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Biomedical subjects

H M Wilson

Publications and source records attributed to H M Wilson.

At least 19 recordsLinked to original sources

Lead shot poisoning of a pacific loon in Alaska.

Lead poisoning, associated with ingestion of spent lead shot, was diagnosed in an adult female Pacific loon (Gavia pacifica) observed with partial paralysis on 13 June 2002 and found dead on 16 June 2002 on Kigigak Island, Yukon Delta National Wildlife Refuge, western Alaska, USA. A necropsy revealed three pellets of ingested lead shot in the loon's gizzard and a lead liver concentration of 31 ppm wet weight, which was consistent with metallic lead poisoning. This is the first report of lead poisoning in a Pacific loon and is the only account of lead toxicosis associated with ingestion of lead shot in any loon species breeding in Alaska.

Alaska↗

Targeting genetically modified macrophages to the glomerulus.

Macrophages are key players in the development of the majority of renal diseases and are therefore ideal cellular vectors for site specifically targeting gene therapy to inflamed glomeruli. Macrophages can be genetically modified using viral vectors ex vivo then re-introduced into the body where they can home to the diseased site. This review summarises current experience in efficiently targeting modified macrophages to the inflamed glomerulus focussing on the factors controlling macrophage localisation, macrophage gene transfer methods, in vivo gene delivery and results of recent investigations using modified macrophage gene therapy for glomerular disease.

Adenoviridae↗

Plasminogen activator inhibitor-1 and haemostasis in obesity.

The connection between obesity and disordered haemostasis is well established, but incompletely understood. There is a strong link between inhibition of fibrinolysis and obesity, and elevation of the plasma inhibitor, plasminogen activator inhibitor-1 (PAI-1), is regarded as a central factor. Here we explore the increased risk of atherothrombotic disorders in obese subjects, and the evidence for metabolic and genetic causes. There is a clear relationship between plasma PAI-1 and obesity, and adipose tissue synthesises PAI-1, as has been shown in mouse and rat models, and more recently in human material. This tissue also produces several effector molecules that can up regulate PAI-1. These molecules include transforming growth factor beta, tumour necrosis factor alpha, angiotensin II and interleukin 6, all of which up regulate PAI-1 in various cell types. The issue of whether adipose tissue directly contributes to plasma PAI-1, or whether it primarily contributes indirectly, its products stimulating other cells to produce PAI-1 that feeds into the plasma pool, is not yet resolved. Finally, we briefly examine other proteins of haemostasis that are products of adipose tissue. Further studies are needed to define the regulation of these proteins, in adipose tissue itself and in other cells influenced by its products, in order to extend recent insights into the links between obesity and haemostasis.

Adipose Tissue↗

Transforming growth factor-beta isoforms and glomerular injury in nephrotoxic nephritis.

BACKGROUND: Transforming growth factor-beta has three main isoforms (TGF-beta1, TGF-beta2, and TGF-beta3) that have distinct but overlapping functions in immunity, inflammation, and tissue repair. TGF-beta1 has been implicated in progressive renal scarring, but the roles of TGF-beta2 and TGF-beta3 are less clear. The purpose of this study was to characterize the expression of all three isoforms in nephrotoxic nephritis (NTN) in rats and to determine the effect of TGF-beta3 infusions on injury because of its reported combined anti-inflammatory and antifibrotic effects. METHODS: TGF-beta1, TGF-beta2, and TGF-beta3 expression was analyzed by immunohistochemistry and RNase protection assays. TGF-beta3 was administered by osmotic minipumps at 2 microg/day, a dose shown to alter glomerular macrophage function in vivo. Injury was assessed morphologically and functionally. RESULTS: The three TGF-beta isoforms showed a different distribution in normal rats and after the induction of nephritis. TGF-beta1 was only detected in glomeruli of the most severely nephritic rats. TGF-beta2 was found in glomerular neutrophils, whereas damaged podocytes expressed TGF-beta3. Infusions of TGF-beta3 did not reduce proteinuria over seven days after the induction of nephritis. They did, however, have a profound effect on glomerular macrophage number (7.76 +/- 4.1 in treated rats vs. 14.4 +/- 4.7 in controls, P < 0.02). The numbers of class II-positive macrophages were similar in the two groups, whereas class II-negative macrophages infiltrating glomeruli were significantly decreased (4.06 +/- 3.1 vs. 9.1 +/- 4.4, P < 0.02). TGF-beta did not influence the amount of glomerular matrix. CONCLUSIONS: TGF-beta isoforms have different expressions and presumptively different roles in NTN. The infusion of pharmacological doses of TGF-beta3 has profound effects on macrophages infiltrating nephritic glomeruli and reveals marked heterogeneity of infiltrating macrophages.

Animals↗

Insulin-like growth factor (IGF)-binding protein-related protein-1: an autocrine/paracrine factor that inhibits skeletal myoblast differentiation but permits proliferation in response to IGF.

Skeletal myogenic cells respond to the insulin-like growth factors (IGF-I and IGF-II) by differentiating or proliferating, which are mutually exclusive pathways. What determines which of these responses to IGF skeletal myoblast undergo is unclear. IGF-binding protein-related protein 1 (IGFBP-rP1) is a secreted protein with close homology to the IGF-binding proteins (IGFBPs) in the N-terminal region. IGFBP-rP1, previously called mac25 and IGFBP-7, is highly expressed in C2 skeletal myoblasts during the proliferative phase, but is down-regulated during myoblast differentiation. To determine the role of IGFBP-rP1 in myogenesis, IGFBP-rP1 was overexpressed in C2 myoblasts using a retroviral vector. Western blots indicated that the resulting C2-rP1 myoblasts secreted approximately 27-fold higher levels of IGFBP-rP1 than control C2-LX myoblasts that were transduced with a control vector (LXSN). Compared with C2-LX myoblasts, the differentiation responses of C2-rP1 myoblasts to IGF-I, IGF-II, insulin, and des(1-3)IGF-I were significantly reduced (P < 0.05). However, proliferation responses of C2-rP1 and C2-LX myoblasts to these same factors were not significantly different. Exposure of control C2-LX myoblasts to factors secreted by C2-rP1 myoblasts using a transwell coculture system reduced C2-LX myoblast differentiation significantly (P < 0.05). Experiments with the mitogen-activated protein kinase (MAPK) kinase inhibitor PD098059 suggested that IGFBP-rP1 inhibits a MAPK-dependent differentiation pathway. In confirmation of this idea, levels of phosphorylated extracellular signal-regulated kinase-2 (a MAPK) were reduced in C2-rP1 myoblasts compared with those in C2-LX myoblasts. These findings indicate that IGFBP-rP1 may function as an autocrine/paracrine factor that specifies the proliferative response to the IGFs in myogenesis.

Autocrine Communication↗

Enantioselective sulfation of beta 2-receptor agonists by the human intestine and the recombinant M-form phenolsulfotransferase.

The beta 2-receptor agonist class of drugs is metabolized in humans almost exclusively by sulfate conjugation. The objective of this investigation was to determine the influence of chemical structure on the stereoselectivity of the sulfoconjugation of these chiral drugs. The pure enantiomers of six beta 2-agonists, including those clinically most widely used, were all effectively sulfated both by the cytosol of the human intestine and the recombinant human M-form phenolsulfotransferase (PST). Whereas the apparent Km values (Km,app) for the sulfation of the individual drug enantiomers by the intestinal cytosol varied widely, ranging from 4.8 microM for (S)-isoproterenol to 889 microM for (S)-albuterol, these Km,app values were highly correlated with those obtained with M-PST (correlation coefficient 0.994). In contrast, the M-PST Vmax,app values were similar for all drug enantiomers, ranging from 276 to 914 pmol min-1 mg-1 protein, implying that substrate binding to M-PST by far is the main determinant of the sulfation activity. For isoproterenol, the Km,app for M-PST was 6.1 times higher for the active (R)- than for the inactive (S)-enantiomer. For other beta 2-agonists, the stereoselectivity decreased towards unity as the Km,app increased. However, for albuterol, containing a hydroxymethyl substituent at the aromatic ring, the stereoselectivity was dramatically reversed, with 10 times higher Km,app for the inactive (S)- than for the active (R)-enantiomer.

Adrenergic beta-2 Receptor Agonists↗

Alterations in plasma lipids, lipoproteins and high density lipoprotein subfractions in peripheral arterial disease.

The concentrations of the major lipoprotein classes and of high density lipoprotein (HDL) subfractions in 63 male patients with arteriosclerosis of the lower limbs (claudication) were determined and compared with values from 63 healthy controls. The patients with peripheral arterial disease (PAD) had reduced levels of total HDL-cholesterol and HDL2b of large particle size, increased levels of small HDL3c particles and a high ratio of total plasma-cholesterol to HDL-cholesterol (coronary risk factor). The PAD patients, however, had lower levels of low density lipoprotein (LDL)-cholesterol but higher concentrations of very low density lipoprotein (VLDL)-cholesterol and plasma triglyceride than healthy subjects. This study therefore suggests that in PAD, the protective effect of HDL may be more important than the atherogenic effect of LDL. It further suggests that while HDL-cholesterol HDL2b and the ratio of total plasma-cholesterol to HDL-cholesterol may provide valid indices for identifying individuals at risk of PAD, other factors, such as LDL and total cholesterol, may not provide such an appropriate risk indicator.

Arteriosclerosis Obliterans↗

Biochemical and molecular characterization of the insecticidal fragment of CryV.

Two C-terminal deletion constructs were made to study the effect of such deletions on the biological activity of the CryV protein of Bacillus thuringiensis subsp. kurstaki. The results of feeding on neonatal larvae of Ostrinia nubilalis (European corn borer [ECB]) indicated that the 50% lethal dose of the full-length CryV protein was 3.34 micrograms/g of diet (95% fiducial limits, 2.53 to 4.32 micrograms/g of diet). Removal of 71 amino acids (aa) from the C terminus had little effect on toxicity, whereas deletion of 184 aa abolished the insecticidal activity of the CryV protein completely. Truncations of the full-length CryV protein were also generated with trypsin and the midgut protease of ECB. The proteolytically treated products were characterized by determining their N-terminal amino acid sequences. The CryV protein was found to be cleaved by both proteases through a two-step process. Initially an intermediary form was generated which contained aa 45 of full-length CryV as its N-terminal end. The C-terminal end of this peptide was not experimentally determined. However, analysis of the deduced amino acid sequence of CryV indicated that the C-terminal end of the intermediary form is likely either aa 655 or 659. Further N-terminal processing of the intermediary form resulted in a protease-resistant core form. The core included aa 156 to aa 655 or 659. While the intermediary form retained 100% of the ECB larval toxicity, the core form exhibited only approximately 22% of the toxicity of the full-length protein.

Animals↗

Effect of angiotensin II on plasminogen activator inhibitor-1 production by cultured human mesangial cells.

Angiotensin II is a vasoactive peptide that has been widely implicated in the pathogenesis of glomerular disease. Some of its effects are thought to be independent of changes in blood pressure. Plasmin is a key regulator of fibrinolysis and extracellular matrix turnover. The conversion of plasminogen to plasmin by plasminogen activators (PAs) is controlled by their specific inhibitor, PAI-1. In this study we report the effects of angiotensin II on the production of PA inhibitor-1 (PAI-1) and tissue-type PA (t-PA) by glomerular mesangial cells in culture. Angiotensin II significantly increased the production of PAI-1 in the supernatant of mesangial cells (p < 0.05) in a dose-dependent manner, the maximum stimulation occurring at a concentration of 10(-5) M. The effect was not mediated by transforming growth factor-beta (TGF-beta), which is known to be induced by angiotensin II; TGF-beta itself can increase PAI-1 expression. Angiotensin II did not alter t-PA production or incorporation of matrix fibronectin but did increase cellular proliferation and 3H-thymidine uptake. The increase in PAI-1 by angiotensin II may contribute to the persistence of fibrin deposits and extracellular matrix accumulation, providing another mechanism whereby angiotensin II contributes to glomerular dysfunction.

Angiotensin II↗

Creation of drug-specific herpes simplex virus type 1 thymidine kinase mutants for gene therapy.

Herpes simplex virus type 1 (HSV-1) thymidine kinase is currently used as a suicide agent in the gene therapy of cancer. This therapy is based on the preferential phosphorylation of nucleoside analogs by tumor cells expressing HSV-1 thymidine kinase. However, the use of HSV-1 thymidine kinase is limited in part by the toxicity of the nucleoside analogs. We have used random sequence mutagenesis to create new HSV-1 thymidine kinases that, compared with wild-type thymidine kinase, render cells much more sensitive to specific nucleoside analogs. A segment of the HSV-1 thymidine kinase gene at the putative nucleoside binding site was substituted with random nucleotide sequences. Mutant enzymes that demonstrate preferential phosphorylation of the nucleoside analogs, ganciclovir or acyclovir, were selected from more than one million Escherichia coli transformants. Among the 426 active mutants we have isolated, 26 demonstrated enhanced sensitivity to ganciclovir, and 54 were more sensitive to acyclovir. Only 6 mutant enzymes displayed sensitivity to both ganciclovir and acyclovir when expressed in E. coli. Analysis of 3 drug-sensitive enzymes demonstrated that 1 produced stable mammalian cell transfectants that are 43-fold more sensitive to ganciclovir and 20-fold more sensitive to acyclovir.

Acyclovir↗

Epidermal growth factor (EGF) increases the in vitro invasion, motility and adhesion interactions of the primary renal carcinoma cell line, A704.

Metastasis is a multistep process that involves alterations in a tumour cell's invasion, motility and adhesive capabilities. This study examined the effect of EGF on the in vitro invasion, motility and adhesion of the primary renal adenocarcinoma cell line, A704. Stimulation of the tumour cells by EGF (40 ng/ml) for a period of 24 h increased the in vitro invasion (P = 0.040) and motility (P = 0.039). Cell adhesion was examined on fibronectin, laminin, collagen IV and a 1:1:1 mix of the three extracellular matrix components. After EGF (40 ng/ml) stimulation, adhesion was significantly decreased on fibronectin (P = 0.022) and collagen type IV (P = 0.026), but increased on the 1:1:1 mix of extracellular matrix components (P = 0.022). The 92 kDa matrix metalloproteinase (MMP-9) present in the cell-conditioned medium was also increased after a 24 h stimulation with EGF (40 ng/ml) when measured. Hence, EGF can modulate the in vitro invasion, motility, adhesiveness and matrix metalloproteinase production in the A704 cell line, and subsequently may have a role in the metastatic potential of some renal carcinomas.

Adenocarcinoma↗

Interleukin-1 beta up-regulates the plasminogen activator/plasmin system in human mesangial cells.

The plasminogen activators (PA), which are regulated by their specific inhibitor, PAI-1, convert the zymogen plasminogen to plasmin, a protease involved in fibrinolysis and extracellular matrix turnover. Interleukin 1 beta (IL-1) is a key cytokine released from infiltrating monocytes/macrophages during the initial stages of glomerular injury. We investigated the effects of IL-1 on the production of tissue-type plasminogen activator (t-PA), urokinase (u-PA) and PAI-1 by glomerular cells. IL-1 significantly increased the synthesis of t-PA by mesangial cells and glomerular epithelial cells (P < 0.005 for both cell types), while u-PA production was unaltered. PAI-1 in mesangial cell supernatants was significantly lower when cultured in the presence of IL-1 (p < 0.008), and the synthesis decreased in a time and dose dependent manner. The effects of IL-1 were eliminated by anti-IL-1 neutralizing antibodies. The PAI-1 sequestered in the extracellular matrix of mesangial cells was also decreased. No significant change in PAI-1 synthesis by epithelial cells was observed with exogenous IL-1. Northern blot analysis paralleled the protein results, demonstrating an increase in t-PA and a decrease in PAI-1 mRNA of mesangial cells after 6 and 24 hours stimulation with 10 U/ml IL-1. These studies suggest a role for IL-1 in regulating localized proteolysis by mesangial cells during acute inflammation.

Antigens↗

Stereoselective sulphate conjugation of salbutamol by human lung and bronchial epithelial cells.

1. The metabolism of (+)-, (-)- and (+/-)-salbutamol by sulphoconjugation was determined in vitro using human lung cytosol and bronchial epithelial BEAS-2B cell homogenate. 2. For the lungs the intrinsic clearance (Vmax/Km) value for the pharmacologically active (-)-salbutamol (0.49 +/- 0.32 ml min-1 g-1 protein) exceeded that of (+)-salbutamol (0.046 +/- 0.028 ml min-1 g-1 protein) by 11-fold. This was mainly due to a difference in Km value, which was 16 times higher for (+)-salbutamol (1300 +/- 170 microM) than for (-)-salbutamol (83 +/- 12 microM). 3. The stereoselectivity of sulphoconjugation of salbutamol was very similar in the BEAS-2B cells, although the absolute activity was considerably lower. 4. The enzyme catalyzing this reaction both in the lungs and in the BEAS-2B cells was the monoamine (M) form phenolsulphotransferase. 5. These observations emphasize that the smooth muscle of the bronchi most likely are exposed to considerably higher concentrations of the potentially toxic (+)-enantiomer than of the bronchodilating (-)-enantiomer during therapy with (+/-)-salbutamol.

Albuterol↗

Structural basis of the phospholipid acyltransferase enzyme substrate specificity: a computer modeling study of the phospholipid acceptor molecule.

The activity of the 1-acyl-sn-glycero-3-phosphocholine acyltransferase enzyme (E.C. 2.3.1.??) was measured with three radically different acceptor substrates: 1-palmitoyl-sn-glycero-3-phosphocholine (P-sn-G3PC), 1-palmitoyl-sn-glycero-2-phosphocholine (P-sn-G2PC), and 1-hexadecyl-sn-glycero-3-phosphocholine (He-sn-G3PC). It was found that the enzyme had similar activity with P-sn-G3PC, the natural acceptor substrate, and with P-sn-G2PC. The enzyme showed no detectable activity toward He-sn-G3PC. These results are much different than would be expected from simple examination of the structures. Computer-assisted molecular modeling was done to study the geometrical configurations and to focus upon the similarities and differences of the three substrate acceptor molecules. Three bond distances were selected as important for enzyme recognition: the distance between the oxygen of the acceptor hydroxyl group and 1) the phosphorus; 2) the nitrogen; and 3) the oxygen bridge to the hydrocarbon chain. There were striking similarities for the bond distances of two of the three acceptor substrates, P-sn-G3PC and P-sn-G2PC. These were the two molecules that were shown to have activity with the enzyme. The bond distances found for the enzymically inactive acceptor substrate, He-sn-G3PC, differed significantly from P-sn-G3PC and P-sn-G2PC. Therefore, this latter molecule probably does not fit into the active site of the enzyme. The modeling data are also consistent with the experimental observation that He-sn-G3PC is not an inhibitor.

Acyltransferases↗

Urokinase-plasminogen activator is synthesized in vitro by human glomerular epithelial cells but not by mesangial cells.

The plasmin protease system may have a role in maintaining the patency of renal tubules and in regulating matrix degradation within the glomerulus. Urokinase-plasminogen activator (u-PA) is a serine protease which plays an important part in the regulation of plasmin production from plasminogen. The synthesis of u-PA by cultured human glomerular cells, in particular mesangial cells, is controversial. The present study describes the presence of u-PA in supernatants of pure cultures of human glomerular epithelial cells (EC), cocultures of EC and human mesangial cells (MC) and whole glomeruli, but not within pure cultures of MC. To confirm the synthesis of u-PA mRNA in glomerular EC, cocultures of EC and MC were tested by in situ hybridization with u-PA antisense and sense digoxigenin-labeled RNA probes. Cytoplasmic localization of u-PA mRNA was demonstrated only in the EC, thus confirming the absence of synthesis of u-PA by human mesangial cells in culture.

Electrophoresis, Polyacrylamide Gel↗

Alterations in the concentration of an apolipoprotein E-containing subfraction of plasma high density lipoprotein in coronary heart disease.

The concentrations of high density lipoprotein (HDL) subfractions in 100 healthy male subjects were compared with 100 newly presenting patients with myocardial infarction (MI) within 12 h of the onset of chest pain. A subfraction of HDL enriched in apolipoprotein E (apo E), separated by heparin-Sepharose affinity chromatography, was present in lower concentrations (P < 0.001) in the plasma of the coronary patients than in the control subjects. This finding was confirmed by a lower content (P < 0.02) of apo E, measured by ELISA, in the total HDL fraction isolated from the coronary patients. Gradient gel electrophoresis of the total HDL demonstrated that the coronary patients had a significantly decreased concentration of the large HDL particles, HDL2b, of mean diameter 10.57 nm and a higher concentration of the smaller-sized HDL3, especially HDL3c, of mean diameter 7.62 nm. The coronary patients had a lower concentration of HDL cholesterol than the control subjects, attributable to the HDL2 fraction, with no difference in HDL2a between the two groups. There was no difference in the concentration of plasma cholesterol or triglyceride. The distribution of apo E phenotypes was similar in the two groups. HDL2b produced the highest discriminant power between the two groups, followed by apo E-rich HDL, HDL2 and HDL3c Plasma cholesterol correlated strongly with apo E-rich HDL for control subjects but not for MI survivors. This study demonstrates that the inverse relationship between HDL cholesterol and coronary risk shown in epidemiological studies is attributable to the large, apo E-containing HDL subspecies which under some circumstances are implicated in cholesterol removal by reverse cholesterol transport. This study also suggests that the concentration of the large, apo E-containing HDL may provide a sensitive predictor for subjects at risk of developing coronary heart disease.

Adult↗

Induction of nitric oxide synthase in human mesangial cells.

Synthesis of nitric oxide (NO) has been implicated in the development of glomerulonephritis in animal models of the disease. Rat mesangial cells can be stimulated to express an inducible form of NO synthase (NOS) in vitro. Little is known however, about the pathway of induction in human mesangial cells. Here, we report that human mesangial cells require multiple cytokines, unlike rat mesangial cells which require only single stimulants, to produce NO. Our experiments suggest that both interleukin-1 beta (IL-1 beta) and interferon gamma (IFN-gamma) must be present together to elicit a response whilst tumour necrosis factor alpha (TNF-alpha) augments this. The production of nitrite, a stable end product of NO metabolism, was inhibited by NG-monomethyl-L-arginine (L-NMMA), L-nitro-arginine-methyl-ester (L-NAME), cycloheximide and the glucocorticoid dexamethasone.

Amino Acid Oxidoreductases↗