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Biomedical subjects

M Kotake

Publications and source records attributed to M Kotake.

At least 19 recordsLinked to original sources

Acyclic carotenoids and their oxidation mixtures inhibit the growth of HL-60 human promyelocytic leukemia cells.

Lycopene has been known as a potential food component for cancer prevention, since tomato consumption was shown to be associated with reduced risk of certain cancers. We used HL-60 cells as a model of cancer cells to investigate whether acyclic carotenoids, such as phytoene, phytofluene, and zeta-carotene present in tomatoes, other than lycopene, as well as oxidation mixtures of these carotenoids, are potentially involved in the cancer-preventive action of tomatoes. When HL-60 cells were grown in the carotenoid-supplemented medium for 120 hours, zeta-carotene and phytofluene at 10 microM inhibited cell growth to 3.7% and 22.6% of the growth in control culture, respectively, although they were extremely unstable in the culture medium. The oxidation mixture of each carotenoid, which was prepared by incubation in toluene at 37 degrees C for 24 hours, more strongly inhibited cell growth than each intact carotenoid. The growth inhibition by lycopene was remarkably enhanced by its oxidation before supplementation to the medium. Phytofluene, zeta-carotene, and the oxidation mixture of lycopene induced apoptosis in HL-60 cells during incubation for 24 hours. The addition of alpha-tocopherol to the medium did not eliminate growth inhibition by the oxidation mixture of lycopene. These results suggest that the acyclic carotenoids inhibit cell growth through apoptosis induction and that oxidation products of the carotenoids participate in the growth inhibition.

Anticarcinogenic Agents↗

Reverse transcriptase is elevated in the thyroid tissue from Graves' disease patients.

OBJECTIVE: Hypertrophy of the thyroid gland in Graves' disease is related to an autoimmune response directed against TSH receptors found in thyroid cells. Recently, investigators have suggested that autoimmune diseases, including thyroid diseases may, at least in part, correlate with the expression of proteins encoded by the retroviral genome. In the present study, to confirm the correlation between thyroid autoimmune disorders and retroviral infections, we examined reverse transcriptase (RT) activity in thyroid tissues as a marker of retroviral infection. PATIENTS AND MEASUREMENTS: Thyroid tissues obtained at surgery from patients with various thyroid disorders (normal thyroid adjacent to adenoma, six cases; Graves' disease thyroid tissue, 25 cases; adenoma, eight cases; papillary carcinoma, 12 cases; Graves' disease peripheral blood lymphocytes, 11 cases) were used for RT assay, using a specific, improved assay system. RESULTS: Thyroid tissue extracts from patients with Graves' disease contained high RT activity which resembled that demonstrated in retroviruses. The RT existed in the thyroid tissue as a complex, with endogenous template RNA, and the activity was confirmed not to be due to other DNA polymerases. CONCLUSION: Retroviral RT distinguished from known cellular DNA polymerases is expressed in the thyroids of patients with Graves' disease. In a permissive genetice and immunological environment, retroviral DNA integrated into genomic DNA could precipitate the onset of Graves' disease.

Adenoma↗

Preprimed artificial lung for emergency use.

We investigated the possibility of preprimed storage of an artificial lung (AL), aiming at facilitating its emergency use. Test ALs, consisting of a special microporous hollow fiber membrane made of polyolefin in which direct blood-gas contact was completely eliminated, were preprimed with saline solution, sterilized by gamma-ray irradiation, and evaluated after 1-3 months of storage at room temperature. A small amount of bubble was noted in the priming solution after storage in some ALs, which most likely originated from the air dissolved in the priming solution or persisted in the liquid compartment at priming. Although the preprimed solution contained several polyolefin-breakdown products due to irradiation, including ethyl alcohol, n- and t-butyl alcohol, acetone, and carbon dioxide, the levels of these substances were at concentrations known to be not toxic. Endotoxin concentration was negligible. In SEM observation, no perceptible microstructural change was observed in the hollow fibers after preprimed storage. Maximum tensile stress and ultimate elongation of the hollow fiber in the test ALs were reduced by approximately 20% and 3%, respectively, from those of the control AL. The influence of preprimed storage on gas-exchange function was examined in a venoarterial bypass animal study using a goat. Oxygen transfer function was well preserved whereas carbon dioxide removal function was slightly lowered according to the storage term in the stored ALs compared with those of a nonpreprimed control AL. On the basis of these results, we conclude that preprimed storage of the AL with gamma-ray sterilization is basically feasible and realistic.

1-Butanol↗

A formal total synthesis of (-)-cephalotaxine.

A formal total synthesis of (-)-cephalotaxine (1) has been achieved. The key step is an intramolecular aldol condensation of the diketone 9, which in turn was obtained in three steps from the azabicyclic compound 6 derived from D-proline according to Seebach's procedure. Treatment of 9 with a catalytic amount of sodium 2-methyl-2-butanolate in benzene at room temperature gave the alpha, beta-unsaturated ketone 8 in 43% yield. Catalytic hydrogenation of 8 followed by reduction of the ketone 22 with sodium borohydride and acetylation of the resulting alcohol 23 gave the acetoxy derivative 24, which, after deprotection, was acylated with (methylthio)acetic acid to give the amide 26. Compound 26 was converted into optically active ketolactam 4 following the synthetic operations developed for the synthesis of the racemic compound.

Acetylation↗

Glucose transporter 2 concentrations in hyper- and hypothyroid rat livers.

The deterioration of glucose metabolism frequently observed in hyperthyroidism may be due in part to increased gluconeogenesis in the liver and glucose efflux through hepatocyte plasma membranes. Glucose transporter 2 (GLUT 2), a facilitative glucose transporter localized to the liver and pancreas, may play a role in this distorted glucose metabolism. We examined changes in the levels of GLUT 2 in livers from rats with l-thyroxine-induced hyperthyroidism or methimazole-induced hypothyroidism by using Western blotting to detect GLUT 2. An oral glucose tolerance test revealed an oxyhyperglycemic curve (impaired glucose tolerance) in hyperthyroid rats (n=7) and a flattened curve in hypothyroid rats (n=7). GLUT 2 levels in hepatocyte plasma membranes were significantly increased in hyperthyroid rats and were not decreased in hypothyroid rats compared with euthyroid rats. The same results were obtained with a densitometric assay. These findings suggest that changes in the liver GLUT 2 concentration may contribute to abnormal glucose metabolism in thyroid disorders.

Animals↗

Reduction of activity, but no decrease in concentration, of erythrocyte Cu,Zn-superoxide dismutase by hyperglycaemia in diabetic patients.

Cu,Zn-superoxide dismutase(SOD) activity in erythrocytes is affected by various diseases, including diabetes mellitus (DM). We investigated changes in the Cu,Zn-SOD activity compared to changes in the Cu,Zn-SOD concentration in erythrocytes obtained from patients with Type 2 (non-insulin-dependent) diabetes mellitus. Cu,Zn-SOD activity in erythrocytes was significantly lower in Type 2 DM patients than in healthy non-diabetic subjects. The activity correlated negatively with HbA1c, but not with other indicators of metabolic control, such as fasting blood glucose or plasma cholesterol or triglyceride. However, there was no statistically significant difference in erythrocyte concentration of Cu,Zn-SOD between diabetic and control samples. Concentration did not correlate with enzymatic activity or HbA1c. These findings indicate that the inactivation of Cu,Zn-SOD activity in erythrocytes of Type 2 DM patients by hyperglycaemia may be slow, because there is a negative correlation between the enzyme activities and HbA1c levels, but not fasting blood glucose levels. This is consistent with glycosylation of the active site of Cu,Zn-SOD, without any effect of hyperglycaemia on the concentration of Cu,Zn-SOD.

Adult↗

Effects of thyroid hormone on catecholamine and its metabolite concentrations in rat cardiac muscle and cerebral cortex.

Clinical and experimental data suggest that thyroid hormone affects the actions of catecholamine (CA). However, the serum or tissue levels of CA during thyroid disorders have not been well defined. Accordingly, we investigated the levels of CA and their metabolites in the cardiac muscle, the cerebral cortex, and the plasma of rats with hyperthyroidism and hypothyroidism versus euthyroid animals. The Neurochem analyzer system (ESA, Inc., Bedford, MA) was used in such determinations. The cardiac muscles of hyperthyroid rats exhibited a 16% decrease in the levels of 1-dopa, 3-methoxytyramine (3-MT) and homovanillic acid (HVA) as compared with those in euthyroid rats. The levels of norepinephrine (NE) in cardiac muscle of these rats increased significantly (5.2-fold) relative to the levels in euthyroid rats. NE was undetectable in the cardiac muscles of the hypothyroid rats. Epinephrine (E) and dopamine (DA) were not detected in the cardiac muscles of the rats with either thyroid disorder. Levels of E and 3,4-dihydroxymandelic acid (DOPEG) were detected only in the cerebral cortex of hyperthyroid rats. The cerebral cortex levels of 3-methyoxytyramine (3-MT), 3,4-dihydroxyphenylacetic acid (DOPAC), metanephrine (MN), and homovanillic acid (HVA) were all significantly increased in the hyperthyroid versus the euthyroid rats. The cerebral cortex levels of DA, NE, normetanephrine (NMN), and VMA in the hyperthyroid rats all showed a significant decrease. Levels of NE, NMN, and DOPAC in the cerebral cortex increased significantly in the hypothyroid rats. The level of VMA was undetectable in cerebral cortex of such animals. Data from studies on cardiac muscle and cerebral cortex indicate that the changes in CA and CA metabolites are responsible in part for the cardiovascular and the central nervous system symptoms observed in hyperthyroidism and hypothyroidism.

Animals↗

Alteration of platelet aggregation in patients with thyroid disorders.

To determine whether Graves' disease or primary hypothyroidism influence platelet function, we evaluated platelet aggregation in the platelet-rich plasma (PRP) from such patients. Platelet aggregation induced by adenosine diphosphate (ADP) in blood obtained from patients with untreated Graves' disease was significantly lower than normal, whereas that in patients with untreated primary hypothyroidism was relatively increased. The magnitude of platelet aggregation induced by collagen in both groups of patients resembled that induced by ADP. However, significant differences were evident between the two diseases (P < .05). In addition, we observed a significant inverse correlation between the extent of platelet aggregation and plasma levels of thyroid hormones (triiodothyronine [T3], thyroxine [T4], and free T3). Platelet aggregation returned to normal when the euthyroid condition was obtained in the patients following administration of antithyroid drugs or thyroid hormone. The findings are consistent with the possibility that thyroid hormones influence platelet aggregation partly via inhibition of myosin light-chain kinase (MLCK).

Adenosine Diphosphate↗

Changes in free radical scavengers and lipid peroxide in thyroid glands of various thyroid disorders.

To clarify whether the changes of free radicals and its scavengers are induced by thyroid disorders, we measured levels of free radical scavengers and checked O2 radical generating systems in the human thyroid gland. Thyroid specimens from patients with Graves' disease, follicular adenoma, and papillary and follicular carcinomas contained significantly higher concentrations of xanthine oxidase (XOD) and gluthathione peroxidase (GSH-PX), compared to those in the normal thyroid tissue. Catalase concentration was significantly lower in thyroid specimens from patients with Graves' disease and significantly lower in thyroid specimens from patients with follicular adenoma, compared to those in the normal thyroid tissue. Cu/Zn superoxide dismutase (Cu/Zn SOD) concentration was significantly lower in the specimens from follicular adenoma and papillary carcinoma and Mn SOD concentration was significantly higher in the specimens from papillary carcinoma than those in the normal thyroid tissue. The lipid peroxide concentration, expressed as malondialdehyde (MDA) concentration, was significantly higher in the specimens from papillary carcinoma than those in the normal thyroid tissue. These findings suggest that the levels of free radicals are increased and are scavenged and catalyzed in the thyroid of Graves' disease, whereas free radicals and lipid peroxide are not completely scavenged in papillary carcinoma tissues, suggesting that these substances affect some role in cell function of thyroid tumors.

Adenocarcinoma, Follicular↗

Short stature due to growth hormone deficiency associated with Cushing's disease and ulcerative colitis.

We report a rare case of Cushing's disease associated with ulcerative colitis in a patient primarily treated with growth hormone due to short stature. At the age of fifteen years, the patient had a short stature due to GHD and was treated with the extracted GH for a short period. At the age of twenty-one years, his body weight gradually increased and, based on the results of several tests, he was diagnosed with Cushing's disease and GHD was observed in our patient. The excess secretion attenuation of pituitary hormones with reduced secretion periods as well as the relation between ulcerative colitis and elevated plasma cortisol concentrations is briefly discussed in this paper.

Adult↗

A case of myocarditis associated with IDDM.

We report a case of diabetic ketoacidosis (DKA) complicated by acute myocarditis, which was confirmed by cardiac biopsy. A 26-year-old man was hospitalized with severe DKA. On admission, nonspecific ST-T change was noted on the electrocardiogram (ECG). The patient's levels of creatine phosphokinase (CPK) and glutamic oxaloacetic transaminase were slightly elevated, but he did not complain of chest discomfort or symptoms of heart disease. On the first day after admission, ST-T elevation was noted on ECG during treatment of DKA. By cardiac angiography and cardiac biopsy, coronary heart disease was ruled out and postmyocarditic change was histologically confirmed. An episode of upper respiratory viral infection before the onset of acute diabetes suggested that the patient suffered from viral-induced myocarditis and consequent development of IDDM. This possibility was confirmed by the clinical course of ECG change, with elevated CPK and lactate dehydrogenase and a slightly elevated antibody titer for echovirus.

Adult↗

[A rare case of a diabetic patient with small cell lung cancer, initially diagnosed as pyogenic vertebral osteomyelitis].

A rare case of a patient with non-insulin-dependent diabetes mellitus (NIDDM) with small cell lung cancer, initially diagnosed as pyogenic vertebral osteomyelitis, was reported. A 40-year-old male patient was diagnosed with NIDDM about 3 years earlier, but he did not receive any treatment. Then, a two-month history of high fever, persistent cough and back pain developed. Chest X-ray film showed a lung infiltrate with a small cavity in the upper portion of the left lung. Computed tomography and magnetic resonance imaging of the chest revealed a tumor mass shadow with osteoclasia along the bodies of the 6th and 7th thoracic vertebral bone. Staphylococcus aureus infection was confirmed by arterial blood culture. Administration of antibiotics resulted in the disappearance of the left lung infiltrate and a slight reduction of the tumor mass in the thoracic vertebral bone, suggesting pyogenic vertebral osteomyelitis as an unusual complication of NIDDM. However, as the tumor mass still remained, needle biopsy for the mass lesion was performed, resulting in the diagnosis of metastasis of small cell carcinoma from the left lung. Gene aberration in this lung disease has been reported recently, and its correlation with NIDDM which may also be induced by genetic abnormality is an interesting question that remains to be resolved.

Adult↗

Dexamethasone-induced changes in glucose transporter 4 in rat heart muscle, skeletal muscle and adipocytes.

To clarify the effect of glucocorticoid on glucose transporters (GLUT) in adipocytes and muscle, we examined the changes of GLUT4 in rat heart muscle, skeletal muscle and adipocytes during long-term administration of dexamethasone and the translocation of GLUT4. The levels of GLUT4 in the plasma membrane and the low-density microsome fraction were measured by Western blotting using anti-GLUT4 peptide antibody. The levels of GLUT4 in the heart and skeletal muscles of rat were unchanged by treatment of dexamethasone. In the adipocytes the level of GLUT4 in plasma membrane was changed, but it was decreased in the low-density microsome fraction. Although adipocytes are less involved in blood sugar regulation than skeletal muscle, this finding suggests that glucose metabolism in Cushing's syndrome is affected partly by a decrease of GLUT4 in the adipocytes.

5'-Nucleotidase↗

Effects of thyroid hormone on coenzyme Q and other free radical scavengers in rat heart muscle.

Active oxygen species are reported to cause organ damage. This study was therefore designed to determine the behaviour of antioxidants and free radical scavengers so as to reveal changes in animals in the hyper- and hypothyroid state. Levels of antioxidant factors (i.e. coenzyme Q (CoQ)10, CoQ9 and vitamin E) and free radical scavengers (catalase, glutathione peroxidase (GSH-PX) and superoxide dismutase (SOD)) were measured in the heart muscles of rats rendered hyper- or hypothyroid by 4 weeks of thyroxine (T4) or methimazol treatment. Serum levels of CoQ9 and total SOD were also measured. A significant reduction in CoQ9 levels was observed in the heart muscles of both hyper- and hypothyroid rats when compared with control hearts. There was no difference in serum CoQ9 levels in thyroid dysfunction when compared with control animals. Levels of vitamin E in the heart muscles of hyperthyroid rats were significantly increased, and there was no reduction in vitamin E levels in hypothyroid rats when compared with control hearts. GSH-PX levels in the heart muscle were reduced in hyperthyroid rats and increased in hypothyroid rats when compared with control hearts. However, there were no differences in catalase levels in heart muscle between hyper- and hypothyroid rats. The concentration of SOD in heart muscle was increased in hyperthyroid rats and was not decreased in hypothyroid rats compared with control rats, suggesting the induction of SOD by excessive production of O2-. These data suggest that the changes in these scavengers have some role in cardiac dysfunction in the hyper- and hypothyroid state in the rat.

Animals↗

Changes in calmodulin concentration and cyclic 3',5'-nucleotide phosphodiesterase activity in skeletal muscle of hyper- and hypothyroid rats.

Hyper- and hypothyroid states occasionally induce skeletal muscle dysfunction i.e. periodic paralysis and thyroid myopathy. The etiology of these diseases remains unclear, but several findings suggest that the catecholamine-beta-receptor-cAMP system or other messenger systems are disturbed in these diseases. In this context, we evaluated changes in the cyclic 3',5'-nucleotide metabolic enzyme, cyclic 3',5'-nucleotide phosphodiesterase (PDE) and calmodulin concentrations in skeletal muscles of hyper- and hypothyroid rats. Activities of cyclic AMP-PDE were low in skeletal muscle both from hyper- and hypothyroid rats, and calmodulin concentration was high in hyperthyroid and low in hypothyroid rats, as compared with normal rats. DE-52 column chromatographic analysis showed that the cGMP hydrolytic activity in peak I and the cAMP hydrolytic activity in peak II were decreased in hypothyroid rats, whereas cAMP hydrolytic activity in peak III was unchanged. The cAMP hydrolytic activity in peak III was decreased in hyperthyroid rats, but the activities in peaks I and II were unchanged. These findings indicate that cAMP and calmodulin may have some role in skeletal muscle function in the hyperthyroid state, and that cAMP and calmodulin-dependent metabolism may be suppressed in the hypothyroid state.

3',5'-Cyclic-AMP Phosphodiesterases↗

Changes in lipid peroxidation and free radical scavengers in the brain of hyper- and hypothyroid aged rats.

To determine how lipid peroxides and free radical scavengers are changed in the brain of hyper- or hypothyroid rats, we examined the behavior of lipid peroxide and free radical scavengers in the cerebral cortex of aged (1.5 years old) rats that had been made hyper- or hypothyroid by the administration of thyroxine or methimazol for 4 weeks. Concentrations of catalase, Mn-superoxide dismutase (SOD) and glutathione peroxidase (GSH-PX) were increased in hyperthyroid rats compared with euthyroid rats. Concentrations of total SOD, Cu,Zn-SOD and GSH-PX were increased but that of Mn-SOD was decreased in hypothyroid animals. There were no differences among hyperthyroid, hypothyroid and euthyroid rats in the levels of coenzymes 9 or 10. The concentration of lipid peroxides, determined indirectly by the measurement of thiobarbituric acid reactants, was decreased in hyperthyroid rats but not in hypothyroid rats when compared with euthyroid animals. These findings suggest that free radicals and lipid peroxides are scavenged to compensate for the changes induced by hyper- or hypothyroidism.

Animals↗

Immunoreactive creatine kinase-MB and creatine kinase isozyme concentrations during treatment of hypothyroid patients.

Using a highly sensitive enzyme immunoassay (EIA) system, we determined creatine kinase isozymes, namely creatine kinase-MB and creatine kinase-MM, in sera of patients suffering from primary hypothyroidism with concomitant signs of myocardial affections before and during treatment. After oral administration of L-thyroxine, the augmented mass concentrations of serum creatine kinase-MB and creatine kinase-MM, and the increased catalytic activity concentrations of serum total creatine kinase and creatine kinase-MB gradually decreased in inverse proportion to the increased concentrations of serum triiodothyronine (T3) and thyroxine (T4). By the 6th to 8th week after treatment, the elevated levels of serum total creatine kinase and creatine kinase-MB catalytic activity concentrations (assayed by a routine method) and serum creatine kinase-MM mass concentrations (assayed by EIA) declined to normal values, while serum T3, T4, and thyroid stimulating hormone attained normal values. Serum creatine kinase-MB mass concentrations (assayed by EIA), however, still remained at the higher level, without complete recovery from myocardial damage, as shown by electrocardiogram (ECG). These data indicate that metabolic distortion still exists in the myocardium, as revealed by the high creatine kinase-MB mass concentration, especially as assayed by EIA, even though the plasma levels of thyroid hormones had returned to normal.

Aged↗

Changes of calmodulin concentration and cyclic 3',5'-nucleotide phosphodiesterase activities in cardiac muscle of hyper- and hypothyroid rats.

To investigate the effect of thyroid hormone on cardiac muscle dysfunction in hyper- and hypothyroid states, we evaluated cyclic 3',5'-nucleotide metabolism by measuring cyclic 3',5'-nucleotide phosphodiesterase activity and calmodulin concentrations in the cardiac muscles of hyper- and hypothyroid rats. Cyclic AMP (cAMP) concentration was significantly high in the cardiac muscle of hyperthyroid rats and low in that from hypothyroid rats compared with control rats. Cyclic AMP and cyclic GMP phosphodiesterase activities were significantly decreased in the soluble fraction of cardiac muscle from hyperthyroid rats and markedly increased in this fraction in hypothyroid rats compared with normal animals. Calmodulin concentration was high in hyperthyroid and low in hypothyroid rats. It was concluded from these findings that low cAMP-phosphodiesterase activity might, in part, bring about the high concentration of cAMP. Calmodulin was significantly high in the cardiac muscle of hyperthyroid rats and the reverse was the case in hypothyroid rats compared with normal rats. The implication is that, in hyper- and hypothyroid states, these changes may play an important role in cardiac function via their effect on cyclic nucleotide and Ca2+ metabolism.

3',5'-Cyclic-AMP Phosphodiesterases↗