Matrix metalloproteinases gene variants and dental caries in Czech children
暂无分享,去创建一个
[1] Jianye Zhou,et al. Association of ENAM, TUFT1, MMP13, IL1B, IL10 and IL1RN gene polymorphism and dental caries susceptibility in Chinese children , 2019, The Journal of international medical research.
[2] P. Nelson-Filho,et al. MMP13 Contributes to Dental Caries Associated with Developmental Defects of Enamel , 2019, Caries Research.
[3] P. Bořilová Linhartová,et al. Lack of association between ENAM gene polymorphism and dental caries in primary and permanent teeth in Czech children , 2018, Clinical Oral Investigations.
[4] K. Kettunen,et al. SNP Analysis of Caries and Initial Caries in Finnish Adolescents , 2018, International journal of dentistry.
[5] M. Nowicki,et al. Chosen single nucleotide polymorphisms (SNPs) of enamel formation genes and dental caries in a population of Polish children. , 2017, Advances in clinical and experimental medicine : official organ Wroclaw Medical University.
[6] N. Fiehn,et al. Dental biofilm infections – an update , 2017, APMIS : acta pathologica, microbiologica, et immunologica Scandinavica.
[7] S. Reis,et al. Genetic Association of MMP10, MMP14, and MMP16 with Dental Caries , 2017, International journal of dentistry.
[8] A. R. Vieira,et al. MMP20 rs1784418 Protects Certain Populations against Caries , 2016, Caries Research.
[9] Y. Alyousef,et al. Association of MBL2 Gene Polymorphism with Dental Caries in Saudi Children , 2016, Caries Research.
[10] R. Rullo,et al. Dentin caries progression and the role of metalloproteinases: an update. , 2016, European journal of paediatric dentistry.
[11] V. Mitev,et al. Association study for the role of Matrix metalloproteinases 2 and 3 gene polymorphisms in dental caries susceptibility. , 2016, Archives of oral biology.
[12] L. Dušek,et al. Cohort Profile Cohort Profile : The European Longitudinal Study of Pregnancy and Childhood ( ELSPAC ) in the Czech Republic , 2017 .
[13] J. Granjeiro,et al. Analysis of the association between polymorphisms in MMP2, MMP3, MMP9, MMP20, TIMP1, and TIMP2 genes with white spot lesions and early childhood caries. , 2016, International journal of paediatric dentistry.
[14] Wenyang Li,et al. Association of Common Variants in MMPs with Periodontitis Risk , 2016, Disease markers.
[15] P. Bořilová Linhartová,et al. ACE Insertion/Deletion Polymorphism Associated with Caries in Permanent but Not Primary Dentition in Czech Children , 2016, Caries Research.
[16] Atul K. Jain,et al. Role of matrix metalloproteinases in dental caries, pulp and periapical inflammation: An overview. , 2015, Journal of oral biology and craniofacial research.
[17] Yulong Niu,et al. Cell cycle control, DNA damage repair, and apoptosis-related pathways control pre-ameloblasts differentiation during tooth development , 2015, BMC Genomics.
[18] M. Buzalaf,et al. Matrix Metalloproteinases and Other Matrix Proteinases in Relation to Cariology: The Era of ‘Dentin Degradomics' , 2015, Caries Research.
[19] T. Salo,et al. Role of Dentin MMPs in Caries Progression and Bond Stability , 2015, Journal of dental research.
[20] M. Korachi,et al. Early Childhood Caries Is Associated with Genetic Variants in Enamel Formation and Immune Response Genes , 2014, Caries Research.
[21] P. Bořilová Linhartová,et al. Lack of Association between Lactotransferrin Polymorphism and Dental Caries , 2013, Caries Research.
[22] A. C. Pereira,et al. Matrix metalloproteinase gene polymorphisms and oral cancer , 2012, Journal of clinical and experimental dentistry.
[23] J. Granjeiro,et al. MMP13 Polymorphism Decreases Risk for Dental Caries , 2012, Caries Research.
[24] Xiaoping Xu,et al. Binding of amelogenin to MMP-9 and their co-expression in developing mouse teeth , 2012, Journal of Molecular Histology.
[25] J. Granjeiro,et al. Genetic variation in MMP20 contributes to higher caries experience. , 2012, Journal of dentistry.
[26] A. R. Vieira,et al. Genetic susceptibility to periapical disease: conditional contribution of MMP2 and MMP3 genes to the development of periapical lesions and healing response. , 2012, Journal of endodontics.
[27] A. Ruggeri,et al. Immunohistochemical and biochemical assay of MMP-3 in human dentine. , 2011, Journal of dentistry.
[28] C. N. Brooks,et al. Review of Matrix Metalloproteinases’ Effect on the Hybrid Dentin Bond Layer Stability and Chlorhexidine Clinical Use to Prevent Bond Failure , 2010, The open dentistry journal.
[29] M. Marazita,et al. Genes and Their Effects on Dental Caries May Differ between Primary and Permanent Dentitions , 2010, Caries Research.
[30] P. Papagerakis,et al. Functions of KLK4 and MMP-20 in dental enamel formation , 2008, Biological chemistry.
[31] Robert Bagnell,et al. Immunohistochemical localization of matrixmetalloproteinase-2 in human coronal dentin. , 2008, Archives of oral biology.
[32] M Goldberg,et al. The Role of Matrix Metalloproteinases (MMPs) in Human Caries , 2006, Journal of dental research.
[33] J. Strong,et al. MMP13 promoter polymorphism is associated with atherosclerosis in the abdominal aorta of young black males. , 2002, Matrix biology : journal of the International Society for Matrix Biology.
[34] T. Salo,et al. The Localization of Matrix Metalloproteinase-20 (MMP-20, Enamelysin) in Mature Human Teeth , 2002, Journal of dental research.
[35] D. Greaves,et al. Identification of Novel, Functional Genetic Variants in the Human Matrix Metalloproteinase-2 Gene , 2001, The Journal of Biological Chemistry.
[36] I. Thesleff,et al. Timp-1, -2 and -3 show coexpression with gelatinases A and B during mouse tooth morphogenesis. , 1999, European journal of oral sciences.
[37] H. Larjava,et al. The Activation and Function of Host Matrix Metalloproteinases in Dentin Matrix Breakdown in Caries Lesions , 1998, Journal of dental research.
[38] J. Featherstone,et al. Effects of Collagenase on Root Demineralization , 1997, Journal of dental research.