$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Calcium silicate‐based cements: composition, properties, and clinical applications

Journal of investigative and clinical dentistry, v.8 no.2, 2017년, pp.e12195 -   

Dawood, Alaa E. (Melbourne Dental School Oral Health Cooperative Research Centre University of Melbourne Melbourne Vic. Australia) ,  Parashos, Peter (Melbourne Dental School Oral Health Cooperative Research Centre University of Melbourne Melbourne Vic. Australia) ,  Wong, Rebecca H.K. (Melbourne Dental School Oral Health Cooperative Research Centre University of Melbourne Melbourne Vic. Australia) ,  Reynolds, Eric C. (Melbourne Dental School Oral Health Cooperative Research Centre University of Melbourne Melbourne Vic. Australia) ,  Manton, David J. (Melbourne Dental School Oral Health Cooperative Research Centre University of Melbourne Melbourne Vic. Australia)

Abstract AI-Helper 아이콘AI-Helper

AbstractMineral trioxide aggregate (MTA) is a calcium silicate‐based cement (CSC) commonly used in endodontic procedures involving pulpal regeneration and hard tissue repair, such as pulp capping, pulpotomy, apexogenesis, apexification, perforation repair, and root‐end filling. Despite...

참고문헌 (191)

  1. Darvell, B.W., Wu, R.C.T.. ''MTA''-An Hydraulic Silicate Cement: Review update and setting reaction. Dental materials, vol.27, no.5, 407-422.

  2. Camilleri, J.. Hydration mechanisms of mineral trioxide aggregate. International endodontic journal, vol.40, no.6, 462-470.

  3. Camilleri, Josette. The chemical composition of mineral trioxide aggregate. Journal of conservative dentistry : JCD, vol.11, no.4, 141-143.

  4. Parirokh, M., Torabinejad, M.. Mineral Trioxide Aggregate: A Comprehensive Literature ReviewPart III: Clinical Applications, Drawbacks, and Mechanism of Action. Journal of endodontics, vol.36, no.3, 400-413.

  5. WANG, Xiaohong, CHANG, Jiang, HU, Sheng. A study on the sealing ability and antibacterial activity of Ca3SiO5/CaCl2 composite cement for dental applications. Dental materials journal, vol.31, no.4, 617-622.

  6. Ma, J., Shen, Y., Stojicic, S., Haapasalo, M.. Biocompatibility of Two Novel Root Repair Materials. Journal of endodontics, vol.37, no.6, 793-798.

  7. Sarkar, N.K., Caicedo, R., Ritwik, P., Moiseyeva, R., Kawashima, I.. Physicochemical Basis of the Biologic Properties of Mineral Trioxide Aggregate. Journal of endodontics, vol.31, no.2, 97-100.

  8. Torabinejad, M., Hong, C.U., McDonald, F., Pitt Ford, T.R.. Physical and chemical properties of a new root-end filling material. Journal of endodontics, vol.21, no.7, 349-353.

  9. Sluyk, S.R., Moon, P.C., Hartwell, G.R.. Evaluation of setting properties and retention characteristics of mineral trioxide aggregate when used as a furcation perforation repair material. Journal of endodontics, vol.24, no.11, 768-771.

  10. Bakland, Leif K., Andreasen, Jens O.. Will mineral trioxide aggregate replace calcium hydroxide in treating pulpal and periodontal healing complications subsequent to dental trauma? A review. Dental traumatology, vol.28, no.1, 25-32.

  11. Camilleri, Josette, Montesin, Franco E., Brady, Ken, Sweeney, Richard, Curtis, Richard V., Ford, Thomas R. Pitt. The constitution of mineral trioxide aggregate. Dental materials, vol.21, no.4, 297-303.

  12. Islam, Intekhab, Kheng Chng, Hui, Jin Yap, Adrian U.. Comparison of the Physical and Mechanical Properties of MTA and Portland Cement. Journal of endodontics, vol.32, no.3, 193-197.

  13. Vivan, Rodrigo Ricci, Zapata, Ronald Ordinola, Zeferino, Márcia A., Bramante, Clovis Monteiro, Bernardineli, Norberti, Garcia, Roberto Brandão, Hungaro Duarte, Marco Antonio, Tanomaru Filho, Mário, Gomes de Moraes, Ivaldo. Evaluation of the physical and chemical properties of two commercial and three experimental root-end filling materials. Oral surgery, oral medicine, oral pathology, oral radiology and endodontics, vol.110, no.2, 250-256.

  14. Fridland, Marcela, Rosado, Rafael. Mineral Trioxide Aggregate (MTA) Solubility and Porosity with Different Water-to-Powder Ratios. Journal of endodontics, vol.29, no.12, 814-817.

  15. Chedella, S. C. V., Berzins, D. W.. A differential scanning calorimetry study of the setting reaction of MTA. International endodontic journal, vol.43, no.6, 509-518.

  16. Dawood, AE, Manton, DJ, Parashos, P, Wong, RHK, Palamara, JEA, Stanton, DP, Reynolds, EC. The physical properties and ion release of CPP‐ACP‐modified calcium silicate‐based cements. Australian dental journal, vol.60, no.4, 434-444.

  17. Basturk, F.B., Nekoofar, M.H., Gunday, M., Dummer, P.M.. The Effect of Various Mixing and Placement Techniques on the Compressive Strength of Mineral Trioxide Aggregate. Journal of endodontics, vol.39, no.1, 111-114.

  18. Rhim, E. M., Huh, S. Y., Ahn, S. J., Abbott, P. V., Kim, E. C., Park, S. H.. Comparison of the Microhardness and Morphology of Five Different Retrograde Filling Materials in Aqueous and Dry Conditions. Scanning, vol.34, no.6, 359-366.

  19. Reyes-Carmona, Jessie F., Felippe, Mara S., Felippe, Wilson T.. The Biomineralization Ability of Mineral Trioxide Aggregate and Portland Cement on Dentin Enhances the Push-out Strength. Journal of endodontics, vol.36, no.2, 286-291.

  20. Storm, B., Eichmiller, F.C., Tordik, P.A., Goodell, G.G.. Setting Expansion of Gray and White Mineral Trioxide Aggregate and Portland Cement. Journal of endodontics, vol.34, no.1, 80-82.

  21. Hachmeister, Darlene R., Schindler, William G., Walker III, William A., Denee Thomas III, D.. The Sealing Ability and Retention Characteristics of Mineral Trioxide Aggregate in a Model of Apexification. Journal of endodontics, vol.28, no.5, 386-390.

  22. Hong, S.T., Bae, K.S., Baek, S.H., Kum, K.Y., Shon, W.J., Lee, W.. Effects of Root Canal Irrigants on the Push-out Strength and Hydration Behavior of Accelerated Mineral Trioxide Aggregate in its Early Setting Phase. Journal of endodontics, vol.36, no.12, 1995-1999.

  23. Antunes Bortoluzzi, Eduardo, Juárez Broon, Norberto, Antonio Hungaro Duarte, Marco, de Oliveira Demarchi, Ana Claudia Cardoso, Monteiro Bramante, Clovis. The Use of a Setting Accelerator and Its Effect on pH and Calcium Ion Release of Mineral Trioxide Aggregate and White Portland Cement. Journal of endodontics, vol.32, no.12, 1194-1197.

  24. Reyes-Carmona, J.F., Felippe, M.S., Felippe, W.T.. Biomineralization Ability and Interaction of Mineral Trioxide Aggregate and White Portland Cement With Dentin in a Phosphate-containing Fluid. Journal of endodontics, vol.35, no.5, 731-736.

  25. Braz Dent J Holland R 109 12 2001 Healing process of dog dental pulp after pulpotomy and pulp covering with mineral trioxide aggregate or Portland cement 

  26. Pistorius, A., Willershausen, B., Marroquin, B. Briseño. Effect of apical root-end filling materials on gingival fibroblasts. International endodontic journal, vol.36, no.9, 610-615.

  27. Med Oral Patol Oral Cir Bucal Fernandez‐Yanez Sanchez A E180 13 2008 Metaanalysis of filler materials in periapical surgery 

  28. Holland, Roberto, de Souza, Valdir, Nery, Mauro J., Otoboni Filho, José A., Bernabé, Pedro F.E., Dezan Jr., Eloi. Reaction of rat connective tissue to implanted dentin tubes filled with mineral trioxide aggregate or calcium hydroxide. Journal of endodontics, vol.25, no.3, 161-166.

  29. Maeno, Shinichi, Niki, Yasuo, Matsumoto, Hideo, Morioka, Hideo, Yatabe, Taku, Funayama, Atsushi, Toyama, Yoshiaki, Taguchi, Tetsushi, Tanaka, Junzo. The effect of calcium ion concentration on osteoblast viability, proliferation and differentiation in monolayer and 3D culture. Biomaterials, vol.26, no.23, 4847-4855.

  30. Braz Dent J Estrela C 3 11 2000 Antimicrobial and chemical study of MTA, Portland cement, calcium hydroxide paste, Sealapex and Dycal 

  31. Gandolfi, M. G., Taddei, P., Tinti, A., Prati, C.. Apatite‐forming ability (bioactivity) of ProRoot MTA. International endodontic journal, vol.43, no.10, 917-929.

  32. Han, L., Kodama, S., Okiji, T.. Evaluation of calcium‐releasing and apatite‐forming abilities of fast‐setting calcium silicate‐based endodontic materials. International endodontic journal, vol.48, no.2, 124-130.

  33. Aeinehchi, M., Eslami, B., Ghanbariha, M., Saffar, A. S.. Mineral trioxide aggregate (MTA) and calcium hydroxide as pulp-capping agents in human teeth: a preliminary report. International endodontic journal, vol.36, no.3, 225-235.

  34. Eskandarizadeh, Ali, Shahpasandzadeh, Mohammad Hossein, Shahpasandzadeh, Mahdieh, Torabi, Molok, Parirokh, Masoud. A comparative study on dental pulp response to calcium hydroxide, white and grey mineral trioxide aggregate as pulp capping agents. Journal of conservative dentistry : JCD, vol.14, no.4, 351-355.

  35. Am J Dent Maroto M 283 20 2007 Mineral trioxide aggregate as pulp dressing agent in pulpotomy treatment of primary molars: 42‐month clinical study 

  36. Fuks, A.B.. Vital Pulp Therapy with New Materials for Primary Teeth: New Directions and Treatment Perspectives. Journal of endodontics, vol.34, no.7, S18-S24.

  37. Saunders, W.P.. A Prospective Clinical Study of Periradicular Surgery Using Mineral Trioxide Aggregate as a Root-end Filling. Journal of endodontics, vol.34, no.6, 660-665.

  38. Christiansen, R., Kirkevang, L.-L., Hørsted-Bindslev, P., Wenzel, A.. Randomized clinical trial of root-end resection followed by root-end filling with mineral trioxide aggregate or smoothing of the orthograde gutta-percha root filling – 1-year follow-up. International endodontic journal, vol.42, no.2, 105-114.

  39. Pace, R., Giuliani, V., Pini Prato, L., Baccetti, T., Pagavino, G.. Apical plug technique using mineral trioxide aggregate: results from a case series. International endodontic journal, vol.40, no.6, 478-484.

  40. Simon, S., Rilliard, F., Berdal, A., Machtou, P.. The use of mineral trioxide aggregate in one-visit apexification treatment: a prospective study. International endodontic journal, vol.40, no.3, 186-197.

  41. Witherspoon, D.E., Small, J.C., Regan, J.D., Nunn, M.. Retrospective Analysis of Open Apex Teeth Obturated with Mineral Trioxide Aggregate. Journal of endodontics, vol.34, no.10, 1171-1176.

  42. Tsai, Y.L., Ian, W.H., Jeng, J.H.. Treatment of Pulp Floor and Stripping Perforation by Mineral Trioxide Aggregate. Journal of the Formosan Medical Association = T&n.mllhring;ai-wan i chih, vol.105, no.6, 522-526.

  43. N Y State Dent J Ghoddusi J 46 73 2007 Clinical and radiographic evaluation of root perforation repair using MTA 

  44. Duarte, Marco Antonio Hungaro, de Oliveira Demarchi, Ana Claudia Cardoso, Yamashita, José Carlos, Kuga, Milton Carlos, de Campos Fraga, Sylvio. Arsenic release provided by MTA and Portland cement. Oral surgery, oral medicine, oral pathology, oral radiology and endodontics, vol.99, no.5, 648-650.

  45. Monteiro Bramante, Clóvis, Demarchi, Ana Claudia Cardoso Oliveira, de Moraes, Ivaldo Gomes, Bernadineli, Norberti, Garcia, Roberto Brandão, Spångberg, Lars S.W., Duarte, Marco Antonio Hungaro. Presence of arsenic in different types of MTA and white and gray Portland cement. Oral surgery, oral medicine, oral pathology, oral radiology and endodontics, vol.106, no.6, 909-913.

  46. Boutsioukis, C., Noula, G., Lambrianidis, T.. Ex Vivo Study of the Efficiency of Two Techniques for the Removal of Mineral Trioxide Aggregate Used as a Root Canal Filling Material. Journal of endodontics, vol.34, no.10, 1239-1242.

  47. Belobrov, I., Parashos, P.. Treatment of Tooth Discoloration after the Use of White Mineral Trioxide Aggregate. Journal of endodontics, vol.37, no.7, 1017-1020.

  48. Lenherr, P., Allgayer, N., Weiger, R., Filippi, A., Attin, T., Krastl, G.. Tooth discoloration induced by endodontic materials: a laboratory study. International endodontic journal, vol.45, no.10, 942-949.

  49. Kuratate, Momoko, Yoshiba, Kunihiko, Shigetani, Yoshimi, Yoshiba, Nagako, Ohshima, Hayato, Okiji, Takashi. Immunohistochemical Analysis of Nestin, Osteopontin, and Proliferating Cells in the Reparative Process of Exposed Dental Pulp Capped with Mineral Trioxide Aggregate. Journal of endodontics, vol.34, no.8, 970-974.

  50. De-Deus, G., de Souza, M.C.B., Sergio Fidel, R.A., Fidel, S.R., de Campos, R.C., Luna, A.S.. Negligible Expression of Arsenic in Some Commercially Available Brands of Portland Cement and Mineral Trioxide Aggregate. Journal of endodontics, vol.35, no.6, 887-890.

  51. Felman, D., Parashos, P.. Coronal Tooth Discoloration and White Mineral Trioxide Aggregate. Journal of endodontics, vol.39, no.4, 484-487.

  52. 10.4103/0970-4388.16020 

  53. Am J Dent Maroto M 151 18 2005 Dentin bridge formation after mineral trioxide aggregate (MTA) pulpotomies in primary teeth 

  54. Gen Dent Percinoto C 258 54 2006 Clinical and radiographic evaluation of pulpotomies employing calcium hydroxide and trioxide mineral aggregate 

  55. Active biosilicate technology®, Septodont Biodentine® Scientific file 2010 

  56. Wang, X., Sun, H., Chang, J.. Characterization of Ca3SiO5/CaCl2 composite cement for dental application. Dental materials, vol.24, no.1, 74-82.

  57. Wongkornchaowalit, N., Lertchirakarn, V.. Setting Time and Flowability of Accelerated Portland Cement Mixed with Polycarboxylate Superplasticizer. Journal of endodontics, vol.37, no.3, 387-389.

  58. Nowicka, A., Lipski, M., Parafiniuk, M., Sporniak-Tutak, K., Lichota, D., Kosierkiewicz, A., Kaczmarek, W., Buczkowska-Radlinska, J.. Response of Human Dental Pulp Capped with Biodentine and Mineral Trioxide Aggregate. Journal of endodontics, vol.39, no.6, 743-747.

  59. Butt, Naziya, Talwar, Sangeeta, Chaudhry, Sarika, Nawal, Ruchika Roongta, Yadav, Seema, Bali, Anuradha. Comparison of physical and mechanical properties of mineral trioxide aggregate and Biodentine.. Indian journal of dental research : official publication of Indian Society for Dental Research, vol.25, no.6, 692-697.

  60. Jang, Young-Eun, Lee, Bin-Na, Koh, Jeong-Tae, Park, Yeong-Joon, Joo, Nam-Eok, Chang, Hoon-Sang, Hwang, In-Nam, Oh, Won-Mann, Hwang, Yun-Chan. Cytotoxicity and physical properties of tricalcium silicate-based endodontic materials. RDE : Restorative dentistry & endodontics, vol.39, no.2, 89-94.

  61. Eur J Prosthodont Restor Dent Alhodiry W 20 22 2014 Effect of saliva and blood contamination on the bi‐axial flexural strength and setting time of two calcium‐silicate based cements: Portland cement and biodentine 

  62. Grech, L., Mallia, B., Camilleri, J.. Investigation of the physical properties of tricalcium silicate cement-based root-end filling materials. Dental materials, vol.29, no.2, e20-e28.

  63. Rajasekharan, S., Martens, L. C., Cauwels, R. G. E. C., Verbeeck, R. M. H.. Biodentine™ material characteristics and clinical applications: a review of the literature. European archives of paediatric dentistry : official journal of the european academy of paediatric dentistry, vol.15, no.3, 147-158.

  64. Camilleri, J., Sorrentino, F., Damidot, D.. Investigation of the hydration and bioactivity of radiopacified tricalcium silicate cement, Biodentine and MTA Angelus. Dental materials, vol.29, no.5, 580-593.

  65. Koubi, Gilles, Colon, Pierre, Franquin, Jean-Claude, Hartmann, Aline, Richard, Gilles, Faure, Marie-Odile, Lambert, Grégory. Clinical evaluation of the performance and safety of a new dentine substitute, Biodentine, in the restoration of posterior teeth — a prospective study. Clinical oral investigations, vol.17, no.1, 243-249.

  66. Hashem, D.F., Foxton, R., Manoharan, A., Watson, T.F., Banerjee, A.. The physical characteristics of resin composite-calcium silicate interface as part of a layered/laminate adhesive restoration. Dental materials, vol.30, no.3, 343-349.

  67. Koubi, S., Elmerini, H., Koubi, G., Tassery, H., Camps, J.. Quantitative Evaluation by Glucose Diffusion of Microleakage in Aged Calcium Silicate-Based Open-Sandwich Restorations. International journal of dentistry, vol.2012, 105863-.

  68. Gandolfi, M.G., Van Landuyt, K., Taddei, P., Modena, E., Van Meerbeek, B., Prati, C.. Environmental Scanning Electron Microscopy Connected with Energy Dispersive X-ray Analysis and Raman Techniques to Study ProRoot Mineral Trioxide Aggregate and Calcium Silicate Cements in Wet Conditions and in Real Time. Journal of endodontics, vol.36, no.5, 851-857.

  69. J Dent Res Colon P 89 2010 Interactions between a calcium silicate cement (Biodentine) and its environment. 

  70. Atmeh, A.R., Chong, E.Z., Richard, G., Festy, F., Watson, T.F.. Dentin-cement Interfacial Interaction : Calcium Silicates and Polyalkenoates. Journal of dental research, vol.91, no.5, 454-459.

  71. Kim, J.R., Nosrat, A., Fouad, A.F.. Interfacial characteristics of Biodentine and MTA with dentine in simulated body fluid. Journal of dentistry, vol.43, no.2, 241-247.

  72. Han, L., Okiji, T.. Uptake of calcium and silicon released from calcium silicate–based endodontic materials into root canal dentine. International endodontic journal, vol.44, no.12, 1081-1087.

  73. Gandolfi, Maria, Siboni, Francesco, Polimeni, Antonella, Bossù, Maurizio, Riccitiello, Francesco, Rengo, Sandro, Prati, Carlo. In Vitro Screening of the Apatite-Forming Ability, Biointeractivity and Physical Properties of a Tricalcium Silicate Material for Endodontics and Restorative Dentistry. Dentistry journal, vol.1, no.4, 41-60.

  74. Guneser, M.B., Akbulut, M.B., Eldeniz, A.U.. Effect of Various Endodontic Irrigants on the Push-out Bond Strength of Biodentine and Conventional Root Perforation Repair Materials. Journal of endodontics, vol.39, no.3, 380-384.

  75. Camilleri, J.. Investigation of Biodentine as dentine replacement material. Journal of dentistry, vol.41, no.7, 600-610.

  76. Attik, G. N., Villat, C., Hallay, F., Pradelle‐Plasse, N., Bonnet, H., Moreau, K., Colon, P., Grosgogeat, B.. In vitro biocompatibility of a dentine substitute cement on human MG63 osteoblasts cells: Biodentine™ versus MTA®. International endodontic journal, vol.47, no.12, 1133-1141.

  77. Jung, Susanne, Mielert, Jana, Kleinheinz, Johannes, Dammaschke, Till. Human oral cells’ response to different endodontic restorative materials: an in vitro study. Head & face medicine, vol.10, 55-.

  78. Matsumoto, S., Hayashi, M., Suzuki, Y., Suzuki, N., Maeno, M., Ogiso, B.. Calcium Ions Released from Mineral Trioxide Aggregate Convert the Differentiation Pathway of C2C12 Cells into Osteoblast Lineage. Journal of endodontics, vol.39, no.1, 68-75.

  79. Zanini, M., Sautier, J.M., Berdal, A., Simon, S.. Biodentine Induces Immortalized Murine Pulp Cell Differentiation into Odontoblast-like Cells and Stimulates Biomineralization. Journal of endodontics, vol.38, no.9, 1220-1226.

  80. Jung, J.‐Y., Woo, S.‐M., Lee, B.‐N., Koh, J.‐T., Nör, J. E., Hwang, Y.‐C.. Effect of Biodentine and Bioaggregate on odontoblastic differentiation via mitogen‐activated protein kinase pathway in human dental pulp cells. International endodontic journal, vol.48, no.2, 177-184.

  81. Tran, X.V., Gorin, C., Willig, C., Baroukh, B., Pellat, B., Decup, F., Opsahl Vital, S., Chaussain, C., Boukpessi, T.. Effect of a Calcium-silicate-based Restorative Cement on Pulp Repair. Journal of dental research, vol.91, no.12, 1166-1171.

  82. Pediatr Dent Shayegan A 202 34 2012 Biodentine used as a pulp‐capping agent in primary pig teeth 

  83. De Rossi, A., Silva, L.A.B., Gaton-Hernandez, P., Sousa-Neto, M.D., Nelson-Filho, P., Silva, R.A.B., de Queiroz, A.M.. Comparison of Pulpal Responses to Pulpotomy and Pulp Capping with Biodentine and Mineral Trioxide Aggregate in Dogs. Journal of endodontics, vol.40, no.9, 1362-1369.

  84. Dent Today Rada RE 102 32 2013 New options for restoring a deep carious lesion 

  85. Dent Today Strassler HE 98 31 2012 Vital pulp therapy with pulp capping 

  86. Endodont Nikhil V 150 24 2012 10.4103/0970-7212.352085 Non surgical management of trauma induced external root resorption at two different sites in a single tooth with Biodentine: a case report 

  87. Hashem, D., Mannocci, F., Patel, S., Manoharan, A., Brown, J.E., Watson, T.F., Banerjee, A.. Clinical and Radiographic Assessment of the Efficacy of Calcium Silicate Indirect Pulp Capping : A Randomized Controlled Clinical Trial. Journal of dental research, vol.94, no.4, 562-568.

  88. Dawood, Alaa E., Manton, David J., Parashos, Peter, Wong, Rebecca H. K.. The effect of working time on the displacement of Biodentine beneath prefabricated stainless steel crown: a laboratory study. Journal of investigative and clinical dentistry, vol.7, no.4, 391-395.

  89. Park, Jeong-Won, Hong, Seung-Hye, Kim, Jong-Hyun, Lee, Seung-Jong, Shin, Su-Jung. X-Ray diffraction analysis of White ProRoot MTA and Diadent BioAggregate. Oral surgery, oral medicine, oral pathology, oral radiology and endodontics, vol.109, no.1, 155-158.

  90. Camilleri, J., Kralj, P., Veber, M., Sinagra, E.. Characterization and analyses of acid‐extractable and leached trace elements in dental cements. International endodontic journal, vol.45, no.8, 737-743.

  91. Madfa, Ahmed. Endodontic Repair Filling Materials: A Review Article. British Journal of Medicine and Medical Research, vol.4, no.16, 3059-3079.

  92. Grech, L., Mallia, B., Camilleri, J.. Characterization of set Intermediate Restorative Material, Biodentine, Bioaggregate and a prototype calcium silicate cement for use as root‐end filling materials. International endodontic journal, vol.46, no.7, 632-641.

  93. Kum, K. Y., Kim, E.‐C., Yoo, Y.‐J., Zhu, Q., Safavi, K., Bae, K. S., Chang, S. W.. Trace metal contents of three tricalcium silicate materials: MTA Angelus, Micro Mega MTA and Bioaggregate. International endodontic journal, vol.47, no.7, 704-710.

  94. Bioaggregate [Product page on the internet]. Innovative BioCeramix Inc. Canada[accessed February 2015]. Available from:http://www.ibioceramix.com/BioAggregate.html. 

  95. Bioaggregate [Product page on the internet]. Verio Dental Co. Ltd. Canada[accessed February 2015]. Available from:http://bioaggregate.com/product. 

  96. Saghiri, Mohammad A., Garcia-Godoy, Franklin, Asatourian, Armen, Lotfi, Mehrdad, Banava, Sepideh, Khezri-Boukani, Kaveh. Effect of pH on compressive strength of some modification of mineral trioxide aggregate. Medicina oral, patología oral y cirugía bucal, vol.18, no.4, e714-e720.

  97. Saghiri, Mohammad Ali, Nazari, Amir, Garcia-Godoy, Franklin, Asatourian, Armen, Malekzadeh, Mansour, Elyasi, Maryam. Mechanical Response of Dental Cements as Determined by Nanoindentation and Scanning Electron Microscopy. Microscopy and microanalysis : the official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada, vol.19, no.6, 1458-1464.

  98. Leal, F., De‐Deus, G., Brandão, C., Luna, A. S., Fidel, S. R., Souza, E. M.. Comparison of the root‐end seal provided by bioceramic repair cements and White MTA. International endodontic journal, vol.44, no.7, 662-668.

  99. El Sayed, MA, Saeed, MH. In vitro comparative study of sealing ability of Diadent BioAggregate and other root-end filling materials. Journal of conservative dentistry : JCD, vol.15, no.3, 249-252.

  100. Shokouhinejad, N., Nekoofar, M. H., Razmi, H., Sajadi, S., Davies, T. E., Saghiri, M. A., Gorjestani, H., Dummer, P. M. H.. Bioactivity of EndoSequence Root Repair Material and Bioaggregate. International endodontic journal, vol.45, no.12, 1127-1134.

  101. Hashem, A.A.R., Wanees Amin, S.A.. The Effect of Acidity on Dislodgment Resistance of Mineral Trioxide Aggregate and Bioaggregate in Furcation Perforations: An In Vitro Comparative Study. Journal of endodontics, vol.38, no.2, 245-249.

  102. Camilleri, J., Grech, L., Galea, K., Keir, D., Fenech, M., Formosa, L., Damidot, D., Mallia, B.. Porosity and root dentine to material interface assessment of calcium silicate-based root-end filling materials. Clinical oral investigations, vol.18, no.5, 1437-1446.

  103. Saghiri, Mohammad Ali, Garcia‐Godoy, Franklin, Gutmann, James L., Lotfi, Mehrdad, Asatourian, Armen, Ahmadi, Hadi. Push‐out bond strength of a nano‐modified mineral trioxide aggregate. Dental traumatology, vol.29, no.4, 323-327.

  104. Saghiri, Mohammad Ali, Asatourian, Armen, Garcia-Godoy, Franklin, Gutmann, James L., Sheibani, Nader. The Impact of Thermocycling Process on the Dislodgement Force of Different Endodontic Cements. BioMed research international, vol.2013, 317185-.

  105. Çelik, Davut, Er, Kürşat, Serper, Ahmet, Taşdemir, Tamer, Ceyhanlı, Kadir Tolga. Push-out bond strength of three calcium silicate cements to root canal dentine after two different irrigation regimes. Clinical oral investigations, vol.18, no.4, 1141-1146.

  106. Yuan, Zhenglin, Peng, Bin, Jiang, Han, Bian, Zhuan, Yan, Ping. Effect of Bioaggregate on Mineral-associated Gene Expression in Osteoblast Cells. Journal of endodontics, vol.36, no.7, 1145-1148.

  107. De-Deus, G., Canabarro, A., Alves, G., Linhares, A., Senne, M.I., Granjeiro, J.M.. Optimal Cytocompatibility of a Bioceramic Nanoparticulate Cement in Primary Human Mesenchymal Cells. Journal of endodontics, vol.35, no.10, 1387-1390.

  108. Zhang, S., Yang, X., Fan, M.. BioAggregate and iRoot BP Plus optimize the proliferation and mineralization ability of human dental pulp cells. International endodontic journal, vol.46, no.10, 923-929.

  109. Khalil, W. A., Eid, N. F.. Biocompatibility of BioAggregate and mineral trioxide aggregate on the liver and kidney. International endodontic journal, vol.46, no.8, 730-737.

  110. Batur, Yusuf B., Acar, Gözde, Yalcin, Yagmur, Dindar, Seckin, Sancakli, Hande, Erdemir, Ugur. The cytotoxic evaluation of mineral trioxide aggregate and bioaggregate in the subcutaneous connective tissue of rats. Medicina oral, patología oral y cirugía bucal, vol.18, no.4, e745-e751.

  111. Zhang, Hui, Pappen, Fernanda Geraldes, Haapasalo, Markus. Dentin Enhances the Antibacterial Effect of Mineral Trioxide Aggregate and Bioaggregate. Journal of endodontics, vol.35, no.2, 221-224.

  112. Dohaithem, Abdullah, Al-Nasser, Abdulrahman, Al-Badah, Abdulhakim, Al-Nazhan, Saad, Al-Maflehi, Nassr. An in vitro evaluation of antifungal activity of bioaggregate. Oral surgery, oral medicine, oral pathology, oral radiology and endodontics, vol.112, no.4, e27-e30.

  113. Chang, S.W., Lee, S.Y., Kum, K.Y., Kim, E.C.. Effects of ProRoot MTA, Bioaggregate, and Micromega MTA on Odontoblastic Differentiation in Human Dental Pulp Cells. Journal of endodontics, vol.40, no.1, 113-118.

  114. Yan, P., Yuan, Z., Jiang, H., Peng, B., Bian, Z.. Effect of bioaggregate on differentiation of human periodontal ligament fibroblasts. International endodontic journal, vol.43, no.12, 1116-1121.

  115. Rev Med Chir Soc Med Nat Iasi Aminov L 907 116 2012 Clinical‐radiological study on the role of biostimulating materials in iatrogenic furcation lesions 

  116. EndoSequence Root Repair Material [Product page on the internet]. issuu Inc. USA[accessed February 2015]. Available from:http://issuu.com/brasseler/docs/brasseler-usa-dental-catalog-11/120. 

  117. Candeiro, G.T.d.M., Correia, F.C., Duarte, M.A.H., Ribeiro-Siqueira, D.C., Gavini, G.. Evaluation of Radiopacity, pH, Release of Calcium Ions, and Flow of a Bioceramic Root Canal Sealer. Journal of endodontics, vol.38, no.6, 842-845.

  118. Zhou, H.m., Shen, Y., Zheng, W., Li, L., Zheng, Y.f., Haapasalo, M.. Physical Properties of 5 Root Canal Sealers. Journal of endodontics, vol.39, no.10, 1281-1286.

  119. Loushine, Bethany A., Bryan, Thomas E., Looney, Stephen W., Gillen, Brian M., Loushine, Robert J., Weller, R. Norman, Pashley, David H., Tay, Franklin R.. Setting Properties and Cytotoxicity Evaluation of a Premixed Bioceramic Root Canal Sealer. Journal of endodontics, vol.37, no.5, 673-677.

  120. Damas, B.A., Wheater, M.A., Bringas, J.S., Hoen, M.M.. Cytotoxicity Comparison of Mineral Trioxide Aggregates and EndoSequence Bioceramic Root Repair Materials. Journal of endodontics, vol.37, no.3, 372-375.

  121. Walsh, R.M., Woodmansey, K.F., Glickman, G.N., He, J.. Evaluation of Compressive Strength of Hydraulic Silicate-based Root-end Filling Materials. Journal of endodontics, vol.40, no.7, 969-972.

  122. Caronna, V., Himel, V., Yu, Q., Zhang, J.F., Sabey, K.. Comparison of the Surface Hardness among 3 Materials Used in an Experimental Apexification Model under Moist and Dry Environments. Journal of endodontics, vol.40, no.7, 986-989.

  123. Endod Pract Nasseh A 21 8 2009 The rise of bioceramics 

  124. Iran Endod J Shokouhinejad N 144 9 2014 Marginal adaptation of new bioceramic materials and mineral trioxide aggregate: a scanning electron microscopy study 

  125. Stabholz, A., Shani, J., Friedman, S., Abed, J.. Adaptacion marginal de las obturaciones retrogradas y su correlacion. Journal of endodontics, vol.11, no.5, 218-223.

  126. Nair, Uma, Ghattas, Simon, Saber, Mohamed, Natera, Marianella, Walker, Clay, Pileggi, Roberta. A comparative evaluation of the sealing ability of 2 root-end filling materials: an in vitro leakage study using Enterococcus faecalis. Oral surgery, oral medicine, oral pathology, oral radiology and endodontics, vol.112, no.2, e74-e77.

  127. Hansen, S.W., Marshall, J.G., Sedgley, C.M.. Comparison of Intracanal EndoSequence Root Repair Material and ProRoot MTA to Induce pH Changes in Simulated Root Resorption Defects over 4 Weeks in Matched Pairs of Human Teeth. Journal of endodontics, vol.37, no.4, 502-506.

  128. J Dent Tehran Shokouhinejad N 161 11 2014 Effect of acidic environment on dislocation resistance of Endosequence root repair material and mineral trioxide aggregate 

  129. Shokouhinejad, Noushin, Gorjestani, Hedayat, Nasseh, Allen Ali, Hoseini, Atefeh, Mohammadi, Maryam, Shamshiri, Ahmad Reza. Push‐out bond strength of gutta‐percha with a new bioceramic sealer in the presence or absence of smear layer. Australian endodontic journal : the journal of the Australian Society of Endodontology Inc, vol.39, no.3, 102-106.

  130. AlAnezi, Amer Z., Jiang, Jin, Safavi, Kamran E., Spangberg, Larz S.W., Zhu, Qiang. Cytotoxicity evaluation of endosequence root repair material. Oral surgery, oral medicine, oral pathology, oral radiology and endodontics, vol.109, no.3, e122-e125.

  131. Hirschman, W.R., Wheater, M.A., Bringas, J.S., Hoen, M.M.. Cytotoxicity Comparison of Three Current Direct Pulp-capping Agents with a New Bioceramic Root Repair Putty. Journal of endodontics, vol.38, no.3, 385-388.

  132. Willershausen, I., Wolf, T., Kasaj, A., Weyer, V., Willershausen, B., Marroquin, B.B.. Influence of a bioceramic root end material and mineral trioxide aggregates on fibroblasts and osteoblasts. Archives of oral biology, vol.58, no.9, 1232-1237.

  133. Willershausen, Ines, Callaway, Angelika, Briseño, Benjamin, Willershausen, Brita. In vitro analysis of the cytotoxicity and the antimicrobial effect of four endodontic sealers. Head & face medicine, vol.7, 15-15.

  134. Ciasca, M., Aminoshariae, A., Jin, G., Montagnese, T., Mickel, A.. A Comparison of the Cytotoxicity and Proinflammatory Cytokine Production of EndoSequence Root Repair Material and ProRoot Mineral Trioxide Aggregate in Human Osteoblast Cell Culture Using Reverse-Transcriptase Polymerase Chain Reaction. Journal of endodontics, vol.38, no.4, 486-489.

  135. Modareszadeh, M.R., Di Fiore, P.M., Tipton, D.A., Salamat, N.. Cytotoxicity and Alkaline Phosphatase Activity Evaluation of EndoSequence Root Repair Material. Journal of endodontics, vol.38, no.8, 1101-1105.

  136. Lovato, K.F., Sedgley, C.M.. Antibacterial Activity of EndoSequence Root Repair Material and ProRoot MTA against Clinical Isolates of Enterococcus faecalis. Journal of endodontics, vol.37, no.11, 1542-1546.

  137. Iran Endod J Asgary S 101 1 2006 Sealing ability of three commercial mineral trioxide aggregates and an experimental root‐end filling material 

  138. Asgary, Saeed, Shahabi, Sima, Jafarzadeh, Tahereh, Amini, Sara, Kheirieh, Sanam. The Properties of a New Endodontic Material. Journal of endodontics, vol.34, no.8, 990-993.

  139. Asgary, Saeed, Eghbal, Mohammad Jafar, Parirokh, Masoud, Ghoddusi, Jamileh, Kheirieh, Sanam, Brink, Frank. Comparison of Mineral Trioxide Aggregate's Composition with Portland Cements and a New Endodontic Cement. Journal of endodontics, vol.35, no.2, 243-250.

  140. Iran Endod J Soheilipour E 112 4 2009 Particle size of a new endodontic cement compared to Root MTA and calcium hydroxide 

  141. Abbaszadegan, Abbas, Sedigh Shams, Mahdi, Jamshidi, Yasin, Parashos, Peter, Bagheri, Rafat. Effect of calcium chloride on physical properties of calcium‐enriched mixture cement. Australian endodontic journal : the journal of the Australian Society of Endodontology Inc, vol.41, no.3, 117-121.

  142. Kayahan, M.B., Nekoofar, M.H., McCann, A., Sunay, H., Kaptan, R.F., Meraji, N., Dummer, P.M.H.. Effect of Acid Etching Procedures on the Compressive Strength of 4 Calcium Silicate-based Endodontic Cements. Journal of endodontics, vol.39, no.12, 1646-1648.

  143. Iran Endod J Sahebi S 104 10 2015 Effect of different mixing and placement methods on the compressive strength of calcium‐enriched mixture 

  144. Asgary, Saeed, Eghbal, Mohammad Jafar, Parirokh, Masoud, Ghoddusi, Jamileh. Effect of two storage solutions on surface topography of two root‐end fillings. Australian endodontic journal : the journal of the Australian Society of Endodontology Inc, vol.35, no.3, 147-152.

  145. Iran Endod J Amini Ghazvini S 74 4 2009 Ion release and pH of a new endodontic cement, MTA and Portland cement 

  146. Iran Endod J Ghorbani Z 87 4 2009 Microleakage of CEM cement in two different media 

  147. Dent Res J Adl A 564 11 2014 Comparison of push‐out bond strength of mineral trioxide aggregate and calcium enriched mixture cement as root end filling materials 

  148. Iran Endod J Ghoddusi J 17 3 2008 Cytotoxic effect of a new endodontic cement and mineral trioxide aggregate on L929 line culture 

  149. Mozayeni, Mohammad A., Milani, Amin S., Marvasti, Laleh A., Asgary, Saeed. Cytotoxicity of calcium enriched mixture cement compared with mineral trioxide aggregate and intermediate restorative material. Australian endodontic journal : the journal of the Australian Society of Endodontology Inc, vol.38, no.2, 70-75.

  150. Hengameh, Ashraf, Reyhaneh, Dajmar, Nima, Moradi Majd, Hamed, Homayouni. Effects of two bioactive materials on survival and osteoblastic differentiation of human mesenchymal stem cells. Journal of conservative dentistry : JCD, vol.17, no.4, 349-353.

  151. Asgary, S., Nazarian, H., Khojasteh, A., Shokouhinejad, N.. Gene Expression and Cytokine Release during Odontogenic Differentiation of Human Dental Pulp Stem Cells Induced by 2 Endodontic Biomaterials. Journal of endodontics, vol.40, no.3, 387-392.

  152. Tabarsi, B., Parirokh, M., Eghbal, M. J., Haghdoost, A. A., Torabzadeh, H., Asgary, S.. A comparative study of dental pulp response to several pulpotomy agents. International endodontic journal, vol.43, no.7, 565-571.

  153. Asgary, S., Eghbal, M.J., Ehsani, S.. Periradicular Regeneration after Endodontic Surgery with Calcium-enriched Mixture Cement in Dogs. Journal of endodontics, vol.36, no.5, 837-841.

  154. Utneja, Shivani, Nawal, Ruchika Roongta, Talwar, Sangeeta, Verma, Mahesh. Current perspectives of bio-ceramic technology in endodontics: calcium enriched mixture cement - review of its composition, properties and applications. RDE : Restorative dentistry & endodontics, vol.40, no.1, 1-13.

  155. Iran Endod J Asgary S 105 2 2007 Evaluation of antimicrobial effect of MTA, calcium hydroxide, and CEM cement 

  156. Hasan Zarrabi, Mohammad, Javidi, Maryam, Naderinasab, Mahboube, Gharechahi, Maryam. Comparative evaluation of antimicrobial activity of three cements: new endodontic cement (NEC), mineral trioxide aggregate (MTA) and Portland. Journal of oral science, vol.51, no.3, 437-442.

  157. Iran Endod J Kangarlou A 101 4 2009 Antifungal effect of calcium enriched mixture cement against Candida albicans 

  158. Asgary, S., Nosrat, A., Seifi, A.. Management of Inflammatory External Root Resorption by Using Calcium-enriched Mixture Cement: A Case Report. Journal of endodontics, vol.37, no.3, 411-413.

  159. Asgary, Saeed, Ehsani, Sara. Permanent molar pulpotomy with a new endodontic cement: A case series. Journal of conservative dentistry : JCD, vol.12, no.1, 31-36.

  160. NOSRAT, ALI, SEIFI, AMIR, ASGARY, SAEED. Pulpotomy in caries‐exposed immature permanent molars using calcium‐enriched mixture cement or mineral trioxide aggregate: a randomized clinical trial. International journal of paediatric dentistry, vol.23, no.1, 56-63.

  161. Nosrat, Ali, Asgary, Saeed, Eghbal, Mohammad Jafar, Ghoddusi, Jamileh, Bayat-Movahed, Saeed. Calcium-enriched mixture cement as artificial apical barrier: A case series. Journal of conservative dentistry : JCD, vol.14, no.4, 427-431.

  162. Nosrat, A., Asgary, S.. Apexogenesis Treatment with a New Endodontic Cement: A Case Report. Journal of endodontics, vol.36, no.5, 912-914.

  163. Samiee, Mohammad, Eghbal, Mohammad Jafar, Parirokh, Masoud, Abbas, Fatemeh Mashhadi, Asgary, Saeed. Repair of furcal perforation using a new endodontic cement. Clinical oral investigations, vol.14, no.6, 653-658.

  164. Asgary, Saeed. Furcal perforation repair using calcium enriched mixture cement. Journal of conservative dentistry : JCD, vol.13, no.3, 156-158.

  165. Asgary, Saeed, Eghbal, Mohammad Jafar, Parirokh, Masoud, Ghanavati, Farzin, Rahimi, Hessam. A comparative study of histologic response to different pulp capping materials and a novel endodontic cement. Oral surgery, oral medicine, oral pathology, oral radiology and endodontics, vol.106, no.4, 609-614.

  166. Eur J Paediatr Dent Malekafzali B 189 12 2011 Treatment outcomes of pulpotomy in primary molars using two endodontic biomaterials. A 2‐year randomised clinical trial 

  167. Nosrat, A., Seifi, A., Asgary, S.. Regenerative Endodontic Treatment (Revascularization) for Necrotic Immature Permanent Molars: A Review and Report of Two Cases with a New Biomaterial. Journal of endodontics, vol.37, no.4, 562-567.

  168. Iran Endod J Haghgoo R 107 10 2015 Nano‐hydroxyapatite and calcium‐enriched mixture for pulp capping of sound primary teeth: a randomized clinical trial 

  169. Khorakian, F., Mazhari, F., Asgary, S., Sahebnasagh, M., Alizadeh Kaseb, A., Movahhed, T., Sarraf Shirazi, A. R.. Two-year outcomes of electrosurgery and calcium-enriched mixture pulpotomy in primary teeth: a randomised clinical trial. European archives of paediatric dentistry : official journal of the european academy of paediatric dentistry, vol.15, no.4, 223-228.

  170. Iran Endod J Fallahinejad Ghajari M 27 5 2010 Direct Pulp‐capping with calcium enriched mixture in primary molar teeth: a randomized clinical trial 

  171. Asgary, Saeed, Eghbal, Mohammad Jafar, Fazlyab, Mahta, Baghban, Alireza Akbarzadeh, Ghoddusi, Jamileh. Five-year results of vital pulp therapy in permanent molars with irreversible pulpitis: a non-inferiority multicenter randomized clinical trial. Clinical oral investigations, vol.19, no.2, 335-341.

  172. Asgary, Saeed, Eghbal, Mohammad Jafar, Ghoddusi, Jamileh. Two-year results of vital pulp therapy in permanent molars with irreversible pulpitis: an ongoing multicenter randomized clinical trial. Clinical oral investigations, vol.18, no.2, 635-641.

  173. Asgary, Saeed, Eghbal, Mohammad Jafar, Ghoddusi, Jamileh, Yazdani, Shahram. One-year results of vital pulp therapy in permanent molars with irreversible pulpitis: an ongoing multicenter, randomized, non-inferiority clinical trial. Clinical oral investigations, vol.17, no.2, 431-439.

  174. Gandolfi, M. G., Siboni, F., Prati, C.. Chemical–physical properties of TheraCal, a novel light‐curable MTA‐like material for pulp capping. International endodontic journal, vol.45, no.6, 571-579.

  175. Gandolfi, Maria Giovanna, Siboni, Francesco, Botero, Tatiana, Bossù, Maurizio, Riccitiello, Francesco, Prati, Carlo. Calcium Silicate and Calcium Hydroxide Materials for Pulp Capping: Biointeractivity, Porosity, Solubility and Bioactivity of Current Formulations. Journal of applied biomaterials & functional materials, vol.13, no.1, 43-60.

  176. Cannon, M, Gerodias, N, Vieira, A, Percinoto, C, Jurado, R. Primate Pulpal Healing after Exposure and TheraCal Application. The Journal of clinical pediatric dentistry, vol.38, no.4, 333-337.

  177. TheraCal Light Cured Resin‐Modified Calcium Silicate Pulp Protectant/Liner [Product instruction manual]. BISCO Inc. USA[accessed February 2015]. Available from:http://www.bisco.com/instructions/English_IN-192R2.pdf. 

  178. SAVAS, Selcuk, BOTSALI, Murat S., KUCUKYILMAZ, Ebru, SARI, Tugrul. Evaluation of temperature changes in the pulp chamber during polymerization of light-cured pulp-capping materials by using a VALO LED light curing unit at different curing distances. Dental materials journal, vol.33, no.6, 764-769.

  179. Camilleri, J.. Hydration characteristics of Biodentine and Theracal used as pulp capping materials. Dental materials, vol.30, no.7, 709-715.

  180. Camilleri, J., Laurent, P., About, I.. Hydration of Biodentine, Theracal LC, and a Prototype Tricalcium Silicate-based Dentin Replacement Material after Pulp Capping in Entire Tooth Cultures. Journal of endodontics, vol.40, no.11, 1846-1854.

  181. Serb Dent J Makkar S 7 62 2015 10.1515/sdj-2015-0001 The effect of altered pH on push‐out bond strength of biodentin, glass ionomer cement, mineral trioxide aggregate and Theracal 

  182. Cantekin, K. Bond Strength of Different Restorative Materials to Light-Curable Mineral Trioxide Aggregate. The Journal of clinical pediatric dentistry, vol.39, no.2, 143-148.

  183. Am J Dent Pameijer CH S45 11 1998 The disastrous effects of the “total etch” technique in vital pulp capping in primates 

  184. Loguercio, Alessandro Dourado, Reis, Alessandra, Schroeder, Marcos, Balducci, Ivan, Versluis, Antheunis, Ballester, Rafael Yagüe. Polymerization shrinkage: effects of boundary conditions and filling technique of resin composite restorations. Journal of dentistry, vol.32, no.6, 459-470.

  185. Takita, T., Hayashi, M., Takeichi, O., Ogiso, B., Suzuki, N., Otsuka, K., Ito, K.. Effect of mineral trioxide aggregate on proliferation of cultured human dental pulp cells. International endodontic journal, vol.39, no.5, 415-422.

  186. Rashid, Fahmida, Shiba, Hideki, Mizuno, Noriyoshi, Mouri, Yoshihiro, Fujita, Tsuyoshi, Shinohara, Hiroaki, Ogawa, Tetsuji, Kawaguchi, Hiroyuki, Kurihara, Hidemi. The Effect of Extracellular Calcium Ion on Gene Expression of Bone-related Proteins in Human Pulp Cells. Journal of endodontics, vol.29, no.2, 104-107.

  187. 10.22203/eCM.v011a05 

  188. Tada, H., Nemoto, E., Kanaya, S., Hamaji, N., Sato, H., Shimauchi, H.. Elevated extracellular calcium increases expression of bone morphogenetic protein-2 gene via a calcium channel and ERK pathway in human dental pulp cells. Biochemical and biophysical research communications, vol.394, no.4, 1093-1097.

  189. Am J Dent Hebling J 137 22 2009 Cytotoxicity of resin‐based light‐cured liners 

  190. Poggio, Claudio, Arciola, Carla Renata, Beltrami, Riccardo, Monaco, Annachiara, Dagna, Alberto, Lombardini, Marco, Visai, Livia. Cytocompatibility and Antibacterial Properties of Capping Materials. The Scientific World Journal, vol.2014, 181945-.

  191. J Clin Diagn Res Qureshi A 316 8 2014 Recent advances in pulp capping materials: an overview 

관련 콘텐츠

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로