Speciation of aluminum in biological systems

被引:142
作者
Harris, WR
Berthon, G
Day, JP
Exley, C
Flaten, TP
Forbes, WF
Kiss, T
Orvig, C
Zatta, PF
机构
[1] UNIV MANCHESTER, DEPT CHEM, MANCHESTER M13 9PL, LANCS, ENGLAND
[2] UNIV KEELE, DEPT CHEM, KEELE ST5 5BG, STAFFS, ENGLAND
[3] NORWEGIAN UNIV SCI & TECHNOL, DEPT CHEM, TRONDHEIM, NORWAY
[4] UNIV WATERLOO, DEPT HLTH STUDIES & GERONTOL, WATERLOO, ON N2L 3G1, CANADA
[5] LAJOS KOSSUTH UNIV, DEPT INORGAN & ANALYT CHEM, H-4010 DEBRECEN, HUNGARY
[6] UNIV BRITISH COLUMBIA, DEPT CHEM, VANCOUVER, BC V5Z 1M9, CANADA
[7] UNIV PADUA, DEPT BIOL, I-35100 PADUA, ITALY
[8] UNIV TOULOUSE 3, INSERM U305, EQUIPE BIOREACT SPECIAT & BIODISPONIBIL, F-31062 TOULOUSE, FRANCE
来源
JOURNAL OF TOXICOLOGY AND ENVIRONMENTAL HEALTH | 1996年 / 48卷 / 06期
关键词
D O I
10.1080/009841096161069
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
As a ''hard'' trivalent metal ion, Al3+ binds strongly to oxygen-donor ligands such as citrate and phosphate. The aqueous coordination chemistry of Al is complicated by the tendency of many Al complexes to hydrolyze and form polynuclear species, many of which are sparingly soluble. Thus there is considerable variation among the Al stability constants reported for several important ligands. The complexity in the aqueous chemistry of Al has also affected Al toxicity studies, which have often utilized poorly characterized Al stock solutions. Serum fractionation studies show that most Al is protein bound, primarily to the serum iron transport protein transferrin. Albumin appears to play little, if any, role in serum transport. There is little agreement as to the speciation of the remaining low-molecular-mass fraction of serum Al. The lability of the Al3+ ion precludes the simple separation and identification of individual Al complexes. Computational methods are available for detailed computer calculations of the Al speciation in serum, but efforts in this area have been severely hampered by the uncertainties regarding the stability constants of the low molecular mass Al complexes with Citrate, phosphate, and hydroxide. Specific recommendations for further research on Al speciation include: (1) Determine more accurate Al stability constants with critical low molecular mass ligands such as citrate and phosphate; (2) supplement traditional potentiometric studies on Al complexes with data from other techniques such as Al-27-NMR and accelerator mass spectrometry with Al-26; (3) develop new methods for generating reliable linear free energy relationships for Al complexation; (4) determine equilibrium and rate constants for Al binding to transferrin al 37 degrees C; (5) confirm the possible formation of low-molecular-mass Al-protein complexes following desferrioxamine therapy; (6) continue research efforts to incorporate kinetic considerations into the present equilibrium speciation calculations; (7) improve methods for preparing chemically well-defined stock solutions for toxicological studies; (8) incorporate more detailed speciation data into studies on Al toxicity and pharmacokinetics; and (9) incorporate more detailed speciation data into future epidemiological studies on the relationship between Al toxicity and various water quality parameters.
引用
收藏
页码:543 / 568
页数:26
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