
Patients with atopic dermatitis (AD) show increased numbers of Th2 cells in their acute skin lesions and superficial skin colonization by Staphylococcus aureus. The purpose of this study was to clarify the effect of S. aureus cell wall components on Th2 chemokine production by murine Langerhans cells (LCs). Murine LCs were stimulated with peptidoglycan (PEG) and/or muramyldipeptide (MDP) for 24 or 48h, and Th1 and Th2 chemokine production was investigated by reverse transcription polymerase chain reaction (RT-PCR) and enzyme-linked immunosorbent assay (ELISA). PEG-stimulation of LCs induced production of the Th2 chemokine CCL17 and this was enhanced in the presence of interleukin (IL)-4. A low-molecular weight PEG fragment, MDP, did not induce CCL17 production by LCs. However, when LCs were stimulated with PEG in combination with MDP, PEG-induced CCL17 production was synergistically enhanced by MDP. Furthermore, PEG- and MDP-induced CCL17 production was enhanced to a greater extent in the presence of IL-4. These results suggest that S. aureus colonization in AD patients may enhance the Th2-prone immune response through upregulation of CCL17 production by LCs, which would occur as a result of simultaneous stimulation with PEG and MDP from S. aureus in a Th2 environment.
In use of a claims database for a study, an inaccurate diagnosis of breast cancer based on claims data may lead to invalid study results. The aim of this study was to assess the accuracy of definitions for identifying breast cancer cases from the Japanese claims database. The study cohort consisted of women with no prior cancer-related history, from the claims data at a single institution between January 1 and December 31, 2011. We developed 14 definitions for identifying breast cancer based on claims data, using a combination of diagnosis codes and treatment procedure codes. We calculated the sensitivity, specificity, and positive predictive value (PPV) of each definition, compared to cases identified from the standardized hospital-based cancer registry as a standard reference. A total of 50056 women were included in the study cohort from the claims database. We identified 633 breast cancer cases from the cancer registry. Of 14 definitions, 12 exhibited higher sensitivity than 90%, while the others exhibited lower sensitivity than 40%. The specificities of all definitions were high (≥ 99%), and the PPVs were between 65.8 and 90.7%. We selected the most optimal definition obtained from combinations of diagnosis and cancer treatment codes (surgery, chemotherapy, medication, radiation procedure), which had high values for sensitivity (90.4%), specificity (99.8%), and PPV (87.3%). Definitions obtained via combinations of the diagnosis codes and procedure codes could be used to accurately identify breast cancer cases from the claims database. Further studies in a multi-institutional setting are planned to confirm our results.
This study was performed to investigate the influence of the dosing route on chronopharmacological aspect of valproic acid (VPA) in mice, comparing the oral and rectal route. ICR male mice, housed under a standardized light-dark cycle (lights on from 0700 to 1900), were orally or rectally administered 400 mg/kg VPA each at the following scheduled time : 0900, 1300, 1700, 2100, 0100 and 0500. VPA concentrations in plasma and brain were determined by gas-liquid chromatography. There was a circadian rhythm in the electroshock seizure (ES) threshold 30 min after oral VPA administration, with the highest value at the midlight (1300) and the lowest at the middark (0100) (p<0.01). A significant circadian rhythm was also found in plasma and brain VPA concentrations 30 min after oral administration (p<0.01). This finding is related to the rhythm in the ES threshold. In contrast to oral administration, no circadian rhythm in the ES threshold, plasma and brain VPA concentrations was observed after rectal administration. These values after rectal dosing showed higher levels in comparison to those after oral dosing. Thus, the rectal route for VPA might have merit to eliminate the time-dependent changes in VPA pharmacologic action and kinetics. The timing of drug administration is an important factor that must be carefully controlled in drug pharmacokinetic and pharmacodynamic studies and must be considered in planning dosing routes.
The uptake characteristics of polyamines, such as spermine, spermidine and putrescine, have been investigated using brush-border membrane vesicles isolated from the small intestine of rats. The uptake of these polyamines into the membrane vesicles was high and the order of uptake was spermine greater than spermidine greater than putrescine at medium pH 7.5, respectively. The medium pH considerably affected the uptake of these polyamines and the amount of uptake increased remarkably with an increase of the medium pH (pH 7.5 or 8.0 greater than pH 5.5). An inward Na+ gradient did not stimulate the uptake rate of any of these polyamines. We have also examined the binding behaviour to the membrane lipid, phospholipids and total lipid, and there was a good correlation in the binding properties, pH-dependency and uptake activity, between the liposomes and brush-border membrane vesicles. These results suggest that the uptake of the polyamine into the vesicles consisted of rapid binding to the outside intestinal surface and slower binding to the inside membrane after permeation. Furthermore, findings from experiments concerning the mutual inhibition among these polyamines and concerning the effect of other polycations, having 2-5 amines in number, on the uptake of spermine, suggest that the number of amino groups in the polyamine molecules plays an important role in the uptake process into the brush-border membrane vesicles.
Glucocorticoids inhibit IgE antibody-mediated passive cutaneous anaphylaxis (PCA) and chemical mediator-induced cutaneous reactions elicited in the mouse ear. In the present study, we investigated the effect of actinomycin D, a protein synthesis inhibitor, on dexamethasone-caused inhibition of PCA and histamine-induced cutaneous reaction in the mouse ear. Tyrosine aminotransferase (TAT) activity in the liver, which was estimated as an index for protein synthesis, significantly increased by the administration of hydrocortisone, prednisolone and dexamethasone. Significant increase in TAT activity was observed from 2 h after glucocorticoid administration and peaked at 4 h, and declined gradually thereafter. Cycloheximide even at high doses of 100 and 300 mg/kg failed to affect the increase in TAT activity by dexamethasone. On the contrary, actinomycin D at doses of 1 and 10 mg/kg abrogated the TAT activity increase by dexamethasone almost completely. Treatment with 1 mg/kg of actinomycin D, however, failed to affect the inhibition of PCA and histamine-induced cutaneous reaction by dexamethasone. These results suggest that glucocorticoids exhibit their inhibitory action of PCA and chemical mediator-induced cutaneous reactions in mice through a mechanism resistant to actinomycin D treatment.
The antianaphylactic activity of 35% EtOH extract (IB) from the white petals of Impatiens balsamina L. was investigated using murine immediate hypersensitivity reaction system induced by hen egg-white lysozyme (HEL). IB has a significant antianaphylactic activity.
The effect of gastrin on secretin binding sites in the stomach was studied using the plasma membranes from rat gastric mucosa and vascularly perfused rat stomach. Tetragastrin transiently increased secretin binding to the mucosal plasma membranes. In the perfused stomach secretin binding was also modulated by the inclusion of tetragastrin or human [Leu15] gastrin I in the perfusate. However, histamine did not show such a modulatory effect. Tetragastrin had an insignificant effect on secretin binding sites in rat pancreas. These results suggest that the direct modulation of secretin binding by gastrin to its receptors may be involved in the inhibitory action of secretin on acid secretion induced by gastrin.
Platelets from stroke-prone spontaneously hypertensive rats (SHRSP) show severe hypofunctions accompanied by defective protein (P47) phosphorylation. To examine the mechanism of platelet hypofunctions, phospholipid metabolism in SHRSP was compared with that in Wistar Kyoto rats (WKY). Phosphatidylinositol (PI) content was 20% less in SHRSP than in WKY, but no changes were observed in other phospholipids. Incorporation of [3H]-arachidonic acid (AA) into PI and phosphatidylethanolamine (PE) was 12% and 11% lower, and that into phosphatidylcholine (PC) was 6% higher in SHRSP than in WKY. Thrombin-induced diacylglycerol and phosphatidic acid formation were similar in both groups of platelets. Thrombin-induced release of [14C]-AA from the labeled platelets and its metabolism to eicosanoids occurred at similar rates. These results suggest that reduced formation of diacylglycerol, an activator of protein kinase C (PKC), does not cause defective phosphorylation of P47, a substrate of PKC, in SHRSP. However it remains unclear how the lower PI content and the altered distribution of AA in PC and PE is related to SHRSP platelet hypofunctions.
Photoaffinity labeling of cholinephosphotransferase from rat liver microsomes directly by its substrate, [32P]CDP-choline or by a synthetic photoreactive CDP-choline analog, 3'(2')-O-(4-benzoyl)benzoyl [32P]CDP-choline (BB-[32P]CDP-choline), was examined for the possible identification of its molecular form on subsequent SDS-PAGE followed by 32P-autoradiography. When the partially purified cholinephosphotransferase was photoirradiated in the presence of [32P]CDP-choline, a considerable amount of 32P-radioactivity was incorporated into the TCA-insoluble component. This incorporation was dependent on irradiation time, Mg2+ or Mn(2+)-requiring and inhibited strongly by the presence of Ca2+. Either CDP-choline or CDP-ethanolamine inhibited the ultraviolet irradiation-dependent incorporation of 32P-radioactivity into the TCA-insoluble component in a dose-dependent manner, whereas neither phosphocholine or 5'-CDP had any effect on this process. These results strongly suggested that the observed 32P-incorporation from [32P]CDP-choline into the protein component could be a consequence of the covalent interaction between cholinephosphotransferase and its substrate, [32P]CDP-choline. Two polypeptides, 25 kDa and 18 kDa, with high 32P-radioactivity were clearly identified on a SDS gel after the direct photoaffinity labeling with [32P]CDP-choline for more than 5 min of ultraviolet irradiation. On the other hand, when BB-[32P]CDP-choline was used as a photoaffinity ligand, a single polypeptide with apparent molecular size of 55 kDa could be rapidly photolabeled within 2.5 min, then this band gradually lost its 32P-radioactivity with increasing time of ultraviolet irradiation. Thus, the overall results strongly indicated that cholinephosphotransferase in rat liver microsomes exists most likely as a 55 kDa polypeptide (or subunit) and that 25 kDa and 18 kDa peptides identified after the direct photoaffinity labeling with [32P]CDP-choline were probably the photo-cleavage products of cholinephosphotransferase during the prolonged ultraviolet irradiation, both of which could contain the catalytic domain of the original enzyme protein(s).
Alpha 1, alpha 2- and beta-Adrenoceptor densities and catecholamine responsiveness in established hepatoma cells, rat ascites hepatoma AH13, AH66, AH66F, AH109A, AH130 and AH7974 cells and human hepatocellular carcinoma HLF and HepG2 cells, were compared with those in normal rat hepatocytes and Chang liver cells. Alpha 1-Adrenoceptor densities measured by [3H]prazosin bindings were not detected in all hepatoma cell lines. Alpha 2-Adrenoceptor densities measured by [3H]clonidine bindings were also barely detected in hepatoma cell lines except for AH130 cells and HepG2 cells. Regarding beta-adrenoceptor, AH109A, AH130 and AH7974 cells had much more [125I]iodocyanopindolol binding sites than normal rat hepatocytes, although we could not detect the binding in HepG2 cells. Adenylate cyclase of normal rat hepatocyte and Chang liver cells were stimulated by beta 2-adrenergic agonist salbutamol, while the cyclase in hepatoma cells had no beta 2-adrenergic response but a beta 1-type response. These findings indicate that the characteristics of adrenergic response in hepatoma cell lines is very different from that in normal hepatocytes, suggesting a participation in the hepatocarcinogenesis and/or the autonomous proliferation of hepatoma cells.
Our previous study suggested that squalane would be a good candidate for an antidote to reduce the toxicity of drug ingested accidentally at a high dose by enhancing the drug elimination from the body. In the present study, we investigated whether squalane given orally could enhance the elimination of theophylline, phenobarbital and strychnine which were administered parenterally to rats or mice. Squalane increased the fecal excretion of theophylline and reduced the serum level of the drug in rats. Squalane accelerated the fecal excretion of strychnine in mice. These results suggest that squalane may stimulate more the elimination of neutral (theophylline) or basic (strychnine) drugs which should be present in unionized form in intestinal lumen, than that of acidic drugs.
Ca(2+)-Induced membrane damage of energized mitochondria has been proposed to be due to lipid peroxidation induced by Ca2+. To examine this possibility, we studied the effects of the radical scavenger, 3,5-di-tert-butyl-4-hydroxytoluene (BHT), and its derivative, 3,5-di-tert-butyl-4-methoxytoluene (MeO-BHT), on membrane damage of respiring mitochondria induced by Ca2+ in the presence of inorganic phosphate. Both compounds inhibited Ca(2+)-induced damage almost completely at 20 microM, and their effects were identical, although MeO-BHT had no radical scavenging ability. These results indicate that the protective effects of BHT and MeO-BHT are not due to their radical scavenging ability. Thus, free radicals are concluded not to be involved in Ca(2+)-induced membrane damage of mitochondria.
The interaction of dicumarol and its seven other derivatives with human serum albumin (HSA), alpha 1-acid glycoprotein (AGP) and desialylatedAGP (asialoAGP) has been investigated by circular dichroism (CD) and fluorescence. The binding parameters of dicumarol and its derivatives obtained from fluorescence almost agreed with those obtained from CD. The binding data indicated that the total binding affinities (nK) to HSA were higher than the binding affinities to AGP and asialoAGP. Hydrophobic interaction was the driving force for the binding to all the three proteins and nK values in the binding process were found to be increased with the increase of hydrophobicity of the compound. This was evidenced by the attempts taken to correlate binding affinities with partition coefficients. Both electrostatic and van der Waals interactions were not found to play any significant role in the binding of these compounds to any of these three proteins. However, in case of the AGP and asialoAGP binding, apart from the hydrophobic interaction, some other forces may be involved as evidenced from the experimental data. Binding was exothermic, entropy driven and spontaneous. The change of enthalpy (delta H degree) was compensated for by the change in entropy (delta S degree). Relative contribution of hydrophobic interactions in the binding of these compounds to HSA was higher than to AGP or asialoAGP. Sialic acid was not found to impart any significant role in the binding of these compounds to AGP.
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