Enzymatic modulation as a resource to optimize intra radicular bonding.

  • Juan A. Fernández Tarazona Universidad Privada Juan Pablo II. Escuela Profesional de Odontología. Lima. Universidad Nacional Hermilio Valdizán. Escuela Profesional de Odontología. Huánuco. http://orcid.org/0000-0001-5763-5320
  • Zady J. Torres Universidad Privada de Huánuco. Escuela Profesional de Odontología. Huánuco.

References

1. Gbadebo OS, Ajayi DM, Oyekunle OO, Shaba PO. Randomized clinical study comparing metallic and glass fiber post in restoration of endodontically treated teeth. Indian J Dent Res. 2014;25(1):58–63.
2. Zicari F, De Munck J, Scotti R, Naert I, Van Meerbeek B. Factors affecting the cement-post interface. Dent Mater. 2012;28(3):287–97.
3. Amaral SFD, Scaffa PMC, Rodrigues RDS, Nesadal D, Marques MM, Nogueira FN, Sobral MAP. Dynamic Influence of pH on Metalloproteinase Activity in Human Coronal and Radicular Dentin. Caries Res. 2018;52(1-2):113–8.
4. Toman M, Toksavul S, Tamaç E, Sarikanat M, Karagözoğlu I. Effect of chlorhexidine on bond strength between glass-fiber post and root canal dentine after six month of water storage. Eur J Prosthodont Restor Dent. 2014;22(1):29–34.
5. Fernández JA, Torres ZJ. Influencia de la aplicación de clorhexidina al 2% en el protocolo adhesivo sobre la resistencia adhesiva de postes de fibra de vidrio. RODYB. 2018;7(1):1–6.
Published
2018-12-17
How to Cite
FERNÁNDEZ TARAZONA, Juan A.; TORRES, Zady J.. Enzymatic modulation as a resource to optimize intra radicular bonding.. Journal of Oral Research, [S.l.], v. 7, n. 9, p. 337, dec. 2018. ISSN 0719-2479. Available at: <https://www.joralres.com/index.php/JOralRes/article/view/joralres.2018.089>. Date accessed: 20 apr. 2024. doi: https://doi.org/10.17126/joralres.2018.089.
Section
Perspectives