Bioactivity effects of extracellular matrix proteins on apical papilla cells
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J. Hebling | G. Anovazzi | C. A. de Souza Costa | M. Leite | D. Soares | E. Bordini | Mon Filipe Koon Wu
[1] K. Galler,et al. Cell-Free Approaches for Dental Pulp Tissue Engineering. , 2020, Journal of endodontics.
[2] Xu Gao,et al. Cotransplantation of human umbilical cord mesenchymal stem cells and endothelial cells for angiogenesis and pulp regeneration in vivo. , 2020, Life sciences.
[3] D. Müller,et al. Protease-activated receptor signalling initiates α5β1-integrin-mediated adhesion in non-haematopoietic cells , 2020, Nature Materials.
[4] G. Macaluso,et al. A glance on the role of fibronectin in controlling cell response at biomaterial interface , 2019, The Japanese dental science review.
[5] K. Sekiguchi,et al. Laminin α2, α4, and α5 Chains Positively Regulate Migration and Survival of Oligodendrocyte Precursor Cells , 2019, Scientific Reports.
[6] F. G. Basso,et al. Influence of Zirconia-Coated Bioactive Glass on Gingival Fibroblast Behavior. , 2019, Brazilian dental journal.
[7] M. Becker,et al. Enhancing Schwann cell migration using concentration gradients of laminin-derived peptides. , 2019, Biomaterials.
[8] Justin S. Weinbaum,et al. Functional Vascular Tissue Engineering Inspired by Matricellular Proteins , 2019, Front. Cardiovasc. Med..
[9] M. Chiquet,et al. Impaired Contracture of 3D Collagen Constructs by Fibronectin-Deficient Murine Fibroblasts , 2019, Front. Physiol..
[10] H. Kessler,et al. Recruitment of ανβ3 integrin to α5β1 integrin-induced clusters enables focal adhesion maturation and cell spreading , 2019, Journal of Cell Science.
[11] T. Koob,et al. Evaluation of dehydrated human umbilical cord biological properties for wound care and soft tissue healing , 2018, Journal of biomedical materials research. Part B, Applied biomaterials.
[12] J. Hebling,et al. Positive influence of simvastatin used as adjuvant agent for cavity lining , 2018, Clinical Oral Investigations.
[13] C. Shanthi,et al. Matrikines for therapeutic and biomedical applications , 2018, Life sciences.
[14] J. Hebling,et al. Biological Analysis of Simvastatin‐releasing Chitosan Scaffold as a Cell‐free System for Pulp‐dentin Regeneration , 2018, Journal of endodontics.
[15] F. Esteves,et al. A biocompatible decellularized pulp scaffold for regenerative endodontics , 2018, International endodontic journal.
[16] J. Wong,et al. Extracellular matrix type modulates cell migration on mechanical gradients , 2017, Experimental cell research.
[17] C. Y. Tay,et al. Probing the Role of Integrins in Keratinocyte Migration Using Bioengineered Extracellular Matrix Mimics. , 2017, ACS applied materials & interfaces.
[18] K. Hargreaves,et al. Microbial Modulation of Stem Cells and Future Directions in Regenerative Endodontics , 2017, Journal of endodontics.
[19] W. Ye,et al. Surface Modification with ECM-Inspired SDF-1α/Laminin-Loaded Nanocoating for Vascular Wound Healing. , 2017, ACS applied materials & interfaces.
[20] N. Koizumi,et al. Laminin-511 and -521-based matrices for efficient ex vivo-expansion of human limbal epithelial progenitor cells , 2017, Scientific Reports.
[21] Takashi Saito,et al. Human plasma fibronectin promotes proliferation and differentiation of odontoblast , 2017, Journal of applied oral science : revista FOB.
[22] L. Rauova,et al. Endothelial antigen assembly leads to thrombotic complications in heparin-induced thrombocytopenia , 2017, The Journal of clinical investigation.
[23] M. Jeon,et al. Decellularized Human Dental Pulp as a Scaffold for Regenerative Endodontics , 2017, Journal of dental research.
[24] S. H. Lee,et al. Behaviour of human dental pulp cells cultured in a collagen hydrogel scaffold cross‐linked with cinnamaldehyde , 2017, International endodontic journal.
[25] Ping Liu,et al. Functional Effect of the Mutations Similar to the Cleavage during Platelet Activation at Integrin β3 Cytoplasmic Tail when Expressed in Mouse Platelets , 2016, PloS one.
[26] Xiaohua Liu,et al. Pulp regeneration in a full-length human tooth root using a hierarchical nanofibrous microsphere system. , 2016, Acta biomaterialia.
[27] A. Theocharis,et al. Extracellular matrix structure. , 2016, Advanced drug delivery reviews.
[28] Haw-Ming Huang,et al. In Vitro Analysis of Fibronectin-Modified Titanium Surfaces , 2016, PloS one.
[29] Hae-Young Kim,et al. Statistical notes for clinical researchers: Sample size calculation 1. comparison of two independent sample means , 2015, Restorative dentistry & endodontics.
[30] V. Iorio,et al. Laminins: Roles and Utility in Wound Repair. , 2015, Advances in wound care.
[31] K. Ishihara,et al. Concentration-dependent effects of fibronectin adsorbed on hydroxyapatite surfaces on osteoblast adhesion. , 2015, Materials science & engineering. C, Materials for biological applications.
[32] L. Samaranayake,et al. The interplay of dental pulp stem cells and endothelial cells in an injectable peptide hydrogel on angiogenesis and pulp regeneration in vivo. , 2015, Tissue engineering. Part A.
[33] M T P Albuquerque,et al. Tissue-engineering-based Strategies for Regenerative Endodontics , 2014, Journal of dental research.
[34] E. Ervolino,et al. Histopathological condition of the remaining tissues after endodontic infection of rat immature teeth. , 2014, Journal of endodontics.
[35] A. Abu-Seida,et al. Regenerative potential of immature permanent teeth with necrotic pulps after different regenerative protocols. , 2014, Journal of endodontics.
[36] A. Winkel,et al. Innovative approaches to regenerate teeth by tissue engineering. , 2014, Archives of oral biology.
[37] D E Macdonald,et al. Titanium alloy surface oxide modulates the conformation of adsorbed fibronectin to enhance its binding to α(5) β(1) integrins in osteoblasts. , 2012, European journal of oral sciences.
[38] P. Ma,et al. Nanofibrous Scaffolds for Dental and Craniofacial Applications , 2012, Journal of dental research.
[39] Zhou Zhou,et al. Using Well-Plate Microfluidic Devices to Conduct Shear-Based Thrombosis Assays , 2011, Journal of laboratory automation.
[40] A. Poliard,et al. Inflammatory and immunological aspects of dental pulp repair. , 2008, Pharmacological research.
[41] F. Fabris,et al. Heparin-induced thrombocytopenia. , 2000, Haematologica.
[42] K. Safavi,et al. Integrin expression in human dental pulp cells and their role in cell attachment on extracellular matrix proteins. , 1998, Journal of endodontics.
[43] Y. Kapila,et al. The response of periodontal ligament cells to fibronectin. , 1998, Journal of periodontology.
[44] D. Tziafas. Basic mechanisms of cytodifferentiation and dentinogenesis during dental pulp repair. , 1995, The International journal of developmental biology.
[45] K. Kaidoglou,et al. Dentinogenic Activity of Allogenic Plasma Fibronectin on Dog Dental Pulp , 1992, Journal of dental research.