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Biomedical subjects

Keiko Nakai

Publications and source records attributed to Keiko Nakai.

11 recordsLinked to original sources

[Evaluation of urinary cystatin C as a marker of renal dysfunction].

BACKGROUND: Urinary excretion of some low molecular weight proteins (LMWPs) is used as an indicator of tubular dysfunction, since they are increased by the damage of tubular reabsorption. Although serum cystatin C is known to be a sensitive marker for GFR, the property of urinary cystatin C as a LMWP has not been fully observed. We evaluated the clinical utility of urinary cystatin C. METHODS: Urine samples were collected from 130 patients with various degree of renal dysfunction, 62 healthy subjects, and 2 patients with acute renal failure, one with renal acute renal failure, the other with prerenal acute renal failure. Urine levels of cystatin C, beta2-microglobulin (beta2mG), and alpha1-microglobulin (alpha1mG) were measured by immunonephelometry. Creatinine clearance(Ccr) tests were conducted on 130 patients with renal dysfunction. Creatinine(CRE) was measured by enzyme assay. RESULTS: The daily urinary excretions of cystatin C and alpha1mG were increased significantly in patients with Ccr<30 ml/min(group I), compared to those in patients with 30 < or = Ccr<70 ml/min(II), and Ccr > or = 70ml/min(III). Although the mean daily excretion of beta2mG increased as Ccr decreased, the significant difference was not observed. The rate of increase in the mean value between III and I was extremely high in cystatin C. Fractional excretions of cystatin C and beta2mG calculated in the same groups increased significantly in I compared to II and III. The rate of increase in the mean value was higher in cystatin C. Regression analyses between urine CRE and each three LMWP gave the best correlation coefficient for cystatin C in healthy subjects. While in one patient with renal acute renal failure, the rate of increase in urine cystatin C was higher than that of other LMWPs, in another patient with prerenal acute renal failure, the rate of increase in urine cystatin C was low. CONCLUSIONS: Although details of urinary movement of LMWPs in nephrons have not been clearly elucidated, the urinary cystatin C seems to have distinctive properties, and to be useful for the evaluation of renal injury.

Biomarkers↗

Ethnic differences in CYP2C9*2 (Arg144Cys) and CYP2C9*3 (Ile359Leu) genotypes in Japanese and Israeli populations.

CYP2C9 is a major P450 2C enzyme, which hydroxylates about 16% of drugs that are in current clinical use and contributes to the metabolism of a number of clinically important substrate drugs such as warfarin. Ethnic differences in the genetic variation of CYP2C9 have been reported, and might be related to the frequencies of adverse reactions to drugs metabolized by CYP2C9 in different ethnic groups. In the present study, ethnic differences in the CYP2C9*2 and CYP2C9*3 allele distribution in Japanese and Israeli populations were evaluated using a newly developed oligonucleotide based DNA array (OligoArray(R)). The population studied consisted of 147 Japanese and 388 Israeli donors (100 Ashkenazi Jews, 99 Yemenite Jews, 100 Moroccan Jews and 89 Libyan Jews). The CYP2C9*2 [Arg144Cys (416 C>T), exon 3] and CYP2C9*3 [Ile359Leu (1061 A>C), exon 7] genotypes were determined using an OligoArray(R). The accuracy of genotyping by the OligoArray(R) was verified by the fluorescent dye-terminator cycle sequencing method. A Hardy-Weinberg test indicated equilibrium (chi(2)<3.84 is Hardy-Weinberg) in all populations. The CYP2C9*2 genotype (CC/CT+TT) was absent in Japanese (1/0) (OR 0.02), and its frequency was significant in Libyan Jews (0.697/0.303) (OR 2.13; 95% CI 1.07-4.24) compared with Ashkenazi Jews (0.83/0.17), Yemenite Jews (0.899/0.101), and Moroccan Jews (0.81/0.19). The frequencies of CYP2C9*3 genotype (AA/AC+CC) was significantly lower in Japanese (0.986/0.014) (OR 0.08), and was higher in Libyan Jews (0.652/0.348) (OR 3.03; 95% CI 1.5-6.1) and Moroccan Jews (0.77/0.23) (OR 1.69; 95% CI 0.62-3.48) compared with those in Ashkenazi Jews (0.85/0.15) and Yemenite Jews (0.849/0.151). Thus, the CYP2C9*2 (Arg144Cys) and CYP2C9*3 (Ile359Leu) variants were rare in the Japanese population, and showed different frequencies in the four Jewish ethnic groups examined.

Adult↗

QT PRODACT: in vivo QT assay in the conscious dog for assessing the potential for QT interval prolongation by human pharmaceuticals.

The goal of the present study was to examine the utility of the conscious dog model by assessing the QT-interval-prolonging potential of ten positive compounds that have been reported to induce QT interval prolongation in clinical use and seven negative compounds considered not to have such an effect. Three doses of test compounds or vehicle were administered orally to male beagle dogs (n=4), and telemetry signals were recorded for 24 h after administration. All positive compounds (astemizole, bepridil, cisapride, E-4031, haloperidol, MK-499, pimozide, quinidine, terfenadine, and thioridazine) caused a significant increase in the corrected QT (QTc) interval, with a greater than 10% increase achieved at high doses. In contrast, administration of negative compounds (amoxicillin, captopril, ciprofloxacin, diphenhydramine, nifedipine, propranolol, and verapamil) did not produce any significant change in the QTc interval, with the exception of nifedipine that may have produced an overcorrection of the QTc interval due to increased heart rate. The estimated plasma concentrations of the positive compounds that caused a 10% increase in the QTc interval were in good agreement with the plasma/serum concentrations achieved in humans who developed prolonged QT interval or torsade de pointes (TdP). Although careful consideration should be given to the interpretation of QT data with marked heart rate change, these data suggest that an in vivo QT assay using the conscious dog is a useful model for the assessment of QT interval prolongation by human pharmaceuticals.

Animals↗

QT PRODACT: in vivo QT assay with a conscious monkey for assessment of the potential for drug-induced QT interval prolongation.

In safety pharmacology studies, the effects on the QT interval of electrocardiograms are routinely assessed using a telemetry system in cynomolgus monkeys. However, there is a lack of integrated databases concerning in vivo QT assays in conscious monkeys. As part of QT Interval Prolongation: Project for Database Construction (QT PRODACT), the present study examined 10 positive compounds with the potential to prolong the QT interval and 6 negative compounds considered to have no such effect on humans. The experiments were conducted at 7 facilities in accordance with a standard protocol established by QT PRODACT. The vehicle or 3 doses of each test compound were administered orally to male cynomolgus monkeys (n=3-4), and telemetry signals were recorded for 24 h. None of the negative compounds prolonged the corrected QT using Bazett's formula (QTcB) interval. On the other hand, almost all of the positive compounds prolonged the QTcB interval, but haloperidol, terfenadine, and thioridazine did not. The failure to detect the QTcB interval prolongation appeared to be attributable for the differences in metabolism between species and/or disagreement with Bazett's formula for tachycardia. In the cynomolgus monkeys, astemizole induced Torsade de Pointes and cisapride caused tachyarrhythmia at lower plasma concentrations than those observed in humans and dogs. These results suggest that in vivo QT assays in conscious monkeys represent a useful model for assessing the risks of drug-induced QT interval prolongation.

Animals↗

Ethnic differences of coronary artery disease-associated SNPs in two Israeli healthy populations using MALDI-TOF mass spectrometry.

Differences in prevalence and mortality from coronary artery disease (CAD) were observed among the different Israeli ethnic groups. The incidence of CAD in Israel is highest among Ashkenazi Jews and is much lower among Yemenite Jews. In this present study, we selected 15 single nucleotide polymorphisms (SNPs) from 14 candidate genes involved in (1) the renin-angiotensin system, (2) lipid metabolism, (3) cytokines and adhesion molecules, and (4) growth factors, and (5) the coagulation-fibrinolysis system. We analyzed the 15 SNPs in 94 Israeli healthy populations (47 Ashkenazi Jews and 47 Yemenite Jews) obtained from the National Laboratory for the Genetics of Israeli Populations. We applied chip-based MALDI-TOF mass spectrometry as a method for screening multiplexed genotyping of SNPs for ethnic difference in these healthy populations. Among the 15 candidate SNPs, significant differences in allelic frequency were observed in the 1166A>C of the AGTR1 gene, R158C of the Apo E gene, W64R of the ADRB3 gene, S101S of the TIMP 2 gene, and A222V of the MTHFR gene with respect to allele frequency. The incidence of A/C allele of the AGTR1 gene were 0.638/0.362 vs 0.765/0.235, C/T allele in the apo E gene was 0.915/0.085 vs 0.989/0.011, T/C allele of the ADRB3 gene was 0.989/0.0011 vs 0.926/0.074, G/A allele of the TIMP2 gene was 0.974/0.054 vs 0.830/0.170, and C/T allele in the MTHFR gene was 0.521/0.479 vs 0.819/0.181 for Ashkenazi Jews and Yemenite Jews, respectively. We demonstrated an ethnic difference of CAD-associated SNPs in two Israeli healthy populations using MALDI-TOF mass spectrometry. Further study is necessary to prove causal relation with CAD-associated SNPs and the prevalence of CAD.

Apolipoproteins E↗

Serum levels of cardiac troponin I and other marker proteins in patients with chronic renal failure.

BACKGROUND: Serum levels ob biochemical markers for acute myocardial infarction (AMI) can be increased in patients with chronic renal failure (CRF) or skeletal muscle injury, creating diagnostic confusion. We evaluated the clinical utility of cardiac troponin I (cTnI) as a marker of AMI, particularly in patients with CRF. METHODS: Subjects consisted of 59 healthy volunteers and 102 patients: 61 with CRF undergoing hemodialysis (CRF-HD), 10 with CRF under conservative therapy (CRF-CT), 21 with renal disease (RD), and 10 with muscle disease (MD). Patients with RD, CRF, and MD were evaluated to verify the absence of myocardial injury. We developed an immunoradiometric assay to measure serum cTnI using monoclonal antibodies. The lower limit of detection was 0.33 micro g/l. Serum cTnI, creatine kinase (CK), CK-MB, cardiac troponin T (first-, second-, and third-generation assay: cTnT-I, cTnT-II, and cTnT-III), and cardiac myosin light chain 1 (cMLC1) were measured. RESULTS: cTnI was not detected in healthy volunteers or patients with CRF, RD, or MD. In patients with CRF-HD, elevated levels occurred in 4.9% (3/61) for CK, 0% (0/61) for CK-MB, 39.5% (15/38) for cTnT-I, 7.3% (3/41) for cTnT-II, 13.0% (3/23) for cTnT-III, and 77.0% (47/61) for cMLC1; and in patients with MD the levels were increased in 70% (7/10) for CK, 50% (5/10) for CK-MB, 44.4% (4/9) for cTnT-I, 20% (2/10) for cTnT-II, and 50% (5/10) for cMLC1. CONCLUSIONS: cTnI is a highly specific marker for AMI and is particularly useful for detecting AMI in patients with CRF or MD. Serum levels of biochemical markers for acute myocardial infarction (AMI) can be increased in patients with chronic renal failure (CRF) or skeletal muscle injury, creating diagnostic confusion. We evaluated the clinical utility of cardiac troponin I (cTnI) as a marker of AMI, particularly in patients with CRF.

Biomarkers↗

[Educational program of clinical laboratory medicine to develop the ability to use proper laboratory examinations in medical practice].

A model core curriculum for medical education was proposed in 2001 as a guideline to standardize and improve the educational program in Japanese medical schools. Many subjects involved in clinical laboratory medicine were listed in this model core curriculum. Original and characteristic educational curricula in each medical school were also required in this guideline. In our university, we constructed the educational program of clinical laboratory medicine with lectures, clinical practice, and small group seminars including reversed CPC, according to the guideline. We need further trials to achieve the goal, i.e. education to develop the ability to use proper laboratory examinations in medical practice, as a good clinical doctor.

Clinical Laboratory Techniques↗

Highly multiplexed genotyping of coronary artery disease-associated SNPs using MALDI-TOF mass spectrometry.

Highly multiplexed genotyping methods are needed to support a comprehensive analysis of single nucleotide polymorphisms (SNPs) in coronary artery disease (CAD)-related genes. In this study we evaluated chip-based MALDI-TOF mass spectrometry for multiplexed genotyping of SNPs associated with CAD. Our analysis included 14 healthy Japanese individuals and 19 Japanese patients with myocardial infarction whose first attack occurred before age 50. We selected 29 candidate genes involved in 1) the renin-angiotensin system, 2) lipid metabolism, 3) cytokines and adhesion molecules, 4) growth factors, and 5) the coagulation-fibrinolysis system. Genotyping of candidate SNPs was performed by MALDI-TOF MS using a MassARRAY system, and 4-plex analysis was achieved at a maximum. All 39 SNPs determined by the fluorescent dye-terminator cycle sequencing method from four randomly selected patients were found to be in complete agreement with the results obtained from MassARRAY system. Significant differences were observed in the -1965delG of PAI1 (SERPINE1) with respect to allelic frequency, the G>A in the promoter region SNP in SM22 (TAGLN) for dominant genotype, and in two other SNPs (C>T in intron 1 of HGF, and -1965delG of PAI1) for recessive genotype. Three SNPs (803T>C of AGT, 677CT of MTHFR, 190T>C of ADRB3) showed weak differences in allelic frequency. MALDI-TOF-MS provided high performance with a multiplex assay design for analysis of CAD-related SNPs by increasing the throughput while maintaining a high level of accuracy.

Cell Adhesion Molecules↗

Chemoprevention of N-methylnitrosourea-induced colon carcinogenesis by ursodeoxycholic acid-5-aminosalicylic acid conjugate in F344 rats.

Bile acids enhance colon carcinogenesis in animal models, whereas ursodeoxycholic acid (UDCA) suppresses it. Nonsteroid anti-inflammatory drugs prevent colon cancer development in animals and humans. The aim of the present study was to explore the inhibitory effect of UDCA conjugate with 5-aminosalicylic acid (5-ASA), UDCA-5-ASA conjugate (UDCA-5-ASA), against colon carcinogenesis in rats. One-hundred-and-twenty-nine 7-week-old F344 rats received an intrarectal instillation of 2 mg of N-methylnitrosourea 3 times a week for 3 weeks, and were fed a 0% (control), 0.11% or 0.02% UDCA-5-ASA-, 0.08% UDCA- or 0.03% 5-ASA-supplemented diet for the next 27 weeks. The test diets contained an equimolar amount of a test agent, 2.0 mmol/kg diet, except for the 0.02% UDCA-5-ASA diet. The tumor incidence and the mean number of tumors/rat at week 30 were significantly lower and smaller in the UDCA-5-ASA diet groups, 48% and 0.7 in both, and marginally lower in the UDCA and 5-ASA diet groups, 56% and 0.9, and 64% and 0.8, compared to the control group, 83% and 1.3. All the tumors were polypoid in shape, and most of them were differentiated adenocarcinomas restricted to the mucosa or submucosa. An analysis by HPLC for bile acids and 5-ASA in the feces and serum collected at week 30 showed that one-half of ingested UDCA-5-ASA was cleaved into UDCA and 5-ASA in the colon. Thus, the two moieties may have independently affected the promotion stage of carcinogenesis.

Animals↗

[Biochemical marker for myocardial injury].

Recently, the general idea of the acute coronary syndrome (ACS) that includes acute myocardial infarction and unstable angina has been established. ACC/AHA guidelines in 1996 and 1999 had emphasized the importance of the initial diagnosis and the early treatment in acute myocardial infarction. We presented about the recent advances in "injured myocardial marker" around the ACS in this paper. The sensitivity and specificity for detecting myocardial injury by troponin T and I(TnT and TnI) were superior compared with those in creatinine kinase (CK) and CK-MB. Easy rapid detection system by using whole blood was useful in the diagnosis a high risk cases in ACS. Measurement of TnT and TnI are recommended the use in the emergency room. A guideline for a diagnosis of acute myocardial infarction had a revision (ACC/ESC) on 2000. Biochemical markers of TnT & TnI were recommended as the first step for defining the myocardial injury. Unstable angina pectoris with a minimal myocardial injury (rise in CK under two times) was defined acute myocardial infarction. As for the measurement of the myocardial injury, rapid detection and accuracy & specificity may enhance the value of modality. In future, inflammation marker such as the high sensitivity CRP and an activated platelet may be thought to become important.

Acute Disease↗