Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Influence of Direct Pulp Capping with Calcium Hydroxide and Mineral Trioxide Aggregate on Systemic Oxidative Stress in Rats

View through CrossRef
Abstract Direct pulp capping is a procedure where materials are placed on exposed vital pulp tissue in order to stimulate reparative dentinogenesis and preserve pulp vitality. Carious pulp exposure and direct pulp capping are usually accompanied by pulp inflammation which can affect pro- and anti-oxidative systems locally or systemically. Therefore, this study aimed to investigate the potential influence of direct capping of inflamed rat dental pulp with calcium hydroxide (CH) and mineral trioxide aggregate (MTA) on parameters of systemic oxidative status. Dental pulps of the first maxillary molars of Albino rats (n=32) were exposed and capped with either CH (n=8), MTA (n=8) or were left untreated (n=8). Animals with healthy pulp were used as a healthy control (n=8). After four weeks, animals were euthanized and blood samples were collected for biochemical analysis of parameters of systemic oxidative stress by spectrophotometric method. Untreated control had the significantly higher (p <0.05) values of pro-oxidative parameters and lower (p <0.05) values of anti-oxidative parameters (superoxide dismutase and reduced glutathione) compared to healthy control. CH and MTA groups showed reduced values of pro-oxidative parameters compared to untreated control and values of anti-oxidative parameters comparable to healthy control. Pulp exposure led to disbalance in systemic oxidative parameters while direct pulp capping with calcium hydroxide and mineral trioxide aggregate restored the levels of systemic oxidative parameters to that of animals with healthy dental pulp. These results indicate the importance of direct pulp capping and the potential influence of untreated inflamed pulp on systemic health.
Title: Influence of Direct Pulp Capping with Calcium Hydroxide and Mineral Trioxide Aggregate on Systemic Oxidative Stress in Rats
Description:
Abstract Direct pulp capping is a procedure where materials are placed on exposed vital pulp tissue in order to stimulate reparative dentinogenesis and preserve pulp vitality.
Carious pulp exposure and direct pulp capping are usually accompanied by pulp inflammation which can affect pro- and anti-oxidative systems locally or systemically.
Therefore, this study aimed to investigate the potential influence of direct capping of inflamed rat dental pulp with calcium hydroxide (CH) and mineral trioxide aggregate (MTA) on parameters of systemic oxidative status.
Dental pulps of the first maxillary molars of Albino rats (n=32) were exposed and capped with either CH (n=8), MTA (n=8) or were left untreated (n=8).
Animals with healthy pulp were used as a healthy control (n=8).
After four weeks, animals were euthanized and blood samples were collected for biochemical analysis of parameters of systemic oxidative stress by spectrophotometric method.
Untreated control had the significantly higher (p <0.
05) values of pro-oxidative parameters and lower (p <0.
05) values of anti-oxidative parameters (superoxide dismutase and reduced glutathione) compared to healthy control.
CH and MTA groups showed reduced values of pro-oxidative parameters compared to untreated control and values of anti-oxidative parameters comparable to healthy control.
Pulp exposure led to disbalance in systemic oxidative parameters while direct pulp capping with calcium hydroxide and mineral trioxide aggregate restored the levels of systemic oxidative parameters to that of animals with healthy dental pulp.
These results indicate the importance of direct pulp capping and the potential influence of untreated inflamed pulp on systemic health.

Related Results

A Retrospective Analysis of The Correlation Between the Type of Pulp Exposure and The Choice of Pulp Capping Agents
A Retrospective Analysis of The Correlation Between the Type of Pulp Exposure and The Choice of Pulp Capping Agents
The aim was mainly to determine the correlation between the type of pulp capping method and the material of choice in this study. Pulp capping in the carious teeth has been conside...
Effectiveness of Calcium Hydroxide (CaOH) as agent for Direct Pulp Capping in the Mandibular Molars
Effectiveness of Calcium Hydroxide (CaOH) as agent for Direct Pulp Capping in the Mandibular Molars
Background: Direct Pulp Capping technique has been in use as a treatment therapy to sustain a vital pulp. The substitute procedure to the endodontic therapy or extraction is precis...
Ways of Maintaining Pulp Vitality: Narrative Literature Review
Ways of Maintaining Pulp Vitality: Narrative Literature Review
Background: Dental caries and traumatic injuries pose significant challenges to preserving the vitality of the dental pulp, with implications for tooth survival and overall oral he...
Management of Oblique Root Fracture Using Mineral Trioxide Aggregate: A Case Report
Management of Oblique Root Fracture Using Mineral Trioxide Aggregate: A Case Report
Root fractures are relatively uncommon compared to other types of dental traumas. It is sometimes extremely difficult for practitioners to decide what should be done and which appr...
Perbedaan Kekuatan Tekan Antara Resin Modified Glass Ionomer Cement dengan Mineral Trioxide Aggregate sebagai Bahan Kaping Pulpa
Perbedaan Kekuatan Tekan Antara Resin Modified Glass Ionomer Cement dengan Mineral Trioxide Aggregate sebagai Bahan Kaping Pulpa
Pulp capping material is one of the factors to determine the success of pulp capping treatment. One of the requirements for pulp capping material is having good mechanical strength...
Effort to explore the potential use of palmyrah fruit for functional food
Effort to explore the potential use of palmyrah fruit for functional food
PurposeThe purposes of this paper are to determine the nutritional composition of the pulp and its antioxidant activity; study the effect of drying and storage on the nutritional c...

Back to Top