Influence of Sealer Composition on Post-Endodontic Pain: A Prospective Comparative Analysis of Three Root Canal Sealers
Influence of Sealer Composition on Post-Endodontic Pain: A Prospective Comparative Analysis of Three Root Canal Sealers
Postoperative pain (PP) is one of the most common and clinically significant complications following endodontic therapy, occurring shortly after treatment and potentially lasting from a few hours to several days, thereby compromising the patient's quality of life.
The incidence of PP varies widely in the literature, ranging from 1.7% to 70%, with some studies reporting values up to 80% within the first 24 hours, gradually decreasing over a week.
Postoperative pain (PP) is one of the most common and clinically significant complications following endodontic therapy, occurring shortly after treatment and potentially lasting from a few hours to several days, thereby compromising the patient's quality of life .
The incidence of PP varies widely in the literature, ranging from 1.7% to 70%, with some studies reporting values up to 80% within the first 24 hours, gradually decreasing over a week . The pathophysiology of postoperative pain involves mechanical, chemical, or microbial injury to the periapical tissues, which triggers an acute inflammatory response characterized by the release of inflammatory mediators, vasodilation, increased vascular permeability, and leukocyte migration, ultimately activating sensory neurons and generating pain.
The etiology of PP is multifactorial, including patient-related factors such as age, gender, tooth type particularly mandibular molars preoperative pain, and periapical radiolucency, as well as treatment-related factors such as instrumentation protocol, irrigation solution, working length determination, occlusal adjustment, number of visits, anesthesia type, and prophylactic analgesics. Understanding these variables allows clinicians to select techniques and materials that minimize postoperative discomfort.
Root canal obturation plays a critical role in postoperative pain, as sealers may come into direct contact with periradicular tissues or extrude through the apical foramen, eliciting cytotoxic and inflammatory responses . The chemical composition and biocompatibility of the sealer influence tissue reaction, periapical healing, and subsequent pain perception.
Traditionally, epoxy resin-based sealers, such as AH Plus®, have been considered the gold standard due to their excellent sealing properties, radiopacity, dimensional stability, and clinical performance; however, extrusion of these sealers has been associated with cytotoxicity and inflammation.
Calcium hydroxide-based sealers have long been used in endodontics, providing antibacterial effects, low cytotoxicity, and osteogenic and cementogenic potential, contributing to periapical repair.
More recently, calcium silicate-based bioceramic sealers, including tricalcium silicate formulations like BioRoot and EndoSeal MTA, have gained popularity due to their bioactivity, biocompatibility, ability to set in humid conditions, alkaline pH, calcium ion release, antimicrobial properties, and promotion of tissue regeneration with lower inflammatory mediator production.
These properties suggest that bioceramic sealers may reduce postoperative pain compared to traditional sealers, while supporting enhanced periapical healing and osteogenic induction.
Despite studies evaluating postoperative pain with different sealers, results remain controversial, and there is limited evidence specifically comparing the effects of epoxy resin-based versus calcium silicate-based sealers on pain outcomes following single-visit endodontic treatment.
This highlights a need for further randomized clinical trials to assess the incidence and severity of postoperative pain associated with these materials, particularly in patients with varying pulpal and periapical conditions.
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