Gallium Diffusion in Human Root Dentin: Quantitative Measurements by Pulsed Nd:YAG Laser Ablation Combined with an Inductively Coupled Plasma Mass Spectrometer
- 1 August 2000
- journal article
- research article
- Published by Mary Ann Liebert Inc in Journal of Clinical Laser Medicine & Surgery
- Vol. 18 (4) , 173-183
- https://doi.org/10.1089/10445470050144029
Abstract
Objective: The purpose of this work was to determine if gallium nitrate placed in human root canals would diffuse across root dentin and reach concentrations high enough to inhibit osteoclasts (~10-4 M). Background Data: External root resorption by osteoclasts is a common sequela of dental trauma. If not detected and treated, it can lead to the loss of a tooth. Gallium has recently been reported to inhibit osteoclastic resorption in vitro. Methods: Roots were cleaned and shaped using standard endodontic procedures and the tips sealed with cyanoacrylate cement. The root canal space was filled with an aqueous solution of 1.0 M gallium nitrate chelated with 1.0 M sodium citrate buffer (pH 7.2). The roots were then sectioned longitudinally into two equal halves. Each half was fixed to a translation stage that moved at a constant rate beneath a frequency-quadrupled Nd-YAG laser (266 nm) laser that was used to sample the concentration of 43Ca, 69Ga, and 71Ga by laser ablation across the thickness of root dentin to the periodontal surface. The plume of ablated dentin was swept into an inductively heated plasma chamber by argon gas and hence into a mass spectrometer. Results: Quantitative analyses of the distribution of gallium showed it was highest adjacent to the root canal space and fell as more peripheral sites were sampled but then rose slightly at the external boundary of the root which is covered with a thin layer of atubular cementum. Conclusions: Even the lowest concentrations of gallium found in peripheral root dentin exceeded the 10-4 M concentration required to inhibit osteoclastic activity. This simple endodontic treatment should undergo clinical trials to determine its efficacy in vivo. The laser ablation, inductively coupled mass spectrometry method is a powerful analytic tool for measuring spatial distribution of materials in mineralized tissues.Keywords
This publication has 13 references indexed in Scilit:
- Trace Element Determination of Single Fluid Inclusions in Quartz by Laser Ablation ICP‐MSGeostandards Newsletter, 1997
- Optimisation of laser wavelength in the ablation sampling of glass materialsApplied Surface Science, 1996
- New quantitative approach in trace elemental analysis of single fluid inclusions: applications of laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS)Journal of Analytical Atomic Spectrometry, 1996
- Gallium inhibits bone resorption by a direct effect on osteoclastsBone and Mineral, 1990
- Clinical endodontic and surgical management of tooth and associated bone resorptionInternational Endodontic Journal, 1985
- Relationship between surface and inflammatory resorption and changes in the pulp after replantation of permanent incisors in monkeysJournal of Endodontics, 1981
- pH changes in dental tissues after root canal filling with calcium hydroxideJournal of Endodontics, 1981
- Biologic aspects of endodonticsOral Surgery, Oral Medicine, Oral Pathology, 1966
- Replantation of Teeth. I. Radiographic and Clinical Study of 110 Human Teeth Replanted After Accidental LossActa Odontologica Scandinavica, 1966
- MOTION PICTURE AND ELECTRON MICROSCOPE STUDIES ON THE EMBRYONIC AVIAN OSTEOCLASTThe Journal of cell biology, 1961