Cellular behavior as a dynamic field for exploring bone bioengineering: a closer look at cell-biomaterial interface.
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José Mauro Granjeiro | Sara Gemini-Piperni | Esther Rieko Takamori | Suelen Cristina Sartoretto | Katiúcia B S Paiva | Rodrigo Cardoso de Oliveira | Willian Fernando Zambuzzi | J. Granjeiro | Esther Takamori | W. Zambuzzi | S. Gemini-Piperni | S. Sartoretto | K. B. Paiva | R. D. de Oliveira | K. Paiva | E. Takamori
[1] Anna Teti,et al. Do osteocytes contribute to bone mineral homeostasis? Osteocytic osteolysis revisited. , 2009, Bone.
[2] S. Gronthos,et al. Postnatal human dental pulp stem cells (DPSCs) in vitro and in vivo. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[3] Y. Zhou,et al. Regulatory effects of introduction of an exogenous FGF2 gene on other growth factor genes in a healing tendon , 2014, Wound repair and regeneration : official publication of the Wound Healing Society [and] the European Tissue Repair Society.
[4] Xiaobo Zhou,et al. Modeling vascularized bone regeneration within a porous biodegradable CaP scaffold loaded with growth factors. , 2013, Biomaterials.
[5] A. Bruni-Cardoso,et al. On the road to understanding of the osteoblast adhesion: Cytoskeleton organization is rearranged by distinct signaling pathways , 2009, Journal of cellular biochemistry.
[6] M. Nakashima,et al. Human dental pulp stem cells with highly angiogenic and neurogenic potential for possible use in pulp regeneration. , 2009, Cytokine & growth factor reviews.
[7] N. Udagawa,et al. New roles of osteoblasts involved in osteoclast differentiation. , 2012, World journal of orthopedics.
[8] Ericka Stricklin-Parker,et al. Ann , 2005 .
[9] M. Peppelenbosch,et al. Phosphoproteome reveals an atlas of protein signaling networks during osteoblast adhesion , 2010, Journal of cellular biochemistry.
[10] C. Heo,et al. Current applications of adipose-derived stem cells and their future perspectives. , 2014, World journal of stem cells.
[11] Elias A. Rivera,et al. Potency evaluation of tissue engineered and regenerative medicine products. , 2013, Trends in biotechnology.
[12] Paulo G Coelho,et al. Intracellular signal transduction as a factor in the development of "smart" biomaterials for bone tissue engineering. , 2011, Biotechnology and bioengineering.
[13] H. Nakajima,et al. In vivo osteogenic durability of cultured bone in porous ceramics: a novel method for autogenous bone graft substitution. , 2000, Transplantation.
[14] M. Lotz,et al. Boning up on autophagy , 2014, Autophagy.
[15] J. Ravlić-Gulan,et al. Treatment of infected tibial nonunion with bone defect using central bone grafting technique. , 2012, Collegium antropologicum.
[16] C. Ferreira,et al. A simple method for enhancing cell adhesion to hydroxyapatite surface. , 2010, Clinical oral implants research.
[17] G. Kostakis,et al. Biological Response to &bgr;-Tricalcium Phosphate/Calcium Sulfate Synthetic Graft Material: An Experimental Study , 2014, Implant dentistry.
[18] P ? ? ? ? ? ? ? % ? ? ? ? , 1991 .
[19] M. Peppelenbosch,et al. Profiling the changes in signaling pathways in ascorbic acid/β‐glycerophosphate‐induced osteoblastic differentiation , 2011, Journal of cellular biochemistry.
[20] D. Kaufman,et al. Multilineage Differentiation from Human Embryonic Stem Cell Lines , 2001, Stem cells.
[21] G. Yao,et al. Effect of synthetic link N peptide on the expression of type I and type II collagens in human intervertebral disc cells. , 2011, Tissue engineering. Part A.
[22] W. Dhert,et al. Bone morphogenetic protein-2 plasmid DNA as a substitute for bone morphogenetic protein-2 protein in bone tissue engineering. , 2013, Tissue engineering. Part A.
[23] Tarun Garg,et al. Scaffold: a novel carrier for cell and drug delivery. , 2012, Critical reviews in therapeutic drug carrier systems.
[24] Maurilio Marcacci,et al. Stem cells associated with macroporous bioceramics for long bone repair: 6- to 7-year outcome of a pilot clinical study. , 2007, Tissue engineering.
[25] J. H. Kim,et al. WKYMVm‐Induced Activation of Formyl Peptide Receptor 2 Stimulates Ischemic Neovasculogenesis by Promoting Homing of Endothelial Colony‐Forming Cells , 2014, Stem cells.
[26] J. Granjeiro,et al. MMP-9 and CD68+ cells are required for tissue remodeling in response to natural hydroxyapatite , 2009, Journal of Molecular Histology.
[27] L. Quarles,et al. Evidence for FGF23 involvement in a bone-kidney axis regulating bone mineralization and systemic phosphate and vitamin D homeostasis. , 2012, Advances in experimental medicine and biology.
[28] P. Cederna,et al. Reconciling the effects of inflammatory cytokines on mesenchymal cell osteogenic differentiation. , 2013, The Journal of surgical research.
[29] C. Ferreira,et al. Hydroxyapatite surface solubility and effect on cell adhesion. , 2010, Colloids and surfaces. B, Biointerfaces.
[31] S. Choe,et al. BMPs and their clinical potentials. , 2011, BMB reports.
[32] D. Cacchiarelli,et al. Brief Report: Importance of SOX8 for In Vitro Chondrogenic Differentiation of Human Mesenchymal Stromal Cells , 2014, Stem cells.
[33] M. Ghanei,et al. Effect of recombinant human IFNγ in the treatment of chronic pulmonary complications due to sulfur mustard intoxication , 2014, Journal of immunotoxicology.
[34] Nicola Maffulli,et al. Bone regenerative medicine: classic options, novel strategies, and future directions , 2014, Journal of Orthopaedic Surgery and Research.
[35] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[36] P. Yelick,et al. Bioengineered Dental Tissues Grown in the Rat Jaw , 2008, Journal of dental research.
[37] J. Granjeiro,et al. Basic research methods and current trends of dental implant surfaces. , 2009, Journal of biomedical materials research. Part B, Applied biomaterials.
[38] F. Carinci,et al. A New Population of Human Adult Dental Pulp Stem Cells: A Useful Source of Living Autologous Fibrous Bone Tissue (LAB) , 2005, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[39] N. Vu,et al. Good manufacturing practice-compliant isolation and culture of human umbilical cord blood-derived mesenchymal stem cells , 2014, Journal of Translational Medicine.
[40] K Yano,et al. Osteoclast differentiation factor is a ligand for osteoprotegerin/osteoclastogenesis-inhibitory factor and is identical to TRANCE/RANKL. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[41] Remo Guidieri. Res , 1995, RES: Anthropology and Aesthetics.
[42] Hongcan Shi,et al. Comparisons of Rabbit Bone Marrow Mesenchymal Stem Cell Isolation and Culture Methods In Vitro , 2014, PloS one.
[43] R. Shemin,et al. The effect of vitronectin on the differentiation of embryonic stem cells in a 3D culture system. , 2012, Biomaterials.
[44] J. Vacanti,et al. Engineering extracellular matrix through nanotechnology , 2010, Journal of The Royal Society Interface.
[45] Stuart Young,et al. Mesenchymal stem cell delivery strategies to promote cardiac regeneration following ischemic injury. , 2014, Biomaterials.
[46] J. Millán,et al. Enzyme replacement prevents enamel defects in hypophosphatasia mice , 2012, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[47] D. Lacey,et al. Osteoprotegerin Ligand Is a Cytokine that Regulates Osteoclast Differentiation and Activation , 1998, Cell.
[48] M. Peppelenbosch,et al. Modulation of Src Activity by Low Molecular Weight Protein Tyrosine Phosphatase During Osteoblast Differentiation , 2008, Cellular Physiology and Biochemistry.
[49] Xu Feng,et al. Chemical and Biochemical Basis of Cell-Bone Matrix Interaction in Health and Disease. , 2009, Current chemical biology.
[50] W. Kamps,et al. PTK787/ZK 222584 inhibits tumor growth promoting mesenchymal stem cells: Kinase activity profiling as powerful tool in functional studies , 2009, Cancer biology & therapy.
[51] M C Sogayar,et al. Bone morphogenetic proteins: from structure to clinical use. , 2005, Brazilian journal of medical and biological research = Revista brasileira de pesquisas medicas e biologicas.
[52] Mikaël M. Martino,et al. The promotion of endothelial cell attachment and spreading using FNIII10 fused to VEGF-A165. , 2013, Biomaterials.
[53] Hajime Ohgushi,et al. Repair of articular cartilage defects in the patello‐femoral joint with autologous bone marrow mesenchymal cell transplantation: three case reports involving nine defects in five knees , 2007, Journal of tissue engineering and regenerative medicine.
[54] Mikaël M. Martino,et al. Growth Factors Engineered for Super-Affinity to the Extracellular Matrix Enhance Tissue Healing , 2014, Science.
[55] Joseph P Vacanti,et al. Reconstruction of mandibular defects with autologous tissue-engineered bone. , 2004, Journal of oral and maxillofacial surgery : official journal of the American Association of Oral and Maxillofacial Surgeons.
[56] M. Shah,et al. Translating Biomaterial Properties to Intracellular Signaling , 2009, Cell Biochemistry and Biophysics.
[57] M. Dalby,et al. The use of microarrays and fluorescence in situ hybridization for the study of mechanotransduction from topography. , 2014, Methods in cell biology.
[58] T. Albert,et al. Hypoxia Activates MAPK Activity in Rat Nucleus Pulposus Cells: Regulation of Integrin Expression and Cell Survival , 2005, Spine.
[59] M. Longaker,et al. Palatogenesis , 2011, Organogenesis.
[60] J. Granjeiro,et al. Rat subcutaneous tissue response to macrogranular porous anorganic bovine bone graft. , 2006, Brazilian dental journal.
[61] M. Peppelenbosch,et al. Kinome profiling of osteoblasts on hydroxyapatite opens new avenues on biomaterial cell signaling. , 2014, Biotechnology and bioengineering.
[62] A. Nowitzke,et al. Promoting fusion in minimally invasive lumbar interbody stabilization with low-dose bone morphogenic protein-2--but what is the cost? , 2011, The spine journal : official journal of the North American Spine Society.
[63] A. Reddi,et al. The application of bone morphogenetic proteins to dental tissue engineering , 2003, Nature Biotechnology.
[64] J. Granjeiro,et al. Exploring anorganic bovine bone granules as osteoblast carriers for bone bioengineering: a study in rat critical-size calvarial defects. , 2012, Brazilian dental journal.
[65] Nahum Rosenberg,et al. Osteoblasts in Bone Physiology—Mini Review , 2012, Rambam Maimonides medical journal.
[66] G. Gangenahalli,et al. High Throughput Transcriptome Profiling of Lithium Stimulated Human Mesenchymal Stem Cells Reveals Priming towards Osteoblastic Lineage , 2013, PloS one.
[67] Hyunjoo Lee,et al. Application of a new human cell line, F2N78, in the transient and stable production of recombinant therapeutics , 2013, Biotechnology progress.
[68] J. F. Wright,et al. Transient transfection methods for clinical adeno-associated viral vector production. , 2009, Human gene therapy.
[69] D. Hamilton,et al. The effect of substratum topography on osteoblast adhesion mediated signal transduction and phosphorylation. , 2007, Biomaterials.
[70] James I. Murray,et al. Alternative synthetic tools to phospho-specific antibodies for phosphoproteome analysis: progress and prospects , 2013, Journal of chemical biology.
[71] A. Boccaccini,et al. Reticulated bioactive scaffolds with improved textural properties for bone tissue engineering: nanostructured surfaces and porosity. , 2014, Journal of biomedical materials research. Part A.
[72] Kozo Nakamura,et al. Modulation of Osteoclast Function by Adenovirus Vector‐Induced Epidermal Growth Factor Receptor , 1998, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[73] Tory M. Schaaf,et al. An ex vivo Gene Therapy Approach to Treat Muscular Dystrophy Using inducible Pluripotent Stem Cells , 2013, Nature Communications.
[74] K. Rezwan,et al. Control of alpha-alumina surface charge with carboxylic acids. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[75] J. Granjeiro,et al. Morphometric evaluation of the repair of critical-size defects using demineralized bovine bone and autogenous bone grafts in rat calvaria. , 2008, Clinical oral implants research.
[76] The future of research in craniofacial biology and what this will mean for oral health professional education and clinical practice. , 2014, Australian dental journal.
[77] Jeremy J Mao,et al. Mesenchymal stem cells: isolation and therapeutics. , 2004, Stem cells and development.
[78] A. Barbero,et al. FGF2 induces RANKL gene expression as well as IL1β regulated MHC class II in human bone marrow-derived mesenchymal progenitor stromal cells. , 2015, Annals of the rheumatic diseases.
[79] T. Toyono,et al. Epithelial stem cells in teeth , 2002, Odontology.
[80] M. Joglekar,et al. Mesenchymal stem cells: immunobiology and role in immunomodulation and tissue regeneration. , 2009, Cytotherapy.
[81] L. Huber,et al. Mapping in vivo signal transduction defects by phosphoproteomics. , 2012, Trends in molecular medicine.
[82] W. Dhert,et al. Non-viral gene therapy for bone tissue engineering , 2013, Biotechnology & genetic engineering reviews.
[83] ADM Cavagis,et al. TNFα contributes for attenuating both Y397FAK and Y416Src phosphorylations in osteoblasts. , 2013, Oral diseases.
[84] G. Schmidmaier,et al. Autograft versus BMPs for the treatment of non-unions: what is the evidence? , 2013, Injury.
[85] L. Jeng,et al. Engineered Autologous Bone Marrow Mesenchymal Stem Cells: Alternative to Cleft Alveolar Bone Graft Surgery , 2012, The Journal of craniofacial surgery.
[86] T. Michigami. Regulatory mechanisms for the development of growth plate cartilage , 2013, Cellular and Molecular Life Sciences.
[87] R. Miron,et al. Osteoinduction: a review of old concepts with new standards. , 2012, Journal of dental research.
[88] Hiroshi Suzuki,et al. Regulatory Mechanisms of RANKL Presentation to Osteoclast Precursors , 2014, Current Osteoporosis Reports.
[89] G. Canton,et al. Clinical applications of growth factors in bone injuries: experience with BMPs. , 2013, Injury.
[90] Y. Hwang,et al. Mechanisms of cytoskeleton-mediated mechanical signal transmission in cells , 2012, Communicative & integrative biology.
[91] Mark Van Dyke,et al. Biomimetic approaches to modulate cellular adhesion in biomaterials: A review. , 2013, Acta biomaterialia.
[92] H. An,et al. Lactoferricin enhances BMP7-stimulated anabolic pathways in intervertebral disc cells. , 2013, Gene.
[93] J. Granjeiro,et al. Nanometer Scale Titanium Surface Texturing Are Detected by Signaling Pathways Involving Transient FAK and Src Activations , 2014, PloS one.
[94] Y. Tabata,et al. Enhancement of bone regeneration by dual release of a macrophage recruitment agent and platelet-rich plasma from gelatin hydrogels. , 2014, Biomaterials.
[95] B. Clarkson,et al. In vitro differentiation and mineralization of human dental pulp cells induced by dentin extract , 2005, In Vitro Cellular & Developmental Biology - Animal.
[96] M. Antoniou,et al. Optimizing retroviral gene expression for effective therapies. , 2013, Human gene therapy.
[97] A. Boskey,et al. Modulation of extracellular matrix protein phosphorylation alters mineralization in differentiating chick limb-bud mesenchymal cell micromass cultures. , 2008, Bone.
[98] John B. Shoven,et al. I , Edinburgh Medical and Surgical Journal.
[99] H. Matsui,et al. Applications of peptide and protein-based materials in bionanotechnology. , 2010, Chemical Society reviews.
[100] P. Marie. Signaling Pathways Affecting Skeletal Health , 2012, Current Osteoporosis Reports.
[101] S. Cartmell,et al. Conductive polymers: towards a smart biomaterial for tissue engineering. , 2014, Acta biomaterialia.
[102] K. Hankenson,et al. Mesenchymal Stem Cells in Bone Regeneration. , 2013, Advances in wound care.
[103] M. Senoo. Epidermal Stem Cells in Homeostasis and Wound Repair of the Skin. , 2013, Advances in wound care.
[104] Michael R. Taylor,et al. Identification of Small Molecule Activators of BMP Signaling , 2013, PloS one.
[105] T. Michigami. Current Understanding on the Molecular Basis of Chondrogenesis , 2014, Clinical Pediatric Endocrinology.
[106] M. Mazurek,et al. Bone transport combined with locking bridge plate fixation for the treatment of tibial segmental defects: a report of 2 cases. , 2013, Journal of orthopaedic trauma.
[107] W. Zambuzzi,et al. Bioactivation of alumina by surface modification: a possibility for improving the applicability of alumina in bone and oral repair. , 2009, Clinical oral implants research.
[108] Michael Loran Dustin,et al. Micro- and nanoscale engineering of cell signaling. , 2013, Annual review of biomedical engineering.
[109] R. Schmelzeisen,et al. Tissue-engineered polymer-based periosteal bone grafts for maxillary sinus augmentation: five-year clinical results. , 2011, Journal of oral and maxillofacial surgery : official journal of the American Association of Oral and Maxillofacial Surgeons.
[110] Stan Gronthos,et al. SHED: Stem cells from human exfoliated deciduous teeth , 2003, Proceedings of the National Academy of Sciences of the United States of America.