Journal of Oral Science Research ›› 2020, Vol. 36 ›› Issue (1): 16-19.DOI: 10.13701/j.cnki.kqyxyj.2020.01.005
Previous Articles Next Articles
WEI Yu, WANG Jun*
Received:
2019-02-21
Online:
2020-01-28
Published:
2020-01-16
WEI Yu, WANG Jun. Research Status of Cysteine Cathepsinsin Dentine.[J]. Journal of Oral Science Research, 2020, 36(1): 16-19.
[1] Dickinson DP. Cysteine peptidases of mammals: their biological roles and potential effects in the oral cavity and other tissues in health and disease [J]. Crit Rev Oral Biol Med, 2002, 13(3):238-275. [2] Obermajer N, Jevnikar Z, Doljak B, et al. Role of cysteine cathepsins in matrix degradation and cell signalling [J]. Connect Tissue Res, 2008, 49(3):193-196. [3] Tersariol IL, Geraldeli S, Minciotti CL, et al. Cysteinecathepsins in human dentin-pulp complex [J]. J Endod, 2010, 36(3):475-481. [4] Scaffa PM, Breschi L, Mazzoni A, et al. Co-distribution of cysteine cathepsins and matrix metalloproteases in human dentin [J]. Arch Oral Biol, 2017, 74:101-107. [5] Vidal CM, Tjäderhane L, Scaffa PM, et al. Abundance of MMPs and cysteine cathepsins in caries-affected dentin [J]. J Dent Res, 2014, 93(3):269-274. [6] Nascimento FD, Minciotti CL, Geraldeli S, et al. Cysteine cathepsins in human carious dentin [J]. J Dent Res, 2011, 90(4):506-511. [7] Turk B, Bieth JG, Björk I, et al. Regulation of the activity of lysosomal cysteine proteinases by pH-induced inactivation and/or endogenous Protein inhibitors, cystatins [J]. Biological Chemistry Hoppe-Seyler, 1995, 376:225–230. [8] Kirschke H, Wiederanders B, Brömme D,et al. Cathepsin S from bovine spleen. Purification, distribution, intracellular localization and action on proteins [J]. Biochem J, 1989, 264(2):467-473. [9] Kometoni M, Nonomura K, Tomoo T, et al. Hurdles in the drug discovery of cathepsinKinhibitors [J]. Curr Topics in Med Chem, 2010,10(7):734-744. [10] Khouri HE, Plouffe C, Hasnain S, et al. A model to explain the pH-dependent specificity of cathepsin B-catalysed hydrolyses [J]. Biochem J, 1991, 275(Pt 3):751-757. [11] Zhang W, Yang W, Wu S, et al. Effects of acid etching and adhesive treatments on host-derived cysteine cathepsin activity indentin [J]. J Adhes Dent, 2014, 16(5):415-420. [12] Tezvergil-Mutluay A, Mutluay M, Seseogullari-Dirihan R,et al. Effect of phosphoric acid on the degradation of human dentin matrix [J]. J Dent Res, 2013, 92(1):87-91. [13] Ozcan S, Seseogullari-Dirihan R, Uctasli M, et al. Effect of polyacrylic acid on dentin protease activities [J]. Dent Mater, 2015, 31(8):901-906. [14] Bafail A, Azizalrahman M, Vilde T, et al. Alternative model for cathepsin K activation in human dentin [J]. Dent Mater, 2019, 35(11):1630-1636. [15] Mahalaxmi S, Madhubala MM, Jayaraman M, et al. Evaluation of matrix metalloproteinase and cysteine cathepsin activity in dentin hybrid layer by gelatin zymography [J]. Indian J Dent Res, 2016, 27(6):652-656. [16] Nakabayashi N, Kojima K, Masuhara E. The promotion of adhesionby the infiltration of monomers into tooth substrates [J]. J Biomed Mater Res, 1982, 16:265-273. [17] Rodrigues RV, Giannini M, Pascon FM, et al. Effect of conditioning solutions containing ferric chloride on dentin bond strength and collagen degradation [J]. Dent Mater, 2017, 33(10):1093-1102. [18] Mei ML, Ito L, Cao Y, et al. The inhibitory effects of silver diamine fluorides on cysteine cathepsins [J]. J Dent, 2014, 42(3):329-335. [19] Oh S, Jung HS, Kim HJ, et al. Effect of zinc on the collagen degradation in acid-etched dentin [J]. J Dent Sci, 2018, 13(2):97-102. [20] Tezvergil-Mutluay A, Agee KA, Hoshika T, et al. The requirement of zinc and calcium ions for functional MMP activity in demineralized dentin matrices [J]. Dent Mater, 2010, 26(11):1059-1067. [21] Altinci P, Seseogullari-Dirihan R, Can G, et al. Zinc inhibits collagenolysis by cathepsin K and matrix metalloproteinases in demineralized [J].Caries Res, 2017, 51(6):576-581. [22] Zarella BL, Cardoso CA, Pelá VT, et al. The role of matrix metalloproteinases and cysteine-cathepsins on the progression of dentine erosion [J]. Arch Oral Biol, 2015, 60(9): 1340-1345. [23] 杨伟湘,张文浩,吴淑仪,等.不同浓度组织蛋白酶抑制剂E-64对牙本质与树脂粘接耐久性的影响[J].中华口腔医学杂志,2013,48(6):368-371. [24] Scaffa PM, Vidal CM, Barros N, et al. Chlorhexidine inhibits the activity of dental cysteine cathepsins [J]. J Dent Res, 2012, 91(4):420-425. [25] Malaquias P, Gutierrez MF, Hass V, et al. Two-year effects of chlorhexidine-containing adhesives on the in vitro durability of resin-dentin interfaces and modeling of drug release [J]. Oper Dent, 2018, 43(2):201-212. [26] Loguercio AD, Hass V, Gutierrez MF, et al. Five-year effects of chlorhexidine on the in vitro durability of resin/dentin interfaces [J]. J Adhes Dent, 2016, 18(1):35-42. [27] Ou Q, Tan L, Huang X, et al. Effect of matrix metalloproteinase 8 inhibitor and chlorhexidine on the cytotoxicity, oxidative stress and cytokine level of MDPC-23 [J]. Dent Mater, 2018, 34(11):e301-e308. [28] Tezvergil-Mutluay A, Agee KA, Mazzoni A, et al. Can quaternary ammonium methacrylates inhibit matrix MMPs and cathepsins [J]. Dent Mater, 2015, 31(2):e25-e32. [29] Daood D, Yiu CKY, Burrow MF, et al. Effect of a novel quaternary ammonium silane cavity disinfectant on durability of resin-dentine bond [J]. J Dent, 2017, 60:77-86. [30] Umer D, Yiu CK, Burrow MF, et al. Effect of a novel quaternary ammonium silane on dentin protease activities [J]. J Dent, 2017,58:19-27. [31] Kato MT, Bolanho A, Zarella BL, et al. Sodium fluoride inhibits MMP-2 and MMP-9 [J]. J Dent Res, 2014, 93(1):74-77. [32] Altinci P, Mutluay M, Seseogullari-Dirihan R,et al.NaF inhibits matrix-bound cathepsin-mediated dentin matrix degradation [J]. Caries Res, 2016, 50(2):124-132. [33] Altinci P, Mutluay M, Tjäderhane L, et al. Inhibition of dentin matrix-bound cysteine cathepsins by potassium fluoride [J]. Eur J Oral Sci, 2019,127(1):1-9. [34] Altinci P, Mutluay M, Tjäderhane L, et al. Effect of calcium fluoride on the activity of dentin matrix-bound enzymes [J]. Arch Oral Biol, 2018,96:162-168. [35] Cox SW, Eley BM, Kiili M, et al. Collagen degradation by interleukin-1beta-stimulated gingival fibroblasts is accompanied by release and activation of multiple matrix metalloproteinases and cysteine proteinases [J]. Oral Diseases, 2006, 12(1):34-40. [36] Christensen J, Shastri VP. Matrix-metalloproteinase-9 is cleaved and activated by cathepsin K [J]. BMC Res Notes, 2015, 8:322. [37] Kostoulas G, Lang A, Nagase H, et al. Stimulation of angiogenesis through cathepsin B inactivationof the tissue inhibitors of matrix metalloproteinases [J]. FEBS Lett, 1999, 455(3):286-290. [38] Garnero P, Ferreras M, Karsdal MA, et al. The type Ⅰ collagen fragments ICTP and CTX reveal distinct enzymatic pathways of bone collagen degradation [J]. J Bone Miner Res, 2003, 18(5):859-867. [39] Breschi L, Maravic T, Cunha SR, et al. Dentin bonding systems: From dentin collagen structure to bond preservation and clinical applications [J]. Dent Mater, 2018, 34(1):78-96. |
[1] | MAI Lijia, YUAN Guohua. Comparison of Biodentine and MTA as Pulpotomy Agents for Primary Teeth [J]. Journal of Oral Science Research, 2021, 37(1): 19-22. |
[2] | SU Weizhu, WANG Yining, MA Xiao. Assessment of Color Changes and Color Rebounds in Enamel, Dentin-enamel junction, and Dentine during Vital Bleaching [J]. Journal of Oral Science Research, 2020, 36(8): 786-792. |
[3] | PEI Xiyan, YANG Wen, SUN Feng, WENG Jinlong. Clinical Effect of Bioactive Glass Air Polishing on Dentine Hypersensitivity [J]. Journal of Oral Science Research, 2020, 36(6): 577-580. |
[4] | LI Xiuhua, YU Peng, TIAN Fucong, WANG Xiaoyan. Influence of Pre-phosphoric Acid Etching on Bonding Strength of Two-step Self-etching Adhesives to Enamel [J]. Journal of Oral Science Research, 2019, 35(8): 748-751. |
[5] | YUAN Shuo, CHEN Zhiyu, MA Xiaoping. Effect of Three Resin Adhesives on Color Stability of IPS E.Max Press Cast Porcelain and Zirconia All-ceramic Restorations [J]. Journal of Oral Science Research, 2019, 35(8): 798-801. |
[6] | LI Jingya, HUANG Yang. Research Progress of Matrix Metalloproteinases in Caries [J]. Journal of Oral Science Research, 2019, 35(12): 1122-1124. |
[7] | FAN Yue, REN Lingyan, TANG Xuna, MENG Xiangfeng. Study on Long-term Antibacterial and Bonding Properties of Silver Nanoparticles In-situ Synthesized in Resin Adhesive [J]. Journal of Oral Science Research, 2019, 35(11): 1066-1069. |
[8] | FAN Yue, MENG Xiang-feng. Application of in Situ Synthesized Silver Nanoparticles to Antibacterial Modification of Resin Adhesives [J]. Journal of Oral Science Research, 2018, 34(2): 161-164. |
[9] | WEI Xiao-hui, LIU Li-jun, LIU Hong, SONG Xiao-qing, CHEN Tian-jie, LIU Chen-chen.. Effect CPP-ACP/ACFP Pretreatment on Bond Strength of Resin Cements and Dentin. [J]. Journal of Oral Science Research, 2017, 33(6): 642-645. |
[10] | CAO Pei-lin, ZHANG Lei, PAN Yi-Sha, LIU Qiang, CHEN Rui-tian, CHEN Zhi.. Influence of Various Self-etch Adhesives on Interfacial Integrity Restored with Flowable Resin Composite. [J]. Journal of Oral Science Research, 2017, 33(5): 467-470. |
[11] | LI Xin-lin, HAN Han, XIE Jin-Ling, WU Pei-ling.. Study on Shear Bond Strength and Marginal Microleakage of Class Ⅴ Cavities Restored by RMGIC Combined with Self-etching Adhesive. [J]. Journal of Oral Science Research, 2017, 33(12): 1282-1285. |
[12] | WANG Xin-ying, WAN Na, YAN Lei, YIN Yan-jiao, CAO Rong-rong, XIONG Meng-lin, GAO Wen-hui, WU Pei-ling. Effects of Different Self Etching Adhesives and Resins on Microleakage of Class V Restorations. [J]. Journal of Oral Science Research, 2017, 33(1): 74-77. |
[13] | LIU Zi-han, ZHOU Shu, ZHENG Hong, TANG Gen-xiong. Clinical Observation and Experimental Study of Minqing Ao Dental Desensitizer Combined with Er:YAG Laser on the Treatment of Dentine Hypersensitivity in Teenagers. [J]. Journal of Oral Science Research, 2017, 33(1): 90-94. |
[14] | LI Wen-min. Application of Self-etching Primer Adhesives in Deciduous Molars with Pit and Fissure Sealant. [J]. Journal of Oral Science Research, 2016, 32(7): 757-759. |
[15] | SHENG Ding,ZHONG Wei-jian.. Research progress on dentine as bone grafting material. [J]. Journal of Oral Science Research, 2016, 32(6): 656-658. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||