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991.
Mitsuru Koizumi Yasuhiko Yamada Etsuji Nomura Maki Amano Yuji Okajima Hiromi Okizuka Keiko Yamada Seishi Sawano Takashi Kitahara Takashi Yamashita Minoru Nakane Toshio Ishikawa 《Annals of nuclear medicine》1995,9(2):101-104
A case of recurrent medullary thyroid cancer (MTC) was evaluated with123I-MIBG,99mTc(V)-dimercaptosuccinic acid (DMSA), and201Tl scintigraphy. This patient had been operated on for MTC in the right thyroid. Recently a left neck mass was noticed, and was suspected of being a. recurrence of MTC based on increased plasma calcitonin (CT) and carcinoembryonic antigen (CEA). He was operated on for the neck mass which revealed MTC, and papillary thyroid cancer was incidentally found in the left thyroid, but the CT and CEA levels remained high, and remaining MTC tumor was suspected. But the location of the tumor was unknown. Although99mTc(V)-DMSA scintigraphy is generally believed to be superior in sensitivity to123I-MIBG scintigraphy, it did not demonstrate the tumor site but201Tl and123I-MIBG did. Furthermore,123I-MEBG scintigraphy has greater specificity for tumors which arise in the neural crest. Judging from the results of this case and cases reported in the literatures, both123I-MIBG and99mTc(V)-DMSA should be performed in the detection of recurrent MTC. 相似文献
992.
Sei Harada Toru Takebayashi Ayako Kurihara Miki Akiyama Asako Suzuki Yoko Hatakeyama Daisuke Sugiyama Kazuyo Kuwabara Ayano Takeuchi Tomonori Okamura Yuji Nishiwaki Taichiro Tanaka Akiyoshi Hirayama Masahiro Sugimoto Tomoyoshi Soga Masaru Tomita 《Environmental health and preventive medicine》2016,21(1):18-26
ObjectiveMetabolomics is a promising approach to the identification of biomarkers in plasma. Here, we performed a population-based, cross-sectional study to identify potential biomarkers of alcohol intake and alcohol-induced liver injury by metabolomic profiling using capillary electrophoresis-mass spectrometry (CE-MS).MethodsFasting plasma samples were collected from 896 Japanese men who participated in the baseline survey of the Tsuruoka Metabolomics Cohort Study, and 115 polar metabolites were identified and absolutely quantified by CE-MS. Information on daily ethanol intake was collected through a standardized, self-administered questionnaire. The associations between ethanol intake and plasma concentration of metabolites were examined. Relationships between metabolite concentrations or their ratios and serum liver enzyme levels in the highest ethanol intake group (>46.0 g/day) were then examined by linear regression analysis. Replication analysis was conducted in 193 samples collected from independent population of this cohort.ResultsNineteen metabolites were identified to have an association with daily alcohol consumption both in the original and replication population. Three of these metabolites (threonine, glutamine, and guanidinosuccinate) were found to associate well with elevated levels of serum liver enzymes in the highest ethanol intake group, but not in the non-drinker group. We also found that the glutamate/glutamine ratio had a much stronger relation to serum γ-glutamyltransferase, aspartate transaminase, and alanine transaminase than glutamate or glutamine alone (standardized beta = 0.678, 0.558, 0.498, respectively).ConclusionsWe found 19 metabolites associated with alcohol intake, and three biomarker candidates (threonine, guanidinosuccinate and glutamine) of alcohol-induced liver injury. Glutamate/glutamine ratio might also be good biomarker.
Electronic supplementary material
The online version of this article (doi:10.1007/s12199-015-0494-y) contains supplementary material, which is available to authorized users. 相似文献993.
Marowa Hashimoto Masutaka Watanabe Yuji Uematsu Sonomi Hattori Nobuyuki Miyai Miyoko Utsumi Mayumi Oka Mariko Hayashida Kenji Kinoshita Mikio Arita Tatsuya Takeshita 《Environmental health and preventive medicine》2016,21(3):138-148
Objectives
Many East Asians have the genetic polymorphisms rs1229984 in alcohol dehydrogenase 1B (ADH1B) and rs671 in aldehyde dehydrogenase 2 (ALDH2). Here we analyzed the relationships of the two genotypes with alcohol sensitivity, drinking behavior and problem drinking among older and younger men living in rural areas of Japan.Methods
The subjects were 718 Japanese men aged 63.3 ± 10.8 (mean ± SD), categorized into the older (≥65 years, n = 357) and younger (<65 years, n = 361) groups. Facial flushing frequency, drinking behavior and positive CAGE results were compared among the genotypes using Bonferroni-corrected χ2 test and a multivariate logistic regression analysis adjusting for age, BMI and lifestyle factors.Results
The frequency of ‘always’ facial flushing among the ADH1B*1/*2 carriers was significantly lower than that among the ADH1B*2/*2 carriers in the older group (P < 0.01). The alcohol consumption (unit/day) in the ADH1B*1/*2 carriers tended to be higher compared with that in the ADH1B*2/*2 carriers among the older group (P = 0.050). In the younger group, no significant differences in alcohol sensitivity and drinking habits were generally found among the ADH1B genotypes. The ADH1B*1/*1 genotype tended to be positively associated with problem drinking in the older group (P = 0.080) but not in the younger group. The ALDH2 genotypes consistently and strongly affected the alcohol sensitivity, drinking behavior and problem drinking in both the younger and older group.Conclusions
We for the first time observed a significant difference in alcohol sensitivity between ADH1B*1/*2 and ADH1B*2/*2 in older men aged 65 and above.994.
Clearance of apoptotic cells, so-called efferocytosis, by alveolar macrophages (AMs) is important for lung homeostasis and is impaired in pulmonary inflammatory diseases, such as chronic obstructive pulmonary disease and asthma. Carbocisteine, a mucoregulatory drug, corrects the contents of fucose in airway mucus and has anti-inflammatory properties in airway inflammation. Thus, we conducted the present study to better understand the anti-inflammatory properties of carbocisteine. First, we induced airway inflammation in mice with lipopolysaccharide intratracheally. Carbocisteine significantly decreased neutrophil numbers in bronchoalveolar lavage fluid at the resolution phase of inflammation, implying the promotion of neutrophil clearance. Then, we investigated whether carbocisteine would enhance the efferocytosis by AMs isolated from mice and found that this drug promoted not only the phagocytosis but also the binding of apoptotic cells to AMs in vitro. Furthermore, carbocisteine decreased the fucose residues stained with fluorescent fucose-binding lectin, Lens culinaris agglutinin, on the cell surface of AMs. We found here that removing fucose residues from cell surfaces of AMs by fucosidase markedly enhanced both the binding and phagocytosis of apoptotic cells. Finally, AMs from mice orally given carbocisteine also promoted both the binding and phagocytosis ex vivo similarly to in vitro. These results suggest that carbocisteine could promote the clearance of apoptotic cells by AMs in airway. In addition, the present findings suggest that the binding and phagocytosis of apoptotic cells may be modulated by fucose residues on the cell surface of AMs. 相似文献
995.
Toxicogenomic multigene biomarker for predicting the future onset of proximal tubular injury in rats
Minowa Y Kondo C Uehara T Morikawa Y Okuno Y Nakatsu N Ono A Maruyama T Kato I Yamate J Yamada H Ohno Y Urushidani T 《Toxicology》2012,297(1-3):47-56
Drug-induced renal tubular injury is a major concern in the preclinical safety evaluation of drug candidates. Toxicogenomics is now a generally accepted tool for identifying chemicals with potential safety problems. The specific aim of the present study was to develop a model for use in predicting the future onset of drug-induced proximal tubular injury following repeated dosing with various nephrotoxicants. In total, 41 nephrotoxic and nonnephrotoxic compounds were used for the present analysis. Male Sprague-Dawley rats were dosed orally or intravenously once daily. Animals were exposed to three different doses (low, middle, and high) of each compound, and kidney tissue was collected at 3, 6, 9, and 24 h after single dosing, and on days 4, 8, 15, and 29 after repeated dosing. Gene expression profiles were generated from kidney total RNA using Affymetrix DNA microarrays. Filter-type gene selection and linear classification algorithms were employed to discriminate future onset of proximal tubular injury. We identified genomic biomarkers for use in future onset prediction using the gene expression profiles determined on day 1, when most of the nephrotoxicants had yet to produce detectable histopathological changes. The model was evaluated using a five-fold cross validation, and achieved a sensitivity of 93% and selectivity of 90% with 19 probes. We also found that the prediction accuracy of the optimized model was substantially higher than that produced by any of the single genomic biomarkers or histopathology. The genes included in our model were primarily involved in DNA replication, cell cycle control, apoptosis, and responses to oxidative stress and chemical stimuli. In summary, our toxicogenomic model is particularly useful for predicting the future onset of proximal tubular injury. 相似文献
996.
Kusaba J Kajikawa N Kawasaki H Kurosaki Y Aiba T 《Biopharmaceutics & drug disposition》2012,33(1):22-29
To examine the mechanism accounting for the diverse alteration of hepatic metabolism of CYP3A substrates observed with renal function being severely impaired, the hepatic drug metabolizing activity was evaluated using liver microsomes prepared from rats with glycerol-induced acute renal failure (ARF). Midazolam, nifedipine and rifabutin were employed as representative CYP3A substrates. When the Michaelis-Menten parameters, K(m) and V(max) , were examined in the incubation study, the K(m) values of midazolam and nifedipine in ARF rats were shown to decrease by 50.9% and 29.9% compared with the normal value, respectively. The V(max) values of midazolam and nifedipine in ARF rats also decreased by 49.3% and 28.0%, respectively, showing that their decreased K(m) values accompanied the decreased V(max) values. The parameters of nifedipine seemed to alter to a lesser extent than those of midazolam. As for rifabutin metabolism, the decrease in the K(m) value was observed in ARF rats, but it did not accompany the decrease in the V(max) value. Then, the hepatic expressions of the CYP3A subfamily were examined with western blotting using anti-CYP3A1 and anti-CYP3A2 antibodies. It was revealed that the hepatic expression of CYP3A2 decreased, while that of CYP3A1 was unaffected. Additionally, a band signal deduced to originate from CYP3A9 was clearly detected in ARF, but not in normal rats. Considering each substrate having different specificities for CYP3A subfamily member proteins, individual alterations of hepatic CYP3A subfamily expression seem to underlie the diverse alterations of hepatic metabolism of CYP3A substrates in ARF rats. 相似文献
997.
Jianhui Wu Lei Wei Ming Zhao Yuji Wang Guifeng Kang Shiqi Peng 《Medicinal chemistry research》2012,21(1):116-123
To clarify the relationships of the commonly used spectral measurements and the in vivo activity of β-carboline intercalators
N-[2(3-carboxyl-9-benzyl-carboline-1-yl)ethyl-1-yl]-aspartic acid (3a), -tyrosine (3b), -serine (3c), and -threonine (3d) were prepared as the model compounds by using a three-step procedure. In UV measurements of calf thymus DNA (CT DNA) the
in vivo active 3a–c induced both hypochromic effect and hypsochromic shift, while the in vivo inactive 3d did not. In CD measurements the in vivo active 3a–c changed the intensities of both positive and negative bands of CT DNA in same direction, while the in vivo inactive 3d induced an opposite change. In fluorescence measurements due to adding CT DNA the increase of the fluorescence intensities
of 3a–c were 10–31% higher than that of 3d, and the bathochromic shifts of 3a–c were 2–6 nm higher than that of 3d. The viscositic experiments revealed that 3d possessed the lowest binding ratio. The melting curves indicate that the effect of 3a–c (ΔT
m, 10.8–12.9°C) on the T
m of CT DNA was significantly higher than that of 3d (ΔT
m, 4.9°C). Spectroscopic, viscositic, and melting curve investigations are not only able to provide multiple evidences for
DNA intercalation mechanism, but also are able to distinguish the in vivo active and inactive N-[2(3-carboxyl-9-benzyl-carboline-1-yl)-ethyl-1-yl]-amino acids. 相似文献
998.
T Moritoyo T Hasunuma K Harada T Tateishi M Watanabe T Kotegawa M Nagai Y Kumagai T Fujitani T Okura T Fukuoka K Miyoshi B Matsuura S Furukawa T Kobori H Moritoyo N Nishikawa T Tsujii H Iwaki M Nakamura S Makino K Ohnuma K Yuji M Hashimoto M Takasu Y Hashizume K You T Matsumura Y Tanaka N Matsumoto J Nakamura J Miura T Akizawa K Kitazawa T Shibata A Kuroki H Honda M Mukai K Ohashi T Morimoto H Imai T Okudaira F Sato J Imanaga K Tanaka M Nomoto 《Journal of pharmacological sciences》2012,119(4):324-329
The effect of renal impairment on the pharmacokinetics of a single oral dose of memantine (10 mg) was determined in Japanese subjects. Subjects were assigned to four groups based on baseline creatinine clearance (CL(CR)): normal renal function (> 80 mL/min, n = 6), and mild (50 to ≤ 80 mL/min, n = 6), moderate (30 to < 50 mL/min, n = 6), and severe renal impairment (5 to < 30 mL/min, n = 7). Mean memantine maximum plasma concentration (C(max)) was similar in the groups (12.66, 17.25, 15.75, and 15.83 ng/mL, respectively), as was mean time to C(max) (6.2, 5.2, 4.3, and 5.4 h, respectively). However, exposure to memantine determined from mean area under the plasma concentration-time curve was 1.62-, 1.97-, and 2.33-times higher in subjects with mild, moderate, and severe renal impairment, respectively, as compared to controls with normal renal function. Mean memantine plasma elimination half-life increased according to increasing renal impairment (61.15, 83.00, 100.13, and 124.31 h, respectively), while mean cumulative urinary recovery of unchanged memantine in 72 h after dosing decreased according to increasing renal impairment (33.68%, 33.47%, 23.60%, and 16.17%, respectively). These results are the same as those in the previous study on caucasian individuals, when compared per body weight. It is suggested that the dose of memantine should be halved in patients with renal impairment. 相似文献
999.
We investigated the effect of exposure to nanoparticle-rich diesel exhaust (NRDE) on hippocampal-dependent spatial learning and memory function-related gene expressions in female mice. Female BALB/c mice were exposed to clean air, middle-dose NRDE (M-NRDE), high-dose NRDE (H-NRDE) or filtered diesel exhaust (F-DE) for three months. A Morris water maze apparatus was used to examine spatial learning. The expression levels of the N-methyl-D-aspartate (NMDA) receptor subunit, proinflammatory cytokines and neurotrophin mRNAs in the hippocampus were then investigated using real-time RT-PCR. Mice exposed to H-NRDE required a longer time to reach the hidden platform and showed higher mRNA expression levels of the NMDA receptor subunit NR2A, the proinflammatory cytokine CCL3, and brain-derived neurotrophic factor (BDNF) in the hippocampus, compared with the findings in the control group. These results indicate that three months of exposure to NRDE affected spatial learning and memory function-related gene expressions in the female mouse hippocampus. 相似文献
1000.
Taura K Naito E Ishii Y Mori MA Oguri K Yamada H 《Biological & pharmaceutical bulletin》2004,27(1):56-60
The effects of cytochrome P450 (P450, CYP) ligands and permeabilization of microsomes on 3-hydroxybenzo(a)pyrene [3-OH-B(a)P] glucuronidation mediated by rat hepatic microsomes were studied. While the UDP-glucuronosyltransferase (UGT) activity with non-permeabilized microsomes from 3-methylcholanthrene (MC)-treated rats was markedly reduced by alpha-naphthoflavone (NF), this inhibitor had hardly any effect when permeabilized microsomes were used in which the inhibitor was expected to have easy access to UGT. Kinetic analysis indicated that the inhibitory effect of alpha-NF is competitive. These results suggest that a UGT isoform(s) involved in 3-OH-B(a)P glucuronidation is interfered by a CYP1A inhibitor via a mechanism dependent on the intact nature of microsomal membranes in MC-treated rats. It is likely that P450 functions as a substrate transporter for some isoforms of UGT via possible interactions between UGT and P450. 相似文献