precursor cells as an alternative for sinus floor augmentation: an in vitro study. , 2005, Clinical oral implants research.
[27] S. Ichinose,et al. Effects of a laminin peptide (YIGSR) immobilized on crab-tendon chitosan tubes on nerve regeneration. , 2005, Journal of biomedical materials research. Part B, Applied biomaterials.
[28] M. Ueda,et al. Clinical case reports of injectable tissue-engineered bone for alveolar augmentation with simultaneous implant placement. , 2005, The International journal of periodontics & restorative dentistry.
[29] R. Tuan,et al. Mesenchymal stem cell-based cartilage tissue engineering: cells, scaffold and biology. , 2004, Cytotherapy.
[30] T. Sheffield,et al. In vitro osteogenic differentiation of marrow stromal cells encapsulated in biodegradable hydrogels. , 2004, Journal of biomedical materials research. Part A.
[31] A. Daar,et al. The science of stem cells: ethical, legal and social issues. , 2003, Experimental and clinical transplantation : official journal of the Middle East Society for Organ Transplantation.
[32] R. Schmelzeisen,et al. Maxillary sinus floor augmention with autogenous bone grafts to enable placement of SLA-surfaced implants: preliminary results after 15-40 months. , 2003, Clinical oral implants research.
[33] R. Schmelzeisen,et al. Making bone: implant insertion into tissue-engineered bone for maxillary sinus floor augmentation-a preliminary report. , 2003, Journal of cranio-maxillo-facial surgery : official publication of the European Association for Cranio-Maxillo-Facial Surgery.
[34] Jason A Burdick,et al. Photoencapsulation of osteoblasts in injectable RGD-modified PEG hydrogels for bone tissue engineering. , 2002, Biomaterials.
[35] G. Lisignoli,et al. Osteogenesis of large segmental radius defects enhanced by basic fibroblast growth factor activated bone marrow stromal cells grown on non-woven hyaluronic acid-based polymer scaffold. , 2002, Biomaterials.
[36] Allan S Hoffman,et al. Hydrogels for biomedical applications. , 2002, Advanced drug delivery reviews.
[37] I. Tohnai,et al. Tissue engineering research in oral implant surgery. , 2001, Artificial organs.
[38] M. Pittenger,et al. Multilineage potential of adult human mesenchymal stem cells. , 1999, Science.
[39] M. Taylor,et al. Maxillary sinus augmentation in the non-human primate: a comparative radiographic and histologic study between recombinant human osteogenic protein-1 and natural bone mineral. , 1998, Journal of periodontology.
[40] J. Wozney,et al. Bone formation and osseointegration stimulated by rhBMP-2 following subantral augmentation procedures in nonhuman primates. , 1997, The International journal of oral & maxillofacial implants.
[41] S. Kadiyala,et al. Culture expanded canine mesenchymal stem cells possess osteochondrogenic potential in vivo and in vitro. , 1997, Cell transplantation.
[42] C. Friedman,et al. Synthetic bone graft substitutes. , 1994, Otolaryngologic clinics of North America.
[43] D. Tatakis,et al. Use of engineered bone for sinus augmentation. , 2008, Journal of periodontology.
[44] Ranieri Cancedda,et al. Bone Marrow Stromal Cells (BMSCs) in Bone Engineering: Limitations and Recent Advances , 2004, Annals of Biomedical Engineering.
[45] Stefan Schultze-Mosgau,et al. Histologic findings in sinus augmentation with autogenous bone chips versus a bovine bone substitute. , 2003, The International journal of oral & maxillofacial implants.
[46] Tetsuya Tateishi,et al. Mesenchymal stem cells and bioceramics: strategies to regenerate the skeleton. , 2003, Novartis Foundation symposium.