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January 1, 2002Brazilian Dental Journal758 citationsOpen Access

Mechanism of action of sodium hypochlorite

CECarlos EstrelaCECyntia Rodrigues de Araújo EstrelaEBEduardo Luis Barbin

Key Points

  • Examine the mechanisms through which sodium hypochlorite exerts its effects as an irrigating solution in endodontics.
  • Review of sodium hypochlorite's properties and its impact on microorganisms in infected root canals.
  • Analysis of its effects on cellular metabolism and tissue dissolution capabilities.
  • Sodium hypochlorite induces biosynthetic alterations in cellular metabolism and leads to phospholipid destruction.
  • It generates chloramines which disrupt cellular functions and exhibit strong antimicrobial action.
  • The oxidative properties of sodium hypochlorite result in irreversible enzymatic inactivation of bacteria.

Abstract

The choice of an irrigating solution for use in infected root canals requires previous knowledge of the microorganisms responsible for the infectious process as well as the properties of different irrigating solutions. Complex internal anatomy, host defenses and microorganism virulence are important factors in the treatment of teeth with asymptomatic apical periodontitis. Irrigating solutions must have expressive antimicrobial action and tissue dissolution capacity. Sodium hypochlorite is the most used irrigating solution in endodontics, because its mechanism of action causes biosynthetic alterations in cellular metabolism and phospholipid destruction, formation of chloramines that interfere in cellular metabolism, oxidative action with irreversible enzymatic inactivation in bacteria, and lipid and fatty acid degradation. The aim of this work is to discuss the mechanism of action of sodium hypochlorite based on its antimicrobial and physico-chemical properties.

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Cite This Study

Estrela et al. (2002) studied this question.

synapsesocial.com/papers/69db5e0574ec163421835bc9https://doi.org/10.1590/s0103-64402002000200007
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