Nano-materials in Regenerative Pulp Treatment

作者: Alicja Porenczuk

DOI: 10.1007/978-3-319-97634-1_1

关键词: Tissue engineeringPulp treatmentPulp (tooth)Cariogenic bacteriaRegenerative endodonticsOdontoblastBioactive moleculesCell biologyTissue repair

摘要: The acidic activity of cariogenic bacteria may be the cause severe damage or even death primary odontoblasts. remaining pulpal cells migrate to damaged site and differentiate into odontoblast-like possessing ability tissue repair. restorative clinical procedures are gathered in minimally invasive dentistry strategies. remineralization process, enhanced by dental biomaterials, could a successful tool promoting pulp’s healing. bioactive molecules supporting matrices, synthesized through tissue-engineering techniques, promote proliferation differentiation cells. However, little is still known about their mechanisms action. In this chapter, characteristics particles’ terms pulp regenerative treatment brought closer. Furthermore, novelties materials science, including nano-bioactive glass nano-hydroxyapatite nano-composites, field endodontics introduced.

参考文章(92)
Beata Czarnecka, Nichola J. Coleman, John W. Nicholson, Honorata Shaw, The use of mineral trioxide aggregate in endodontics - status report Silesian Piasts University of Medicine in Wrocław/Polish Stomatological Association. ,(2008)
Jacqueline Abranches, Robert A Burne, José A C Lemos, Responses of cariogenic streptococci to environmental stresses. Current Issues in Molecular Biology. ,vol. 7, pp. 95- 107 ,(2005)
Zhaofei Li, Lihua Cao, Mingwen Fan, Qingan Xu, Direct Pulp Capping with Calcium Hydroxide or Mineral Trioxide Aggregate: A Meta-analysis Journal of Endodontics. ,vol. 41, pp. 1412- 1417 ,(2015) , 10.1016/J.JOEN.2015.04.012
Lloyd H Straffon, Robert J Feigal, Kathleen B Welch, Mohammed A Al-Zayer, Indirect pulp treatment of primary posterior teeth: a retrospective study. Pediatric Dentistry. ,vol. 25, pp. 29- 36 ,(2003)
Falk Schwendicke, Fredrik Brouwer, Michael Stolpe, Calcium Hydroxide versus Mineral Trioxide Aggregate for Direct Pulp Capping: A Cost-effectiveness Analysis. Journal of Endodontics. ,vol. 41, pp. 1969- 1974 ,(2015) , 10.1016/J.JOEN.2015.08.019
Lars Bjørndal, Claes Reit, Gitte Bruun, Merete Markvart, Marianne Kjaeldgaard, Peggy Näsman, Marianne Thordrup, Irene Dige, Bente Nyvad, Helena Fransson, Anders Lager, Dan Ericson, Kerstin Petersson, Jadranka Olsson, Eva M. Santimano, Anette Wennström, Per Winkel, Christian Gluud, Treatment of deep caries lesions in adults: randomized clinical trials comparing stepwise vs. direct complete excavation, and direct pulp capping vs. partial pulpotomy. European Journal of Oral Sciences. ,vol. 118, pp. 290- 297 ,(2010) , 10.1111/J.1600-0722.2010.00731.X
Scott N. Peterson, Erik Snesrud, Nicholas J. Schork, Walter A. Bretz, Dental caries pathogenicity: a genomic and metagenomic perspective International Dental Journal. ,vol. 61, pp. 11- 22 ,(2011) , 10.1111/J.1875-595X.2011.00025.X
Alireza Moshaverinia, Sahar Ansari, Maryam Moshaverinia, Nima Roohpour, Jawwad A. Darr, Ihtesham Rehman, Effects of incorporation of hydroxyapatite and fluoroapatite nanobioceramics into conventional glass ionomer cements (GIC). Acta Biomaterialia. ,vol. 4, pp. 432- 440 ,(2008) , 10.1016/J.ACTBIO.2007.07.011