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Biomedical subjects

Y Kikawa

Publications and source records attributed to Y Kikawa.

17 recordsLinked to original sources

Urinary leukotriene E4 after exercise challenge in children with asthma.

To assess the role of sulfidopeptide leukotrienes in the pathogenesis of exercise-induced asthma (EIA), the urinary levels of leukotriene E4 (LTE4), a metabolite of LTC4 and LTD4, were measured by RIA before and after exercise in 13 children with EIA and 10 healthy children. Mass spectrometry was used to confirm the presence of LTE4 in urine and the specificity of the RIA. There was no significant difference in the urinary LTE4 levels before exercise between the children with asthma and healthy children (109 [21 to 265] versus 122 [45 to 156] pg/mg of creatinine; median and range). Urinary LTE4 levels increased significantly after exercise in the children with EIA (from 109 [21 to 265] to 196 [40 to 655] pg/mg of creatinine; median and range; p less than 0.05) but not in the healthy children. The children with asthma demonstrated no significant correlation between the LTE4 level after exercise and the degree of bronchoconstriction, as revealed by the maximal percent fall in the peak expiratory flow rate. Taken together with a recent study that pretreatment with a potent and selective LTD4 antagonist markedly attenuated EIA, our findings suggest that sulfidopeptide leukotrienes may play some role in the pathogenesis of this type of asthma with other factors also being involved in determining the overall airway response.

Asthma, Exercise-Induced

Mucopolysaccharidosis VI (Maroteaux-Lamy syndrome) with hearing impairment and pupillary membrane remnants.

A Japanese boy aged 13 months was referred to us because thickened ribs had been observed on a chest X-ray taken during a respiratory infection. mucopolysaccharidosis type VI (MPS VI) was diagnosed based on urinary glycosaminoglycan analysis and low activity of arylsulfatase B in peripheral leukocytes. He had mild pupillary membrane remnants, but no corneal opacities. The auditory brainstem response revealed moderate hearing impairment, which may have caused his subnormal DQ score of 85 at the age of 19 months. Although MPS VI is characterized by normal intellectual development with normal hearing in early infancy, it is important to examine for hearing loss, especially when an infant with this disease shows developmental delay.

Hearing Disorders

Exercise-induced urinary excretion of leukotriene E4 in children with atopic asthma.

Urinary levels of leukotriene (LT) E4, a stable end-product of LTC4 and LTD4, were measured before and after exercise in 10 children with severe asthma and seven children with moderate asthma using HPLC and RIA to clarify the relationship of LT to the severity of asthma and to the degree of bronchospasm in exercise-induced asthma. The urinary LTE4 level significantly increased after exercise in the severe asthma group, but not in the moderate asthma group (14.3 +/- 14.5 to 24.3 +/- 20.6 versus 19.6 +/- 12.3 to 17.6 +/- 10.8 ng/mmol creatinine, p less than 0.05). The urinary LTE4 level increased in 10 patients (eight with severe asthma), and it decreased in seven patients (five with moderate asthma). A significant difference in the degree of bronchospasm after exercise (as shown by the maximal % fall in the peak expiratory flow rate), was seen when patients with increased urinary LTE4 excretion were compared with those with decreased excretion (60.4 +/- 17.3 versus 24.1 +/- 14.3%, p less than 0.01). Our findings suggest that exercise-induced asthma, or at least a subtype of exercise-induced asthma, may partly develop through the release of LTC4.

Asthma, Exercise-Induced

Pathophysiologic study on methylmalonic aciduria: decrease in liver high-energy phosphate after propionate loading in rats.

Methylmalonate or propionate was i.v. infused into B12-deprived and control rats. In the B12-deprived rats, the plasma and liver concentrations of B12 decreased to 8 and 13%, respectively, of those of the control rats. The propionate loading produced a disproportionate increase in liver propionate levels; the mean ratio of methylmalonate to propionate in the liver was approximately 1.0 after methylmalonate loading, whereas it was 0.1 to 0.2 after propionate loading. The liver propionate and methylmalonate levels in the B12-deprived rats were twice as high as those in the control rats. The mean ratio of beta-ATP to inorganic phosphate in the liver, measured with 31P-magnetic resonance spectroscopy, decreased from 0.60 to 0.48 in the B12-deprived rats and from 0.78 to 0.63 in the control rats after methylmalonate loading; the ratio decreased from 0.57 to 0.37 in the B12-deprived rats and from 0.76 to 0.56 in the controls after propionate loading. Statistical analysis showed that propionate loading caused a more marked decrease in ATP than did methylmalonate loading (F = 26.33, degree of freedom 1 and 15; p less than 0.001), while B12-deprivation caused a more marked decrease in ATP than did the control diet (F = 92.26, df 1 and 15; p less than 0.001). The concentrations of tricarboxylic acid cycle intermediates and related organic acids in the livers of the rats suggested that propionate inhibited NAD(+)-dependent enzymes in the cycle.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate

Leukotriene B4 production in children with steroid-responsive nephrotic syndrome.

Leukotriene B4 (LTB4) production in polymorphonuclear leucocytes (PMN) was examined in ten children with steroid-responsive nephrotic syndrome (SRNS) before, during, and after steroid administration. Comparison of LTB4 production was made in 14 children with non-inflammatory disease who were not receiving steroid therapy. No significant change was noted in PMN LTB4 biosynthesis in children with SRNS throughout any phase of the disease. Furthermore, there was no significant difference in LTB4 biosynthesis in PMN between SRNS patients before steroid therapy and patients with non-inflammatory disease. These findings suggest that inhibition of LTB4 production is not involved in the mechanism underlying steroid action in SRNS.

Adolescent

Acute infantile hemiplegia in a patient with propionic acidaemia.

A 10-month-old girl with mild developmental delay became hemiplegic after seizures. Cranial CT scan and magnetic resonance imaging (MRI) revealed no lesions related to vascular diseases, but brain atrophy on the right side was remarkable. Digital subtraction angiography showed slightly decreased visualization of peripheral branches of the right medial cerebral artery. Propionic acidaemia was diagnosed on the basis of high plasma levels of propionic acid and its metabolites and the elevated urinary excretion of these acids. With therapy, the levels of these acids fell, and her left hemiplegia disappeared 3 months later.

Amino Acid Metabolism, Inborn Errors

Diagnosis of iliopsoas pyomyositis by ultrasonography and CT.

A patient with iliopsoas muscle pyomyositis was successfully treated with intravenous antibiotics alone. The diagnosis was made by ultrasonography and X-ray computed tomography after five days of spiking fevers. Ultrasonography and X-ray computed tomography revealed swelling of the muscle body but no abscess formation. We emphasize the usefulness of early diagnostic imaging to allow conservative treatment of iliopsoas muscle pyomyositis.

Child

Delayed auditory brainstem response in thiamin-deficient rats.

We recorded the auditory brainstem responses of rats fed a thiamin-deficient diet. The interpeak latencies between waves I and III, as well as those between waves I and IV, were significantly prolonged from day 24, while the latency of wave I was prolonged on day 26 of the thiamin-deficient diet. These delayed responses were corrected in 2 to 4 days after the initiation of daily intraperitoneal thiamin injections from day 32. The rats that were fed the thiamin-deficient diet, and then sacrificed on day 32, showed a decrease of total thiamin levels in the brain (26% of the level in control rat brains). Based on these results, we emphasize the value of the auditory brainstem response to detect thiamin deficiency.

Animals

Branched-chain alpha-ketoacids and related acids in thiamin-deprived rats.

We showed elevated plasma levels of branched-chain amino acids, alpha-ketoacids, alpha-hydroxyacids in thiamin-deprived rats, which had decreased liver thiamin levels (2.4% of control) after 4 weeks of feeding of thiamin-deficient diet. The ratios of mean levels of these acids in thiamin-deficient rats to those in control rats were as follows: total branched-chain amino acids 1.6; total branched-chain alpha-ketoacids 2.7; total branched-chain alpha-hydroxyacids 3.6; pyruvic acid 1.6. The plasma level of total branched-chain alpha-hydroxyacids was correlated to liver thiamin concentration (r = -0.67, p less than 0.01), but those of the other two acids were not correlated. Although the increased levels of branched-chain acids in thiamin-deprived rats were less remarkable than those of ill patients with maple syrup urine disease, they reflect the reportedly decreased branched-chain alpha-ketoacid dehydrogenase activities (about 40% of control), and we discussed whether the toxic effects of individual branched-chain acid could be demonstrated by its administration to the thiamin-deprived rats.

Amino Acids, Branched-Chain

[Development of a system for monitoring the production of leukotriene B4, C4, D4 and E4 in whole blood of pediatric asthmatic patients].

We have developed a new method using a computerized photodiode-array spectrophotometer (CPAS), to characterize the biosynthesis and the inhibition of leukotriene (LT) B4, C4, D4 and E4 in calcium ionophore (Ca-I)-stimulated whole blood. The results obtained were as follows: 1. The use of CPAS enabled us to identify and measure LTs from 2 ml volume of Ca-I stimulated whole blood as well as to check the purity of LTs, without any use of radioimmunoassay or bioassay. 2. LTC4 produced in whole blood was almost completely converted to LTE4 after 80 min incubation, and at this time both the production of LTE4 and LTB4 reached a plateau and remained constant thereafter. 3. Azelastine added in vitro caused a dose-dependent inhibition of Ca-I stimulated LTB4 and LTE4 production with an IC50 of 10 microM.

Adolescent

Occurrence of 9-deoxy-delta 9,delta 12-13,14-dihydroprostaglandin D2 in human urine.

We have developed a highly sensitive and specific solid-phase enzyme immunoassay for 9-deoxy-delta 9,delta 12-dihydroprostaglandin D2 (delta 12-PGJ2) and studied the occurrence of this novel PGD2 metabolite in human urine. The assay detected delta 12-PGJ2 over the range of 2-200 pg, and the antiserum showed 2% cross-reaction with PGJ2 and less than 0.2% with other PGs. We used this assay and purified the delta 12-PGJ2-like immunoreactive substance from human urine. Purification consisted of chromatographies on a Sep-Pak C18 cartridge, a silicic acid column, reversed-phase high-performance liquid chromatography, and finally an affinity column of anti-delta 12-PGJ2 antibody. As a result, about 850 ng of delta 12-PGJ2-like immunoreactive substance were recovered from 60 liters of human urine. The purified material was identified as delta 12-PGJ2 by gas chromatography/high resolution-selected ion monitoring using the molecular ion m/z 448[M]+. and ions [M - 15]+, [M - 43]+, [M - 100]+., and [M - 143]+. The amounts of delta 12-PGJ2 in the urine from normal, volunteer men and women were 151.5 +/- 20.0 and 65.6 +/- 5.4 ng/24 h (mean +/- S.E., n = 5), respectively. The delta 12-PGJ2 amount in urine did not alter significantly during storage for at least 24 h or by the addition of authentic PGD2 to urine samples, suggesting that the delta 12-PGJ2 we determined was not derived from the decomposition of PGD2 in the urine during storage or purification. Moreover, when a single dose of PGD2 (1 mg/kg) was injected intravenously into cynomolgus monkeys, the urinary level of delta 12-PGJ2 increased 20- to 180-fold over the normal levels, whereas the delta 12-PGJ2 level decreased by 40-50% of the normal levels, following the administration of indomethacin at a dose of 1 mg/kg. These results indicate that delta 12-PGJ2 is formed naturally in the body and excreted as a urinary PGD2 metabolite.

Adult

Stimulated arachidonate metabolism during foam cell transformation of mouse peritoneal macrophages with oxidized low density lipoprotein.

Changes in arachidonate metabolism were examined in mouse peritoneal macrophages incubated with various types of lipoproteins. Oxidized low density lipoprotein (LDL) was incorporated by macrophages and stimulated macrophage prostaglandin E2 (PGE2) and leukotriene C4 syntheses, respectively, 10.8- and 10.7-fold higher than by the control. Production of 6-keto-PGF1 alpha, a stable metabolite of prostacyclin, was also stimulated. No stimulation was found with native LDL, which was minimally incorporated by the cells. Acetylated LDL and beta-migrating very low density lipoprotein (beta-VLDL), though incorporated more efficiently than oxidized LDL, also had no stimulatory effect. When oxidized LDL was separated into the lipoprotein-lipid peroxide complex and free lipid peroxides, most of the stimulatory activity was found in the former fraction, indicating that stimulation of arachidonate metabolism in the cell is associated with uptake of the lipoprotein-lipid peroxide complex. These results suggest that peroxidative modification of LDL could contribute to the progression of atheroma by stimulating arachidonate metabolism during incorporation into macrophages.

Animals

Leukotriene B4 and 20-OH-LTB4 in purulent peritoneal exudates demonstrated by GC-MS.

Inflammatory peritoneal exudates from 11 patients with purulent peritonitis or non-perforative appendicitis were analyzed by gas chromatography mass spectrometry (GC-MS) for their content of 5S, 12R-dihydroxy-6,14-cis-8,10-trans-eicosatetraenoic acid (LTB4) and its omega-oxidized catabolite, 5S,12R,20-trihydroxy-6,8,10,14-eicosatetraenoic acid (20-OH-LTB4). Eleven samples of peritoneal exudates were examined. LTB4 and 20-OH-LTB4 were demonstrated only in the samples from patients with purulent peritonitis. LTB4 was detected in 4 samples, and 20-OH-LTB4 was detected in 6 samples by GC-MS with selected ion monitoring. In addition, a nearly full spectrum corresponding to that of synthetic 20-OH-LTB4 was obtained with 3 samples. Neither LTB4 nor 20-OH-LTB4 were detected in samples from patients with non-perforative appendicitis. LTB4 or 20-OH-LTB4 may be related to the pathophysiological mechanism of purulent inflammations.

Appendicitis

Leukotriene B4 biosynthesis in polymorphonuclear leukocytes from blood of umbilical cord, infants, children, and adults.

The biosynthesis of 5(S), 12(R)-dihydroxy-6,14-cis-8,10-trans-eicosatetraenoic acid, leukotriene B4, by human polymorphonuclear leukocytes was examined in relation to age. The leukotriene B4 production by polymorphonuclear leukocytes from umbilical cords, infants, and adults was assayed using high pressure liquid chromatography. The specificity of the leukotriene B4 assay was examined by gas chromatography mass spectrometry. Polymorphonuclear leukocytes from 10 umbilical cords, 24 infants and children, and 10 adults were examined for their ability to synthesize leukotriene B4, in vitro after stimulation by the ionophore A23187 or platelet-activating factor. Among the infants and children, there was a slight age-dependent increase of leukotriene B4 production by polymorphonuclear leukocytes in response to ionophore A23187, but it was not statistically significant. Leukotriene B4 production by polymorphonuclear leukocytes in the umbilical cords and infants was not significantly lower than that of polymorphonuclear leukocytes in adults in response to both ionophore A23187 and platelet-activating factor under our experimental conditions.

Adolescent