Search PubMedSearch

Biomedical subjects

Y Uehara

Publications and source records attributed to Y Uehara.

At least 19 recordsLinked to original sources

NA22598, a novel antitumor compound, reduces cyclin D1 levels, arrests cell cycle at G1 phase, and inhibits anchorage-independent growth of human tumor cells.

NA22598, a novel antitumor compound isolated from a microbial cultured broth, inhibited the growth of human colon cancer DLD-1 cells in suspension cultures (anchorage-independent growth) severalfold more strongly than in substratum-attached monolayer cultures. It arrested the cell cycle progression at early G1 phase under both these culture conditions. Rb phosphorylation, cyclin D1 expression, and cdk2 activation in G1 progression were all inhibited by NA22598, but the amounts of cdk2 and p27 were not affected. Among these effects the inhibition of cyclin D1 expression was most prominent, and NA22598 was found to inhibit the synthesis of cyclin D1 without affecting mRNA expression or protein degradation. p27 binding to cdk2 was more markedly increased in suspension cultures than in attached cultures by NA22598, but the compound had no effect on total p27. Apparently, the decrease of cyclin D1 induced redistribution of p27 from the cyclin D1/cdk4 to the cyclin E/cdk2 complexes during G1 phase in the suspension cultures. Because p27 is upregulated during suspension culture, a greater amount of it was associated with cyclin E/cdk2, thus producing greater growth inhibition. An agent, like NA22598, which induces the downregulation of cyclin D1 might offer a new anticancer strategy.

Antineoplastic Agents

Angiotensin II subtype-1 receptor antagonists improve hemodynamic and renal changes without affecting glucose metabolisms in genetic rat model of non-insulin-dependent diabetes mellitus.

The Otsuka Long-Evans Tokushima Fatty (OLETF) rat is a new genetic model of non-insulin-dependent diabetes mellitus (NIDDM). We investigated whether treatment with an angiotensin II (ANGII) subtype-1 receptor antagonist delays the onset of NIDDM and attenuates diabetic nephropathy in the OLETF rat. OLETF rats fed a regular chow were treated with ANGII subtype-1 receptor antagonists (E4177 or TA606) for 22 weeks. Hemodynamic changes, glucose metabolism, and the effects on diabetic nephropathy were examined. Systolic blood pressure increased in OLETF rats in an age-dependent manner. OLETF rats exhibited increases in plasma concentrations of glucose and insulin and developed glucosuria at the age of 28 weeks. The changes in glucose metabolism were associated with proteinuria and an increase in urinary excretion of N-acetyl-beta-D-glucosaminidase (NAG). Morphologic investigation revealed nodular lesions in glomeruli in the OLETF rats. The ANGII receptor antagonist treatment abolished the blood pressure elevation. However, the treatment did not affect plasma glucose and insulin levels and did not significantly reduce glucosuria. Nodular lesions in glomeruli were not improved by the treatment. However, the receptor antagonists significantly reduced proteinuria and urinary NAG excretion. Multivariate analyses revealed that proteinuria was determined by systolic blood pressure, lipid metabolism, and glucose levels in plasma. ANGII subtype-1 antagonism does not improve glucose metabolism in the OLETF rat model of NIDDM, which has abnormalities in the glucose-uptake system. Blood pressure elevation and part of the proteinuria associated with NIDDM depends on the renin-angiotensin system rather than glucose metabolisms per se.

Acetylglucosaminidase

Regression of glomerular injury by kallikrein infusion in Dahl salt-sensitive rats is a bradykinin B2-receptor-mediated event.

AIMS: We investigated whether kallikrein infusion attenuates renal injury in Dahl salt-sensitive rats with hypertension and assessed the role of bradykinin-nitric oxide axis in the renal protection using HOE-140, the bradykinin type-2 (B2) receptor specific antagonist. METHODS: Subdepressor dose of purified rat urinary kallikrein (RUK) (400 ng/day) was continuously infused through the jugular vein by an osmotic mini-pump for 4 weeks in Dahl salt-sensitive (Dahl S) rats fed a high-salt (2% NaCl) diet. RESULTS: Blood pressure increased in a time-dependent manner in Dahl S rats fed a high-salt diet. The RUK infusion did not influence the elevation of blood pressure in Dahl S rats. However, the RUK infusion significantly decreased urinary protein excretion, and increased glomerular filtration rate, as compared with untreated high-salt Dahl S rats. Morphological investigation disclosed that the RUK infusion significantly attenuated glomerulosclerosis and arterial and tubular injuries in the kidney of hypertensive Dahl S rats. The RUK infusion produced an increase in urinary excretions of nitric oxide and cyclic guanosine monophosphate. In addition, the RUK infusion enhanced the generation of nitric oxide from the kidney slices. The functional and morphological effects of the RUK infusion on the kidney were completely lessened by co-administration of the bradykinin B2-receptor antagonist, HOE-140. CONCLUSION: Long-term infusion of subdepressor dose of rat urinary kallikrein attenuates functionally and morphologically the progression of renal injury in Dahl rats susceptible to salt-induced hypertension, and that the protection is mediated by stimulation of bradykinin B2 receptor.

Animals

Tracheal barrier and the permeability of hydrophilic drugs and dipeptides.

The permeability of model hydrophilic compounds with different molecular weights and model dipeptides were examined to characterize the tracheal epithelial barrier in in vitro experiments using excised rabbit trachea. 6-Carboxyfluorescein (6-CF; 376 Da) and fluorescein isothiocyanate (FITC)-dextrans (FDs) with varying molecular weights (4 to 70 kDa) were used as model hydrophilic and macromolecular compounds, and glycyl-D-phenylalanine (Gly-D-Phe) and glycyl-L-phenylalanine (Gly-L-Phe) were used as model dipeptides in this experiment. The apparent permeability coefficients (Papp) of 6-CF and FDs with Mw 376 Da to 70 kDa ranged from 2.35x10(-7) to 4.05x10(-10)cm/s and exhibited a good inverse correlation with their molecular weights. The tracheal permeability of 6-CF, FD-4 (4 kDa) and FD-10 (10 kDa) were increased over three fold by 10 mM glycocholate, which is an absorption enhancer. The Papp of Gly-D-Phe was 1.03x10(-6)cm/s and there was no metabolism during tracheal permeation. Gly-L-Phe was immediately degraded in the mucosal fluid and its intact form was not detected in serosal fluid during the 150 min experimental period. These results suggest that absorption of some peptide drugs via the respiratory tract may contribute to their systemic delivery following pulmonary administration by intratracheal insufflation and instillation.

Animals

CD27/CD70 interaction augments IgE secretion by promoting the differentiation of memory B cells into plasma cells.

The induction of IgE switching in B cells requires several signals given by cytokines and cell contact-delivered signals. Here, we investigated the role of CD27/CD70 interaction in B cell IgE synthesis. The addition of CD27 ligand (CD70) transfectants to B cell cultures increased the IgE synthesis synergistically in the presence of IL-4 plus anti-CD40 mAb (anti-CD40). The effect of CD70 transfectants was dose dependent and was completely blocked by anti-CD70 mAb. CD27+ B cells had the ability to produce IgE, which was increased by contact with CD70 transfectants, whereas CD27- B cells did not produce IgE. CD27/CD70 interaction enhanced B cell proliferation in the presence of IL-4 or IL-4 plus anti-CD40. The augmentation of B cell proliferation by CD70 transfectants was apparent in CD27+ B cells, but was mild in CD27- B cells. The helper activity for IgE synthesis by the CD27/CD70 interaction did not contribute to the enhancement of germline epsilon transcripts. Flow cytometric and morphological analyses demonstrated that the addition of CD70 transfectants to B cell cultures remarkably promoted differentiation into plasma cells in the presence of IL-4 and CD40 signaling. Finally, CD27 cross-linking resulted in the up-regulation of positive regulatory domain I-binding factor-1. Taken together, our findings indicate that signaling via CD27 on B cells induces IgE synthesis, in cooperation with IL-4 and CD40 signaling, by promoting the generation of plasma cells through up-regulation of positive regulatory domain I-binding factor-1.

Adult

1a-docosahexaenoyl mitomycin C: a novel inhibitor of protein tyrosine kinase.

A series of derivatives of mitomycin C conjugated with various fatty acids at position 1a was synthesized and the effect of these compounds on protein kinase activities was evaluated. 1a-Docosahexaenoyl mitomycin C (DMMC) selectively inhibited protein tyrosine kinase (PTK) activity in the postnuclear fraction of v-src-transformed NIH 3T3 cells although neither derivatives conjugated with other fatty acids or docosahexaenoic acid or mitomycin C did not. DMMC inhibited the activity of calmodulin-dependent kinase III and protein kinase A very weakly, and only barely affected protein kinase C activity. DMMC also attenuated autophosphorylation of immunoprecipitated p60v-src irreversibly. The addition of thiol compounds to the reaction mixture reversed the inhibition by DMMC, suggesting that some thiol moiety of PTK protein might be involved. DMMC also inhibited kinase activity of p210bcr-abl immunoprecipitated from the lysate of K562 cells. These results indicate that DMMC is a novel inhibitor of PTK.

3T3 Cells

Increased expression of CD44v6 mRNA significantly correlates with distant metastasis and poor prognosis in gastric cancer.

Expression of CD44 and its variants is associated with clinically aggressive behavior of some human cancers. The present study was undertaken to determine the expression level of these CD44 mRNAs in relation to the clinicopathologic features and prognosis of gastric cancer. Using reverse transcription polymerase chain reaction followed by Southern blotting, we examined the expression of the standard and variant (v6 and v9) forms of CD44 mRNA in 73 cases of gastric cancer. We determined the ratio of mRNA expression in cancer tissue to normal tissue (T/N ratio) and evaluated the correlations of the ratio with clinico-pathologic features, tumor progression and prognosis. The expression level of the standard form of CD44 (CD44s) mRNA correlated with peritoneal dissemination only, and that of CD44v9 mRNA did not significantly correlate with any clinicopathologic factor. The expression level of CD44v6 mRNA was significantly higher in patients with lymph node metastasis and liver metastasis. In 48 curatively resected patients, the expression level of CD44v6 mRNA correlated with the site of recurrence. Furthermore, there was a significant survival advantage in patients with low expression of CD44v6 mRNA compared with those with high expression. The level of CD44v6 mRNA expression may be a potential prognostic indicator and may be useful as a predictor for distant metastasis and recurrence in patients with gastric cancer.

Adult

Design of new inhibitors for cdc2 kinase based on a multiple pseudosubstrate structure.

New inhibitors have been designed for cdc2 kinase based on a multiple pseudosubstrate structure. The new inhibitors have three different structural components: 3,4-bis(indol-3-yl)maleimide, Ac-Cys-(Ser)-Pro-Lys-Lys-NHMe, and ethyloxy group between the two components. Inhibitory activities toward cdc2 and other protein kinases were investigated, and the compound (21) with Ac-Cys-Pro-Lys-Lys-NHMe connected with the triethylene glycol spacer exhibited the most potent inhibition with relatively high selectivity.

Binding Sites

Prostaglandin D2 inhibits inducible nitric oxide synthase expression in rat vascular smooth muscle cells.

Vascular smooth muscle cells (VSMCs) as well as macrophages have been shown to generate a substantial amount of NO in inflammatory vascular lesions. Prostaglandin (PG) D2 (PGD2) is produced by inflammatory cells, including mast cells and macrophages. We investigated whether PGD2 modulates NO metabolism in rat VSMCs. PGD2 at a concentration of 10(-7) mol/L or greater dose-dependently inhibited nitrite accumulation in the medium of cultured VSMCs stimulated with interleukin 1beta (IL-1beta). In a dose-response analysis of IL-1beta and nitrite accumulation, PGD2 was seen to decrease the maximal ability of VSMCs to generate NO, arguing against competition by PGD2 at cytokine receptors. Northern analysis showed that PGD2 suppresses induction of inducible NO synthase (iNOS) mRNA in IL-1beta-stimulated VSMCs, with consequent inhibition of iNOS protein expression in Western analysis. A thromboxane A2 (TXA2) analogue, U46619 (10(-5) mol/L), produced less inhibition of NO generation than did PGD2. Neither the PGI2 analog carbaprostacyclin nor PGE1 showed any inhibition. PGD2 dose-dependently inhibited NO generation despite the addition of the TXA2 antagonist SQ29548. PGJ2, delta12-PGJ2, and 15-deoxy-delta12,14-PGJ2, all metabolites of PGD2, were as potent as or slightly stronger than PGD2 in the inhibition of NO generation. These data suggest that PGD2 suppresses NO generation in VSMCs by inhibiting iNOS mRNA expression, most likely through the cascade of the PGJ2 series rather than through the TX receptor or cAMP upregulation. Such action makes it likely that PGD2 regulates NO metabolism in vascular lesions.

Animals

Influence of absorption enhancers (bile salts) and the preservative (benzalkonium chloride) on mucociliary function and permeation barrier function in rabbit tracheas.

Effects of bile salts and benzalkonium chloride on the ciliary beat activity (frequency) and the mucociliary transport rate of tracheas, and permeabilities of 6-carboxyfluorescein (6-CF; Mw 376) and FITC-dextrans (FD-4; Mw 4300) as hydrophilic compounds through trachea were investigated for intratracheal delivery of drugs. Ciliary beat activity was measured by an in vitro photoelectric method by using excised rabbit tracheas. Transport rate was determined by an in vivo endoscopic method in rabbit tracheas. Permeation test was carried out by using excised rabbit tracheas. The ciliary beat activities and mucociliary transport rates were not significantly affected by 1, 10 and 20 mM sodium glycocholate, while they were significantly decreased by 1 and 10 mM sodium taurodeoxycholate and immediately halted after application of 20 mM taurodeoxycholate. They were not significantly affected by 0.02% of benzalkonium chloride, whereas they were completely halted by 0.05% of benzalkonium chloride. The apparent permeability coefficients (Papp) of 6-CF and FD-4 were 2.35x10(-7) and 2.22x10(-8) cm/s, respectively. One mmol of glycocholate did not significantly increase the Papp of 6-CF and FD-4, while, 10 mM of glycocholate and 1 and 10 mM of taurodeoxycholate significantly increased the Papp. Benzalkonium chloride (0.01%) did not significantly increase the Papp of 6-CF, whereas 0.03% significantly increased the Papp of 6-CF. Benzalkonium chloride (0.01 and 0.03%) slightly increased the Papp of FD-4. Therefore, sodium glycocholate may be a safe and useful absorption enhancer for intratracheal delivery of drugs.

Animals

Orchiectomy and response to testosterone in the development of obesity in young Otsuka-Long-Evans-Tokushima Fatty (OLETF) rats.

OBJECTIVE: Withdrawal of testosterone prevents the development of hyperglycaemia in male Otsuka-Long-Evans-Tokushima Fatty (OLETF) rats, a model of non-insulin-dependent diabetes mellitus (NIDDM), but the exact mechanism has not been established. The present studies were undertaken to examine a possible role of testosterone in the development of obesity in young OLETF rats who have not shown marked hyperphagia. METHODS: Body weight, food intake and circulating concentrations of metabolic factors including immunoreactive leptin (IRL) were measured at five weeks of age in young male OLETF rats and their lean controls, Long-Evans-Tokushima-Otsuka (LETO) rats. At six weeks of age, both LETO and OLETF rats were bilaterally orchiectomized (Orchx) and half of each group implanted with a silastic tube containing testosterone. After a three week observation period, all animals were killed and circulating concentrations of metabolic factors and the ob gene expression in retroperitoneal white adipose tissues were measured. RESULTS: Body weight and 24h food intake were already increased in OLETF rats at five weeks of age. Serum testosterone concentrations were significantly lower in OLETF rats than in LETO rats. Expression of the ob gene was significantly decreased in the retroperitoneal white adipose tissue of OLETF rats, and their serum IRL concentrations were lower. Food intake and body weight gain for three weeks after the operation were significantly lower in the Orchx group of OLETF rats than in the sham-operated group. Hyperglycaemia, accompanied by hyperinsulinaemia, was attenuated by orchiectomy in OLETF rats. Circulating IRL concentrations were significantly higher in OLETF rats than in LETO rats and decreased by orchiectomy. Testosterone supplement reversed all of the changes caused by orchiectomy in OLETF rats. In contrast, the changes, which were observed after orchiectomy in OLETF rats, were not obvious in LETO rats. CONCLUSION: The present data indicate that testosterone plays a role in the development of obesity and NIDDM in young OLETF rats, but that changes of leptin production in white adipose tissue may not be important in the development of obesity in young OLETF rats.

Animals

A hypertensive father, but not hypertensive mother, determines blood pressure in normotensive male offspring through body mass index.

This investigation was to assess the role of genetic loading of hypertensive parents in the determination of blood pressure (BP) in their normotensive offspring. The medical check-up data from 7279 Japanese university students aged 19.22 +/- 0.01 years were analysed of which 641 students had only one hypertensive parent with or without hypertensive grandparents, and from this number 609 cases were available for the present analysis. The BP in the students having only one hypertensive parent were in the normotensive range, but was significantly higher than in those students without hypertensive relatives. Analyses of the data from the students having only one hypertensive parent revealed that systolic BP (SBP) and body mass index (BMI) were higher in the male than in the female students. In addition, there were no differences in BP and BMI between the male students with a hypertensive father and the male students having a normotensive father. However, multivariate analyses revealed that BMI was an independent predictor of SBP solely in the male students having a hypertensive father, but not in the male students having a normotensive father. Such a relationship between BMI and BP determination was not observed in the female students with one hypertensive parent. It is suggested that there are different mechanisms for the determination of BP in normotensive offspring of hypertensive parents, and genetic loading of a hypertensive father plays a critical role in the determination of BP through BMI.

Adolescent

Genetic analysis of the epithelial sodium channel in Liddle's syndrome.

BACKGROUND: Liddle's syndrome is an autosomal inheritable disorder that causes hypertension due to excess function of sodium channel. OBJECTIVE: To analyze the DNA sequence of the amiloride-sensitive epithelial sodium channel (ENaC) in three patients who had low-renin hypertension with hypokalemia. The patients included a 24-year-old woman and her 20-year-old brother whose mother was hypertensive. The third patient was a 15-year-old girl with no family history of hypertension. METHODS: The DNA sequence of the ENaC was analyzed as follows. Venous blood samples were collected from the patients and total genomic DNA was prepared by standard methods. Specific primers were used for direct polymerase chain reaction; one set of primers for amplifying the C terminus (codon 523-638) of the , subunit of ENaC, and two sets of primers for amplifying the C terminus (codons 525-587 and 568-650) of the y subunit of ENaC. Polymerase chain reaction products were purified and subjected to direct DNA sequence analysis. RESULTS: Direct sequence analysis demonstrated the presence of a single-base substitution in one segment of the 0 subunit of ENaC, a C-T transition that changed the encoded Pro (CCC) at codon 616 to Ser (TCC) in the siblings (cases 1 and 2). In case 3, we found a missense mutation of Pro (CCC) to Leu (CTC) at codon 616. Case 3 is considered to be sporadic, since DNA sequencing of the PY motif of her parents gave normal results. CONCLUSIONS: The DNA sequences of the ENaC in three patients with Liddle's syndrome were analyzed. In one family case, we found a new missense mutation of Pro (CCC) to Ser (TCC) at codon 616 in the 0 subunit of ENaC. A genetic analysis of the amiloride-sensitive epithelial sodium channel is recommended in assessing patients with low-renin, salt-sensitive hypertension whose blood pressure is not responsive to spironolactone treatment.

Adolescent

Up-regulation of p27Kip1 correlates inversely with anchorage-independent growth of human cancer cell lines.

We examined the correlation between anchorage-independent growth and cell cycle-related molecules using 39 human cancer cell lines. They consisted of lung-, colon-, stomach-, breast-, ovarian-, brain-, renal- and melanoma-derived cell lines. Their anchorage-independent growth ability varied, but was not clearly related to the tissue of origin. There was a tendency for the levels of cyclin D1, cyclin E, cyclin A, p27, and p21 to show a tissue-dependent expression pattern. Statistical analysis revealed an inverse correlation of the p27 level with anchorage-independent growth (r=-0.456, P<0.01). Thus, the regulation of p27 is suggested to be linked to the anchorage independence of human cancer cells.

Cell Adhesion

Effect of herbimycin A on tyrosine kinase receptors and platelet derived growth factor (PDGF)-induced signal transduction.

Herbimycin A is widely used as an inhibitor of Src family protein tyrosine kinases but is also reported to induce the downregulation of epidermal growth factor (EGF) receptor number in A431 cells without inhibiting its tyrosine kinase activity. To determine the specificity of the receptor downregulation, we examined its effect on a variety of cell lines which express different levels of EGF receptor and on other tyrosine kinase receptors. Long-term herbimycin A treatment decreased the amounts of all the tyrosine kinase receptors examined in a dose-dependent manner. It also reduced ligand-stimulated receptor autophosphorylation in accordance with the reduction in the receptor level. Herbimycin A inhibited platelet derived growth factor (PDGF)-induced tyrosine phosphorylation of cellular proteins and DNA synthesis in NIH3T3 cells but did not affect the serum-stimulated DNA synthesis. PDGF-induced tyrosine phosphorylation and activation of c-Src was inhibited but the protein level of c-Src was not reduced by herbimycin A. The reduced level of c-Src kinase activity correlated with the levels of both PDGF receptor and DNA synthesis. These results indicate that the herbimycin A treatment selectively downregulates receptor tyrosine kinases, independent of the number of receptors, and suggest that c-Src is to some degree involved in the selective inhibition of PDGF-induced mitogenesis by herbimycin A.

3T3 Cells

Inhibitory effects of 5-S-GAD on phosphorylation of V-SRC and BCR-ABL tyrosine kinase.

We examined the inhibitory effects of N-beta-alanyl-5-S-glutathionyl-3,4-dihydroxyphenylalanine (5-S-GAD), a novel antibacterial substance from the immunized adult Sarcophaga peregrina (flesh fly), on protein phosphorylation using immune complexes of protein tyrosine kinases (PTKs) with anti-PTKs monoclonal antibody. We found that 5-S-GAD directly inhibited not only tyrosine phosphorylation of PTK p60(v-src), but also tyrosine phosphorylation of PTK p210(BCR-ABL). The inhibitory potency of 5-S-GAD was comparable to that of radicicol and herbimycin A of PTK inhibitor.

3T3 Cells

Hemodynamic changes during administration of drugs for mitral regurgitation in dogs.

Each of 5 drugs, i.e., 4 different vasodilator drugs (captopril, enalapril, hydralazine and prazosin) and a cardiotonic drug (digoxin), was administered to dogs with mitral regurgitation (MR) for 1-72 days in order to quantitatively evaluate the influence of therapeutic agents on blood flow in heart disease. Hemodynamic changes were assessed before and after administration of each drug by determining mitral regurgitant jet mapping area (MRMA) and aortic forward flow mapping area (AFMA), which were displayed by the color Doppler method, and the ratio of MRMA to AFMA (MRMA/AFMA) as parameters. When the four vasodilator drugs were used appropriately, MRMA and MRMA/AFMA decreased in all cases, compared with the values before the administration. These two parameters showed dose-dependent changes after administration of captopril, enalapril and hydralazine. When the cardiotonic drug was used. MRMA and MRMA/AFMA increased in 4 of 5 cases. The MRMA/AFMA values were slightly more reproducible than the MRMA values, whereas the AFMA values showed no constant tendency when any vasodilator drug or the cardiotonic drug was used. These results suggest that the efficacy of cardiotonic and vasodilator drugs in MR can be quantitatively evaluated by determining MRMA/AFMA in particular, and MRMA.

Animals