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Electrical properties of individual cells isolated from adult rat ventricular myocardium.

1. Individual cells were isolated from adult rats ventricular myocardium by a collagenase digestion procedure. 2. Steady membrane potentials recorded with conventional intracellular glass micro-electrodes from cells in a modified Krebs solution containing 3 . 8 mM-KCl and 0 . 5 mM-CaCl2 were less negative than -40 mV in most cells (-25 . 3 +/- 10 . 9 mV, mean +/- S.D., 211 cells). 3. After addition of the potassium selective ionophore valinomycin (60 nM) to the bathing solution all recorded membrane potentials were more negative than -60 mV (-74 . 8 +/- 7 . 0 mV, sixty-three cells). 4. The internal concentration of potassium in the cells was determined as 120 . 8 +/- 1 . 7 mM (+/- S.E., n = 24) by flame emission spectrometry after centrifugation through silicone oil, using tritiated water and D-[1-14C] mannitol to estimate total and extracellular water in the pellet. 5. In the majority of cells in the standard solution the membrane potential recorded within a few msec of penetration was more negative than -70 mV (-78 . 4 +/- 9 . 7 mV, seventy-three cells). In sixty-six cells penetration initiated an action potential which overshot zero by 31 . 3 +/- 7 . 1 mV. This overshoot was abolished by reducing the external sodium to 0 . 1 of the normal value, and reduced or abolished by addition of tetrodotoxin (30 microM). 6. Modifications of the standard bathing solution which increased the number of cells with steady recorded membrane potentials more negative than -60 mV were: isosmotic substitution of sucrose for NaCl; replacement of NaCl and KCl by sodium isethionate and potassium methyl sulphate; addition of 5 or 10 mM-CaCl2; addition of 10 mM-MnCl2. 7. For cells in solution containing 2 . 5 or 5 . 5 mM-CaCl2, input resistances estimated from the amplitude of hyperpolarizations evoked by 200 msec current pulses were approximately 40 M omega at a resting potential close to -80 mV and became much greater as cells were depolarized. Time constants measured at the resting potential were approximately 8 msec. 8. In certain conditions, repeated spontaneous action potentials were recorded from contracting cells, and in quiescent cells evoked action potentials could be initiated by applying brief depolarizing pulses through the micro-electrode. Action potentials were coincident with contractions. 9. It is concluded that the resting potential of these isolated cells is normally more negative than -70 mV, and that the cells retain the ionic mechanisms necessary for the generation of active currents.

Animals↗

Monooxygenase-like sequence of a Rhodococcus equi gene conferring increased resistance to rifampin by inactivating this antibiotic.

A DNA clone from Rhodococcus equi conferring low-level rifampin resistance through the ability to inactivate this antibiotic via its decomposition was identified. The iri (inactivation of rifampin) gene consisted of an open reading frame of 1,437 bp encoding a 479-amino-acid sequence strongly resembling those of monooxygenases acting upon phenolic compounds or involved in polyketide antibiotic synthesis. When expressed in Escherichia coli, the gene conferred resistance to a > 50-micrograms/ml concentration of the drug.

Amino Acid Sequence↗

Impact of soil drying-rewetting stress on microbial communities and activities and on degradation of two crop protection products.

Prior to registration of crop protection products (CPPs) their persistence in soil has to be determined under defined conditions. For this purpose, soils are collected in the field and stored for up to 3 months prior to the tests. During storage, stresses like drying may induce changes in microbiological soil characteristics (MSCs) and thus may influence CPP degradation rates. We investigated the influence of soil storage-related stress on the resistance and resilience of different MSCs by assessing the impact of a single severe drying-rewetting cycle and by monitoring recovery from this event for 34 days. The degradation and mineralization of the fungicide metalaxyl-M and the insecticide lufenuron were delayed by factors of 1.5 to 5.4 in the dried and rewetted soil compared to the degradation and mineralization in an undisturbed reference. The microbial biomass, as estimated by direct cell counting and from the soil DNA content, decreased on average by 51 and 24%, respectively. The bulk microbial activities, as determined by measuring substrate-induced respiration and fluorescein diacetate hydrolysis, increased after rewetting and recovered completely within 6 days after reequilibration. The effects on Bacteria, Archaea, and Pseudomonas were investigated by performing PCR amplification of 16S rRNA genes and reverse-transcribed 16S rRNA, followed by restriction fragment length polymorphism (RFLP) and terminal RFLP (T-RFLP) fingerprinting. Statistical analyses of RFLP and T-RFLP profiles indicated that specific groups in the microbial community were sensitive to the stress. In addition, evaluation of rRNA genes and rRNA as markers for monitoring the stress responses of microbial communities revealed overall similar sensitivities. We concluded that various structural and functional MSCs were not resistant to drying-rewetting stress and that resilience depended strongly on the parameter investigated.

Alanine↗

Molecular analysis of carbon monoxide-oxidizing bacteria associated with recent Hawaiian volcanic deposits.

Genomic DNA extracts from four sites at Kilauea Volcano were used as templates for PCR amplification of the large subunit (coxL) of aerobic carbon monoxide dehydrogenase. The sites included a 42-year-old tephra deposit, a 108-year-old lava flow, a 212-year-old partially vegetated ash-and-tephra deposit, and an approximately 300-year-old forest. PCR primers amplified coxL sequences from the OMP clade of CO oxidizers, which includes isolates such as Oligotropha carboxidovorans, Mycobacterium tuberculosis, and Pseudomonas thermocarboxydovorans. PCR products were used to create clone libraries that provide the first insights into the diversity and phylogenetic affiliations of CO oxidizers in situ. On the basis of phylogenetic and statistical analyses, clone libraries for each site were distinct. Although some clone sequences were similar to coxL sequences from known organisms, many sequences appeared to represent phylogenetic lineages not previously known to harbor CO oxidizers. On the basis of average nucleotide diversity and average pairwise difference, a forested site supported the most diverse CO-oxidizing populations, while an 1894 lava flow supported the least diverse populations. Neither parameter correlated with previous estimates of atmospheric CO uptake rates, but both parameters correlated positively with estimates of microbial biomass and respiration. Collectively, the results indicate that the CO oxidizer functional group associated with recent volcanic deposits of the remote Hawaiian Islands contains substantial and previously unsuspected diversity.

Bacteria↗

Fluctuation analysis of mutations to nalidixic acid resistance in Escherichia coli.

Mutations of Escherichia coli from sensitivity to nalidixic acid resistance were studied by fluctuation analysis. The mutant distributions in replicate cultures were not significantly affected either by the age of the carbon-starved preculture used for inocula or by the inoculum size. The data from 23 fluctuation tests (48 cultures each) were pooled. The mean number of mutations per culture was estimated to be 0.71 from the fraction of cultures without mutants or 0.74 and 0.77 by maximum-likelihood estimation based on the two models under consideration. When the pooled data were compared with the theoretical expectations, the fits were unsatisfactory (P < 0.005). The lack of fit was caused mainly by too high a frequency of cultures with between 17 and 32 mutants and too high a frequency of cultures with more than 128 mutants. Possible reasons for the lack of fit and its implications with respect to estimation of mutation rates from fluctuation tests are discussed.

Chi-Square Distribution↗

Bacterial chromosome segregation.

Recent studies have made great strides toward our understanding of the mechanisms of microbial chromosome segregation and partitioning. This review first describes the mechanisms that function to segregate newly replicated chromosomes, generating daughter molecules that are viable substrates for partitioning. Then experiments that address the mechanisms of bulk chromosome movement are summarized. Recent evidence indicates that a stationary DNA replication factory may be responsible for supplying the force necessary to move newly duplicated DNA toward the cell poles. Some factors contributing to the directionality of chromosome movement probably include centromere-like-binding proteins, DNA condensation proteins, and DNA translocation proteins.

Bacterial Proteins↗

Zinc modulates mRNA levels of cytokines.

Zinc plays an important role in cell-mediated immune function. Altered cellular immune response resulting from zinc deficiency leads to frequent microbial infections, thymic atrophy, decreased natural killer activity, decreased thymic hormone activity, and altered cytokine production. In this study, we examined the effect of zinc deficiency on IL-2 and IFN-gamma in HUT-78 (Th0) and D1.1 (Th1) cell lines and TNF-alpha, IL-1 beta, and IL-8 in the HL-60 (monocyte-macrophage) cell line. The results demonstrate that zinc deficiency decreased the levels of IL-2 and IFN-gamma cytokines and mRNAs in HUT-78 after 6 h of PMA/p-phytohemagglutinin (PHA) stimulation and in D1.1 cells after 6 h of PHA/ionomycin stimulation compared with the zinc-sufficient cells. However, zinc deficiency increased the levels of TNF-alpha, IL-1 beta, and IL-8 cytokines and mRNAs in HL-60 cells after 6 h of PMA stimulation compared with zinc-sufficient cells. Actinomycin D study suggests that the changes in the levels of these cytokine mRNAs were not the result of the stability affected by zinc but might be the result of altered expression of these cytokine genes. These data demonstrate that zinc mediates positively the gene expression of IL-2 and IFN-gamma in the Th1 cell line and negatively TNF-alpha, IL-1 beta, and IL-8 in the monocyte-macrophage cell line. Our study shows that the effect of zinc on gene expression and production of cytokines is cell lineage specific.

Cytokines↗

The effect of sulfite and chronic restraint stress on brain lipid peroxidation and anti-oxidant enzyme activities.

Sulfites are used as anti-microbial and anti-oxidant agents in a variety of drugs, and function as a preservative in many food preparations. In addition to these effects, sulfites oxidize to sulfite radicals initiating lipid peroxidation. The objective of our study was to investigate the effect of restraint stress and sulfite on brain lipid peroxidation and anti-oxidant enzyme activities. Forty male Wistar rats, aged three months, were randomized to one of the following groups: control, restraint stress, sulfite-treated and restraint stress + sulfite-treated. Chronic restraint stress was applied for 21 days (1 h/day) and sodium metabisulfite (520 mg/kg per day) was given by gavage for the same period. Lipid peroxidation was measured using the thiobarbituric acid (TBA) fluorometric assay. TBA-reactive substances (TBARS) were found increased in all treatment groups when compared to the control group. Spectrophotometric measurement of copper/zinc superoxide dismutase (Cu/Zn SOD) and catalase (CAT) revealed decreased enzyme activities in rats exposed to restraint stress compared to control and sulfite-treated rats. GSH-Px activities were significantly decreased in the restraint stress and sulfite-treated rats compared with the control rats. GSH-Px activity measured in restraint stress + sulfite-treated rats was significantly lower than in the other groups. The presented data confirms the pro-oxidant activity of restraint stress and establishes that decreased anti-oxidant enzyme activities in restraint stress-treated rats enhances brain lipid peroxidation caused via the ingestion of sulfites.

Animals↗

Periodontal therapy in young adults with severe generalized periodontitis.

This study evaluated the effect of periodontal therapy on clinical and microbiological parameters in 23 subjects with severe generalized early onset periodontitis. Therapy consisted of oral hygiene instruction and root planing and scaling, followed 3 months later by open flap debridement. Subjects were monitored for both clinical measures and levels of Actinobacillus actinomycetemcomitans and Porphyromas gingivalis as identified by indirect immunofluoresence. Clinical and microbiological evaluations were done at the start of the study, 3 months after the completion of root planing and scaling and 3 months after open flap debridement. Mean probing depth was reduced by both root planing and scaling and open flap debridement and the level of reduction demonstrated by both phases of therapy was similar to reductions found in studies that utilized subjects with chronic adult periodontitis. In contrast, reductions in attachment level due to the two phases of therapy, demonstrated in previous studies of subjects with adult periodontitis were not found in the young adult subjects with severe periodontal disease utilized in this study. Levels of A. actinomycetemcomitans were not significantly affected by root planing and scaling, but were reduced by open flap debridement. P. gingivalis was virtually eliminated by root planing and scaling, demonstrating that the two bacterial types respond differently to periodontal therapy. These changes in microbiological parameters were similar to those found in studies of localized juvenile periodontitis subjects, where surgery or antibiotics have been shown to be necessary to reduce levels of A. actinomycetemcomitans.

Adolescent↗

Efficacy and safety of Helicobacter pylori eradication therapy with omeprazole, amoxicillin and high- and low-dose clarithromycin in Japanese patients: a randomised, double-blind, multicentre study.

OBJECTIVE: Seven-day administration of omeprazole 40 mg/day + amoxicillin 1500 mg/day + clarithromycin 800 mg/day is currently approved in Japan for the eradication of Helicobacter pylori infection. We investigated the efficacy and safety of an omeprazole-based triple therapy regimen in combination with amoxicillin and low-dose clarithromycin in Japanese patients. METHODS: Patients were randomly assigned to either the low-dose group (omeprazole 40 mg/day + amoxicillin 1500 mg/day + clarithromycin 400 mg/day) or the high-dose group (omeprazole 40 mg/day + amoxicillin 1500 mg/day + clarithromycin 800 mg/day). A total of 288 patients were allocated to the low-dose (143) and high-dose (145) groups and were treated twice daily for 1 week. RESULTS: For the full-analysis set, H. pylori eradication rates were 81.1% (116/143 patients, 90% confidence interval [CI] 74.9, 86.3) in the low-dose group and 80.0% (116/145 patients, 90% CI 73.7, 85.3) in the high-dose group. Per-protocol eradication rates were 81.7% (103/126 patients, 90% CI 75.1, 87.2) and 84.1% (90/107 patients, 90% CI 77.1, 89.6), respectively. When patients with non-susceptibility to clarithromycin were excluded, eradication rates were >80% for both gastric and duodenal ulcers in the two groups. The results suggested that eradication rates were affected more by susceptibility to clarithromycin than to amoxicillin. Both regimens were well tolerated. CONCLUSION: This study demonstrated that an omeprazole-based triple-therapy regimen with clarithromycin 400 mg/day was as effective as that with clarithromycin 800 mg/day for H. pylori eradication.

Adult↗

Gi proteins regulate lipopolysaccharide and Staphylococcus aureus induced cytokine production but not (1--> 3)-beta-D-glucan induced cytokine suppression.

Previous studies have demonstrated that bacterial lipopolysaccharide (LPS) and heat killed Staphylococcus aureus (SA) activation of inflammatory cells depended in part upon activation of heterotrimeric Gi proteins. It has also been shown that (1 --> 3) beta-D-glucan can suppress inflammatory cell activation by microbial products although the cellular mechanism of the glucan effect remains to be clearly defined. We hypothesized that Gi proteins function as a common convergent signaling pathway for both LPS and SA leading to monocyte mediator production. Additionally, we hypothesized that soluble glucan suppresses LPS and SA induced cytokine production via Gi protein coupled signaling. Human THP-1 promonocytic cells were pretreated with pertussis toxin (PTx, 100 ng/ml or 1 microgram/ml) 6 hours prior to stimulation with LPS (10 microgram/ml) and SA (10 microgram/ml) and/or soluble glucan (10 microgram/ml). Both LPS and SA significantly (p < 0.05) induced cytokine production IL-6 > TNF alpha > IL-1 beta > GM-CSF > IL-10 > IFN gamma. The induction of these cytokines was significantly (p < 0.05) suppressed by PTx. Glucan treatment alone had no effect on cytokine production but suppressed (P < 0.05) LPS and SA induced cytokines. PTx further augmented (p > 0.05) the inhibitory effect of glucan on the LPS and SA induced cytokine expression. The data support the hypothesis that Gi proteins function as a common signaling protein for both LPS and SA induction of pro-and anti-inflammatory cytokines and that soluble glucan effectively suppresses cytokine production to the microbial stimuli. In contrast, the effect of soluble glucan on inhibiting cellular activation by LPS and SA is Gi protein independent.

Cell Culture Techniques↗

Inherited IL-12 unresponsiveness contributes to the high LPS resistance of the Lps(d) C57BL/10ScCr mouse.

LPS(d) mouse strains are characterized by the presence of a defective LPS/tlr4 gene that make them refractory to the biological activity of LPS. One of the mouse strains commonly used to study LPS defects is the C57BL/10ScCr (Cr) strain. However, unlike other LPS(d) strains, the Cr strain also has a heavily impaired IFN-gamma response to micro-organisms. As a consequence, unlike other LPS(d) mouse strains, they do not acquire a partial LPS susceptibility when treated with sensitizing bacteria. Because IL-12 is important for the microbial induction of IFN-gamma, we investigated whether the production or function of IL-12 might be defective in Cr mice. IL-12 mRNA (p35 and p40) was present in the spleen of untreated Cr mice, IL-12p40 mRNA was inducible in mice injected with live or killed Salmonella typhimurium, and IL-12 (p70) was inducible in macrophages by bacteria. Thus, Cr mice exhibit normal IL-12 responses. In functional tests, splenocytes of untreated or of S. typhimurium-infected mice failed to produce IFN-gamma when stimulated with murine rIL-12 or with a combination of IL-12 and murine rIL-18 or Con A. Furthermore, Cr mice were identical with IL-12p35/p40 and IL-12 receptor beta(1) knockout mice in their impaired in vivo and in vitro IFN-gamma responses to bacteria. Thus, Cr mice carry a second genetic defect unrelated to the Lps/tlr4 mutation that underlies the IL-12 unresponsiveness and contributes to the LPS resistance and impaired innate immune response in this strain.

Animals↗

Granulysin, a cytolytic molecule, is also a chemoattractant and proinflammatory activator.

Granulysin, a cationic protein produced by activated human CTL and NK cells, is cytolytic against microbial and tumor targets. In this study we show that granulysin also functions as a chemoattractant and activates monocytes to produce cytokines/chemokines. Although granulysin-mediated cytotoxicity occurs at micromolar concentrations, chemoattraction occurs in the nanomolar range, and immune activation occurs over a wide range of concentrations (nanomolar to micromolar). Granulysin causes a 2- to 7-fold increase in chemotaxis of monocytes, CD4(+), and CD8(+) memory (CD45RO) but not naive (CD45RA) T cells, NK cells, and mature, but not immature, monocyte-derived dendritic cells. Pertussis toxin treatment abrogates chemoattraction by granulysin, indicating involvement of G-protein-coupled receptor(s). At low concentrations (10 nM), granulysin promotes a 3- to 10-fold increase in MCP-1 and RANTES produced by monocytes and U937 cells, while a 2-fold increase in TNF-alpha production by LPS-stimulated monocytes requires higher concentrations of granulysin (micromolar). Taken together, these data indicate that the local concentration of granulysin is critical for the biologic activity, with high concentrations resulting in cytotoxicity while lower concentrations, presumably further from the site of granulysin release, actively recruit immune cells to sites of inflammation.

Antigens, Differentiation, T-Lymphocyte↗

Naturally occurring and synthetic inhibitors of NF-kappaB functions.

Nuclear factor (NF)-kappaB is a transcription factor that induces the immunoglobulin kappa chain, cytokines such as interleukin (IL)-1, IL-2, IL-6, IL-8, tumor necrosis factor (TNF)-alpha and interferon gamma, and cell adhesion proteins. It also induces anti-apoptotic proteins, and inhibits TNF-alpha and anticancer drug-induced apoptosis. Therefore, NF-kappaB function inhibitors may be useful as anti-inflammatory and anticancer agents. Microbial products such as panepoxydone, cycloepoxydon and gliotoxin are known to inhibit activation of NF-kappaB. We have designed and synthesized new NF-kappaB inhibitors from the structure of an antibiotic, epoxyquinomicin C. The designed compound, DHM2EQ, inhibited TNF-alpha-induced activation of NF-kappaB and showed a therapeutic effect in mouse rheumatoid arthritis model.

Animals↗

Interferon-producing plasmacytoid dendritic cells and the pathogenesis of AIDS.

Interferon-alpha (IFN-alpha) generation by peripheral blood mononuclear cells (PBMC) responding in vitro to HSV was first found to be deficient in patients with severe ulcerative herpes simplex virus (HSV) infections early in the AIDS epidemic. Such deficits were soon found to be associated with all opportunistic infections (OI). Further studies during the natural history of HIV infection indicated that OI did not occur so long as IFN generation remained relatively intact. OI occurred only when both IFN-alpha generation and CD4 T cell counts were sufficiently depressed. The IFN-alpha response to HSV was innate, not adaptive. Evidence that the IFN-alpha response to HSV was derived from a rare and previously undefined cell type prompted studies eventually revealing that the IFN-producing cells were identical to the "enigmatic plasmacytoid T cells" described by Lennert in lymphoid tissues in 1958. The normal functions of these cells appear to be diverse, but one such function involves initiation of the Th-1 pathway in response to certain microbial antigens. The IFN-producing cells are now known as plasmacytoid dendritic cells (pDCs), because they differentiate following appropriate stimulation, into type-2 dendritic cells. During therapy for HIV infection, pDCs recover somewhat more rapidly than CD4 T cells to levels associated with resistance to OI, and their renewed response appears closely associated with clinically apparent immune reconstitution. Increased pDCs have been associated with nonprogressor status. In HIV infection and in certain other clinical states, PBMC IFN-alpha generation and pDCs numbers correlate closely, suggesting that numerical depletion of circulating pDCs is an important component of the immune deficiency of AIDS. Losses of pDCs during HIV progression and repletion during antiretroviral therapy could be involved in both the progressive loss and reconstitution of the Th-1 pathway.

CD4 Lymphocyte Count↗

High-dose rabeprazole/amoxicillin therapy as the second-line regimen after failure to eradicate H. pylori by triple therapy with the usual doses of a proton pump inhibitor, clarithromycin and amoxicillin.

BACKGROUND/AIMS: Some patients are refractory to the usual triple therapy for eradication of Helicobacter pylori, consisting of a proton pump inhibitor, amoxicillin and clarithromycin, so there needs to be an alternative strategy for retreatment after failure to eradicate the infection. METHODOLOGY: The study group comprised 17 H. pylori-positive patients who had failed to clear H. pylori infection after 1 week of treatment with usual doses of proton pump inhibitor, amoxicillin and clarithromycin. The sensitivity of H. pylori to clarithromycin and amoxicillin, and the CYP2C19 genotype status of each patient were determined and treatment with rabeprazole (10 mg qid) and amoxicillin (500 mg qid) for 2 weeks was started. RESULTS: Eleven patients were infected with a clarithromycin-resistant strain of H. pylori. Twelve patients had the homozygous extensive metabolizer genotype, 5 had the heterozygous extensive metabolizer genotype and there were none with the poor metabolizer genotype of CYP2C19. All patients were successfully cleared of their H. pylori infection without any adverse effects, irrespective of CYP2C19 genotype status (100%, 95% confidence interval: 76-100%). CONCLUSIONS: High-dose dual therapy with rabeprazole (10 mg qid) and amoxicillin (500 mg qid) for 2 weeks appears useful treatment strategy after failure of eradication of H. pylori by the usual triple proton pump inhibitor/amoxicillin/clarithromycin therapy.

2-Pyridinylmethylsulfinylbenzimidazoles↗