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New method of treating dilute mineral acids using magnesium-aluminum oxide.

Mineral acids, such as H(3)PO(4), H(2)SO(4), HCl, and HNO(3,) were treated with magnesium-aluminum oxide (Mg-Al oxide), which behaved as a neutralizer and fixative of anions. Anion removal increased with increasing Mg-Al oxide quantity, time, Mg/Al molar ratio, and initial acid concentration. Up to 95% removal of anions was achieved in 0.5 N acids using a stoichiometric quantity of Mg(0.80)Al(0.20)O(1.10) for H(3)PO(4), 1.75 stoichiometric quantities for H(2)SO(4), or 2.5 stoichiometric quantities for HCl or HNO(3) at 20 degrees C over a period of 6 h. The final solutions were found to have a pH in the range of 8-12. Selectivity of acid removal was found to follow the following order: H(3)PO(4) > H(2)SO(4) > HCl > HNO(3). The equivalent of acid removal per 1 g of Mg-Al oxide decreased as the Mg/Al molar ratio of Mg-Al oxide increased.

Acids, Noncarboxylic↗

[Applicability of GC, GC/MS and liquid chromatography with tandem mass spectrometry to screening for 140 pesticides in agricultural products].

The applicability of GC, GC/MS and liquid chromatography with tandem mass spectrometry (LC/MS/MS) to screening for 140 pesticides in agricultural products was examined. Validation of multi-residue screening methods for the determination of 88 pesticides in 12 crops (asparagus, cauliflower, burdock, carrot, broccoli, spinach, matsutake mushroom, orange, soybean, sesame, millet and tea) was done by GC and GC/MS. Of the 88 pesticides, 63 were obtained with recoveries in the range from 50 to 150% at the 0.1 microg/g level in the 12 crops. Applicability of the official methods in Japan to 74 pesticides, including 22 pesticides with low recovery (< 50%) by GC or GC/MS analysis, was also examined by LC/MS/MS. LC/MS/MS acquisition parameters were established for 67 pesticides in positive and negative electrospray ionization (ESI) modes. Of 67 pesticides validated in 7 crops using LC/MS/MS at the 0.1 microg/g level, 44 showed recoveries in the range from 50 to 150%. The occurrence of matrix interference in LC/MS/MS can lead to false-positive detection of MCPA in spinach, cabbage and orange and false-negative detection of four pesticides in orange, spinach, apple and unpolished rice. Good linearity was observed in the studied ranges by GC, GC/MS (r > 0.990) and LC/MS/MS (r > 0.995). Of the total of 140 pesticides validated by GC, GC/MS and LC/MS/MS, 107 were newly recognized as suitable subjects for screening.

Chromatography, Gas↗

Ultrasonographic screening for arterial occlusive disease in the pelvis and lower extremities.

PURPOSE: To evaluate the accuracy of pulsed Doppler ultrasound (PDUS) and color Doppler ultrasound (CDUS) for the screening of arterial occlusive disease in the pelvis and lower extremities. METHODS: We studied 52 patients with intermittent claudication or lower extremity "coolness." Pulsed Doppler waveforms were measured in the inguinal and popliteal regions and were classified according to their pattern. Patients with abnormal waveforms underwent subsequent CDUS evaluation from the aortic bifurcation to the popliteal arteries. All patients also underwent conventional angiography. RESULTS: All stenoses (> 50%) and occlusions on angiography were detected by PDUS. The combination of PDUS and CDUS allowed detection of 78.0% of stenotic lesions (> 50% narrowing) and 96.6% of occlusive lesions in the iliofemoral regions and in 100% of stenotic lesions (> 50% narrowing) and occlusive lesions in the femoropopliteal regions. PDUS required approximately 3 min. About more 5 min are required when CDUS was added. CONCLUSION: Combined PDUS and CDUS appears to be a rapid, highly sensitive means of screening for arterial occlusive disease in the pelvis and lower extremities.

Angiography↗

In vitro antifungal activity of luliconazole (NND-502), a novel imidazole antifungal agent.

The in vitro activity of luliconazole (NND-502), a novel imidazole antifungal agent, against dermatophytes and several other groups of medically important fungi including the rare causative agents of dermatomycoses, was studied. The luliconazole susceptibility tests were performed with a total of 58 fungal strains of 23 species of fungi grouped into dermatophytes, dematiaceous fungi, hyaline hyphomycetes, yeastlike fungi, and zygomycetes using a broth microdilution method with RPMI 1640 medium. The minimum inhibitory concentration (MIC) values for luliconazole were compared with those of three reference drugs, lanoconazole (LCZ), bifonazole (BFZ), and terbinafine (TBF), all of which have been popular for the topical treatment of dermatophytosis, cutaneous candidiasis, and other superficial fungal infections in Japan. Luliconazole inhibited growth of all filamentous fungi except zygomycetes at low concentrations (MIC, < or =0.004-0.125 microg/ml), with dermatophytes being most susceptible (MIC, < or =0.004-0.008 microg/ml). The susceptibility of these filamentous fungi to luliconazole was almost equal to that to LCZ, and surpassed TBF and BFZ, although to a lesser extent; yeastlike fungi were also susceptible to luliconazole (MIC, 0.125-4 microg/ml). Again the anti-yeastlike fungi activity of luliconazole was at the same level as LCZ and was greater than that of BFZ and TBF. In contrast to BFZ and TBF, however, luliconazole and LCZ were virtually inactive against zygomycetes.

Antifungal Agents↗

Involvement of CD14 in lipopolysaccharide- induced liver injury in mice pretreated with Propionibacterium acnes.

OBJECTIVE: The aim of this study was to elucidate the role of CD14 in the Propionibacterium acnes-lipopolysaccharide (LPS) system. METHODS AND RESULTS: CD14 transgenic mice (M14M), which expressed heterotopic CD14 and showed decreased responses to LPS in vivo, were used. Seven days after priming, the size of granulomas induced by an intraperitoneal administration of P. acnes in the M14M mice was smaller than that in the nontransgenic mice. The number of CD14-positive cells in granulomas was also decreased in the M14M mice compared to the nontransgenic mice. An LPS challenge induced apoptotic and necrotic changes in hepatocytes in the nontransgenic mice but not in the M14M mice. Seven days after priming, tumor necrosis factor-alpha expression was found in monocytic cells in granulomas and Kupffer cells in the nontransgenic mice and was significantly upregulated after LPS injection, whereas the expression was very weak in these cells in the M14M mice. CONCLUSIONS: CD14 plays a role in the P. acnes-LPS system in both priming and induction phases.

Animals↗

[Mutation of p53 gene and genomic instability in testicular tumors].

BACKGROUND: During the past decade, studies of human cancer have begun to yield molecular information on the identify of the multiple genetic changes in the development and progression of tumorigenesis. We investigated alterations of p53 and genomic instability in testicular tumors. MATERIALS AND METHODS: Polymerase chain reaction (PCR) single-strand conformation polymorphism was performed for analysis from exons 5 to 8 of p53 gene in 22 cases and PCR-microsatellite instability analysis using 8 microsatellite markers were conducted in 19 cases of testicular tumor. RESULTS: No mutations were noted for exons 5 to 8 of the p53 gene. Differences in unrelated microsatellites for tumor and corresponding normal DNA were detected in 5 of 19 (26.3%) cases examined. Alterations noted in more than 2 microsatellites were observed in 3 of 19 (15.8%) and categorized as replication error (RER) phenotype. Two of 7 (28.6%) seminomatous and 1 of 12 (8.3%) non-seminomatous testicular tumors patients showed RER. Two of 16 (12.5%) stage T1-3N0M0 and 1 of 3 (33.3%) stage T1-3N1-3M0-1 showed RER. CONCLUSIONS: Alterations in microsatellite instability may be involved in the development of testicular tumor.

DNA Replication↗

[Intra-arterial cellular immunochemotherapy for unresectable pancreatic cancer with liver metastasis].

PURPOSE: To date, no treatment has had a significant impact on pancreatic cancer with liver metastasis. We performed locoregional cellular immunochemotherapy for unresectable pancreatic cancer with liver metastasis. SUBJECTS AND METHODS: A 71-year-old man was diagnosed for unresectable stage IVb pancreatic cancer. This patient was given intra-arterial infusion of gemcitabine (GEM) 400 mg/body and intravenous infusion GEM 600 mg/body, simultaneously. The day after GEM infusion, he was given intra-arterial autologous tumor cell activated T lymphocytes (AuTL). RESULTS: Tumor markers, such as CEA and CA19-9, had decreased a little. Primary tumor and metastatic liver tumor were reduced, but he died due to intra-abdominal dissemination within 5 months after diagnosis of unresectable pancreatic cancer. CONCLUSIONS: Reduced primary pancreatic tumor and metastatic liver tumor was obtained by locoregional cellular immunochemotherapy. But we could not control intra-abdominal dissemination. In conclusion, we suggest that intra-abdominal AuLT infusion in combination with intra-arterial AuLT infusion may be advisable to patients for unresectable pancreatic carcinoma with intra-abdominal dissemination.

Aged↗

Effect of chronic metabolic acidosis on ammonia production from L-glutamine in microdissected rat nephron segments.

To evaluate the role of each nephron segment in renal ammoniagenesis, distribution of renal ammoniagenic activity along the nephron in control and acidotic rats was examined. We used our original aerobic incubation system and ammonia produced from glutamine in 7 defined segments of microdissected nephron was measured using the enzymatic cycling method. When ammonia production in the control was compared in each nephron segment, the highest specific activity of ammoniagenesis per mm tubular length and that per microgram protein were observed in the proximal straight tubule (PST) and the thick ascending limb of Henle's loop, respectively. Chronic metabolic acidosis increased ammonia production per mm tubular length markedly in the proximal convoluted tubule (PCT) (+171%), moderately in the medullary collecting tubule (+123%) and PST (+77%), and slightly in the distal convoluted tubule (+52%), revealing that the highest activity of ammoniagenesis was located in PCT and PST in acidosis. These data indicate that proximal tubules have major roles in renal ammoniagenesis both in the control and in acidosis. From the early observation of glutaminase I isoenzyme distribution along the nephron, our data suggest that not only phosphate-dependent glutaminase but also phosphate-independent glutaminase may have important roles in renal ammoniagenesis.

Acidosis↗

An application of a new planar positron imaging system (PPIS) in a small animal: MPTP-induced parkinsonism in mouse.

OBJECTIVE: Recent animal PET research has led to the development of PET scanners for small animals. A planar positron imaging system (PPIS) was newly developed to study physiological function in small animals and plants in recent years. To examine the usefulness of PPIS for functional study in small animals, we examined dopaminergic images of mouse striata in MPTP-induced parkinsonism. METHODS: Male C57BL/6NCrj mice were treated with MPTP 7 days before the PPIS study. Scans were performed to measure dopamine D1 receptor binding and dopamine transporter availability with [11C]SCH23390 (about 2 MBq) and [11C]beta-CFT (about 2 MBq), respectively. After the PPIS study, dopamine content in the striatum was measured by HPLC. RESULTS: The MPTP treatment significantly reduced dopamine content in the striatum 7 days after treatment. In the MPTP-treated group, [11C]beta-CFT binding in the striatum was significantly decreased compared with the control group, while striatal [11C]SCH23390 binding was not affected. Dopamine content in the striatum was significantly correlated with the striatal binding of [11C]beta-CFT. CONCLUSION: The present results suggest that PPIS is able to determine brain function in a small animal. Using PPIS, high throughput imaging of small animal brain functions could be achieved.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Dynamic relationships between sleep spindles and delta waves during a NREM period.

All-night sleep EEGs from 7 normal young male adults were analyzed by a waveform recognition method using FFT-IFFT band pass filters. The total durations of sleep spindles and sleep delta waves in each 20-s epoch were measured and plotted on an X-Y graph with lines connecting the points in time sequence (dynamic two-component plot). The relationship between these two measures within a single NREM period showed three dynamic phases and one stationary period. In the first phase, spindles increased while delta remained at low level or increased slightly. In the second phase delta increased greatly while spindles decreased. In the third phase, delta decreased while spindles remained at a low level. There was a stationary period between the second and third phases, when delta maintained a higher level and spindles maintained a lower level. These dynamic descriptions reflect the underlying physiological mechanisms more directly than static sleep stages. They should also permit finer analyses of sleep in psychiatric and neurological disorders.

Adult↗

Pharmacologic properties of YM218, a novel, potent, nonpeptide vasopressin V1A receptor-selective antagonist.

The pharmacologic profile of YM218, (Z)-4'-{4,4-difluoro-5-[2-oxo-2-(4-piperidinopiperidino)ethylidene]-2,3,4,5-tetrahydro-1H-1-benzoazepine-1-carbonyl}-2-methyl-3-furanilide hemifumarate, a newly synthesized, nonpeptide vasopressin (AVP) receptor antagonist, was investigated using several in vitro and in vivo methods. YM218 exhibited high affinity for V1A receptors isolated from rat liver, with a Ki value of 0.50 nM. In contrast, YM218 exhibited much lower affinity for rat pituitary V1B, kidney V2, and uterus oxytocin receptors, with Ki values of 1510 nM, 72.2 nM, and 150 nM, respectively. In vivo studies revealed that YM218 dose-dependently inhibited pressor response to exogenous AVP in pithed rats (intravenous) and in conscious normotensive rats (intravenous or oral) with a long duration of action (>8 h at 3 mg/kg, p.o.). In contrast, oral administration of YM218 did not increase urine excretion in conscious rats. These results demonstrate that YM218 is a potent nonpeptide AVP V1A receptor-selective antagonist that will be useful in future studies to help clarify the physiologic and pathophysiologic roles of AVP.

Animals↗

Evaluation of oxidized alpha-1-antitrypsin in blood as an oxidative stress marker using anti-oxidative alpha1-AT monoclonal antibody.

BACKGROUND: alpha1-AT is a 52-kDa acute-phase protein and a typical serine proteinase inhibitor, which is present in human serum. In vivo, the inhibitor prevents tissue damage by inactivating proteinases, such as elastase, that are released from activated neutrophils in the presence of inflammation. METHODS: We obtained a monoclonal antibody against oxidized alpha1-AT(3F4) using chloramine T-oxidized alpha1-AT as the antigen. RESULTS: This antibody did not react with either the native alpha1-AT or the elastase-alpha1-AT complex. However, it reacted with alpha1-AT oxidized by various oxidants and peroxide lipid. The oxidized alpha1-AT is a polymer with a molecular mass of 100-200 kDa in addition to the 52-kDa protein that corresponds to the native alpha1-AT in sera. In vitro evaluations reveal that fatty acids are involved in the polymerization. Furthermore, the concentrations of oxidized alpha1-AT in the sera of patients with inflammatory and rheumatoid diseases were higher than those in healthy subjects. CONCLUSIONS: We considered that 3F4 is an effective antibody that can specifically recognize oxidized alpha1-AT, a marker of oxidative stress.

Animals↗

Subdural effusions in the posterior fossa associated with spontaneous intracranial hypotension.

BACKGROUND: Misdiagnosis of spontaneous intracranial hypotension remains a problem, despite increasing recognition. METHODS: Three patients with spontaneous intracranial hypotension presented with typical findings on lumbar puncture, magnetic resonance (MR) imaging, and radioisotope cisternography. All patients showed subdural effusions in the posterior fossa on axial T2-weighted MR imaging. Axial MR images of 112 patients with other conditions were also screened for this finding. RESULTS: One of three patients had typical orthostatic headache, and the other two had continuous headache. The finding of subdural effusions in the posterior fossa on axial T2-weighted MR imaging disappeared after treatment. Similar findings were found in 14 of 112 patients with other conditions. Most of the patients were over 60 years old or had dementia or previous radiation therapy. CONCLUSIONS: Subdural effusions in the posterior fossa can be identified by T2-weighted axial MR imaging, and are useful for the diagnosis of spontaneous intracranial hypotension and for verifying the effectiveness of treatment.

Adult↗

Phase equilibrium measurements and crystallographic analyses on structure-H type gas hydrate formed from the CH4-CO2-neohexane-water system.

Phase equilibrium conditions and the crystallographic properties of structure-H type gas hydrates containing various amounts of methane (CH4), carbon dioxide (CO2), neohexane (2,2-dimethylbutane; NH), and liquid water were investigated. When the CH4 concentration was as high as approximately 70%, the phase equilibrium pressure of the structure-H hydrate, which included NH, was about 1 MPa lower at a given temperature than that of the structure-I hydrate with the same composition (except for a lack of NH). However, as the CO2 concentration increased, the pressure difference between the structures became smaller and, at CO2 concentrations below 50%, the phase equilibrium line for the structure-H hydrate crossed that for the structure I. This cross point occurred at a lower temperature at higher CO2 concentration. Extrapolating this relation between the cross point and the CO2 concentration to 100% CO2 suggests that the cross-point temperature would be far below 273.2 K. It is then difficult to form structure-H hydrates in the CO2-NH-liquid water system. To examine the structure, guest composition, and formation process of structure-H hydrates at various CH4-CO2 compositions, we used the methods of Raman spectroscopy, X-ray diffraction, and gas chromatography. Raman spectroscopic analyses indicated that the CH4 molecules were found to occupy both 5(12) and 4(3)5(6)6(3) cages, but they preferably occupied only the 5(12) cages. On the other hand, the CO2 molecules appeared to be trapped only in the 4(3)5(6)6(3) cages. Thus, the CO2 molecules aided the formation of structure-H hydrates even though they reduced the stability of that structure. This encaged condition of guest molecules was also compared with the theoretical calculations. In the batch-type reactor, this process may cause the fractionation of the remaining vapor composition in the opposite sense as that for CH4-CO2 hydrate (structure-I), and thus may result in an alternating formation of structure-H hydrates and structure-I in the same batch-type reactor.

Journal Article↗

DNA-PKcs expression in esophageal cancer as a predictor for chemoradiation therapeutic sensitivity.

BACKGROUND: It would be of considerable benefit to patients with esophageal cancer to be able to predict the effect of CRT before therapy, because critical side effects could be avoided and the therapeutic cost of CRT-resistant cases could be reduced. One of the biological parameters with the potential to indicate radioresponse is the DNA double-strand break repair enzyme DNA-PKcs. This study aims to clarify the correlation between DNA-PKcs expression and CRT effect. METHODS: Sixty-seven patients with progressive esophageal cancer treated with CRT were included in this study. The relationship between the expression of DNA-PKcs and the effect of CRT was examined by using immunohistochemistry. The relationships between DNA-PKcs expression, clinicopathologic parameters, and CRT effect were investigated statistically. RESULTS: A significant correlation was found between the expression of DNA-PKcs and the effect of CRT (P =.0149). The high-DNA-PKcs expression group showed greater therapeutic sensitivity than the low-expression group. Clinicopathologic factors had no relationship with DNA-PKcs expression or CRT effect. CONCLUSIONS: This study suggests that high expression of DNA-PKcs correlates with CRT effect. DNA-PKcs expression could, therefore, be useful for predicting the effect of CRT. In addition, these results may make it possible to plan therapy taking patients' quality of life into consideration.

Aged↗

Isolation, characterization, and cDNA cloning of chicken turpentine-induced protein, a new member of the scavenger receptor cysteine-rich (SRCR) family of proteins.

Acute-phase serum proteins were induced by administrating a chicken with turpentine oil. One of these proteins was a new protein that appeared in front of albumin in polyacrylamide disc gel electrophoresis using a 4.5-16% gel. To purify this protein, turpentine-administrated chicken serum was fractionated by ammonium sulfate precipitation at 50% saturation, and the supernatant fraction was chromatographed on a DEAE-Toyopearl 650S column. The purified protein is a mannose-glycoprotein, and its N-terminal sequence, determined by the Edoman method, is not homologous from that of other reported acute-phase proteins. An analysis of physiological function with two different test systems, chemiluminescence measurement and electron spin resonance spectroscopy, showed that the purified protein has antioxidant activity and inhibits superoxide (O(2)) mediated by activation of the receptor. In support of these results, the complete amino acid sequence of 18-B is homologous to the scavenger receptor cysteine-rich (SRCR) family of proteins that participate in the regulation of leukocyte function. 18-B is composed of four SRCR domains, which is different from the previously characterized SRCR family of proteins such as Spalpha, CD6, and CD163. These findings indicate that turpentine-induced 18-B, a new member of scavenger receptor cysteine-rich family, may be implicated in regulation of cell function in a manner of inhibition of the overproduction of the reactive oxygen species.

Amino Acid Sequence↗

Mechanism of destructive pathologic changes in the spinal cord under chronic mechanical compression.

STUDY DESIGN: A histologic and histochemical study was performed both in the autopsy of a human patient with cervical spinal cord compression caused by ossification of the posterior longitudinal ligament and in a tiptoe-walking Yoshimura mouse model of progressive cervical cord compression. OBJECTIVES: To clarify the mechanism of destructive pathologic changes in the spinal cord under chronic mechanical compression. SUMMARY OF BACKGROUND DATA: Under chronic compression, the spinal cord exhibits destructive changes considered to be causes of profound and irreversible motor paresis. Recently, some investigators have found that apoptosis in acute spinal cord injury induces both secondary degeneration at the site of injury and chronic demyelination of tracts away from the site of injury. However, the mechanism responsible for these destructive spinal cord changes under chronic compression remains unclear. METHODS: The spinal cord was examined histologically, and an attempt was made to detect apoptotic cells using terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate nick-end labeling in both the autopsy of a human patient and tiptoe-walking mice exhibiting spinal cord compression. RESULTS: Apoptotic cells were observed in the chronically compressed spinal cord in both the autopsy of a human patient and model mice. In tiptoe-walking mice exhibiting spinal cord compression, descending degeneration in the anterior and lateral columns and ascending degeneration in the posterior column were observed. The distribution of oligodendrocytes with positive results from terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate nick-end labeling was similar to that for degeneration of the long tracts. CONCLUSIONS: Spinal cord cell apoptosis may produce destructive changes in the spinal cord under chronic compression, with a resulting irreversible neurologic deficit.

Aged↗

The significance of HLA-DRB1 matching in clinical renal transplantation.

We analyzed the genotype for HLA-DRB1 alleles by digestion of polymerase chain reaction-amplified genes with the restriction endonucleases (PCR-RFLP) method to investigate the influence of HLA-DR antigen "splits" at the DRB1 gene level on the incidence of acute graft rejection in the renal transplant. For all patients, the incidence of acute rejection was proportional to the number of the serological HLA mismatch (0% in patients with two-haplotype match; 18% with HLA-A, -B, and -DR zero mismatch; 33% with HLA-DR zero mismatch; and 48% with HLA-DR one mismatch). For the patients with serological HLA-DR zero mismatch, the incidence of acute rejection in patients with HLA-DRB1 one mismatch (10/13: 77%) was significantly higher than that in those with zero mismatch (2/27: 7%). It was concluded that genotyping for HLA-DRB1 alleles would be beneficial in predicting acute rejection in patients with serological HLA-DR zero mismatch, although no difference was noted in the graft survivals.

Alleles↗