Prediction of the reduced glutathione (GSH) reactivity of dental methacrylate monomers using NMR spectra - Relationship between toxicity and GSH reactivity

被引:17
作者
Fujisawa, Seiichiro [1 ]
Kadoma, Yoshinori [2 ]
机构
[1] Meikai Univ, Sch Dent, Sakado, Saitama 3500283, Japan
[2] Tokyo Med & Dent Univ, Inst Biomat & Bioengn, Chiyoda Ku, Tokyo 1010062, Japan
关键词
Dental methacrylates; NMR spectra; Structure-activity relationships; COMPOSITE RESINS; ESTERS; BIOCOMPATIBILITY; TOXICOLOGY; ACRYLATES; THIOLS;
D O I
10.4012/dmj.28.722
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
It has been established that the toxicity of acrylate and methacrylate monomers is driven by their reactivity towards glutathione (GSH). With this relationship, the objective of this study was to predict the GSH reactivity of dental methacrylate monomers, and hence their toxicity, using the C-13-NMR chemical shifts of beta-carbon (delta(C beta)) and the H-1-NMR shifts of the protons attached to beta-carbon (delta(Ha), delta(Hb)). The different nucleophiles were chosen to compare the different nucleophilic reactions involving acrylate and methacrylate monomers. In conjunction with the use of literature data for monomer/GSH reactivity, significant linear relationships between GSH reactivity (log K) and delta(C beta) or delta(Ha). were observed (p<0.001). As for the oral LD50 values of some dental dimethacrylates in mice, they were estimated using linear regression curve fitting of GSH reactivity-toxicity response data. Results revealed an acceptable correlation between the oral LD50 values of acrylates and methacrylates and GSH reactivity (p<0.05, outlier: HEMA). In conclusion, the present findings suggested that NMR spectra might be useful for predicting the toxicity of dental methacrylates.
引用
收藏
页码:722 / 729
页数:8
相关论文
共 31 条
[1]   Methacrylate and acrylate allergy in dental personnel [J].
Aalto-Korte, Kristiina ;
Alanko, Kristiina ;
Kuuliala, Outi ;
Jolanki, Riitta .
CONTACT DERMATITIS, 2007, 57 (05) :324-330
[2]   Reactivity of contact allergenic haptens to amino acid residues in a model carrier peptide, and characterization of formed peptide-hapten adducts [J].
Ahlfors, SR ;
Sterner, O ;
Hansson, C .
SKIN PHARMACOLOGY AND APPLIED SKIN PHYSIOLOGY, 2003, 16 (01) :59-68
[3]  
*ARKEMA CAN INC, 2007, MAT SAF DAT SHEET ET
[4]   EFFECTS OF METHYL-METHACRYLATE ON NON-PROTEIN THIOLS AND DRUG-METABOLIZING-ENZYMES IN RAT-LIVER AND KIDNEYS [J].
ELOVAARA, E ;
KIVISTO, H ;
VAINIO, H .
ARCHIVES OF TOXICOLOGY, 1983, 52 (02) :109-121
[5]  
*EMS, 2006, 18800 EMS
[6]   Metabolic effects of dental resin components in vitro detected by NMR spectroscopy [J].
Englemann, J ;
Leyhausen, G ;
Leibfritz, D ;
Geurtsen, W .
JOURNAL OF DENTAL RESEARCH, 2001, 80 (03) :869-875
[7]   Glutathione depletion in rat hepatocytes:: a mixture toxicity study with α,β-unsaturated esters [J].
Freidig, A ;
Hofhuis, M ;
Van Holstijn, I ;
Hermens, J .
XENOBIOTICA, 2001, 31 (05) :295-307
[8]   Quantitative structure-property relationships for the chemical reactivity of acrylates and methacrylates [J].
Freidig, AP ;
Verhaar, HJM ;
Hermens, JLM .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 1999, 18 (06) :1133-1139
[9]  
Fujisawa S, 1994, Dent Mater J, V13, P251
[10]   Chemical-biological interactions of the resin monomer triethyleneglycol-dimethacrylate (TEGDMA) [J].
Geurtsen, W ;
Leyhausen, G .
JOURNAL OF DENTAL RESEARCH, 2001, 80 (12) :2046-2050