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A G Cook

Publications and source records attributed to A G Cook.

8 recordsLinked to original sources

Health effects of natural dust: role of trace elements and compounds.

This article reviews the health effects of trace elements carried in natural dusts of geologic or geochemical origin. The sources of these dusts are diverse, including volcanoes, dust storms, long-range transport of desert dust, and displacement through natural processes such as landslides and earthquakes. The primary focus is dust exposures affecting communities rather than occupational groups (which have been comprehensively explored in other publications). The principal elements and compounds reviewed are trace metals (including As, Hg, Cd, and Fe), radioactive elements, fluoride, silicates, natural asbestiform compounds, and alkali salts. The pathways by which such agents affect human populations are explored, including carriage through water, air, soil, and the food chain. The mechanisms of biotoxicity and the acute and chronic consequences on health associated with these elements are described. The discussion explores problems inferring risk and disease causation from natural dust exposures using standard epidemiological indicators, particularly for chronic outcomes, and will argue for the importance of the ecological perspective in assessing pathogenesis. The authors stress the global scale of the problem, which remains underevaluated and underreported in terms of health implications.

Animals↗

Interpretation of the detection of Sarcocystis neurona antibodies in the serum of young horses.

Horses that are exposed to Sarcocystis neurona, a causative agent of equine protozoal myeloencephalitis, produce antibodies that are detectable in serum by western blot (WB). A positive test is indicative of exposure to the organism. Positive tests in young horses can be complicated by the presence of maternal antibodies. Passive transfer of maternal antibodies to S. neurona from seropositive mares to their foals was evaluated. Foals were sampled at birth (presuckle), at 24h of age (postsuckle), and at monthly intervals. All foals sampled before suckling were seronegative. Thirty-three foals from 33 seropositive mares became seropositive with colostrum ingestion at 24h of age, confirming that passive transfer of S. neurona maternal antibodies occurs. Thirty-one of the 33 foals became seronegative by 9 months of age, with a mean seronegative conversion time of 4.2 months. These results indicate that evaluation of exposure to S. neurona by WB analysis of serum may be misleading in young horses.

Age Factors↗

Chemical synthesis of bispecific monoclonal antibodies: potential advantages in immunoassay systems.

To date, the applications of bispecific antibodies in immunoassay and immunocytochemical procedures have been directed at uniting two different biomolecules through the binding of epitopes on each respective substance. In this study, bispecific antibodies were constructed in which both binding sites were directed to two different epitopes of the same target molecule. Two types of bispecific antibody were constructed; a bivalent bispecific monoclonal antibody and multivalent bispecific polymers. The binding characteristics of each were investigated for changes in specificity and binding strength relative to 1:1 mixtures of parent antibodies. A bivalent bispecific antibody (BBA) was synthesised by the method of Glennie et al. (1985) from monoclonal antibodies recognising the 'M' or 'B' units of creatine kinase (CKMB). The BBA had enhanced specificity for CKMB with diminished recognition of CKMM and CKBB. A less tedious method of producing bispecific antibody involving heterobifunctional cross-linkage was used to produce multivalent bispecific antibodies (MBAs). Certain MBAs constructed to bind 'M' and 'B' units of CKMB demonstrated enhanced specificity and affinity for CKMB. MBAs were also produced to opposite ends of the 39 amino acid peptide adrenocorticotrophic hormone (ACTH). One of these demonstrated an enhanced affinity of 41-fold. We conclude that while conventional synthesis of bispecific bivalent antibodies is not a practical proposition for immunoassay development, antibodies with similar advantages can be produced with a simple method using the heterobifunctional cross-linker. The production of certain bispecific antibody combinations appears to enhance the formation of antibody-antigen matrices conferring higher binding affinities than can be achieved with an antibody mixture alone.

Adrenocorticotropic Hormone↗

The stereochemical course of phospho group transfer catalyzed by rat liver 6-phosphofructo-2-kinase.

Adenosine [gamma-(S)-16O,17O,18O]triphosphate was used as substrate in the phosphokinase reaction catalyzed by 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase. The product D-fructose 2,6-[2-16O,17O,18O]bisphosphate was then used as substrate in the alkaline phosphatase-mediated transfer of the phospho groups to (S)-butane-1,3-diol, where the configuration at phosphorus has been determined. Although there was approximately equal transfer by alkaline phosphatase of the labeled 2- and the unlabeled 6-phospho groups, the subsequent assignment of configuration of the chiral phospho group from the 2-position was unambiguous. It was found that 6-phosphofructo-2-kinase proceeds by a pathway that results in net inversion of the configuration at phosphorus. The simplest interpretation of this result is that the phospho group is transferred directly between substrates in a ternary complex by an "in-line" mechanism not involving a phosphoenzyme intermediate. This conclusion is consistent with the fact that the enzyme cannot be labeled by [gamma-32P]ATP and with steady-state kinetic data that suggest an ordered sequential mechanism. This finding also indicates that the adenine nucleotide and sugar phosphate isotope exchange reactions catalyzed by the enzyme are not relevant to the normal catalytic pathway of the kinase.

Adenosine Triphosphate↗

Phosphoenolpyruvate synthetase and pyruvate, orthophosphate dikinase: stereochemical consequences at both the beta-phospho and gamma-phospho groups of ATP.

[(R)-16O,17O,18O]Phosphoenolpyruvate and adenosine 5'-O-[(gamma S)-beta gamma-17O,gamma-17O,18O](3-thiotriphosphate) have been synthesized and used to determine the stereochemical course of the several displacements at phosphorus catalyzed by phosphoenolpyruvate synthetase and by pyruvate, orthophosphate dikinase, two enzymes that catalyze the formation of phosphoenolpyruvate from pyruvate and ATP. The catalytic mechanisms for each of these enzymes are believed to involve both phospho- and pyrophospho-enzyme intermediates. The stereochemical results are entirely in accord with these pathways: the beta-phospho group of ATP suffers overall retention of configuration that is presumably the consequence of two displacements with inversion, and the gamma-phospho group of ATP gamma S suffers inversion of configuration that is most probably the consequence of a single displacement at this center.

Adenosine Triphosphate↗