Artículos de revistas
Analysis Of Total Microbiota In Dentin After Mechanical Or Papain-based Chemomechanical Caries Removal
Registro en:
General Dentistry. , v. 61, n. 4, p. 59 - 63, 2013.
3636771
2-s2.0-84881483478
Autor
De Almeida S.M.S.
Franca F.M.G.
Florio F.M.
Ambrosano G.M.B.
Basting R.T.
Institución
Resumen
Chemomechanical caries removal, when compared with removal using conventional rotary instruments, seems to preserve healthy tooth structure with less trauma to the patient. This study performed in vivo analysis of the total number of microorganisms in dentin after the use of conventional or chemomechanical (papain gel) caries removal methods. Analyses were performed before caries removal (baseline), immediately after caries removal, and 45 days after caries removal and temporary cavity sealing. Sixty patients were selected for this study, each with two mandibular molars (one on each side) with occlusal caries of moderate depth, for a total of 120 teeth. For each patient, the carious lesion of one tooth was removed by conventional methods using low speed drills (Group 1). For the other tooth, a chemomechanical method was used (Group 2). Dentin samples were collected at the 3 intervals and subjected to microbiological culture in blood agar. For the total number of microorganisms in both groups, ANOVA and Tukey tests (which considered the baseline values as a covariable) showed a higher microbial count immediately after the preparation of the cavity compared to the count at 45 days (P < 0.05). For both groups, the total count of microorganisms in dentin decreased 45 days after placing the temporary cavity sealing. 61 4 59 63 Tyas, M.J., Anusavice, K.J., Francken, J.E., Mount, G.J., Minimal intervention dentistry-A review. FDI Commission Project 1-97 (2000) Int Dent J, 50 (1), pp. 1-12 Kakaboura, A., Masouras, C., Staikou, O., Vougiouklakis, G., A comparative clinical study on the Carisolv caries removal method (2003) Quintessence Int, 34 (4), pp. 269-271 Bussadori, S.K., Castro, L.C., Galvao, A.C., Papain gel: A new chemo-mechanical caries removal agent (2005) J Clin Pediatr Dent, 30 (2), pp. 115-119 Motta, L.J., Martins, M.D., Porta, K.P., Bussadori, S.K., Aesthetic restoration of deciduous anterior teeth after removal of carious tissue with Papacarie (2009) Indian J Dental Res, 20 (1), pp. 117-120 Wambier, D.S., Dos Santos, F.A., Guedes-Pinto, A.C., Jaeger, R.G., Simionato, M.R., Ultrastructural and microbiological analysis of the dentin layers affected by caries lesions in primary molars treated by minimal intervention (2007) Pediatr Dent, 29 (3), pp. 228-234 Fusayama, T., Two layers of carious dentin: Diagnosis and treatment (1979) Oper Dent, 4 (2), pp. 63-70 Nadanovsky, P., Carneiro, F.C., Souza De Mello, F., Removal of caries using only hand instruments: A comparison of mechanical and chemo-mechanical methods (2001) Caries Res, 35 (5), pp. 384-389 Goldman, M., Kronman, J.H., A preliminary report on a chemomechanical means of removing caries (1976) J Am Dent Assoc, 93 (6), pp. 1149-1153 McNierney, H.D., Petruzillo, M.A., A gentle approach to operative dentistry: The Caridex caries removal system (1986) Gen Dent, 34 (4), pp. 282-284. , 1986 Gu, Z.Q., Chen, Q.M., Wei, S., The clinical application of a chemomechanical caries removal system (Caridex): A comparative study (1987) Compendium, 8 (8), pp. 638-640 Tonami, K., Araki, K., Mataki, S., Kurosaki, N., Effects of chloramines and sodium hypochlorite on carious dentin (2003) J Med Dent Sci, 50 (2), pp. 139-146 Hosoya, Y., Kawashita, Y., Marshall Jr., G.W., Goto, G., Influence of Carisolv for resin adhesion to sound human primary dentin and young permanent dentin (2001) J Dent, 29 (3), pp. 163-171 Dammaschke, T., Stratmann, U., Mokrys, K., Kaup, M., Reiner Ott, K.H., Reaction of sound and demineralised dentine to Carisolv in vivo and in vitro (2002) J Dent, 30 (1), pp. 59-65 Flindt, M., Health and safety aspects of working with enzymes (1979) Proc Biochem, 13 (8), pp. 3-7 Bertassoni, L.E., Marshall, G.W., Papain-gel degrades intact nonmineralized type I collagen fibrils (2009) Scanning, 31 (6), pp. 253-258 Ahmed, A.A., Garcia-Godoy, F., Kunzelmann, K.H., Self-limiting caries therapy with proteolytic agents (2008) Am J Dent, 21 (5), pp. 303-312 Martins, M.D., Fernandes, K.P., Motta, L.J., Santos, E.M., Pavesi, V.C., Bussadori, S.K., Biocompatibility analysis of chemomechanical caries removal material Papacarie on cultured fibroblasts and subcutaneous tissue (2009) J Dent Child, 76 (2), pp. 123-129 Ikeda, T., Sandham, H.J., Bradley Jr., E.L., Changes in mutans streptococci and lactobacilli in plaque in relation to the initiation of dental caries in Negro children (1973) Arch Oral Biol, 18 (4), pp. 555-565 Bentley, C., Crawford, J.J., Broderius, C.A., Analytical and physiological variability of salivary microbial counts (1988) J Dent Res, 67 (11), pp. 1409-1413 Mount, G.J., Ngo, H., Minimal intervention: A new concept for operative dentistry (2000) Quintessence Int, 31 (9), pp. 527-533 Bittencourt, S.T., Pereira, J.R., Rosa, A.W., Oliveira, K.S., Ghizoni, J.S., Oliveira, M.T., Mineral content removal after Papacarie application in primary teeth: A quantitative analysis (2010) J Clin Pediatr Dent, 34 (3), pp. 229-231 Yip, H.K., Beeley, J.A., Stevenson, A.G., Mineral content of the dentine remaining after chemomechanical caries removal (1995) Caries Res, 29 (2), pp. 111-117 Correa, F.N., Rocha, R.O., Soares, F.Z., Rodrigues-Filho, L.E., Rodrigues, C.R., Fluorescence of primary dentine after chemomechanical and conventional rotary excavation (2008) Eur Arch Paeditr Dent, 9 (3), pp. 126-129 Ferreira, C.M., Da Silva Rosa, O.P., Torres, S.A., Ferreira, F.B., Bernardinelli, N., Activity of endodontic antibacterial agents against selected anaerobic bacteria (2002) Braz Dent J, 13 (2), pp. 118-122 Lai, C.C., Huang, F.M., Yang, H.W., Antimicrobial activity of four root canal sealers against endodontic pathogens (2001) Clin Oral Investig, 5 (4), pp. 236-239 Saha, S., Samadi, F., Jaiswal, J.N., Ghoshal, U., Antimicrobial activity of different endodontic sealers: An in vitro evaluation (2010) J Indian Soc Pedod Prev Dent, 28 (4), pp. 251-257 Lula, E.C., Monteiro-Neto, V., Alves, C.M., Ribeiro, C.C., Microbiological analysis after complete or partial removal of carious dentin in primary teeth: A randomized clinical trial (2009) Caries Res, 43 (5), pp. 354-358 Weerheijm, K.L., Kreulen, C.M., De Soet, J.J., Groen, H.J., Van Amerongen, W.E., Bacterial counts in carious dentine under restorations: 2-year in vivo effects (1999) Caries Res, 33 (2), pp. 130-134 Weng, Y., Guo, X., Gregory, R., Xie, D., A novel antibacterial dental glass-ionomer cement (2010) Eur J Oral Sci, 118 (5), pp. 531-534 Hodrova, I., Clinical procedures with Caridex system (1990) ZWR, 99 (10), pp. 795-797. , [article in German] Magalhaes, C.S., Moreira, A.N., Campos, W.R.C., Rossi, F.M., Castilho, G.A.A., Ferreira, R.C., Effectiveness and efficiency of chemomechanical carious dentin removal (2006) Braz Dent J, 17 (1), pp. 63-67