Search PubMedSearch

Biomedical subjects

I D Wilson

Publications and source records attributed to I D Wilson.

At least 19 recordsLinked to original sources

Quantitative structure-metabolism relationships for substituted benzoic acids in the rat. Computational chemistry, NMR spectroscopy and pattern recognition studies.

An extensive set of computed molecular properties, both steric and electronic, have been calculated using molecular orbital and empirical methods for benzoic acid (1) and a congeneric series of substituted benzoic acids, i.e. 2-, 3- and 4-fluorobenzoic acids (2-4), 2-, 3- and 4-trifluoromethyl benzoic acids (5-7), 2-, 3- and 4-methylbenzoic acids (8-10), 4-amino benzoic acid (11), 2-fluoro-4-trifluoromethyl benzoic acid (12), 4-fluoro-2-trifluoromethyl benzoic acid (13), 3-trifluoromethyl-4-fluorobenzoic acid (14). We have monitored the urinary excretion profiles and determined the metabolic fate of compounds 2-7, 12-14 in the rat using high resolution 1H and 19F NMR spectroscopy. Corresponding data for compounds 1,8-11 are taken from the literature. In all cases phase II glucuronidation or glycine conjugation reactions dominated the metabolism of these compounds. Compounds 5, 7, 12, 13 have ester glucuronides as their major metabolites; the rest primarily form glycine conjugates. Compounds (1-12) have been classified according to their calculated physicochemical properties using pattern recognition methods and principal components maps have been used as a novel type of structure-metabolism diagram. The maps of compounds in the physicochemical property space served to separate the compounds into the two major classes which related to their principal metabolic fate in vivo, namely glucuronidation versus glycine conjugation. Compounds 13 and 14 were used as further probes of the property space, and dominant metabolic fates of glucuronidation and glycine conjugation, respectively, were predicted from the previous "training set map". The metabolic fate of compounds 1-14 can thus be classified according to a simple set of physicochemical rules. Investigation of the physicochemical properties which are important in distinguishing the metabolic fate of the compounds may give insight into key features of the drug-metabolizing enzyme active sites and hence provide information on basic mechanisms of benzoate metabolism.

Animals

1H-NMR spectroscopy as a means of monitoring nephrotoxicity as exemplified by studies with cephaloridine.

1. Male albino rats were dosed intravenously with either 0.9% saline or cephaloridine in saline at doses of 650, 750 or 950 mg kg-1 d-1 for 7 d. 2. Urine analysis on day 3, after two doses of cephaloridine showed dose-related increases in glucose, total protein, N-acetyl beta-D-glucosaminidase, gamma-glutamyltranspeptidase, alkaline phosphatase and lactate dehydrogenase. 1H-NMR spectroscopy showed corresponding disturbed profiles of products of intermediary metabolism indicative of a disruption of renal function. 3. By day 6, after five doses of cephaloridine, analysis by both 1H-NMR and conventional methods showed that all indices had returned to normal. 1H-NMR was demonstrated to provide useful complementary information to conventional techniques on the time course of the onset of the nephrotoxicity and the recovery phase, and was at least as sensitive as conventional urine analysis.

Animals

NMR-monitored solid-phase extraction of phenolphthalein glucuronide on phenylboronic acid and C18 bonded phases.

Preliminary studies have been undertaken to evaluate the potential of immobilized phenylboronic acid (PBA) for the solid-phase extraction (SPE) of glucuronide metabolites from urine. These studies have demonstrated that immobilized PBA can be used to specifically extract phenolphthalein glucuronide (5 mM) from urine. Urine samples were loaded onto the PBA SPE column in glycine buffer (pH 8.5) and were eluted using methanol-1% HCl (90:10, v/v). The overall recoveries of the phenolphthalein glucuronide for this procedure were high (99%), which compared well with similar studies carried out concomitantly on C18 bonded columns (93%).

Boronic Acids

Evidence against the presence of circulating immune complexes in chronic inflammatory bowel disease.

Several investigators have reported the presence of circulating immune complexes in serum from patients with Crohn's disease and chronic ulcerative colitis. Because previous assays employed conditions which might have caused immunoglobulin aggregates to form in vitro, thus falsely suggesting the presence of immune complexes in vivo, we tested inflammatory bowel disease sera for immune complexes using four assays designed to minimize in vitro immunoglobulin aggregation. In three assays immune complexes were not detectable, while in a fourth, the Clq precipitin test, positive reactions occurred. These precipitin reactions did not have characteristics of immune complexes. Our data suggest that circulating immune complexes are either not present in patients with inflammatory bowel disease or that they occur infrequently or in low concentration.

Antigen-Antibody Complex

Studies on the nature of heat-labile anti-complementary activity in normal human serum.

Heat-labile anti-complementary activity (ACA) appears in normal human serum during storage or heating as endogenous haemolytic activity disappears. Following gel filtration of unheated serum, two peaks of heat-labile ACA are present. The ACA of both whole and fractionated serum has previously been attributed to the presence of heat-labile immunoglobulin aggregates or immune complexes. Our data demonstrate that the heavy peak of ACA obtained by gel filtration does not bind to 125I-C1q or to Raji cells, and that its effect is abolished to C1INH, suggesting that it represents C1 rather than immunoglobulin aggregates or immune complexes. The lighter peak of ACA in fractionated serum has the functional characteristics of C1s and free C1s is demonstrable in fractions containing this activity. The ACA of whole serum likewise has functional characteristics of C1. The anti-complementary effect of C1 on guinea-pig complement would not be evident in the complement fixation assay until most endogenous haemolytic activity in human serum has been inactivated, either by heat or by storage. C1INH only partially inhibits this ACA in serum or in solutions containing isolated C1 in high concentrations. These observations indicate that heat-labile ACA in whole or fractionated sera is due to the presence of C1 and C1s and that this activity cannot be taken as evidence for the presence of immune complexes.

Agammaglobulinemia

The effect of heat inactivation of serum on aggregation of immunoglobulins.

Heating serum at 56 degrees is used to inactivate complement in several immunological assays. During heating, both heat-labile and heat-stable anticomplementary activity (ACA) develop. While heat-labile ACA can be completely inactivated, heat-stable ACA increases progressively with continued heating. Heat-stable ACA develops in deaggregated IgG and in normal, but not in hypogammaglobulinaemic, human and porcine serum heated at 56 degrees suggesting that this ACA is due to formation of immunoglobulin aggregates. These aggregates would produce false-positive tests for immune complexes and could inhibit a variety of cell-mediated reactions in assays which incorporate heat-inactivated serum. Other temperatures were tested to determine whether endogenous haemolytic activity could be destroyed without forming immunoglobulin aggregates. At 53 degrees both endogenous haemolytic activity and heat-labile ACA were inactivated and formation of heat-stable ACA in normal serum was minimal. ACA, however, could be induced in deaggregated IgG at 53 degrees. Moreover, the degree of heat-induced aggregation of IgG in vitro at either temperature was directly proportional to IgG concentrations and inversely related to albumin concentrations. Thus, pathological sera with these protein alterations might form more aggregates during heating than normal sera. These data suggest the following: (1) heat inactivation of complement at 53 degrees for 90 min is preferable to the traditional 56 degrees; (2) in any assay where immunoglobulin aggregates might interfere, normal serum may be an inadequate control and correlations will need to be made between serum IgG and albumin concentrations and the results obtained in these assays.

Adult

Lymphocytotoxic antibodies in patients with inflammatory bowel disease and their spouses--evidence for a transmissible agent.

Serum lymphocytotoxic antibodies (LCA) were detected in twenty-seven out of fifty-three (51%) patients with inflammatory bowel disease (IBD) and in twenty-three out of their fifty-three (43%) unaffected spouses. The prevalence of LCA in both groups was significantly increased (P less than 0.001) compared to that in age- and sex-matched controls (11%) or in control spouses (6%). Concordant expression of LCA occurred in sixteen out of the fifty-three (30%) patient-spouse pairs compared to only one out of the fifty-three (2%) control-spouse pairs (P less than 0.001). In contrast to the LCA results, heterophile antibody titres were similarly distributed in all four study groups. It is suggested that LCA may represent markers of infectious agents in IBD and that their occurrence in unaffected close contacts of patients may indicate transmission of such agents to these subjects.

Antibodies

Immunoglobulins within human small-intestinal Paneth cells.

Human duodenal, jejunal, and ileal samples obtained at necropsy and by peroral and surgical biopsy, were studied by light microscopy using the unlabelled antibody enzyme method for imunocytochemical staining of lysozyme and immunoglobulins. Paneth cells contained IgA and IgG, but not IgD IgE, or IgM. Staining intensity indicated that IgA and IgG were present in amounts greater than in other epithelial cells. There was pronounced variation in the immunoglobulin content of Paneth cells. Rat Paneth cell containing IgA and lysozyme and are capable of the phagocytosis and degradation of microorganisms. These observations suggest that human Paneth cells may have similar functional capabilities.

Duodenum

Immunocytochemical identification and localization of immunoglobulin A within Paneth cells of the rat small intestine.

Light microscopic immunocytochemistry was used to identify Paneth cells by their lysozyme content and to detect immunoglobulin antigens within a subpopulation of these cells. Antisera specific for the heavy chains of rat or human immunoglobulin A and for immunoglobulin light chain antigens produced specific staining of rat Paneth cells. The distribution of immunoglobulin staining varied between adjacent Paneth cells in the same crypt and between Paneth cells in adjacent crypts, as well as between Paneth cell populations of different animals. No staining of rat Paneth cells was detected using antisera specific for the heavy chain of immunoglobulins G or M. The specific staining of Paneth cells for immunoglobulin A and light chain antigens was blocked by absorption of each antiserum with its respective purified antigen. Absorption of these antisera with purified rat lysozyme did not affect staining and thereby eliminated the possibility of immunologic cross-reactivity between lysozyme and immunoglobulin antigens. It is suggested, in light of current concepts of Paneth cell function, that the immunoglobulin staining of Paneth cells may reflect their ability to phagocytize immunoglobulin A-coated microorganisms or immune complexes containing immunoglobulin A.

Animals

Lymphocytotoxic antibody in inflammatory bowel disease. A family study.

The prevalence of lymphocytotoxic antibody in inflammatory bowel disease is 40 per cent. Twenty-seven of 90 relatives of 23 probands with the disease (30 per cent) demonstrated lymphocytotoxic antibody, as contrasted with only three of 69 control family members (4 per cent) (P less than 0.0001). Decreased lymphocytotoxicity against lymphocytes from patients with inflammatory bowel disease as compared to normal donor lymphocytes previously demonstrated in the serum of probands was also observed in the serums from family members of the probands. Nineteen of the 48 household contacts of probands (40 per cent) were positive for antibody, whereas eight of 42 nonhousehold contacts (19 per cent) demonstrated it (P less than 0.05). Eight of 16 spouses (50 per cent) of probands showed antibody. The increased prevalence of lymphocytotoxic antibody in family members of probands and its occurrence mainly in household contacts (consanguineous and non-consanguineous) may indicate the exposure of probands and their family members to a common environmental agent.

Adult