Sensitivity of human dental pulp cells to eighteen chemical agents used for endodontic treatments in dentistry.

Article Details

Citation

Kobayashi M, Tsutsui TW, Kobayashi T, Ohno M, Higo Y, Inaba T, Tsutsui T

Sensitivity of human dental pulp cells to eighteen chemical agents used for endodontic treatments in dentistry.

Odontology. 2013 Jan;101(1):43-51. doi: 10.1007/s10266-011-0047-9. Epub 2011 Nov 15.

PubMed ID
22083529 [ View in PubMed
]
Abstract

To determine the adverse effects against human dental pulp tissue, the sensitivity of human dental pulp cells (D824 cells) to 18 chemical agents used for endodontic treatments in dentistry was examined. The cytotoxicity, as determined by a decrease in colony-forming ability of cells treated with the chemical agents, increased as the concentration increased. As a quantitative measure of the cytotoxic effect, LC(50), the concentration which induces a 50% lethality, was extrapolated from the concentration-response curves. The rank of the chemical agents according to their cytotoxic effect (LC(50)) was sodium arsenite > formaldehyde > hydrogen peroxide > zinc oxide > thymol approximately iodoform approximately eugenol > guaiacol > ethylenediaminetetraacetic acid approximately iodine > procaine > lidocaine approximately chloramphenicol approximately m-cresol > calcium hydroxide approximately sodium hypochlorite approximately phenol approximately p-phenolsulfonic acid. To compare the cytotoxicity and the levels of apoptosis and mRNA expression of five genes related to the function of dental pulp tissue, D824 cells treated with the LC(50) concentrations of chemical agents were assayed by the TUNEL method and quantitative reverse transcription polymerase chain reaction analysis, respectively. The inducibility of apoptotic cells and the level of mRNA expression of the genes varied with the chemical agents, indicating that both effects occurred independent of the rank of cytotoxic effect of the chemical agents. The results not only provide information concerning cytotoxicity of various chemical agents to human dental pulp cells, but also show an insight into the diversity of the pharmacodynamic action of the chemical agents.