Search PubMed⌕ Search

Biomedical subjects

T Endo

Publications and source records attributed to T Endo.

At least 253 records · Page 14Linked to original sources

Fimbrial capture of the ovum and tubal transport of the ovum in the rabbit, with emphasis on the effects of beta 2-adrenoreceptor stimulant and prostaglandin F2 alpha on the intraluminal pressures of the tubal ampullae.

PURPOSE: Our purpose was to elucidate the roles of the ampullar and isthmic portions of the oviduct and the effects of drugs on oviductal contractility. METHODS: Prostaglandin F2 alpha (PGF2 alpha; Ono Pharmaceuticals, Osaka) and oxytocin (Atonin-O; Teikoku Hormone Manufacturing Co. Ltd., Tokyo) were used to stimulate oviductal contractility, and ritodrine hydrochloride (Utemerin; Solvay-Duphar Corp., Denmark) to inhibit the contractility. RESULTS: Both PGF2 alpha and Atonin-O were involved in ovum capture by the ampullar oviduct by stimulating contractility, thus altering the intraductal pressures. Utemerin is effective in inhibiting the enhanced contractility induced by PGF2 alpha and Atonin-O. CONCLUSIONS: Variations in pressure of the ampullar portion of the oviduct seem necessary for the capture of ova expelled from the ovary. Once in the isthmic portion of the oviduct, transport appears to be under the influence of ciliary activity rather than variations in contractility.

Adrenergic beta-Agonists↗

Decreased prostaglandin E2 synthesis by lung fibroblasts isolated from rats with bleomycin-induced lung fibrosis.

In order to clarify the mechanism of pulmonary fibrosis, we examined the functional changes of lung fibroblasts in bleomycin (BLM)-induced pulmonary fibrosis. Lung fibroblastic cells were obtained from rat lungs after an intratracheal treatment of BLM or saline. The spontaneous proliferation of BLM-treated rat fibroblasts (BRF), which was estimated by 3H-TdR incorporation and direct cell counting, was significantly more rapid than that of normal saline-treated rat fibroblasts (NRF). Next, we investigated prostaglandin (PG) E2 synthesis by BRF and NRF, with or without stimulation by interleukin (IL)-1 alpha, and found that PGE2 production by BRF was significantly less than that by NRF. There was no significant difference in cyclooxygenase (COX) activity and COX-2 mRNA level between BRF and NRF, indicating that the change in PGE2 production was independent of COX, a rate-limiting enzyme for the production of PGE2. These results suggest that the proliferation of fibroblasts is down-regulated by PGE2 released from themselves in normal lungs in an autocrine fashion, thus the decreased PGE2 production observed in lung fibroblasts from rats with BLM-induced pulmonary fibrosis may result in the excessive fibroblast proliferation in this disorder. Overall, these findings throw some light on the mechanism of development of BLM-induced pulmonary fibrosis.

Animals↗

Amplitude reduction of plasma melatonin rhythm in association with an internal desynchronization in a subject with non-24-hour sleep-wake syndrome.

The plasma melatonin rhythm was measured longitudinally in a subject with non-24-h sleep-wake syndrome, and the amplitude and area under the curve (AUC) of the melatonin rhythm were investigated in relation to the sleep-wake cycle. When the melatonin rhythm and sleep-wake rhythm were internally desynchronized, the amplitude and the AUC were reduced significantly. These parameters were not influenced by external melatonin administration. These results suggest that a causal relationship between the reduction of circadian oscillation and internal desynchronization exists in this subject.

Adult↗

Effect of probucol on hypercholesterolemia in renal transplant patients.

BACKGROUND: Hypercholesterolemia is a well-known complication in kidney transplant recipients, although its pathogenesis may be multifactorial. The therapeutic effect of probucol on post-transplant hypercholesterolemia was prospectively evaluated. METHODS: Twelve hypercholesterolemic kidney transplant patients with serum total cholesterol > or = 250 mg/dl without diabetes mellitus or hypoproteinemia were prospectively treated with probucol (250 mg, bid, for three months). Before initiating and at the end of treatment, blood was drawn after at least a 12-hour fast to measure lipids in serum and lipoprotein fractions, apoproteins (apo), lipoprotein fractions, lethicin cholesterol acyl transferase (LCAT), free fatty acids (FFAs), and cholesterol ester. The lipid profiles of 17 healthy subjects were also examined. RESULTS: After treatment with probucol, serum total cholesterol, low-density lipoprotein (LDL) cholesterol, high-density lipoprotein (HDL) cholesterol, and apo AI were significantly decreased, whereas cholesterol ester increased significantly. CONCLUSIONS: Post-transplant hypercholesterolemia is featured with abnormalities in very low-density lipoprotein (VLDL) metabolism. Although HDL cholesterol decreased, probucol might have acted as an antiatherogenic by modulating HDL metabolism and stimulating reverse transfer of cholesterol from peripheral tissue.

Adult↗

Relationship between atrioventricular delay, QT interval and cardiac function in patients with implanted DDD pacemakers.

QT interval may change when cardiac function is improved by optimizing the atrioventricular the (AV) delay. The relationship between AV delay, QT interval and cardiac function in patients with implanted DDD pacemakers was studied in 12 patients (aged 71+/-12 SD years) with complete or high degree AV block. Cardiac output (CO) was measured using a Swan-Ganz catheter or by continuous Doppler echocardiography. The pacing rate was fixed at 70-80/min to eliminate the influence of heart rate. The AV delay was prolonged stepwise by 30 ms starting from 90 ms. All measurements were performed after 5 min of pacing. When the AV delay was prolonged, the CO and QT interval gradually increased and reached a peak, and then decreased. When the CO was increased from the minimum to the maximum value by optimizing the AV delay, the QT interval was significantly prolonged from 440+/-40 to 456+/-39 ms (P<0.002). The CO increased from 5.5+/-2.5 to 6.0+/-2.5 l x min(-1) (P<0.002) when the AV delay was changed, during which the QT interval was prolonged from the minimum to the maximum value. There was a significant positive correlation between the optimal AV delay at which CO was maximal (161+/-33 ms) and the optimal AV delay predicted from the maximum QT interval (167+/-29 ms, r=0.85, P<0.001). In conclusion, the optimal AV delay can be predicted from the QT interval.

Adult↗

Antianginal effects of ranolazine in various experimental models of angina.

The effects of ranolazine (CAS 95635-55-5, KEG-1295), a novel antianginal drug, on the ST-segment changes induced by coronary ligation, epinephrine, and vasopressin were examined following oral or intraduodenal administration. In anesthetized dogs, intraduodenal administration of KEG-1295 (10, 30, or 50 mg/kg) or atenolol (10 mg/kg) significantly attenuated the ST-T wave elevation induced by 2-min coronary ligation imposed during electrical heart pacing (200 beats/min). This antianginal effect of KEG-1295 persisted for 3 h without any changes in hemodynamic parameters, while that of atenolol was accompanied by more or less maintained decreases in diastolic blood pressure, heart rate, and the maximum first derivative of left ventricular pressure. In anesthetized rats, oral administration of KEG-1295 (10, 30, or 50 mg/kg) attenuated the ST-T wave elevation induced by epinephrine (0.3 microgram/kg i.v.) in a dose-dependent manner, although KEG-1295 (10 or 30 mg/kg p.o.) failed to attenuate the ST-segment depression induced by vasopressin (0.2 IU/kg i.v.). These findings suggest that, taken orally, KEG-1295 may exert potent protective effects against angina pectoris, except that caused by vasospasm. Further, KEG-1295 may be categorized as a new type of antianginal agent, without any primary hemodynamic effects.

Acetanilides↗

The effects of growth hormone on corpus luteum of superovulated rats.

In general, growth hormone acts as a factor promoting cell proliferation in the positive direction and suppresses apoptosis. No report has described growth hormone (GH)-induced structural luteolysis. The present studies showed that GH induced structural luteolysis in rats after the induction of functional luteolysis by treatment with bromocriptine, and that apoptotic cells were present among luteal cells during structural luteolysis as shown by terminal deoxynucleotidyl transferase-mediated dUTP-biotin nick end labeling. Zymography showed that the activity of matrix metalloproteinase (MMP)-2 increased during GH-induced structural luteolysis. The expression of c-myc protein of luteal cells was significantly decreased, but proliferating cell nuclear antigens (PCNA) were conversely increased during structural luteolysis, as shown by Western blot analysis. We propose that an excessive increase in PCNA and a marked decrease in c-myc protein of luteal cells lead to a disorder in the signals concerned with DNA synthesis, causing mitotic catastrophe and inducing apoptosis in luteal cells, and that structural luteolysis may be triggered. GH-induced apoptosis in structural luteolysis therefore highly depends on the cell cycle. There are thought to be two mechanisms of GH-induced structural luteolysis. One is apoptosis, and the other is destruction of extracellular matrix by MMP.

20-alpha-Dihydroprogesterone↗

Interaction of cyclomaltononaose (delta-CD) with several drugs.

The effects of delta-cyclodextrin (delta-CD; cyclomaltononaose) on solubility of 14 drugs that are slightly soluble or insoluble in water were studied and compared with those of conventional cyclodextrins (CDs) such as alpha-cyclodextrin (alpha-CD), beta-cyclodextrin (beta-CD), and gamma-cyclodextrin (gamma-CD). In general, delta-CD had a weak complex-forming ability with the drugs examined in comparison with beta-CD and gamma-CD. However, in the case of digitoxin, delta-CD enhanced solubility of the guest molecules. To determine the mechanism of inclusion complex formation of delta-CD with digitoxin, the interaction of both drugs was investigated by the solubility method and spectroscopic methods such as ultraviolet (UV) and 1H-NMR (nuclear magnetic resonance). The changes in chemical shift (1H) and hypsochromic shift of UV suggested that digitoxin was partially included in the cavity of delta-CD.

Chemistry, Pharmaceutical↗

Exophthalmos, pretibial myxedema, osteoarthropathy syndrome associated with papillary fibroelastoma in the left ventricle.

EMO syndrome, a rare complication of Graves' disease, exhibits exophthalmos, pretibial myxedema, and osteoarthropathy. The presence of functional thyrotropin receptors (TSHR) in adipocytes and osteoblasts, both of which we have recently observed, may be related to these extrathyroidal manifestations of Graves' disease. In addition, the expression of TSHR in the heart has recently been reported. We describe here a patient with Graves' disease exhibiting EMO syndrome with a papillary fibroelastoma in the left ventricle. Pathological examinations showed that the fibroelastoma contained Alcian blue-stained mucinous materials that were also observed in the subcutaneous tissue of pretibial myxedema.

Fibroma↗

Effects of thyrotropin on the proliferation and differentiation of cultured rat preadipocytes.

Thyrotropin receptor (TSHR) is expressed during the differentiation of rat preadipocytes and is highly abundant in mature fat adipocytes, but its physiological role is unknown. In this article, long-term effects of thyrotropin (TSH) on the proliferation and the differentiation were investigated using cultured rat preadipocytes. When TSH was added at the beginning of differentiation, TSH increased the number of preadipocytes and 3H-thymidine uptake. Apoptosis of the cells was not influenced by TSH. Preadipocytes incubated in the presence of TSH had fewer fat droplets, decreased level of mRNA for lipoprotein lipase (LPL), a marker of adipocyte differentiation. Histochemical study showed that the cells that increased their number and expressed lower level of LPL in response to TSH were preadipocytes, and not contaminating fibroblasts. In conclusion, TSH causes the proliferation and inhibits the differentiation of rat preadipocytes. Results suggest that TSH may be a potent regulator of preadipocyte proliferation and differentiation in vivo.

Adipocytes↗

Evidence for the presence of major peripheral myelin glycoprotein P0 in mammalian spinal cord and a change of its glycosylation state during aging.

Glycoproteins, which react with Lens culinaris agglutinin, in the membrane preparation of various portions of brains and spinal cords, obtained from 9-week-old rats and 29-month-old rats, were comparatively analyzed by SDS-polyacrylamide gel electrophoresis. In contrast to the samples from brain, which showed similar staining patterns in the two different age groups, the glycoprotein patterns of spinal cords showed marked differences by the age of donors. The most prominent evidence is that a glycoprotein with an apparent molecular weight of 30 kDa (gp30) was detected in the aged rats, but not in the young adult rats. Based on the amino acid sequence data around the glycosylation site, the gp30 was identified as P0, which is a member of immunoglobulin superfamily and a major structural component of mammalian peripheral nerve myelin. This is the first report indicating that P0, which has been considered as a peripheral nerve-specific glycoprotein, occurs also in the spinal cord of mammals. In addition, nonglycosylated P0 molecule could be detected in the spinal cord of young adult rats by anti-P0 polyclonal antibody. These results indicate that the glycosylation state of the P0 molecule in the spinal cord changes during aging.

Aging↗

Purification, molecular cloning, and genomic organization of human brain long-chain acyl-CoA hydrolase.

An acyl-CoA hydrolase, referred to as hBACH, was purified from human brain cytosol. The enzyme had a molecular mass of 100 kDa and 43-kDa subunits, and was highly active with long-chain acyl-CoAs, e.g. a maximal velocity of 295 micromol/min/mg and K(m) of 6.4 microM for palmitoyl-CoA. Acyl-CoAs with carbon chain lengths of C(8-18) were also good substrates. In human brain cytosol, 85% of palmitoyl-CoA hydrolase activity was titrated by an anti-BACH antibody, which accounted for over 75% of the enzyme activity found in the brain tissue. The cDNA isolated for hBACH, when expressed in Escherichia coli, directed the expression of palmitoyl-CoA hydrolase activity and a 44-kDa protein immunoreactive to the anti-BACH antibody, which in turn neutralized the hydrolase activity. The hBACH cDNA encoded a 338-amino acid sequence which was 95% identical to that of a rat homolog. The hBACH gene spanned about 130 kb and comprised 9 exons, and was mapped to 1p36.2 on the cytogenetic ideogram. These findings indicate that the long-chain acyl-CoA hydrolase present in the brain is well conserved between man and the rat, suggesting a conserved role for this enzyme in the mammalian brain, and enabling genetic studies on the functional analysis of acyl-CoA hydrolase.

Adult↗

Identification and characterization of Arabidopsis mutants with reduced quenching of chlorophyll fluorescence.

Regulation of nonradiative dissipation of absorbed light energy in PSII is an indispensable process to avoid photoinhibition in plants. To dissect molecular mechanisms of the regulation, we identified Arabidopsis mutants with reduced quenching of Chl fluorescence using a fluorescence imaging system. By analyses of Chl fluorescence induction pattern in the light and quantum yield of both photosystems, 37 mutants were classified into three groups. The first group was characterized by an extremely high level of minimum Chl fluorescence at the open PSII center possibly due to a defect in PSII. Mutants with significant reduction in the nonphotochemical quenching formation but not in quantum yield of both photosystems were classified into the second group. Mutants in the third group showed reduction in quantum yield of both photosystems possibly due to a defect in the electron transport activity. Mutants in the second and third groups were further characterized by light intensity dependence of Chl fluorescence parameters and steady state redox level of P700.

Arabidopsis↗

Prediction of optimal atrioventricular delay in patients with implanted DDD pacemakers.

In patients with an implanted DDD pacemaker (PM), the atrial contribution may be interrupted by too short an atrioventricular (AV) delay, and filling time may be shortened by too long an AV delay. The AV delay at which the end of the A wave on transmitral flow coincides with complete closure of the mitral valve may be optimal. The subjects were 15 patients [70.3+/-12.3 (SD) years old] with an implanted DDD PM. Cardiac output (CO) and pulmonary capillary wedge pressure (PCWP) were measured by Swan-Ganz catheter. Transmitral flow was recorded by pulsed Doppler echocardiography. AV delay was prolonged stepwise by 25 msc. When the AV delay was set at 155+/-26 ms, the end of the A wave coincided with complete closure of the mitral valve. When the AV delay was prolonged 25, 50, 75, and 100 ms from this AV delay, the interval between the end of the A wave and complete closure of mitral the valve was prolonged 16+/-5, 39+/-6, 65+/-4 and 88+/-5 ms, respectively (r = 0.97, P<0.0001) and diastolic mitral regurgitation was observed during this period. Thus, the optimal AV delay may be predicted as follows: the slightly prolonged AV delay minus the interval between the end of the A wave and complete closure of the mitral valve. When the AV delay was set at 215 ms, there was a significant positive correlation between the predicted optimal AV delay (166+/-23 ms) and the optimal AV delay (CO: 161+/-26 msec, r = 0.93, P<0.0001, PCWP: 161+/-28 msec, r = 0.95, P<0.0001). In conclusion, optimal AV delay can be predicted by this simple formula: slightly prolonged AV delay minus the interval between end of A wave and complete closure of mitral valve at the AV delay setting.

Aged↗

Further analysis of cadmium uptake from apical membrane of LLC-PK1 cells via inorganic anion exchanger.

This study was undertaken to analyze Cd uptake via the inorganic anion exchanger (HCO3-/Cl-) by LLC-PK1 cells cultured on permeable membranes. LLC-PK1 cells were incubated at 37 degrees with 1 microM CdCl2 added to the apical medium, and Cd accumulation in the cells was fractionated into a membrane-bound (non-internalized) Cd fraction and an internalized Cd fraction using ethyleneglycol-bis-(beta-aminoethylether)-N,N,N',N'-tetraace tic acid (EGTA), a chelating agent for Cd. Incubation at a lower temperature (4 degrees) significantly decreased the membrane-bound Cd fraction, and drastically decreased the internalized Cd fraction. Addition of NaHCO3 (a stimulator of Cd uptake via inorganic anion exchanger) to the apical medium significantly increased both membrane-bound and internalized Cd fractions, and this increase was greater for the internalized fraction. Pretreatment of cells with 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid (DIDS), a specific inhibitor of inorganic anion exchangers, significantly decreased the internalized Cd fraction without changing the membrane-bound Cd fraction. Addition of NaHCO3 did not effect both Cd fractions in DIDS-pretreated cells. These results suggest that most of Cd binds non-specifically to the apical membrane surface and then is internalized via simple diffusion and some Cd specifically binds to the inorganic anion exchanger and is internalized in a metabolism-dependent manner.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Potent bacteriolytic activity of ritipenem associated with a characteristic profile of affinities for penicillin-binding proteins of Haemophilus influenzae.

Ritipenem is highly bacteriolytic against Haemophilus influenzae. Bacterial lysis was shown after treatments with ritipenem and cefsulodin at their MICs and after treatments with fropenem and cefdinir at four times their MICs, indicated by decreases in the culture turbidities and by morphological changes of the destroyed cells. These beta-lactams were preferentially bound to penicillin-binding protein (PBP) 1b. Ritipenem, fropenem, and cefsulodin exhibited poor affinities to PBPs 3a and 3b, but cefdinir showed high affinities to these PBPs. Microscopic examinations revealed that selective PBP 3 inhibitors, such as aztreonam and cefotaxime, inhibited lysis induced by ritipenem. These results suggest that the preferential inactivation of PBP 1b could be essential to induce the lysis of H. influenzae cells and that binding to PBPs 3a and 3b may interfere with lysis.

Bacterial Proteins↗