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Biomedical subjects

S Kishino

Publications and source records attributed to S Kishino.

At least 19 recordsLinked to original sources

Effects of hepatic CYP3A4 activity on disposition of micafungin in liver transplant recipients with markedly small-for-size grafts.

Micafungin, the first candin antifungal drug developed in Japan, has a significant therapeutic effect against deep-seated mycoses caused by Candida or Aspergillus. Little is known, however, about the optimal dosage or disposition of micafungin in patients with severe hepatic impairment. Nine liver transplant recipients (5 males and 4 females) were enrolled in this study. In 1 recipient with a markedly small-for-size graft (ratio of graft volume to standard liver volume at the time of transplantation: 25.9%), the areas under the plasma concentration-time curves up to 12 hours postdose (AUC(0-12 h)) at doses of 50 and 100 mg/d were 79.38 and 601.17 mug.h/mL, respectively. The corresponding elimination half-life (T(1/2)) values were 16.01 and 75.75 hours, and saturated elimination was observed only at the dose of 100 mg/d. The mean urinary ratio of 6beta-hydroxycortisol to cortisol (6beta-OHF/F) in the small-for-size graft recipient was significantly (P < .05) lower than that in the other recipients. In conclusion, graft size was an important factor affecting disposition of micafungin. For liver transplant recipients with markedly small-for-size grafts, the optimal dosage of micafungin to reach and maintain therapeutic plasma levels is estimated to be 50 mg/d.

Antifungal Agents↗

Influence of continuous venovenous haemodiafiltration on the pharmacokinetics of tacrolimus in liver transplant recipients with small-for-size grafts.

In adult-to-adult living donor liver transplantation (LDLT), the graft volume is inevitably much smaller than the ideal liver mass (standard liver volume) for the recipient's metabolic demand. Patients with small-for-size grafts are treated with continuous venovenous haemodiafiltration (CVVHD) for the artificial liver support. However, little is known about the influence of CVVHD on the elimination of tacrolimus. The objective of this study was to elucidate the effect of CVVHD on the pharmacokinetics of tacrolimus in recipients of LDLT with small-for-size grafts. Three liver transplant recipients (one male and two females) and donors (two males and one female) were enrolled in this study. Blood samples from inflow port and outflow port were obtained on the first day at the start of CVVHD. Whole-blood concentrations of tacrolimus were measured immediately using the microparticle enzyme immunoassay (MEIA; Abbott Laboratories). There was no significant difference between concentrations of tacrolimus in blood sampled at inflow port and outflow port sites and t(1/2)-values of tacrolimus in the three recipients were 29.9, 63.6 and 28.8 h. CVVHD did not cause a decrease in the blood tacrolimus concentration. Adjustment to the dose or dosing interval is not required for patients treated with tacrolimus during CVVHD.

Adult↗

Differential binding of disopyramide and warfarin enantiomers to human alpha(1)-acid glycoprotein variants.

AIMS: The F1S and A genetic variants of alpha1-acid glycoprotein (AAG) change under various physiological and pathological conditions. They also vary in their drug binding abilities. We have studied the stereoselective binding ability of each of the AAG variants using enantiomers of disopyramide (DP) and warfarin (WR). METHODS: The AAG variants were separated by hydroxyapatite chromatography. Binding of drug enantiomers to the AAG variants was studied by the Hummel-Dreyer method. The characteristics of the binding activities were examined by Scatchard plot analysis. The first five amino-terminal amino acids (residues 112-116) of the cyanogen bromide (CNBr) fragment (residues 112-181) of each of the separated AAG fractions were elucidated by Edman degradation. RESULTS: Commercial AAG was separated into two main fractions. Residues 112-116 of fraction 2 were identical to the amino acid sequences predicted from the AAG A gene, LAFDV, and encode the F1S variant. In fraction 3, the deduced amino acid sequence of the AAG B gene, FGSYL, was established, and encodes the A variant. The binding affinities of both DP enantiomers in fraction 3 were significantly higher than those in fraction 2. The differences between dissociation constants (Kd) in fractions 2 and 3 were 5.2-fold for (S)-DP (P < 0.05) and 3.7-fold for (R)-DP (P < 0.001). The dissociation constant of (S)-DP (0.39 +/- 0.08 micro m) was lower than that of (R)-DP (0.53 +/- 0.10 micro m) in fraction 3 [95% confidence interval (CI) - 0.282, - 0.010; P < 0.05], although the binding activities of the DP enantiomers were almost the same in fraction 2. By contrast WR enantiomers had a higher binding affinity in fraction 2 than in fraction 3, the differences in dissociation constants between fractions 2 and 3 being 12.6-fold for (S)-WR (P < 0.001) and 8.3-fold for (R)-WR (P < 0.001). The dissociation constant of (S)-WR (0.28 +/- 0.10 microm) was significantly lower than that of (R)-WR (0.48 +/- 0.08 microm) in fraction 2 (95% CI - 0.369, - 0.028; P < 0.05), but there were no significant differences between the binding activities of WR enantiomers in fraction 3. CONCLUSIONS: DP and WR enantiomers bind preferentially to fraction 3 and fraction 2, respectively. Fractions 2 and 3 are encoded by the AAG A and the AAG B genes, respectively.

Amino Acid Sequence↗

Enantioselective binding of disopyramide to alpha1-acid glycoprotein and its variants.

OBJECTIVE: alpha1-acid glycoprotein (AAG) has three main genetic variants, F1, S, and A variants. There are few reports on the correlation between AAG variants and binding activity of drug enantiomers. We studied the differences between the binding characteristics of enantiomers of disopyramide (DP), which is a basic drug. The aim of this study was to elucidate the cause of the differences between the binding characteristics of DP enantiomers. METHODS: The variants in human AAG were separated by hydroxyapatite chromatography. Binding of DP enantiomers to AAG variants was studied by the ultrafiltration method. The characteristics of the binding of DP enantiomers to total variants and each variant were examined by Scatchard analysis within a range of concentrations from 0.5 to 50.0 microg/ml. RESULTS: The binding capacity of S-DP was significantly higher than that of R-DP in variant 3, although the binding capacities of DP enantiomers were almost the same in variant 2. On the other hand, the binding capacities for both S-DP and R-DP in variant 3 were significantly higher than those in variant 2. Furthermore, there was an almost 2.4-fold difference in the dissociation constant (Kd) between S-DP and R-DP in variant 3, although no significant difference was observed in the number of binding sites (N). In variant 2 no significant differences between DP enantiomers were observed in either the dissociation constant or number of binding sites per molecule of AAG. On the other hand, significant differences between variants 2 and 3 in the dissociation constant for both S-DP and R-DP were observed. The differences in dissociation constant between variants 2 and 3 were 4.0-fold in S-DP and 1.7-fold in R-DP. CONCLUSION: The difference between the binding capacities of S-DP and R-DP is due to differences in the association of DP to variants 3-6, and the role of the variants 1 and 2 in the binding of drugs to AAG is minor.

Anti-Arrhythmia Agents↗

Effective fluconazole therapy for liver transplant recipients during continuous hemodiafiltration.

Fungal infections are still one of the main causes of death and complications after solid organ and bone marrow transplants. The authors evaluated the effect of continuous hemodiafiltration (CHDF) on the pharmacokinetics of fluconazole in liver transplant recipients. Six liver transplant patients (primary biliary cirrhosis, n = 2; fulminant hepatitis, n = 2; viral hepatitis, n = 2) were enrolled in this study. In one patient not receiving CHDF, the fluconazole levels increased with increasing dosages. In contrast, in patients undergoing CHDF, the dosage of fluconazole was increased from 100 mg/d to 200 mg/d, but fluconazole did not reach the targeted levels. It appears that the targeted trough level cannot be achieved by administration of fluconazole at a dosage of 100 to 200 mg/d during CHDF. A higher dosage (600-1000 mg/d) of fluconazole may be required to achieve the therapeutic drug level in patients undergoing CHDF. In patients undergoing CHDF, fluconazole was given at a dosage of 800 mg/d and reached the targeted levels. In addition, after CHDF, the dosage of fluconazole was decreased to 100 mg/d, and fluconazole reached the near-targeted trough level. These results demonstrate that CHDF removes fluconazole from the blood at an efficiently high rate, resulting in its ineffective blood level. To guarantee safe and effective fluconazole therapy, the trough levels should be monitored routinely during CHDF.

Adult↗

Conjugated linoleic acid accumulation via 10-hydroxy-12-octadecaenoic acid during microaerobic transformation of linoleic acid by Lactobacillus acidophilus.

Specific isomers of conjugated linoleic acid (CLA), a fatty acid with potentially beneficial physiological and anticarcinogenic effects, were efficiently produced from linoleic acid by washed cells of Lactobacillus acidophilus AKU 1137 under microaerobic conditions, and the metabolic pathway of CLA production from linoleic acid is explained for the first time. The CLA isomers produced were identified as cis-9, trans-11- or trans-9, cis-11-octadecadienoic acid and trans-9, trans-11-octadecadienoic acid. Preceding the production of CLA, hydroxy fatty acids identified as 10-hydroxy-cis-12-octadecaenoic acid and 10-hydroxy-trans-12-octadecaenoic acid had accumulated. The isolated 10-hydroxy-cis-12-octadecaenoic acid was transformed into CLA during incubation with washed cells of L. acidophilus, suggesting that this hydroxy fatty acid is one of the intermediates of CLA production from linoleic acid. The washed cells of L. acidophilus producing high levels of CLA were obtained by cultivation in a medium containing linoleic acid, indicating that the enzyme system for CLA production is induced by linoleic acid. After 4 days of reaction with these washed cells, more than 95% of the added linoleic acid (5 mg/ml) was transformed into CLA, and the CLA content in total fatty acids recovered exceeded 80% (wt/wt). Almost all of the CLA produced was in the cells or was associated with the cells as free fatty acid.

Aerobiosis↗

Single-step isolation method for six glycoforms of human alpha1-acid glycoprotein by hydroxylapatite chromatography and study of their binding capacities for disopyramide.

A single-step isolation method for the glycoforms of human serum alpha1-acid glycoprotein (AAG) using a hydroxylapatite column under a gradient elution program was developed. The concentrations of N-acetylneuraminic acid and monosaccharides (fucose, N-acetylglucosamine, galactose and mannose) of six AAG glycoforms were determined by the pulsedamperometric detection method. For each AAG glycoform, significant sex-related differences in carbohydrate content have been observed only for AAG glycoforms two and six, and not for each AAG glycoform. The relationship between the extent of the branch in the glycan chain and the binding capacity to disopyramide were examined. Female AAG contained highly sialylated AAG glycoforms compared to male glycoforms. Conversely, male AAG was rich in the lower sialylated AAG glycoform. Furthermore, it was found that the drug binding capacity decreases with increasing branching of the glycan chain. This suggests that the binding sites of AAG are hindered by a relatively large carbohydrate moiety, such as tetraantennary structures.

Adult↗

Separation methods for glycoprotein analysis and preparation.

Several chromatographic methods have been developed for the isolation and characterization of glycoproteins. In these methods, affinity chromatography, a single-step method, or combined use with general chromatographic methods have now become essential for the purification of many biologically important glycoproteins, including alpha1-acid glycoprotein, immunoglobulins, ceruloplasmin and erythropoietin. On the other hand, almost all glycoproteins exhibit polymorphism associated with their glycan moieties. This feature is wide-spread and has been observed in natural as well as in recombinant DNA glycoproteins. Recently, several sophisticated techniques--such as electromigration method (high-performance capillary electrophoresis) and chromatographic methods (two-dimensional polyacrylamide gel electrophoresis, high-pH anion-exchange chromatography with pulsed-amperometric detection)--have been introduced for qualitative or quantitative estimation of the microheterogeneity of glycoproteins. For gaining further insight into the structure-function relations for microheterogeneity, preparative chromatographic techniques that can yield sufficient quantities of glycoprotein variants must be developed.

Carbohydrate Sequence↗

Identification of inheritance modes of mitochondrial diseases by introduction of pure nuclei from mtDNA-less HeLa cells to patient-derived fibroblasts.

A nuclear genome delivery system was developed to deduce the modes of inheritance of the clinical phenotypes observed in patients with mitochondrial diseases by transfer of pure nuclei from normal cells to fibroblasts from the patients. The problem of possible contamination of the nuclei with a small amount of mtDNA was overcome by using mtDNA-less (rho0) human cells as nuclear donors. In this study, intercellular transfer of pure nuclei was carried out by simple fusion of rho0 HeLa cells with 533 fibroblasts from a patient with a fatal mitochondrial disease, which were deficient in cytochrome c oxidase and succinate dehydrogenase activities. The results showed that the cytochrome c oxidase and succinate dehydrogenase activities were restored by the introduction of pure HeLa nuclei, suggesting that the observed phenotypes of mitochondrial dysfunction were not due to mtDNA mutations but to nuclear, recessive mutations. Thus, our nuclear transfer system is effective for determining whether a mitochondrial or nuclear genome of a patient is responsible for a disease and whether deficiency of mitochondrial enzymes, including enzymes exclusively encoded by nuclear genomes, is transmitted in a nuclear recessive or nuclear dominant way, providing the parents of the patients with valuable information for genetic counseling on the risk of mitochondrial diseases in their next babies.

Adenosine Triphosphatases↗

Highly sensitive mutation assay for mutagenicity monitoring of indoor air using Salmonella typhimurium YG1041 and a microsuspension method.

A highly sensitive mutation assay for indoor mutagenicity monitoring was investigated by a combination of Salmonella typhimurium YG strains and the microsuspension method. Tester strains were YG1024, YG1029, YG1041 and YG1042. YG1041 gave the highest sensitivity in the mutagenicity test for the extracts of airborne particulates. The sensitivity of the microsuspension assay using S.typhimurium YG1041 in the absence of S9 mix was approximately 200 times higher than that of the preincubation assay using strain TA98, which has been widely used for mutagenicity monitoring of airborne particulates outdoors. Furthermore, a significant correlation was observed between mutagenicities determined by the microsuspension assay using S.typhimurium YG1041 and TA98, where mutagenicity assay was carried out for airborne particulates collected by a high volume sampler for 24 h every 12 days for 1 year. This new method was also useful for indoor mutagenicity monitoring in which a small amount of airborne particulates was collected by a low noise sampler for 12 h each of 6 consecutive days. The monitoring showed that mutagenicity in the daytime is generally higher than that in the night and that smoking is an important factor in increasing mutagenicity in indoor air.

Air Pollution↗

Purification method for alpha-1-acid glycoprotein with subsequent high-performance liquid chromatographic determination of monosaccharides in plasma of healthy subjects and patients with renal insufficiency.

A simple purification method for human plasma alpha-1-acid glycoprotein (AAG) using an ion-exchange and hydroxyapatite column was developed. The recovery of the method was found to be high. We also improved a determination method for N-acetylneuraminic acid and monosaccharides in the carbohydrate moiety of AAG by using an ion-exchange column and pulse-amperometric detection. By this method, a composition analysis of the carbohydrate moiety of AAG (N-acetylneuraminic acid, fucose, N-acetyl glucosamine, galactose and mannose) was possible with 1.0 ml of plasma. We compared these carbohydrate concentrations in the AAG of patients with renal insufficiency with those of healthy subjects. In the AAG of the patients, the concentrations of N-acetylglucosamine, galactose and mannose were significantly higher than those in the AAG of the healthy subjects.

Acetylglucosamine↗

Alpha-1-acid glycoprotein concentration and the protein binding of disopyramide in healthy subjects.

Age- and gender-related changes in serum alpha 1-acid glycoprotein (AAG) concentration and the serum protein binding of disopyramide were examined after intensive medical examination. Based on the clinical chemistry tests over 51 points, 245 subjects were diagnosed as healthy and 71 subjects (22.5%) revealed an abnormal value for at least one item. In the healthy subjects, serum AAG concentration in men was significantly higher than in women (men, 0.78 +/- 0.18 mg/mL, mean +/- SD; women, 0.67 +/- 0.16 mg/mL). In contrast, there were no significant differences in the AAG concentration between age groups for men and women and in the unbound fraction of disopyramide. Gender changes AAG concentration. Age, however, does not change AAG concentration and the protein binding of the basic drug.

Adolescent↗

Mutagenic activity of 6-aminoquinoxalines in Salmonella typhimurium.

Mutagenicity of 6-aminoquinoxaline derivatives was tested with Salmonella typhimurium strains TA98 and TA100 in the presence and absence of S9 mix from the viewpoint that the 6-aminoquinoxaline skeleton is a common unit of mutagenic imidazoquinoxalines. We tested nine compounds: 5-methyl-6-methylaminoquinoxaline (1), 3,5-dimethyl-6-methylaminoquinoxaline (2), 2,5-dimethyl-6-methylaminoquinoxaline (3), 6-methylamino-2,3,5-trimethylquinoxaline (4), 2,3-diethyl-5-methyl-6-methylaminoquinoxaline (5), 5-methyl-6-methylamino 3-phenylquinoxaline (6), 6-amino-2,3,5-trimethylquinoxaline (7), 6-dimethylamino-2,3,5- trimethylaminoquinoxaline (8), 6-amino-2,3-dimethylquinoxaline (9). These compounds showed the mutagenic activity for both TA98 and TA100 in the presence of S9 mix, where they were more sensitive for TA100 strain. Methyl groups at the 2, 3 and/or 5 positions increased the potency of mutagenicity (1 < 2 < 3 << 4, 9 < 7). However, ethyl groups at the 2 and 3 positions lowered the mutagenicity of the methyl substitute but elevated it of the parental compound (1 < 5 < 4). A methyl group at the N6 position decreased the mutagenicity (7 > 4 > 8).

Amines↗

Changes in the binding capacity of alpha-1-acid glycoprotein in patients with renal insufficiency.

The elevation of alpha-1-acid glycoprotein (AAG) concentration and the binding characteristics of disopyramide (DP) to AAG in patients with renal insufficiency were investigated. The serum AAG concentration and protein binding of DP in patients were significantly greater than those in healthy subjects. However, in both the serum and the purified AAG, Scatchard analysis showed that the number of binding sites per molecule of AAG in patients was significantly lower than that in healthy subjects, although there was no difference in the dissociation constant (Kd). These results suggest that the AAG induced in renal insufficiency is qualitatively different from normal AAG. Moreover, the change of the unbound DP fraction when DP concentration was increased was larger in the patients than in the healthy controls. Therefore, monitoring of the unbound DP would be important for therapeutic drug monitoring in patients with renal insufficiency.

Adult↗

[Phase I Study of RA-700. RA-700 Clinical Study Group].

An antitumor substance, RA-700, isolated from Rubia akane or Rubia cordifolia has the novel structure. Phase I clinical study was conducted by the RA-700 clinical study group consisting of 6 institutions. A single dose administration and 5-day schedule administration were evaluated with 14 patients respectively. RA-700 was given from 0.2 to 1.4 mg/m2 in single i.v. dose study, from 0.4 to 2.0 mg/m2 in 5-day i.v. schedule study. Nausea and vomiting, fever, stomachache, mild hypotension and slight abnormality of electric-cardiogram were observed as the toxicities. In pharmacokinetic study, the elimination half-lives (t1/2) of RA-700 in plasma were 55 min, of alpha-phase and 3.9 hrs. of beta-phase by single dose study, and 23-25 min. of alpha-phase and 6-14 hrs. of beta-phase by 5-day schedule study. Accumulation was not found by 5-day schedule administration, and metabolite were not observed in plasma and urine. It seems that RA-700 is metabolized by the liver and excreted in the feces. In conclusion, the maximum tolerated dose was 1.4 mg/m2 for 5-day schedule administration.

Adenocarcinoma↗

Rapid and simple method for the determination of alpha 1-acid glycoprotein in serum by column liquid chromatography.

A rapid and simple method for the determination of alpha 1-acid glycoprotein (AAG) in serum was developed by using an anion-exchange column for clean-up of serum and a hydroxyapatite column for high-performance liquid chromatography (HPLC). A good correlation was observed between this HPLC method and the conventional radial immunodiffusion method. The method may also be used to determine the AAG concentration in the serum of experimental animals.

Adult↗

A simple method for the simulation of unbound serum disopyramide concentration in patients.

There were remarkable differences in the serum total and unbound concentrations of disopyramide (DP) and mono-N-dealkyldisopyramide (MND), the major metabolite of DP, among patients with arrhythmias. Serum levels of alpha 1-acid glycoprotein (AAG) also varied among the same patients. To predict the unbound DP concentrations, we have obtained the serum concentration-time curves of unbound DP in these patients by means of total DP concentration, DP pharmacokinetic parameters, AAG levels and dissociation constants of DP and MND at specific AAG binding sites. In patients with normal AAG levels, the theoretical values of unbound DP were in good agreement with the measured concentrations. On the other hand, in patients with high AAG levels, the theoretical values could be obtained by correcting the calculated values using both AAG levels of each patient and the equation correlating the unbound DP fraction to AAG concentrations. These findings indicate that patient AAG levels can provide valuable information permitting the rapid estimation of unbound DP concentrations, the pharmacologically active fraction, and the development of effective DP dosage regimens.

Disopyramide↗