AI Article Synopsis

  • Calcium hydroxide is widely used in dentistry for endodontic treatment due to its antibacterial and anti-inflammatory properties, but it has drawbacks like pulp necrosis and slow hardening.
  • Recent studies have shown that calcium phosphate-based cements (CPC) made from calcium bis-dihydrogenphosphate and calcium oxide offer improved mechanical properties and osteoconductivity, making them more suitable for dental use.
  • Tests indicated that these new CPCs exhibit significant bacterial growth inhibition against common oral pathogens, positioning them as promising materials for pulp capping and cavity lining applications.

Article Abstract

Calcium hydroxide is currently used in dentistry for endodontic treatment where its main advantage consists of its antibacterial and anti-inflammatory potency. However, it also has some drawbacks such as pulp necrosis, slight solubility, slow and low hardening, and retraction on drying. Since the studies conducted by Brown and Chow (IADR 1983, abst. 207), calcium phosphate-based cements (CPC) have attracted considerable interest in bone reconstruction because of their good osteoconductivity. By mixing calcium bis-dihydrogenphosphate monohydrate (MCPM) and calcium oxide with sodium phosphate buffer in the form of liquid phase, we obtained a CPC with better mechanical properties than calcium hydroxide. The setting reaction produced a mixture of calcium-deficient hydroxyapatite and calcium hydroxide, making this cement more suitable for dental applications than orthopedic ones. The presence of calcium hydroxide a priori confers antibacterial properties to this cement, which were investigated in agar plates (diffusion method) against Streptococcus mutans, Lactobacillus acidophilus, Candida albicans (clinical isolates) and a preparation of polymicrobial flora isolated from dental plaque. The cement samples tested were prepared at calcium-to-phosphate molar ratios (Ca/P) ranging from 1.67 to 2.75. A pure calcium hydroxide paste was used as reference material. Clear and reproducible bacterial growth inhibition was observed for cement samples with Ca/P > or = 2 against all the microorganisms tested. MCPM-CaO-based cement is therefore a potential candidate for pulp capping and cavity lining.

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Source
http://dx.doi.org/10.1097/00004770-200302000-00003DOI Listing

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