Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 2 de 2
Filter
Add more filters










Database
Language
Publication year range
1.
J Endod ; 41(6): 846-52, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25749255

ABSTRACT

INTRODUCTION: Traditional pulp regeneration procedures that use a blood clot as a scaffold have produced histologic evidence of bone, cementum, and connective tissue growth within the root. Platelet-rich plasma (PRP) is a bioactive scaffold containing growth factors that enhance wound healing. AIM: The aim of this study was to histologically compare the tissues generated when PRP or a blood clot is placed into teeth with preexisting necrotic pulps and periapical lesions. METHODS: Twenty-four canine teeth from 6 immature ferrets were used. Two ferrets served as positive controls. Sixteen experimental canine teeth from 4 ferrets were infected, debrided, treated with a triple antibiotic paste, and randomly distributed to the following groups: group 1 (blood clot/Gelfoam), group 2 (PRP), and group 3 (no scaffold). At 3 months, the ferrets were sacrificed, and the tissues were evaluated histologically. Data were analyzed by using the Fisher exact test (P < .05). RESULTS: In 3 of 6 teeth in the PRP group, 2 of 6 teeth in the blood clot group, and 1 of 4 teeth in the no scaffold group, an ingrowth of hard tissues was observed in the apical third of the roots. When using PRP or a blood clot as a scaffold, we found significantly more apical narrowing and hard tissue deposition in comparison to not using a scaffold (P < .05). CONCLUSIONS: The use of PRP or blood clots as scaffolds results in the ingrowth of bone-like, cementum-like, and connective tissue in the apical third of the roots at inconsistent rates.


Subject(s)
Dental Pulp Necrosis/pathology , Dental Pulp Necrosis/therapy , Gelatin Sponge, Absorbable/therapeutic use , Hemostatics/therapeutic use , Periapical Periodontitis/pathology , Periapical Periodontitis/therapy , Platelet-Rich Plasma , Animals , Anti-Bacterial Agents/therapeutic use , Dental Pulp/pathology , Ferrets , Regeneration , Tissue Scaffolds
2.
J Endod ; 40(4): 515-20, 2014 Apr.
Article in English | MEDLINE | ID: mdl-24666902

ABSTRACT

INTRODUCTION: A growing body of evidence is building a case for the possibility of tissue regeneration within the root canal of necrotic teeth, allowing for continued root development. However, it remains unknown what type of tissue is produced after regenerative endodontics. The purpose of this study was to use blood clots and platelet-rich plasma (PRP) as scaffolds in regenerative endodontics under ideal conditions in a ferret model to examine the tissues generated within the root canals. METHODS: The pulps of 21 canine teeth from 7 young ferrets were extirpated using broaches without filing the canal walls. Bleeding was stimulated from the periapical tissues, and a blood clot was induced in the canal space to the level of the cementoenamel junction in 12 teeth. PRP was prepared and placed in the canals to the level of the cementoenamel junction in 9 teeth. The coronal access was sealed with mineral trioxide aggregate. Seven canines were not operated on and served as controls. Three months later, block sections including each canine and its surrounding tissues were removed for histologic evaluation. The tissues found in the canals of experimental teeth were compared with those in the control teeth. RESULTS: Almost all of the experimental teeth showed the presence of intracanal bonelike tissue. No evidence of dentinal wall thickening or apical narrowing was noted in the experimental teeth. CONCLUSIONS: In this experimental model, the use of either PRP or blood clots during regenerative endodontics leads to the formation of intracanal bonelike tissue without continual root maturation.


Subject(s)
Blood Coagulation/physiology , Cuspid/anatomy & histology , Dental Pulp Cavity/anatomy & histology , Platelet-Rich Plasma/physiology , Tissue Scaffolds , Aluminum Compounds/therapeutic use , Animals , Calcium Compounds/therapeutic use , Cuspid/physiology , Dental Pulp Cavity/blood supply , Dental Pulp Cavity/physiology , Dentin, Secondary/anatomy & histology , Dentin, Secondary/physiology , Drug Combinations , Edetic Acid/therapeutic use , Ferrets , Fibroblasts/physiology , Lymphocytes/physiology , Macrophages/physiology , Male , Models, Animal , Odontogenesis/physiology , Osteoblasts/physiology , Osteoclasts/physiology , Oxides/therapeutic use , Pulpectomy/methods , Random Allocation , Regeneration/physiology , Root Canal Filling Materials/therapeutic use , Root Canal Irrigants/therapeutic use , Silicates/therapeutic use , Time Factors
SELECTION OF CITATIONS
SEARCH DETAIL
...