PubMed Health⌕ Search

Biomedical subjects

C Fuke

Publications and source records attributed to C Fuke.

At least 19 recordsLinked to original sources

Age related changes in 5-methylcytosine content in human peripheral leukocytes and placentas: an HPLC-based study.

The goal of the present study was to investigate inter-individual and age-dependent variation of global DNA methylation in human tissues. In this work, we examined 5-methyldeoxycytidine ((met)C) content by HPLC in human peripheral blood leukocytes obtained from 76 healthy individuals of ages varying from 4 to 94 years (yr), and 39 human placentas from various gestational stages. The HPLC analysis revealed a significant variation of (met)C across individuals and is consistent with the previous findings of age-dependent decrease of global methylation levels in human tissues. The age-dependent decrease of (met)C was relatively small, but statistically highly significant (p= 0.0002) in the aged group (65.9 +/- 8.9 [mean age +/- SD] yr; n = 22) in comparison to the young adult group (19.3 +/- 1.4 yr; n = 21). Males showed a subtle but statistically significant higher mean (met)C content than females. In contrast to the peripheral blood samples, DNA extracted from placentas exhibited gestational stage-dependent increase of methylation levels that appeared to inversely correlate with the expression levels of human endogenous retroviruses. These data may be helpful in further studies of DNA methylation, such as inheritance of epigenetic patterns, environment-induced changes, and involvement of epigenetic changes in disease.

Adolescent↗

Forced double suicide by fire revealed by autopsy and toxicological examination: a case report.

We report here a forced double suicide by fire. Two burned bodies discovered in the debris of a house fire were identified as a father and his son by odontological findings. In the father, the concentration of carboxyhemoglobin (CO-Hb) in the left ventricle was over 90% and endrin, an organochlorine pesticide, was also detected in the stomach contents. However, 30.5% of CO-Hb in left ventricular blood and gasoline traces from an intratracheal puncture were detected in the son who had been undergoing treatment at a neuropsychiatric clinic. From these results, we determined this case to be a double suicide forced by the father in which the father set a fire with gasoline, thus burning his son to death, and then died in the fire himself after ingestion of Endrin. This case suggests the importance of integration of the results from the detailed forensic pathological and toxicological examinations and the scene investigation.

Adult↗

Postmortem diffusion of ingested and aspirated paint thinner.

Post mortem diffusion of paint thinner (toluene/ethyl acetate/isobutanol 8:1:1 v/v) from gastric residue (25 ml or 100 ml) and airways contamination (25 ml) was assessed in a human cadaver model, with sampling after 24 h at room temperature. Four torso blood samples showed less toluene diffusion after gastric instillation (0.5-3.8 micrograms/ml) than after tracheal instillation (10.5-421 micrograms/ml). Isobutanol diffused more readily than toluene with four torso blood samples 1.8-256 micrograms/ml after gastric instillation and 26-576 micrograms/ml after tracheal instillation. Following 25 ml gastric instillation, toluene concentrations (microgram/ml or microgram/mg) were: pericardial fluid 0.7-4.0; bile 0.5-0.6; urine 0-0.6; brainstem 1.1; lung 0.4-4.4; liver 0-162; spleen 0.6-0.7; kidneys 0.4-0.6; peri-renal fat 0.3-30.3; psoas muscle 0.3-0.8; concentrations of toluene and isobutanol were markedly higher in the left lobe of the liver than the right. Ethyl acetate was mostly undetectable in tissue samples but variably present in five blood samples: 0-21.2 micrograms/ml following 25 ml or 100 ml gastric instillation and 0-198 micrograms/ml following 25 ml tracheal instillation. Ethyl acetate was always detectable in pericardial fluid but not always detectable in gastric contents. We conclude that post mortem diffusion of toluene from gastric residue or airways contamination is unlikely to compromise the analytical validity of femoral venous blood samples, brain, or liver from deep within the right lobe. Analysis of pericardial fluid and gastric contents allows identification of ethyl acetate and isobutanol thus implicating thinner solution.

Acetates↗

Detection of two metabolites of diquat in urine and serum of poisoned patients after ingestion of a combined herbicide of paraquat and diquat.

This report describes the identification of diquat-dipyridone and diquat-monopyridone as metabolites of diquat, and time course changes of these metabolites plus diquat and paraquat in urine and serum of three poisoned patients who ingested the combination herbicide Preeglox L (containing 5% paraquat dichloride and 7% diquat dibromide) in a suicide attempt. Diquat-dipyridone was isolated from urine and identified by electron impact mass spectrometry, thin layer chromatography and high performance liquid chromatography (HPLC). Diquat-monopyridone, diquat-dipyridone, diquat and paraquat in serum and urine were assayed by HPLC with fluorescence and UV detection. Paraquat-monopyridone as a metabolite of paraquat was not detected in any samples. These results indicate that diquat is metabolized to diquat-monopyridone and diquat-dipyridone and also that the metabolism of diquat is easier than that of paraquat in humans. The concentrations of each metabolite were always lower than that of diquat in each specimen. However, the ratios of the concentration of each metabolite against the concentration of diquat increased with the decrease of diquat concentration. The metabolism of diquat seems to lower slightly the diquat concentration.

Chromatography, High Pressure Liquid↗

Postmortem diffusion of drugs from gastric residue: an experimental study.

Postmortem drug diffusion from gastric residue was assessed in a human cadaver model. Fifty milligrams of amitriptyline (Ami) and 5 g of paracetamol (Par) suspended in 350 ml of 10% methanol, 0.1 N HCl, and 50 ml urograffin with 5 g lithium carbonate (alkaline model) or without lithium (acidic model) was instilled into the stomach through an esophageal tube via a neck dissection. Multiple samples were obtained after 48 h at room temperature (range in mean hourly room temperature: 15.6-20.7 degrees C, n = 9). The pH of the gastric contents (alkaline model range = 8.3-8.9, n = 5; acidic model range = 3.4-3.8, n = 5) had no significant effect. Drug diffusion was most marked in the left lung base, with drug concentrations (micrograms/g) of 0.1-13.9 for Ami, 65-524 for Par, and 13-161 for lithium. Similarly affected were the left lobe of the liver (Ami, 0.1-54.9; Par, 7-218; lithium, 7-39), the spleen (Ami, 0.6-24.3; Par, 104-663; lithium, 27-106), and pericardial fluid (Ami, 0-4.5; Par, 48-641; lithium, 12-56). Diffusion into gallbladder bile, cardiac blood, aortic blood, and blood of the inferior vena cava was less severe. The left kidney and left lung were more severely affected than the right kidney and lung, and similarly the left and right psoas muscles. Least affected was the right anterior lobe of the liver and the lung apexes. This phenomenon may significantly influence drug concentrations in liver and in blood samples obtained from the torso, and consequently liver/blood drug ratios. To circumvent the problem of postmortem drug diffusion from the stomach, it is recommended that blood be sampled from a peripheral vessel, skeletal muscle from a limb, liver from deep within the right lobe, and lung from the apex rather than the base.

Acetaminophen↗

Inhibitory mechanism of intestinal ethanol absorption induced by high acetaldehyde concentrations: effect of intestinal blood flow and substance specificity.

This study describes the effects of high blood acetaldehyde concentrations on the intestinal absorption of ethanol and 2-butanone using an in situ single-pass perfusion technique on the rat intestine and the colored microsphere method to measure intestinal blood flow. We found that high blood acetaldehyde concentrations inhibit intestinal ethanol absorption in an inverse proportion to peak acetaldehyde concentrations, decrease intestinal blood flow, and inhibit intestinal absorption of 2-butanone. The decrease of the intestinal blood flow, induced by high blood acetaldehyde concentrations, is a major mechanism inhibiting intestinal ethanol absorption, but other mechanisms are also thought to inhibit absorption. Therefore, inhibition by high acetaldehyde concentrations is not the only factor affecting ethanol absorption.

Acetaldehyde↗

Site to site variability of postmortem drug concentrations in liver and lung.

We evaluated postmortem diffusion of gastric drug residue into tissues and blood in eight suicidal overdoses. Analyses were performed on liver (five sites), lung (four sites), spleen, psoas muscle and kidney (left and right), blood (peripheral and torso), vitreous, pericardial fluid, bile and, urine as well as residual gastric contents. Standard analytical techniques and instrumentation gas chromatograph/mass spectrometer and high performance liquid chromatography (GC-MS and HPLC) were used throughout. These case studies confirm previous studies of an animal and human cadaver model of gastric diffusion, in that in several instances there was drug accumulation in the left posterior margin of the liver and, to a lesser extent, the left basal lobe of the lung. Uncontrollable variables, such as postmortem interval, refrigeration before autopsy, and position of the body appear to influence significantly drug accumulation in a specific site. We suggest that autopsy sampling techniques should be standardized on blood taken from a ligated peripheral (preferably femoral or external iliac) vein, and liver from deep within the right lobe.

Acetaminophen↗

Drug accumulation and elimination in Calliphora vicina larvae.

Calliphora vicina larvae were fed on drug-laden muscle from three suicides involving amitriptyline, temazepam and a combination of trazodone and trimipramine; triplicate daily harvestings were analysed. The limit of detection for all four drugs was 0.01 micrograms drug/g larvae. Mean drug concentrations (microgram/g) in the initial muscle were:amitriptyline, 2.68; temazepam, 4.04; trazodone, 21.56; and trimipramine, 19.58. Larval rearings for days 4-8 (15 larval samples per drug) had mean and ranges of drug concentrations (microgram/g) of 0.10 (r, 0.02-0.24) for amitriptyline; 0.52 (r, 0.26-0.78) for temazepam; 0.13 (r, 0.05-0.32) for trazodone; and 0.28 (r, 0.10-0.59) for trimipramine. After day 8 there was a precipitous fall in larval drug concentrations associated with pupariation. At day 11 ranges of drug concentrations (microgram/g) were: amitriptyline, < 0.01-0.01; temazepam, 0.01-0.08; trazodone, < 0.01-0.01; and trimipramine, 0.04-0.04. Day 16 pupae had corresponding ranges (microgram/g) of < 0.01, 0.01-0.01, < 0.01 and < 0.01-0.02. Transfer to drug-free food at day 5 led to similar falls in drug concentrations (microgram/g) from day 5 to day 6: 0.08-0.03 for amitriptyline, 0.61-0.09 for temazepam, 0.13-0.01 for trazodone, and 0.30-0.02 for trimipramine. The results show considerable variation in larval drug concentrations, both at the same developmental stage and at different stages of the life cycle, under conditions which closely reflect case situations. In practice, the precipitous decrease in drug concentrations in non-feeding larvae and at pupariation make it desirable to sample only larvae actively feeding on a corpse.

Amitriptyline↗

Additional proof of reduction of ethanol absorption from rat intestine in vivo by high acetaldehyde concentrations.

We investigated intestinal ethanol absorption in rats pretreated with saline, cyanamide, 4-methylpyrazole and cyanamide + 4-methylpyrazole. The value of the absorption rate constant in the cyanamide-pretreated group with high acetaldehyde levels was the lowest among the four groups, but there were no significant differences among the remaining groups. We found that high acetaldehyde concentration itself clearly reduces intestinal ethanol absorption.

Acetaldehyde↗

Direct dissolution of gallstones with methyl tert-butyl ether (MTBE) via endoscopic transpapillary catheterization in the gallbladder (ETCG).

In a pilot study of direct dissolution therapy of gallstones with methyl tert-butyl ether (MTBE), endoscopic transpapillary catheterization in the gallbladder (ETCG) was performed. Complete dissolution was seen in 8 out of 12 (66%) patients and partial dissolution was seen in 2 (16%) patients. In one of the 8 complete dissolution patients, combined extracorporeal shock wave lithotripsy (ESWL) and dissolution therapy was carried out successfully. These 8 patients were followed up for 12-20 months with regular ultrasonography. During this period, 1 patient underwent laparoscopic cholecystectomy due to stone recurrence. Thickening of the gallbladder wall was seen in 2 patients, but there were no other complications. Using Tsuchiya's classification based on ultrasound, complete dissolution was seen in type Ia stones. This pilot study suggests that the direct dissolution of gallstones with MTBE via ETCG might be a useful and safe non-invasive treatment in patients with cholesterol stones in preserved gallbladders.

Adult↗

Different distribution of paraquat and diquat in human poisoning cases after ingestion of a combined herbicide.

This report describes a slight difference in the rate of decrease of serum paraquat and diquat concentrations in eight human cases of poisoning by the herbicide PreegloxL (containing paraquatCl2, 5% and diquatBr2, 7%) and the distribution of each in three autopsied cases. There was no variation between the serum concentrations of paraquat and diquat within 24 h after ingestion, but paraquat remained at a slightly higher concentration than diquat after more than 24 h. The decrease of urinary paraquat and diquat concentrations was almost the same during the 24-h determination period. In three autopsied cases, diquat concentrations in the tissues were relatively lower than those of paraquat, except in bile. Paraquat and diquat were unevenly distributed in various tissues and fluids, but the distribution patterns of each in any particular tissues were quite similar. As no difference was observed in the decrease of urinary paraquat and diquat, the much higher concentration of diquat in bile indicates that bile may be one of the effective factors in lowering the concentration of diquat in serum and in tissues of the human body long after ingestion.

Adult↗

A study of urinary dolichols as a biological marker for alcohol abuse. Report 1: Quantitation of urinary dolichols by high performance liquid chromatography after BondElutC18 (500 mg) cartridge extraction.

This report describes the quantitation of urinary dolichols (Dolichol-90, -95 and -100) by advanced high performance liquid chromatography (HPLC) after BondElutC18 (500 mg) cartridge column extraction. The urine sample (15 ml) mixed with heneicosaprenol as internal standard (IS, 300 ng) was adjusted to pH 3 by 0.1N hydrochloric acid (HCl). BondElutC18 (500 mg) column was preactivated by methanol (4 ml) and distilled water (4 ml), and the urine sample was applied. The column was washed by HCl-sodium acetate buffer (pH 3, 6 ml), distilled water (4 ml) and methanol (4 ml), and then eluted by 2-propanol/dichloromethane/methanol (5/3/2 by vol, 4 ml). After drying the eluted solution under nitrogen gas flow, the residue was dissolved in 60 microliters of HPLC mobile phase, and 20 microliters of the mixture was injected into the HPLC. The HPLC conditions were as follows: column, mu Bondapack C18 (Waters); mobile phase, 2-propanol/methanol (72/28 by vol), 1.0 ml/min; detection, UV at 210 nm. Recovery yields of Dolichol-90, -95 and -100 were in the range of 68-75% and the calibration curve of each dolichol was linear over the range 0.01-1.00 micrograms.

Alcoholism↗

Toxicological index of paraquat: a new strategy for assessment of severity of paraquat poisoning in 128 patients.

A new assessment of the severity of paraquat poisoning in 128 patients has been developed. It involves toxicological index of paraquat and discriminant function score. This system not only allows a more accurate assessment of severity of the poisoning, but also provides a more reliable prediction of the outcome in an early stage for the purpose of forensic and clinical toxicology.

Discriminant Analysis↗

[Experimental studies of postmortem diffusion of toluene in blood, brain, muscle and fat of rats exposed to toluene vapor].

This report describes the postmortem diffusion of toluene in blood, brain, muscle and fat of rats exposed to toluene vapor. After exposure to toluene vapor (4,000 ppm) for 15 and 60 min, rats were killed by CO2 exposure and left for 12 and 24 hours in a fresh air. Toluene concentrations in blood, brain, muscle and fat were determined by head space gas chromatography. Postmortem decrease of toluene concentration in blood and increase of that in fat were observed with postmortem interval in both exposure conditions. But an extremely larger postmortem changes in the short exposure than those in the long exposure were observed. These are due to the facts that the value of fat/blood toluene concentration ratio at the time of death in the short exposure (3.3) was extremely smaller than that in the long exposure (10.5). Postmortem increase in muscle was also observed slightly. Postmortem concentrations in brain in both exposure intervals were relatively constant during these experiments. This postmortem stability is attributable to its anatomical features. These results suggest that brain toluene concentration at the autopsy is useful for the estimation of blood toluene concentration at the time of death and by comparison between toluene concentration in blood and that in brain it may be possible to presume the circumstances of death.

Adipose Tissue↗

[In vitro studies of the metabolism of paraquat and diquat using rat liver homogenates--isolation and identification of the metabolites of paraquat and diquat].

The metabolism of paraquat and diquat was studied in vitro using rat liver homogenates, and the resulting metabolites were identified. Rat liver was homogenized with three volumes of isotonic buffer, and aliquots of the homogenate were preheated in a boiling water bath for 5 min prior to use. One milliliter of a mixture including both paraquat and diquat in an isotonic buffer solution (10 micrograms ion/ml) was incubated with an equal volume of fresh or preheated homogenate for 1 to 60 min at 37 degrees C. Quantification of paraquat and diquat was carried out by high-performance liquid chromatography (HPLC). In the fresh homogenate, a gradual decrease of paraquat concentration (about a 30% decrease over 60 min of incubation) and a rapid decrease of diquat concentration (not detectable after 10 min of incubation) were observed, but the same phenomenon was not evident with the preheated homogenate. Analysis of the incubated mixture of fresh liver homogenate with paraquat and diquat revealed three unknown peaks on the HPLC chromatograms; these seemed to be breakdown products of paraquant and diquat. The products were isolated and purified from the mixture by Sep-Pak C18 cartridge extraction, HPLC, silica gel column chromatography and Sephadex LH-20 column chromatography. Analysis of the chemical structure of the purified compounds was performed by infrared spectroscopy, mass spectrometry and nuclear magnetic resonance spectroscopy. These analyses determined that paraquat-monopyridone (1',2'-dihydro-1,1'-dimethyl-2-oxo-4,4'-bipyridylium ion) was derived from paraquat, and that diquat-monopyridone (6,7-dihydro-4-oxodipyrido [1,2-a':2',1'-c] pyrazinium ion) and diquat-dipyridone (6,7-dihydrodipyrido [1,2-a:2',1'-c] pyrazine-4,9-dione) were derived from diquat. These results indicate that paraquat and diquat are metabolized by rat liver homogenate, diquat more readily so than paraquat. As the toxicity of these metabolites has been reported to be much lower than those of the parental compounds, it would seem that there is a system capable of detoxifying paraquat and diquat in rat liver.

Animals↗

Hymenoptera sting anaphylaxis: detection and clinical significance of individual bee and wasp venoms specific IgE and IgG4 antibodies.

In Japan, an average of 37 fatalities per year related to bee or wasp stings were reported during the years 1979-1988. To confirm fatal anaphylaxis serologically, we measured bee or wasp venom specific IgE (sIgE) and IgG4 (sIgG4) antibodies in the sera of 22 patients who visited hospitals with either allergic or anaphylactic reactions after bee or wasp stings by using Enzyme-Linked Immunosorbent Assay. Specific IgE or IgG4 antibodies against Polistes apachus (Paper wasp) and/or a mixture of Polistes annularis, P. exceramans, P. fuscatus, and P. metricus venoms of Polistes genus were detected in 11 patients and the detection frequencies were the highest among positive antibodies against bee or wasp venoms. The severity of allergic reactions was graded from 0-4 according to Mueller. The detection frequencies of sIgE in Mueller grade 0-3 patients were in the range of 33% to 67%, and in grade 4 were 100%. Whereas, the detection frequency of sIgG4 was high (67-100%) in grade 2-4 patients. Especially high levels of sIgE and sIgG4 were detected in patients experiencing the most severe clinical reactions. The detection of venom specific IgE and IgG4 antibodies appears to be useful when determining bee or wasp stings as the cause of fatalities.

Adult↗

A comparative study of ethanol absorption in the canine jejunum after pretreatment with cyanamide or pyrazole.

This report describes the retardation of ethanol absorption from the intestinal tract and reduction of portal blood flow by high acetaldehyde concentrations in dogs using a jejunal segment with the vascular supply intact. The cyanamide-pretreatment group (CY), in which an extremely high acetaldehyde concentration developed, in comparison with the control and pyrazole-pretreated (PY) groups, showed a gradual increase of portal blood ethanol, a 25% reduction in the amount of absorbed ethanol, and an 85% smaller absorption rate constant value (Ka). These facts indicate that the presence of a high acetaldehyde concentration in the blood results in a reduction of ethanol absorption and retardation of ethanol reaching the systemic circulation. The rapid reduction of portal blood flow and the lower ethanol level in the portal vein observed in the CY group, in comparison with the other two groups, also indicate that the reduction of ethanol permeability through the absorption site to the blood is an important retarding factor induced by acetaldehyde.

Acetaldehyde↗