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Biomedical subjects

B Gold

Publications and source records attributed to B Gold.

At least 55 records · Page 3Linked to original sources

The relationship between N-nitrosodimethylamine metabolism and DNA methylation in isolated rat hepatocytes.

The metabolism of N-nitrosodimethylamine (NDMA) and its methylation of DNA were simultaneously determined in hepatocytes isolated from untreated and saline- and pyrazole-treated male Sprague-Dawley rats. Metabolism of NDMA was directly measured by monitoring its disappearance via gas chromatography coupled with a sensitive and specific detector for N-nitrosamines. DNA methylation was determined in the same cells employed in the metabolism studies using a monoclonal antibody-based competitive ELISA procedure specific for O6-methyldeoxyguanosine (6-Me-dG). The apparent Km and Vmax for NDMA metabolism are 61 microM and 56 pmol/min/10(6) cells respectively for hepatocytes isolated from untreated rats. It was found that the addition of pyrazole to the in vitro hepatocyte incubations caused a dose-dependent inhibition of both metabolism and DNA methylation. However, when DNA methylation is expressed as a function of NDMA metabolized, there is no significant difference between hepatocyte incubations without or with pyrazole, with an average value of 79 nmol 6-Me-dG/mol dG/nmol NDMA metabolized. Based on the pyrazole inhibition studies, cytochrome P450IIE1 is responsible for at least 60% of the DNA methylation in rat hepatocytes. In pyrazole-pretreated rats there was an inconsistent increase in NDMA metabolism, but when metabolism was elevated so was DNA methylation. In contrast, microsomes isolated from pyrazole-pretreated rats consistently showed elevated metabolism of NDMA. Based on the simultaneous determination of adduct levels and metabolism, there is approximately 1 6-Me-dG adduct formed/133 000 NDMA molecules metabolized in the uninduced hepatocytes.

Animals↗

Adherence to lipids and intestinal mucin by a recently recognized human pathogen, Campylobacter upsaliensis.

Campylobacter upsaliensis is a recently recognized human enteric pathogen associated with enteritis, colitis, bacteremia, and sepsis. Very little is known about the mechanisms of pathogenesis of this organism. The goals of this study were to determine whether C. upsaliensis binds to epithelial cells and whether there are specific lipid molecules that might serve as cell membrane receptors. In addition, we also explored C. upsaliensis binding to purified human small-intestinal mucin, since the mucus gel overlying the epithelium provides an initial contact surface for the bacteria and must be penetrated for the organisms to reach their cell receptors. Binding of C. upsaliensis to model epithelial cells was shown by microscopy adhesion assays, and binding to lipids was detected by thin-layer chromatography-overlay assays. Bacteria bound to phosphatidylethanolamine (PE), gangliotetraosylceramide (Gg4), and, more weakly, to phosphatidylserine (PS). There was no binding to ceramide, cholesterol, phosphatidylcholine, and globosides. Using receptor-based microtiter well immunoassays, we observed binding to be equal, specific, and saturable for PE and Gg 4 but low and nonspecific for PS. At least five bacterial surface proteins (50 to 90 kDa) capable of PE binding were identified by a lipid-silica affinity column technique. In slot blot overlay assays, biotin-labeled C. upsaliensis also bound in a concentration-dependent fashion to purified human small-intestinal mucin, implying that these microorganisms also express an adhesin(s) recognizing a specific mucin epitope(s). We speculate that binding to mucins may influence access of the bacteria to cell membrane receptors and thereby influence host resistance to infection.

Adhesins, Bacterial↗

Screening for colonic neoplastic lesions using flexible sigmoidoscopy in employees of a nuclear research center and members of collective settlements.

It has been shown that screening of average risk individuals reduces the incidence of colorectal cancer. The most effective method for screening has yet to be determined in terms of cost-effectiveness, but approximately two-thirds of colorectal neoplastic lesions are within the reach of the flexible sigmoidoscope. It has been estimated that a single such examination at the end of the sixth decade may reduce the colorectal cancer incidence by 60%. As part of a screening program for colon cancer, short colonoscopy was performed on 399 employees of a nuclear research center and 228 members of a collective settlement (kibbutz). The examinations were carried out on individuals aged > or = 40 years by two experienced endoscopists. The splenic flexure or transverse colon was reached in 95% of the procedures. Neoplastic lesions were found in 24 (6.0%) and 8 (3.5%) screenees (not significant) in the Nuclear Research Center and kibbutz populations respectively. Polyps <1 cm in diameter were significantly more common in the Nuclear Research Center population but larger polyps and cancers were not. In 47 Nuclear Research Center screenees with a family history positive in a first-degree relative, findings increased to 14.9% (P = 0.016). A family history of malignancy was found in 33.8% of kibbutz members but in only 11.8% of Nuclear Research Center employees. There was no evidence to suggest that working at the Nuclear Research Center increased the risk of colonic neoplasms. We conclude that flexible sigmoidoscopy is a valuable screening tool, especially for individuals with a first-degree relative with cancer. The yield of neoplastic lesions in the Israeli Nuclear Research Center and kibbutz populations is similar to that of the general population in the western world. Compliance rates are high in well-defined populations.

Adult↗

Short tandem repeat polymorphism linkage studies in a new family with X-linked mental retardation (MRX20).

A family with X-linked recessive mental retardation (XLMR) without other obvious manifestations (MRX20) was studied with 14 short tandem repeat polymorphism (STRP) markers. Two-point lod scores above 3 were obtained with DXS1003, DXYS1, DXS3, and DXS458. A multipoint lod score of 4.25 was obtained with peak at DXS1003. Recombination events identify a 55.6 cM interval between DXS1068 and DXS454, while a one unit support interval identifies 40 cM between MAOA and DXS458.

Genetic Linkage↗

The use of 2-hydroperoxytetrahydrofuran as a reagent to sequence cytosine and to probe non-Watson-Crick DNA structures.

2-Hydroperoxytetrahydrofuran (THF-OOH) can be employed to sequence cytosine (C) and to probe for non-canonical DNA structures involving C. Using 32P-labeled oligomers and a DNA restriction fragment, it is demonstrated that THF-OOH has a strong preference for Cs in single-stranded (s-s) DNA regions, and in bulges, loops and mismatches. The reactivity of C is diminished below pH 6.0, but is not affected by substitution of 5-methylcytosine. To demonstrate the utility of the reagent, it is directly compared to methoxylamine and chloroacetaldehyde, two other reagents commonly used to chemically probe C residues in non-Watson-Crick DNA structures.

5-Methylcytosine↗

Acute hemodynamic effects of nisoldipine in young hypertensive patients.

The hemodynamic effects of oral nisoldiopine in 12 hypertensive patients aged 35-55 years were determined using the impedance cardiography method. Hemodynamic measurements were performed at hourly intervals before and following ingestion of the medication. Nisoldipine significantly decreased systolic and diastolic blood pressure, with a slight increase in heart rate. Stroke volume did not change significantly following the medication. Total peripheral resistance decreased gradually reaching its lowest values 2 h after ingestion of nisoldipine. We conclude that nisoldipine is a potent oral antihypertensive agent that induces peripheral vasodilatation without decrease in cardiac output.

Adult↗

Mimosine inhibits viral DNA synthesis through ribonucleotide reductase.

The plant amino acid mimosine (beta-N(3-hydroxy-4-pyridone)-alpha-amino propionic acid) is toxic for animals and reversibly inhibits the replication of animal cells in vitro. We have found that mimosine inhibits the DNA synthesis of a variety of DNA viruses, including adenovirus, parvovirus, and papovavirus and the replication of vaccinia and herpes simplex virus 1 in cells in culture. However, mimosine did not inhibit the replication of SV40 DNA in a cell-free system. Because mimosine inhibition of viral DNA synthesis was reversible by iron in the medium, we hypothesized that mimosine was inhibiting ribonucleotide reductase through its capacity to chelate the iron required in the R2 subunit of this enzyme. In support of this hypothesis, we found that mimosine-treated cells had a reduction in the pools of dGTP and dATP and that mimosine inhibited ribonucleotide reductase in vitro in an iron-dependent manner.

DNA Primase↗

Once daily intranasal fluticasone propionate is effective for perennial allergic rhinitis.

The efficacy of intranasal fluticasone propionate 200 micrograms once daily or 100 micrograms twice daily in treating perennial allergic rhinitis was evaluated in a randomized, double-blind, placebo-controlled study of 24 weeks' duration in 365 patients. Clinician-rated and patient-rated total nasal symptom severity scores were improved within 1 week of treatment with either regimen of fluticasone propionate and improvement was maintained over the 24-week treatment period. Clinician-rated overall evaluation indicated a significantly better response in the two fluticasone propionate groups compared with the placebo group. All efficacy evaluations indicated no difference in response between the fluticasone propionate 200 micrograms once-daily and 100 micrograms twice-daily groups. Patients in both fluticasone propionate groups had significantly less nasal obstruction upon awakening than the placebo group at all assessment periods. Fewer patients in either fluticasone propionate group used antihistamine rescue medication compared with the placebo group. The percentage of patients with nasal eosinophils and basophils at the end of the 24-week treatment period was significantly lower in both fluticasone propionate groups compared with the placebo group. Safety evaluations indicated that intranasal fluticasone propionate was as safe as placebo when given as 200 micrograms once daily or 100 micrograms twice daily. The incidence of drug-related adverse events was similar among the fluticasone propionate and placebo groups except for the incidence of epistaxis and blood in nasal mucus which was somewhat higher in the fluticasone propionate twice-daily group. There was no changes in the opthalmic examinations to suggest corticosteriod-induced posterior subcapsular cataract formation.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Intranasal↗

DNA methylation by N-methyl-N-nitrosourea: methylation pattern changes in single- and double-stranded DNA, and in DNA with mismatched or bulged guanines.

The detection of abnormal DNA base pairing arrangements and conformations is chemically probed in synthetic 32P-end-labeled deoxyribonucleotide oligomers using N-methyl-N-nitrosourea (MNU) and 2,12,-dimethyl-3,7,11,17-tetraazabicyclo-[11.3.1]heptadeca-1 -[17],2,11,13,15 pentaene-Ni (II) (Ni-complex) with KHSO5. The DNA targets studied are single-stranded (s-s) DNA, double-stranded (d-s) DNA, d-s DNA with G-G, G-A and G-T mismatches, d-s DNA with a single bulged G and d-s DNA with two bulged G's. The effect of the non-Watson--Crick structures on the formation of N7-methylguanine (N7-MeG) by MNU and the oxidation of G by Ni-complex is reported along with the Tm's and circular dichroism spectra of the different duplex oligomers. The results for MNU and Ni-complex show that the qualitative and quantitative character of the cleavage patterns at a G3 run change with the nature of the abnormal base pairing motif. Based on the DNA substrates studied, the results indicate that a combination of reagents which report electronic and steric perturbations can be a useful approach to monitor DNA mismatches and bulges.

Autoradiography↗

Groove- and sequence-selective alkylation of DNA by sulfonate esters tethered to lexitropsins.

A series of sulfonate esters that are attached to a noncationic minor-groove-binding N-methylpyrrole dipeptide (Lex) related to netrospin have been synthesized. The compounds prepared differ in two respects: (1) the length [(CH2)2 vs (CH2)8] of the tether between the DNA affinity binding portion of the molecule and the sulfonate ester and (2) whether a methyl group [MeOSO2(CH2)n-Lex] or the dipeptide including the aliphatic tether [MeSO2O(CH2)n-Lex] is covalently transferred to the DNA. The DNA-cleavage patterns of these bimolecular alkylating compounds have been mapped in 32P-end-labeled restriction fragments using neutral thermal hydrolysis and alkali treatment to expose single-strand breaks at bases with thermally labile modifications. In contrast to the alkylation of DNA by simple alkyl alkanesulfonate esters, that predominantly yield major-groove alkylation at N7-guanine, the modification of DNA by MeOSO2(CH2)n-Lex and MeSO2O(CH2)n-Lex occurs primarily at N3-adenine residues associated with previously footprinted Lex DNA affinity binding regions. The ratio for the formation of N3-methyladenine (minor groove) to N7-methylguanine (major groove) in calf thymus DNA is 1:7 for dimethyl sulfate, while only the former adenine product is observed with MeSO2O(CH2)n-Lex indicating the change in groove specificity. DNA cleavage by MeOSO2(CH2)n-Lex and MeSO2O(CH2)n-Lex is efficiently inhibited by the coaddition of distamycin; however, only the DNA damage generated by the latter is blocked by NaCl. As expected, increasing the length of the (CH2)n tether from n = 2 to n = 8 moves the alkylation site by 1-2 base pairs further from the affinity binding domain. Finally, a comparison of the methylation patterns of MeOSO2(CH2)n-Lex as a function of tether length provides an insight into Lex sequence and orientational preferences.

Alkanesulfonates↗

Therapeutics used to alleviate peptic ulcers inhibit H. pylori receptor binding in vitro.

Treatment with bismuth-containing remedies has been long associated with the alleviation of minor gastric ailments. Bismuth salts have a potent antimicrobial activity, and are part of the current standard regime used to treat Helicobacter pylori infection. H. pylori is considered to be the major etiological factor in the development of peptic ulcer disease. Earlier efficacious treatments for peptic ulcer included the oral administration of Tween detergents. We have found that these agents have an inhibitory effect on H. pylori adhesion to the lipid species phosphatidylethanolamine (PE) and gangliotetraosylceramide (Gg4) shown previously to be receptors for H. pylori binding in vitro. H. pylori binding to PE and Gg4 was inhibited after a thirty minute preincubation with different bismuth compounds: bismuth subsalicylate > bismuth subgallate > bismuth carbonate > colloidal bismuth subcitrate > tripotassium dicitrato bismuthate. No inhibitory effect on H. pylori binding was observed when bismuth salts were added directly into the binding assay. No changes in bacterial morphology and motility were observed after the thirty minute incubation. Pretreatment with Tween detergents also inhibited H. pylori receptor binding by up to 80% at concentrations as low as 0.0001%. These results suggest that inhibition of H. pylori/host cell adhesion might play a role in efficacious treatment for this infection.

Anti-Ulcer Agents↗

DNA crosslinking, sister chromatid exchange and cytotoxicity of N-2-chloroethylnitrosoureas tethered to minor groove binding peptides.

Chloroethylnitrosoureas (CENU) are clinically important chemotherapeutic agents whose mechanism of action involves the formation of interstrand DNA crosslinks via an ethane bridge between N1-G and N3-C. CENU generally alkylate G at the N7- and O6-positions, with the latter lesion being the precursor to the interstrand crosslink. In previous studies, we reported the synthesis of CENU appended by a C2H4 linker to the N-terminus of DNA minor groove binding dipeptides (lex, information reading peptides) based on N-methylpyrrole-carboxamide subunits. Because of the dipeptide structure, these CENU-lex's react with DNA at adenines associated with lex equilibrium binding sites. No other CENU has been reported to yield A adducts. The biological evaluation of these CENU-lex's show that they are somewhat less cytotoxic than their simpler counterparts. In addition, in vitro studies show that the minor groove binding CENU-lex's afford a lower level of sister chromatid exchange (SCE) in 9L cells that are sensitive to CENU. There is no difference between CENU-lex in SCE induction in 9L-2 cells that are resistant to CENU. Formation of DNA interstrand crosslinks from the CENU-lex's is lower than for their nonaffinity binding analogs in low ionic strength buffer, but similar in the same buffer containing 200 mM NaCl. Salt inhibits crosslinking for all CENU, but distamycin, a competitive inhibitor of lex minor groove binding, uniquely enhances crosslinks for the CENU-lex's. These results are consistent with the novel minor groove adduction being a 'detoxification' pathway for the CENU-lex's since this lesion is formed at the expense of the cytotoxic major groove interstrand crosslink.

Alkylation↗

Comparison of Helicobacter pylori and attaching-effacing Escherichia coli adhesion to eukaryotic cells.

Adhesion of Helicobacter pylori was reported previously to be morphologically identical to "attaching and effacing" Escherichia coli. Therefore, the aim of the present study was to define the adhesion phenotype of H. pylori LC-11 to HEp-2, KATO-III, HEL, and CHO tissue culture cells. By using both staining of F-actin with fluorescein-labeled phalloidin and ultrastructural analysis, diffuse bacterial adhesion to discrete microvillus-denuded regions of the plasma membrane was observed in each of the infected cell lines. However, strain LC-11 did not induce formation of F-actin adhesion pedestals on the eukaryotic cells. H. pylori was negative by colony blot hybridization with an E. coli attaching and effacing gene probe. Elevations in inositol triphosphates followed infection of HEp-2 cells with H. pylori (405% of control values +/- 147%; P < 0.05). To correlate the observed histopathology with expression of the H. pylori phosphatidylethanolamine receptor, a thin-layer chromatography overlay-binding assay was used to identify receptors in each of the cell lines. H. pylori adhered to eukaryotic cells regardless of the presence (HEp-2, KATO-III, and CHO cells) or absence (HEL cells) of the lipid receptor as detected under the assay conditions. However, in comparison to cell lines that possess the phosphatidylethanolamine receptor, HEL cells demonstrated less quantitative H. pylori binding. These findings suggest that mechanisms distinct from E. coli enteropathogens underlie the adhesion of H. pylori to mucosal surfaces. In addition to the phosphatidylethanolamine H. pylori receptor, another host factor(s) likely mediates the attachment of H. pylori to human eukaryotic cells.

Animals↗

The effect of ellagic acid on xenobiotic metabolism by cytochrome P-450IIE1 and nitrosodimethylamine mutagenicity.

Ellagic acid (EA) is an inhibitor of the in vitro mutagenicity of N-nitrosodimethylamine (NDMA) in Salmonella typhimurium strain TA100 using pyrazole-induced rat liver 9000 x g supernatant (S-9). In order to understand this activity, the effect of EA on the metabolic hydroxylation of 4-nitrophenol, a substrate, as is NDMA, for cytochrome P-450IIE1 was studied using pyrazole induced rat S-9 and microsomal protein. It is shown that EA has an inhibitory effect on 4-nitrophenol hydroxylase with both enzyme preparations. This effect on cytochrome P-450IIE1 may be responsible, at least in part, for the inhibition of NDMA mutagenicity by EA.

Animals↗