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Biomedical subjects

I Shimizu

Publications and source records attributed to I Shimizu.

At least 19 recordsLinked to original sources

Glucose and oxygen deprivation induces a Ca(2+)-mediated decrease in (Na(+)+K+)-ATPase activity in rat brain slices.

Exposure of rat brain cortical slices to a medium lacking in glucose, oxygen or both glucose and oxygen, resulted in a decrease of the tissue ATP content and a reduction of (Na(+)+K+)-ATPase activity in membranes prepared from the slices. These treatments also inhibited partial reactions of (Na(+)+K+)-ATPase such as Na(+)-dependent phosphorylation and K(+)-stimulated phosphatase, as well as specific binding of [3H]ouabain in membranes prepared from the slices. Glucose deprivation and hypoxia decreased (Na(+)+K+)-ATPase activity in the absence of extracellular Ca2+, but the effects were blocked by 1,2-bis(2-amino-phenoxy)ethane-N,N,N',N'-tetraacetic acid tetra-acetomethyl ester (BAPTA-AM), a chelator of intracellular Ca2+. Metabolic inhibitors mimicked the effects of glucose deprivation and hypoxia. The effect of glucose-free hypoxia was dependent on extracellular Ca2+. It was blocked by Mg2+ at high concentration, bepridil or amiloride, but not by voltage-sensitive Ca2+ channel antagonists and glutamate receptor antagonists. None of the drugs tested here, except for dithiothreitol, affected the inhibitory effect of glucose-free hypoxia on the enzyme activity. In contrast to brain (Na(+)+K+)-ATPase, the kidney enzyme was insensitive to glucose and oxygen deprivation and metabolic inhibitors which depleted the tissue ATP.

Animals

Postnatal change in a Ca(2+)-mediated decrease in (Na+ + K+)-ATPase activity in rat brain slices.

The treatment of brain slices from immature rats with veratrine and monensin did not cause any change in (Na+ + K+)-adenosine triphosphatase (ATPase) activity or [3H]ouabain binding in membranes prepared from the slices, though these reagents remarkably stimulated Ca2+ uptake in the slices. Exposure of the slices from adult rats to a glucose-free, hypoxic or both glucose-free and hypoxic medium resulted in a decrease in the enzyme activity, but the enzyme from immature rats was resistant to the conditions.

Animals

[A case of occupational asthma caused by arrowhead scale in mandarin orange-worker].

A 50-year-old woman with occupational asthma, whose attacks were provoked by inhalation of Arrowhead scale (Unapsis Yanonensis Kuwana) attached to the leaves of mandarin oranges is reported. She experienced asthmatic attacks while picking leaves and harvesting mandarin oranges. Because Arrowhead scale-dust stuck to the leaves was suspected to be the allergen, tests of allergy were performed using an extract of the allergen prepared by Unger's method in our laboratory. Asthmatic attack was provoked 90 minutes after inhalation of the extract of cocoon. Histamine was not released, but leukotriene D4 production was induced by the addition of the extract to whole blood. Basophils were activated by addition of anti-IgG anti-sera as well as the extract. These data indicate that LT released from target cells in response to the worm elements, as well as histamine, is important as a chemical mediator.

Agricultural Workers' Diseases

Na+ influx-induced decrease of (Na+ + K+)-ATPase activity in rat brain slices: role of Ca2+.

Treatment of rat brain slices with veratrine and monensin decreased (Na+ + K+)-ATPase activity in the membranes in a dose-dependent manner. The effect of monensin, like that of veratrine, was accompanied by a decrease of maximal binding sites for ouabain. The inhibitory effect of monensin on the enzyme activity was dependent on external Ca2+ at low concentrations, but not at a high concentration. The decreased enzyme activity induced by monensin was restored by subsequent incubation of the slices in a Ca(2+)-free medium containing 1,2-bis(2-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid tetraacetoxymethyl ester (BAPTA-AM), a chelator of intracellular Ca2+. The effect of monensin at a low concentration on enzyme activity was antagonized by amiloride (1 mM), bepridil (5 microM), quinacrine (30 microM) or verapamil (30 microM), but not by nifedipine (1 microM) or omega-conotoxin (1 microM). Furthermore, the inhibitory effect of monensin at a high concentration under Ca(2+)-free conditions was blocked by BAPTA-AM (30 microM) and by bepridil (100 microM) or diazepam (500 microM), inhibitors of mitochondrial Na(+)-Ca2+ exchange. Inhibitors of calmodulin, protein kinase C, phospholipase A2 and calpain did not affect the monensin-induced decrease of enzyme activity. Dithiothreitol (10 mM) blocked the effect of monensin on enzyme activity but did not affect the ionophore-induced influx of Ca2+ in the slices.

Amiloride

Hepatocyte growth factor in ascites from patients with cirrhosis.

Hepatocyte growth factor (HGF) stimulating DNA synthesis of adult rat hepatocytes in primary culture was found in the ascites and plasma from patients with liver cirrhosis, but not in those from patients without cirrhosis. HGF was purified about 400-fold in 10% yield from cirrhotic ascites by ultrafiltration, cation-exchange chromatography on a S-Sepharose column, and affinity chromatography on a heparin-Sepharose CL-6B column. The partially purified factor was a heat- and acid-labile cationic protein with a molecular weight of 100,000-150,000. Its effect was half-maximal at 3.8 micrograms/ml, and was additive with those of insulin and epidermal growth factor. HGF in ascites from patients with cirrhosis had the same properties as HGF purified and characterized from rat platelets. These findings suggest that HGF is secreted into the ascites from the plasma or liver of patients with cirrhosis and may increase in the plasma with the development of hepatic impairment and act in repair of the damaged liver of patients with chronic liver disease.

Adult

Relationship between [3H]mazindol binding to dopamine uptake sites and [3H]dopamine uptake in rat striatum during aging.

Certain drugs exhibit a remarkable correlation between their ability to inhibit synaptosomal uptake of dopamine and the binding of [3H]mazindol to striatal membranes. To investigate the role of mazindol binding sites in the dopamine uptake process and the fate of these sites (labeling dopaminergic neurons) during aging, we have examined the properties of mazindol binding and dopamine uptake in individual young and old rats. There was a 48% decrease (p = 0.0001) in the Bmax of mazindol binding and a 23% decrease (p = 0.0166) in the Vmax of dopamine uptake with no apparent change in their affinities with age. Regression analysis of the relationship between Bmax and Vmax exhibited a significant correlation in old (p = 0.0156) but not young rats (p = 0.1398). These data suggest that the number of mazindol binding sites decreases with age and that the number of sites on the dopamine transporter complex far exceeds the number required to elicit maximal dopamine uptake.

Aging

Identification of the promoter region of the ribosome-releasing factor cistron (frr).

Previous studies of the structure and expression of the ribosome-releasing factor (RRF) cistron (frr) have suggested that an efficient promoter region is located in the RRF cistron. We report here on the nucleotide sequence and in vivo function of the RRF promoter. The transcriptional start site was determined by primer extension to be 58 bp upstream of the translational initiation codon of frr. The location of the RRF promoter region was confirmed by means of (i) deletion analysis of the 5' proximal sequences of frr fused to the chloramphenicol acetyltransferase reporter gene, (ii) analysis of RRF produced in vivo from the deletion derivatives of frr cloned into pUC19, and (iii) gel retardation analysis with Escherichia coli RNA polymerase. The -35 and -10 regions were TTacCc and TATAcT, respectively. The strength of the RRF promoter was similar to that of the lac promoter, as determined by in vivo expression of chloramphenicol acetyltransferase activity. However, the RRF promoter was not affected by the intracellular cyclic AMP level despite the presence of a cyclic AMP receptor protein binding site downstream of the RRF promoter.

Amino Acid Sequence

Anatomical and functional recovery following spinal cord transection in the chick embryo.

Following complete transection of the thoracic spinal cord at various times during embryonic development, chick embryos and posthatched animals exhibited various degrees of anatomical and functional recovery depending upon the age of injury. Transection on embryonic day 2 (E2), when neurogenesis is still occurring and before descending or ascending fiber tracts have formed, produced no noticeable behavioral or anatomical deficits. Embryos hatched on their own and were behaviorally indistinguishable from control hatchlings. Similar results were found following transection on E5, an age when neurogenesis is complete and when ascending and descending fiber tracts have begun to project through the thoracic region. Within 48 h following injury on E5, large numbers of nerve fibers were observed growing across the site of transection. By E8, injections of horse-radish peroxidase (HRP) administered caudal to the lesion, retrogradely labelled rostral spinal and brainstem neurons. Embryos transected on E5 were able to hatch and could stand and locomote posthatching in a manner that was indistinguishable from controls. Following spinal cord transections on E10, anatomical recovery of the spinal cord at the site of injury was not quite as complete as after E5 transection. Nonetheless, anatomical continuity was restored at the site of injury, axons projected across this region, and rostral spinal and brainstem neurons could be retrogradely labelled following HRP injections administered caudal to the lesion. At least part of this anatomical recovery may be mediated by the regeneration or regrowth of lesioned axons. Although none of the embryos transected on E10 that survived to hatching were able to hatch on their own, because several sham-operated embryos were also unable to hatch, we do not attribute this deficit to the spinal transection. When E10-transected embryos were aided in escaping from the shell, they were able to support their own weight, could stand, and locomote, and were generally comparable, behaviorally, to control hatchlings. Repair of the spinal cord following transection on E15 was considerably less complete compared to embryos transected on E2, E5, or E10. However, in some cases, a degree of anatomical continuity was eventually restored and a few spinal neurons rostral to the lesion could be retrogradely labelled with HRP. By contrast, labelled brainstem neurons were never observed following E15 transection. E15 transected embryos were never able to hatch on their own, and when aided in escaping from the shell, the hatchlings were never able to stand, support their own weight or locomote.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Converting enzyme inhibition in kinin-deficient brown Norway rats.

The contribution of endogenous kinins to the acute antihypertensive actions of the converting enzyme inhibitor ramipril was investigated in kinin-deficient Brown Norway rats and in Brown Norway-Hannover rats and Wistar rats as controls. In Brown Norway rats, urinary kinin excretion was measurable but extremely low when compared with control strains. The depressor responses to intra-arterial bradykinin injections 1) were not different between Brown Norway and Brown Norway-Hannover rats, 2) were potentiated by intravenous ramipril (60 micrograms), and 3) were attenuated by intra-arterial infusion of the bradykinin antagonist B4146 (40 micrograms/kg/min) to a similar extent in both strains. In renal hypertensive (two-kidney, one clip) Brown Norway rats, the blood pressure reductions to intravenous bolus injections of ramipril (100 micrograms) were significantly reduced both in extent and duration when compared with hypertensive Brown Norway-Hannover and Wistar rats. Intra-arterial infusion of B4146 (40 micrograms/kg/min) attenuated the depressor response to ramipril in Wistar and Brown Norway-Hannover rats but had no effect in Brown Norway rats. In contrast, all three groups showed similar depressor responses to intravenous infusions of the angiotensin II receptor antagonist saralasin. These responses were not influenced by the bradykinin antagonist. Our data support the hypothesis that kinins are important for the acute antihypertensive actions of converting enzyme inhibitors.

Angiotensin II

Studies on GnRH agonist suppression of estrogen production in patients with endometriosis.

The chronic administration of GnRH agonists to women results in the reversible suppression of estrogen production by the ovary. In the present study, the mechanism of the GnRH agonist suppression of estrogen production was investigated in patients with endometriosis. During the treatment with intranasal buserelin spray, the concentration of serum estradiol-17 beta (E2) was suppressed to near-castrate levels. Despite this marked suppression of serum E2, immunoreactive LH and FSH levels in serum were not changed. On the other hand, serum bioactive LH was markedly reduced. It was also observed during the treatment that the pituitary LH pulse disappeared and pituitary response to exogenous GnRH was significantly suppressed. In contrast, ovarian response to human menopausal gonadotropin (hMG) was not altered during the treatment. These findings suggest that the GnRH agonist suppression of estrogen production in the patients with endometriosis is through both suppression of the secretion of biologically active LH and the reduction of the LH pulse, but not through a direct inhibitory effect on ovarian estrogen biosynthesis.

Administration, Intranasal

[Evaluation of the internal carotid artery blood flow velocity waveforms using continuous-wave Doppler ultrasound in pregnant women].

The internal carotid artery blood flow velocity waveforms were measured with continuous-wave Doppler ultrasound in 17 normal nonpregnant and 50 pregnant women. 1) The measurement of the blood flow velocities in the pregnant women revealed a characteristic pattern. That is, in the women in the early pregnant stage (less than 16 weeks' gestation, n = 13), the velocity was lower than that of nonpregnant women. In the middle pregnant stage (16 to 27 weeks' gestation, n = 18), the velocity became higher than in the early stage and in the late stage (equal to and more than 28 weeks' gestation, n = 19), it again became slower. 2) The initial systolic peak blood velocity (S1), end-diastolic blood velocity (d), time averaged maximal blood velocity (M), Pourcelot ratio (PR), systolic-diastolic ratio (S/D) and pulsatility index (PI) were calculated and did not show laterality in any group. 3) PR, S/D and PI of the women in the early stages of pregnancy were higher than those of nonpregnant women, indicating that the cerebral vascular resistance became higher in early pregnancy. This technique presented the possibility of the assessment of the cerebral blood circulation in pregnant women.

Adult

Preliminary report on the use of danazol in the treatment of endometrial adenomatous hyperplasia.

Since the authors recently reported that danazol inhibits the growth of human endometrial cancer cells in vitro, a clinical trial was initiated to examine whether danazol can regress adenomatous hyperplasia, a precursor of endometrial adenocarcinoma. Danazol was used for 3 months in the treatment of five patients with a history of hypermenorrhea and irregular uterine bleeding. Within a 9-month follow-up period, all patients were symptom-free, and none of the specimens obtained by endometrial biopsy showed the presence of adenomatous hyperplasia. These findings suggest that danazol has a potential application in the treatment of patients with endometrial adenomatous hyperplasia. A possible mechanism of action of the compound in adenomatous hyperplasia is also discussed.

Adenoma

Onset and development of intersegmental projections in the chick embryo spinal cord.

The ontogeny of intersegmental (propriospinal) projections was studied in the chick embryo spinal cord between embryonic day 2.5 and day 6. Our goals were 1) to determine the earliest projections of intersegmental interneurons between specific spinal regions and to establish the cell types involved; and 2) to follow the ontogeny of these projections during the early formative stages of spinal cord development. Studies were carried out in vitro by using an isolated spinal cord/brainstem preparation. Horseradish peroxidase injections were made either uni- or bilaterally at various levels of the spinal cord along the rostrocaudal axis of the embryo. HRP histochemistry was done on Vibratome sections with diaminobenzidine as the chromogen. Following unilateral injections at day 2.5, labelled commissural interneurons were found contralaterally and were confined to the injected segment. Subsequently, labelled cells were found progressively further away from the injected segment. By day 4.5 reciprocal projections extended between lumbar and brachial regions. Interneurons with intersegmental axonal projections were often undifferentiated, consisting of primitive unipolar or bipolar cells with little, if any, dendritic development. In some cases migrating interneurons could be retrogradely labelled from two or three segments away from the location of their translocating cell body. Anterograde Golgi-like labelling of early undifferentiated cells revealed growing axons, axonal terminals, and growth cones. Five or six reasonably distinct classes of intersegmental interneurons were identified based on their location, axonal projections, and morphology of dendritic arbors. These appeared to be segmentally and bilaterally arranged along the rostrocaudal axis of the spinal cord. The axons of some of these types of interneurons exhibited preferences in their longitudinal projections within the ventral and ventrolateral marginal zone at the very onset of pathway formation. From the present observations it can be concluded that intersegmental connectivity precedes the development of ascending and descending supraspinal, as well as primary afferent connections in the chick embryo spinal cord.

Animals

4-Hydroxytamoxifen binds to estrogen receptors and inhibits the growth of human endometrial cancer cells in vitro.

Effects of 4-hydroxytamoxifen, a major metabolite of tamoxifen, on the proliferation of cancer cells from human endometrial adenocarcinomas obtained by hysterectomy were investigated in primary culture. Competitive binding studies showed that 4-hydroxytamoxifen effectively binds to cytoplasmic estrogen receptors (ER) in uterine adenocarcinomas. Of 20 endometrial adenocarcinomas examined, five tumors were successfully grown in primary cell culture. The addition of 4-hydroxytamoxifen (1 nmol/l to 1 mumol/l) in a medium supplemented with estrogen-free serum resulted in a dose-dependent inhibition of the growth of cancer cells in two tumors having ER. However, 4-hydroxytamoxifen did not affect the growth in the culture system of the remaining three tumors, in which ER were absent in two tumors but were present in one. These results strongly suggest that tamoxifen has a direct growth-inhibitory effect on human endometrial adenocarcinoma possibly through ER in the tumor.

Adenocarcinoma

Developmental changes in density and distribution of serotoninergic fibers in the chick spinal cord.

Developmental changes of serotoninergic innervation in the chick spinal cord (third lumbosacral segment) were examined with an immunohistochemical technique using an antiserum to serotonin. In the 1-day-old hatched chick, serotoninergic fibers were located in laminae I, II, VII, IX, and X. A large number of serotonin-positive fibers and terminals were found around somal profiles of large neurons and in the neuropil of the medial and lateral parts of the lateral motor column (LMC). In the 1-week-old chick, the density of serotoninergic fibers was greatly increased in the posterior columns, and serotoninergic fibers were most densely aggregated in the dorsolateral part of the LMC. In the 2-week-old chick, a considerable decrease in the density of serotoninergic fibers was observed in the lateral funiculus and the gray matter (laminae I, II, VII, IX, and X). In the LMC, serotonin-positive fibers and terminals were largely absent from the neuropil, but were found preferentially around the somal profiles of large neurons. Between 1 and 2 weeks after hatching the density of varicosities and terminals in the neuropil of the dorsolateral and medial parts of the LMC decreased by 33% and 56%, respectively. In the 3-month-old chick, the density of serotoninergic fibers in laminae I, II, V, VII, and X had increased compared to younger ages. Serotonin-positive fibers were not evenly distributed in the LMC of the adult chicken; rather, they were densely aggregated around the soma and proximal dendrites of motoneurons in the dorsolateral LMC. Many neuronal soma in the medial and intermediate regions of the LMC lacked serotoninergic fibers.

Animals

Effects of bile salts on plasma concentration of beta-endorphin-like immunoreactivity in men.

The effects of bile salts on the release of beta-endorphin-like immunoreactivity (beta-END-LI) were investigated in men using a specific radioimmunoassay developed by the authors. Plasma beta-END-LI was determined after extraction by the acid-acetone method (recovery: 73 +/- 5%). Oral administration of 400 mg of sodium taurocholate caused a rise in plasma beta-END-LI from 9.9 +/- 0.5 pmol/liter to 21.3 +/- 1.2 pmol/liter after 30 min and 18.1 +/- 0.5 pmol/liter after 60 min, with return to the initial value after 90 min. Oral administration of chenodeoxycholic acid (CDCA) also increased plasma beta-END-LI from a basal level of 8.4 +/- 0.7 pmol/liter to 18.7 +/- 0.8 pmol/liter after 30 min. Oral administration of ursodeoxycholic acid (UDCA) increased plasma beta-END-LI from 7.3 +/- 0.3 pmol/liter to 30.6 +/- 0.2 pmol/liter after 30 min. In gel chromatography, the beta-END-LI released after UDCA administration separated into two components, which eluted in the same positions as human beta-lipotropin and human beta-endorphin, respectively. These results suggested that bile salts may participate the release of beta-END-LI.

Administration, Oral

RU486, a progestin antagonist, binds to progesterone receptors in a human endometrial cancer cell line and reverses the growth inhibition by progestins.

The human endometrial cancer cell line, IK-90 cells, contains estrogen-independent progesterone receptors (PR) and is progestin sensitive. Accumulation of glycogen in the cytoplasm of IK-90 cells as well as growth inhibition of the cells in response to progestins are observed. In the present study, the effects of RU486, a progestin antagonist, on IK-90 cells were investigated in a serum-supplemented medium. Scatchard plot analysis of cytoplasmic binding data in the cells revealed a high affinity binding site for RU486 (Kd, 2.6 nM) with maximum binding sites of 169 fmol/mg protein. However, the binding ability to DNA-cellulose of heat activated [3H]RU486-PR complexes was lower when compared with that of the progestin agonist [3H]R5020-PR complexes, suggesting a decrease in progestin activity of RU486 in IK-90 cells. The addition of 1 microM RU486 to culture medium produced periodic acid-Schiff-positive granules in the cytoplasm of the cells. On the other hand, RU486 (1 nM-1 microM) did not significantly inhibit the growth of cells. However, RU486 (0.1-1 microM) totally prevented the growth-inhibitory effect of R5020 (0.1-1 microM) on IK-90 cells. In conclusion, RU486, an antiprogestin, had a dual activity both a progestin antagonist and weak agonist in human endometrial cancer cells, which was not mediated through the estrogen receptor system.

Binding, Competitive

Inhibitory effects of danazol and medroxyprogesterone acetate on [3H]thymidine incorporation in human endometrial cancer cells.

Effects of medroxyprogesterone acetate (MPA) and danazol (1 nM-10 microM) on cultured cancer cells from human endometrial adenocarcinomas obtained by hysterectomy were simultaneously investigated. Of twenty-four endometrial adenocarcinomas examined, five tumors were successfully maintained in primary cell culture. The addition of MPA as well as danazol in culture of cells from the five tumors resulted in a significant inhibition of [3H]thymidine incorporation in cancer cells from three tumors having progesterone receptors (PR). The minimum effective concentrations of MPA and danazol for the inhibition of [3H]thymidine incorporation were found to be 10 and 100 nM, respectively. The difference in effective concentration could be explained by a higher affinity of MPA to PR than that of danazol in cancer cells. On the other hand, neither danazol nor MPA affected [3H]thymidine incorporation in cultured cells from the remaining two tumors, in which PR was absent in one but present in the other. These findings, together with our previous findings that danazol inhibited the growth of a human endometrial cancer cell line with PR, suggest that a growth-inhibitory effect of danazol on human endometrial cancer cells is mediated through PR in the cells.

Adenocarcinoma