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Biomedical subjects

T Takuma

Publications and source records attributed to T Takuma.

At least 19 recordsLinked to original sources

[Difference of acute ketone body metabolism between insulin-dependent diabetic and non-insulin-dependent diabetic individuals].

The difference in the acute metabolic change in ketone bodies between patients with insulin-dependent diabetes mellitus (IDDM) and non-insulin-dependent diabetes mellitus (NIDDM) was investigated in this study. The subjects employed were 7 patients with IDDM losing residual insulin secretion and 7 patients with NIDDM matched to the former patients for age, body mass index, duration of diabetes, daily insulin dosage, fasting plasma glucose and HbA1c. Blood samples were drawn at 3A.M. and 7A.M. on the same day, and plasma glucose, acetoacetic acid (AcAc), 3-beta-hydroxybutylic acid (3-OHBA), free fatty acid (FFA), glycerol, cortisol and growth hormone (GH) concentrations were determined. Plasma total ketone bodies (AcAc and 3-OHBA), 3-OHBA and FFA concentrations at 7A.M. were significantly higher in the patients with IDDM than in those with NIDDM (p < 0.05), while there were no significant differences in any other parameters at 3A.M. between the patients with IDDM and those with NIDDM. The ratios of 7A.M. value/3A.M. value of total ketone bodies, AcAc and 3-OHBA concentrations were also more significantly elevated in the patients with IDDM than in those with NIDDM. It was observed that the ratio of 3-OHBA was more than 2.0 in all of the patients with IDDM and less than 2.0 in all of the patients with NIDDM, the difference being significant with p < 0.001.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

[The possibility of hereditary factors in the susceptibility to diabetic nephropathy in NIDDM].

Diabetic nephropathy is the most important complication of diabetes, because it is a major cause of morbidity and mortality for diabetic subjects. Since not all subjects with diabetes are at risk of developing this complication, we conducted a study to determine if heredity might be a possible risk factor for diabetic nephropathy in non-insulin dependent diabetes. Twenty-one factors including inheritance of nephropathy and hypertension were investigated in 109 individuals with NIDDM: 50 patients without proteinuria (Group I), 20 patients with intermittent proteinuria (Group II), and 39 patients with continuous proteinuria (Group III) matched for age and duration of diabetes. Of those patients, 55 patients with inheritance of diabetes were also divided into three groups: 29 patients without proteinuria (Group I), 9 patients with intermittent proteinuria (Group II), and 17 patients with continuous proteinuria (Group III). Individuals in Groups II and III has significantly higher frequency of inheritance of diabetic nephropathy than those in Group I, and also individuals with inheritance of diabetic nephropathy had significantly higher frequency of diabetic nephropathy than those without it. Frequency of hypertension, retinopathy and body mass index in the past were significantly higher in subjects in Groups II or Group III than in those in Group I. There were no significant differences between subjects in Groups II and III. These findings suggest that susceptibility to diabetic nephropathy in NIDDM may be hereditary, although hypertension and obesity may also be important risk factors for diabetic nephropathy.

Aged

Okadaic acid inhibits amylase exocytosis from parotid acini stimulated by cyclic AMP.

To evaluate the role of protein phosphorylation in amylase exocytosis, we studied the effects of okadaic acid, a potent inhibitor of protein phosphatase types 1 and 2A, on amylase release and protein phosphorylation in rat parotid acini. Although okadaic acid by itself weakly stimulated amylase release, it did not potentiate amylase release stimulated by half-maximum doses of isoproterenol or cAMP, and markedly inhibited their maximum effects. Okadaic acid dose-dependently increased cAMP-independent phosphorylation of some proteins and enhanced cAMP-dependent phosphorylation of 21- and 26-kDa proteins. These results indicate that increase in protein phosphorylation does not necessarily enhance the exocytosis of amylase from parotid acini.

Amylases

Cyclic AMP antagonist Rp-cAMPS inhibits amylase exocytosis from saponin-permeabilized parotid acini.

Rp-cAMPS, the Rp-diastereomer of adenosine 3',5'-phosphorothioate, is often referred to as a cAMP antagonist, since it binds to the regulatory subunit of cAMP-dependent protein kinase without dissociation of free catalytic subunits. To evaluate the role of cAMP-dependent protein kinase in amylase exocytosis, we examined the effect of Rp-cAMPS on amylase release from rat parotid acini. Rp-cAMPS did not stimulate amylase release from saponin-permeabilized parotid acini, whereas its Sp-isomer strongly evoked amylase release. Rp-cAMPS dose-dependently inhibited amylase release stimulated by Sp-cAMPS. In the presence of Rp-cAMPS, the dose-response curve of Sp-cAMPS was shifted to the right. The inhibitory effect of Rp-cAMPS on isoproterenol-induced amylase release was not detected in intact acini, but was clearly observed in the permeabilized ones. Rp-cAMPS markedly inhibited protein phosphorylation evoked by Sp-cAMPS, indicating that Rp-cAMPS prevents the dissociation of cAMP-dependent protein kinase. These results, taken together with synergistic increase in amylase release by the combination of site-selective cAMP analogues [T. Takuma (1990) J. Biochem. 108, 99-102], suggest that cAMP-dependent protein kinase is involved in the exocytosis of amylase from parotid acini.

Amylases

Roles of potassium and chloride ions in cAMP-mediated amylase exocytosis from rat parotid acini.

The roles of potassium and chloride ions in cAMP-mediated amylase exocytosis were studied using intact and saponin-permeabilized parotid acini. Cyclic AMP-evoked amylase release from saponin-permeabilized parotid acini decreased markedly when KCl in the incubation medium was isoosmotically replaced by K-glutamate, NaCl, Na-isothionate, or mannitol. Quinidine and barium, K+ channel blockers, clearly inhibited amylase release from the permeabilized acini, but not from intact ones. The chloride channel blocker DPC (diphenylamine-2-carboxylate) also inhibited amylase release, while DIDS (4,4'-diisothiocyanostilben-2,2'-disulfonate) or bumetanide had little effect, if any, on the exocytosis. Hyperosmolarity with mannitol markedly reduced amylase release from permeabilized acini. These results suggest that potassium and chloride ions play important roles in cAMP-mediated amylase exocytosis, and that these ions act on secretory granules inside the acinar cells.

Amylases

Tumor necrosis factor-alpha, transforming growth factor-beta, and tetradecanoylphorbol acetate: competence factors for ML-1 human myeloblastic leukemia cell differentiation.

ML-1 human myeloblastic leukemia cells, suspended in RPMI-1640 medium, differentiated to monocyte or macrophage-like cells when either tumor necrosis factor-alpha (TNF-alpha), transforming growth factor-beta (TGF-beta), or tetradecanoylphorbol acetate (TPA) was added prior to or simultaneously with fetal bovine serum (FBS). When FBS was applied first, and followed, after washing, by the cytokines or by TPA, maturation did not occur. A 77 kDa glycoprotein (DF77), isolated from human leukocyte-conditioned medium and present in FBS, was capable of replacing FBS for induction of differentiation. Thus, in this cell system, TNF-alpha, TGF-beta, and TPA acted as competence factors, whereas DF77 acted as the progression signal. Optimal competence was established after exposure of the cells to TPA or to either of the cytokines for approximately 2 or 30 min, respectively. After removal of the factors, competence was retained for approximately 3 hr before it declined. These results demonstrate that the initiation of ML-1 human myeloblastic leukemia cell differentiation relied upon the sequential and ordered input of competence and progression signals.

Cell Differentiation

Propranolol inhibits cyclic AMP accumulation and amylase secretion in parotid acinar cells stimulated by isobutylmethylxanthine and forskolin.

Propranolol inhibited cyclic AMP (cAMP) accumulation stimulated by 3-isobutyl-1-methylxanthine (IBMX) or forskolin in rat parotid acinar cells. The inhibition by propranolol was highly potent; 10(-7) M propranolol was sufficient for the maximum inhibition (approx. 50% at 5 min). The inhibitory effect was observed in both intact and saponin-permeabilized parotid cells, but the effect was more prominent in permeabilized cells than in intact cells. Other beta-blockers, like alprenolol and atenolol, were as effective as propranolol, but butoxamine (beta 2-selective) was slightly less effective. The inhibition by propranolol was similarly detected in the cells prepared from pertussis-toxin-pretreated rats, suggesting that inhibitory guanine nucleotide regulatory protein (Gi) is not involved in the inhibitory mechanism. Propranolol also inhibited the exocytosis of amylase stimulated by IBMX or forskolin. In the presence of propranolol and IBMX, the responsiveness of saponin-permeabilized cells to exogenous cAMP was markedly increased, indicating that propranolol neither promotes the degradation of cAMP nor prevents the inhibitory effect of IBMX on cAMP phosphodiesterase.

1-Methyl-3-isobutylxanthine

A three-dimensional method for calculating currents induced in bodies by extremely low-frequency electric fields.

A user-friendly, numerical program has been developed to permit the calculation of induced currents in modeled bodies of human and infrahuman subjects. The program is based on a charge-simulation method (CSM), and it takes into account the three-dimensional (3-D) character of the extremely-low-frequency (ELF) electric field and of the models to be exposed. The principle of the method is to simulate a 3-D object, for example, an animal model, by a combination of several parts (blocks) having simple geometric forms such as a sphere, a cylinder, or a cone. This approach permits easy preparation of input data on the dimensions of the blocks and their positions in a 3-D arrangement. Other input data, such as the coordinates of the contour points and the imaginary values of charges inside objects, which are necessary in the calculations by CSM, are produced automatically by selecting an appropriate "level" for each block, according to its importance. To simulate parts having irregular shapes, special blocks may be added. In one series of experiments, induced currents were calculated for a baboon model in various postures: standing upright, positioned on four legs, and sitting on the floor. Calculated currents, the total induced current in particular, agreed very well with experimental values. Local currents in parts of the baboon models were more variable, ranging from 5% to 17% of measured values in the case of induced currents in the head. Some problems with this method, such as the effect of the dimensions of blocks or the choice of block levels, are discussed.

Animals

A regulatory role for tumor necrosis factor (TNF) in ML-1 human myeloblastic leukemia cell maturation.

ML-1 human myeloblastic leukemia cells are induced to differentiate to monocytes by conditioned medium (CM) derived from tetradecanoylphorbol acetate (TPA)-treated ML-1 cells. Antibodies to tumor necrosis factor (TNF) inhibited the differentiation-stimulating activity of CM, indicating that this activity is due to the presence of TNF in CM. TNF added to non-conditioned medium was as effective as CM in stimulating ML-1 cell differentiation. In the presence of a low (0.12 ng/ml) concentration of TPA, TNF-induced maturation was synergistically increased and Type I macrophages were formed. With higher (1-10 ng/ml) TPA concentrations, Type II macrophages were also obtained. As the TNF/TPA concentration increased, ML-1 cell differentiation was increasingly inhibited. Mature cells derived from ML-1 cells were found to secrete TNF at concentrations ranging from less than 2 U/ml to greater than 180 U/ml, the amount depending upon the number of cells and the stage of cell maturation. These results indicate that TNF participates in the regulation of precursor cell maturation. Low concentrations of TNF produced by small numbers of mature cells stimulate differentiation, whereas high concentrations of TNF generated by elevated numbers of macrophages inhibit the maturation process, possibly in combination with other cytokines. Because TNF serves as a competence factor for ML-1 cells, (Guan X.-P., Takuma T., Hromchak R. & Bloch A. (1990) Competence and progression in cell differentiation. Proc. Am. Assoc. Cancer Res. 31, 28.), the TNF-induced stimulation of differentiation depends additionally on the action of serum-contained differentiation-specific progression factors.

Cell Differentiation

Evidence for the involvement of cAMP-dependent protein kinase in the exocytosis of amylase from parotid acinar cells.

To determine the role of cAMP-dependent protein kinase in the exocytosis of amylase from rat parotid acini, I studied the effects of various cAMP analogues on amylase release and protein phosphorylation in saponin-permeabilized parotid cells. The dose-dependent responses of amylase release and protein phosphorylation evoked by cAMP, dibutyryl-cAMP, and 8-chlorophenylthio-cAMP were closely correlated. Furthermore, when the permeabilized cells were incubated with a combination of site-selective cAMP analogues, such as N6-benzoyl-cAMP plus 8-thiomethyl-cAMP (RII-directed) or N6-benzoyl-cAMP plus 8-aminohexylamino-cAMP (RI-directed), synergistic stimulation of amylase release was clearly observed. As reported previously [T. Takuma (1988) Biochem. J. 256, 867-871], however, the protein phosphorylation evoked by 8-chlorophenylthio-cAMP was markedly inhibited by H-8 without a significant decrease in amylase release. These results suggest that cAMP-dependent protein kinase is involved in the regulation of amylase exocytosis, although the role of its catalytic subunit is still uncertain.

Amylases

Stable isotope 15N-urea and clinical research in nephrology.

Stable isotope 15N-compound, 15N-urea, is useful marker to investigate nitrogen metabolism in clinical nephrology, particularly in chronic renal failure or dialysis. 15N-urea incorporation into plasma albumin in addition to plasma 15N disappearance was studied in 6 patients with endstage chronic renal failure. As a result, only minor fraction of administered 15N-urea was incorporated into albumin in this study. In addition, it was also confirmed that high energy diet may promote protein synthesis through 15N incorporation to plasma amino acids, such as alanine, in these patients with low protein meal. Therefore, administration of 15N-compound to human subjects may contribute to provide us the important informations on nitrogen metabolism. For instance, urea kinetics are described in the endstage chronic renal failure in this review. However, less expensive 15N-compounds should be provided and more simple but accurate measurement of 15N activity should be developed for the further clinical application of the stable isotope.

Adult

Evidence against direct involvement of cyclic AMP-dependent protein phosphorylation in the exocytosis of amylase.

To examine whether or not the activation of cyclic AMP-dependent protein kinase is coupled to the exocytosis of amylase from rat parotid cells, the effect of protein kinase inhibitors on amylase release and protein phosphorylation was studied. A membrane-permeable inhibitor of cyclic AMP-dependent protein kinase, N-[2-(methylamino)ethyl]-5-isoquinolinesulphonamide (H-8), and peptide fragments of the heat-stable protein kinase inhibitor [PKI-(5-24)-peptide and PKI-(14-24)-amide] strongly inhibited cyclic AMP-dependent protein kinase activity in the cell homogenate. However, H-8 had no inhibitory effect on amylase release from either intact or saponin-permeabilized parotid cells stimulated by isoproterenol or cyclic AMP. Moreover, PKI-(5-24)-peptide and PKI-(14-24)-amide did not inhibit cyclic AMP-evoked amylase release from saponin-permeabilized cells, whereas cyclic AMP-dependent phosphorylations of 21 and 26 kDa proteins in intact or permeabilized cells were markedly inhibited by these inhibitors. These results suggest that cyclic AMP-dependent protein phosphorylation is not directly involved in the exocytosis of amylase regulated by cyclic AMP.

Amylases

Amylase secretion from saponin-permeabilized parotid cells evoked by cyclic AMP.

Adenosine 3',5'-monophosphate (cAMP) evoked amylase release from saponin-permeabilized parotid cells of the rat. Saponin concentration was optimal at 10 micrograms/ml. Amylase release was stimulated by cAMP almost as well in Ca2+-free medium containing 1 mM EGTA as in the medium containing a physiological concentration of calcium. Although the basal and stimulated releases of amylase were markedly reduced by the further addition of 5 mM EGTA, the effect of cAMP was still detectable. The half-maximal dose of cAMP was 0.3 mM, whereas those of dibutyryl cAMP and 8-bromo-cAMP were 10-fold lower than that of cAMP. In the presence of 10 microM 3-isobutyl-1-methylxanthine, the half-maximal dose of cAMP was also decreased by 5-fold. These results suggest: 1) intracellular calcium is not essential for the exocytosis of amylase stimulated by cAMP; 2) the responsiveness of the cells to exogenous cAMP is reduced by phosphodiesterase.

1-Methyl-3-isobutylxanthine

Effects of sodium ions and monensin on amylase secretion from rat parotid cells.

The role of sodium ions in amylase secretion from rat parotid cells was studied using various Na+-free media and monensin. In a sucrose medium, amylase secretion was not stimulated by isoproterenol but was significantly stimulated by dibutyryl cAMP. In choline chloride and LiCl media, both isoproterenol and dibutyryl cAMP clearly evoked amylase release. Monensin itself elicited amylase secretion slightly, but significantly inhibited the secretion stimulated by isoproterenol or dibutyryl cAMP. The inhibitory effect of monensin was detectable even in choline chloride, LiCl and KCl media. These results indicate that sodium ions are not essential for amylase secretion from rat parotid cells and that the inhibitory effect of monensin is independent of influx of sodium ions or efflux of potassium ions.

Amylases

Synergism of tumor necrosis factor and interferon-gamma in induction of differentiation of human myeloblastic leukemic ML-1 cells.

Natural or recombinant human tumor necrosis factor (TNF) induced NBT-reducing activity of ML-1 cells in a dose-dependent manner. Interferon-gamma (IFN-gamma) induced NBT-reducing activity only marginally. However, when IFN-gamma was combined with TNF, induction of NBT-reducing activity was remarkably increased. IFN-alpha or -beta had almost no effect on the induction of NBT-reducing activity of ML-1 cells, either alone or in combination with TNF. Treatment with both TNF and IFN-gamma synergistically enhanced morphological changes, growth inhibition and activity of Fc receptors, and NBT reduction in ML-1 cells, but not phagocytic activity. The TNF treated cells were classified as macrophage-like by morphology, and by lineage-specific alpha-naphthyl acetate esterase stain. The results indicate that combinations of TNF and IFN-gamma act synergistically in the induction of differentiation of human myeloblastic ML-1 cells.

Cell Differentiation

Renal effects of synthetic rat-atrial natriuretic peptide in nephron-reduced rats with nephrotoxic nephritis.

Following nephron reduction by means of five--sixths nephrectomy (Nx), nephritis was induced in rats by injection of nephrotoxic serum (NTS). A continuous intravenous infusion of synthetic rat--atrial natriuretic peptide (r-ANP) at 2.5 micrograms/min for produced remarkable diuresis and natriuresis in these rats. Furthermore, inulin clearance, para-amino-hippuric acid clearance and filtration fraction increased in spite of the reduction of mean arterial pressure during the infusion of r-ANP. It was therefore evident that diuresis and natriuresis were mediated by a direct action of r-ANP in the kidney. We observed that r-ANP was a diuretic, natriuretic and hypotensive agent but at a higher dosage in Nx rats with NTN.

Animals