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Biomedical subjects

M Shimada

Publications and source records attributed to M Shimada.

At least 793 records · Page 44Linked to original sources

Fluorescence properties and contraction characteristics of ANM (N-(1-anilinonaphthyl-4)maleimide)-labeled rabbit psoas muscle fibers.

Fluorescence spectra of ANM-labeled, glycerinated rabbit psoas muscle fibers were recorded in relaxed, contracted, and rigor states. SDS polyacrylamide gel electrophoresis of the ANM-labeled muscle fibers indicated that proteins labeled with ANM were myosin heavy chain, C protein, and actin. In a relaxed state in the presence of ATP, myosin heavy chain was mainly labeled. During the transition from rigor to the relaxed or contracted state, there was a blue shift (about 5 nm) of the ANM emission spectrum. Similar experiments with FAM (N-(3-fluoranthyl)-maleimide)-labeled muscle fibers showed that these fluorescence changes were not artifacts due to the movement of muscle fibers. The fibers labeled in the ATP relaxing solution showed a marked decrease in both isometric force and unloaded shortening velocity (Vo), while in the fibers labeled in the rigor solution isometric tension was not markedly suppressed, though Vo decreased to the same extent as in the fibers labeled in the ATP relaxing solution. Fluorescence spectra of ANM-labeled HMM in different states were also measured. A fluorescence enhancement and a blue shift (about 5 nm) of the emission maximum were observed in HMM + MgATP or HMM + MgATP + F-actin in comparison with HMM + F-actin. These results suggest that the fluorescence spectra of the ANM-labeled muscle fibers reflect their conformational changes between the rigor state (in the absence of MgATP) and the relaxed or contracted state (in the presence of MgATP).

Actomyosin↗

[Chronopharmacological study of physical dependence on morphine in rats].

Relationship between withdrawal time or naloxone injection time and withdrawal signs were examined in morphine-treated rats. Sixty-five rats were treated chronically with morphine-admixed food (1 mg/g food) for 7 days and were divided into 13 groups. The rats of 4 groups were abruptly withdrawn from morphine, and the rats of another 4 groups were given naloxone (3 mg/kg, s.c.) at 20:00 on the 8 th day and 2:00, 8:00 and 14:00 on the 9 th day after the morphine administration, respectively. Withdrawal signs were observed at intervals of 2 hr. After each naloxone injection, abnormal behaviors were observed for 60 min, and body weight was measured for 3 hr at intervals of 15 or 30 min. In the withdrawal test, weight loss at 24 hr after withdrawal in each group was approximately 10%, and there was no difference between each group. However, the body weight of non-treated rats and morphine-treated rats increased during the night period (20:00-8:00) and decreased during the daytime (8:00-20:00). Therefore, body weight reached the minimum at 20:00, and then this time is appropriated for withdrawal. In the naloxone test, withdrawal signs in the night period were more potent than that in the daytime. The withdrawal signs induced by naloxone at 8:00 showed the maximum magnitude. Plasma morphine levels in rats treated with morphine-admixed food were high in the night period and low in the daytime. These results suggest that the magnitude of naloxone-precipitated withdrawal signs depends on the amount of morphine in the plasma.

Animals↗

Effect of simultaneous infusion of a somatostatin analogue, insulin and glucose on serum triglycerides and blood glucose levels in man.

Nine non-diabetic, non-obese, normocholesterolemic normal male subjects with varied triglycerides levels were subjected to a simultaneous infusion test with a synthetic somatostatin analogue [des(Ala1, Gly2)-D-Trp8, D-Asn3, 14-somatostatin], insulin and glucose under ambulatory conditions. The levels of C-peptide reactivity, immunoreactive glucagon and growth hormone were reduced, and the level of immunoreactive insulin remained constant during the infusion. The blood glucose reached a constant value at 110-120 minutes (steady state blood glucose, SSBG) after the commencement of the infusion. The total cholesterol (TC) levels decreased slightly in the 30 minutes after the experiments were begun, and the triglycerides (TG) levels decreased gradually throughout the infusion period, due mainly to the reduction of very low density lipoprotein (VLDL). The most striking finding was the highly significant positive correlation (p less than 0.005, r = 0.868) between SSBG and the serum TG level prior to the infusion. These results indicate an important relationship between insulin sensitivity and serum TG level. High TG level may be regarded as one of the indices of insulin resistance.

Adult↗

Myocardial involvement in the Marfan syndrome.

A patient with the Marfan syndrome and echocardiographic and angiocardiographic evidence of hypertrophic cardiomyopathy is presented. Endomyocardial biopsy was performed. Histologic abnormalities of the endomyocardium noted in this patient were considered to be related to the basic generalized connective tissue abnormality, and the patient subsequently developed myocardial disease compatible with hypertrophic non-obstructive cardiomyopathy. We believe that this case emphasizes the possible co-existence of subclinical myocardial disease in patients with the Marfan syndrome.

Angiocardiography↗

General anesthesia and surgical stress increase plasma immunoreactive beta-endorphin-like substances.

The concentrations of human immunoreactive beta-endorphin-like substances in plasma were measured as a means of determining the effects of general anesthesia and surgical stress on the endogenous morphine-like substances. Sixty-nine adult patients and 44 pediatric patients who had undergone oral surgery in general anesthesia were the subjects of this study. In comparison to the control values, the results of this study showed an increase of beta-endorphin concentration in the plasma during anesthesia and surgery. The increase was particularly significant in the patients who had relatively a major surgical stress and in those patients showing a weak anesthetic action, while the patients with relatively a minor surgical stress or strong anesthetic action showed a small increase. From these findings, it seems proper to assume that the secretion of beta-endorphin in the plasma is accelerated by general anesthesia and surgical stress than to assume that the amount of beta-endorphin in the plasma is increased by the administration of anesthetic agents.

Adolescent↗

Age-related alteration in the activities of drug-metabolizing enzymes and contents of sex-specific forms of cytochrome P-450 in liver microsomes from male and female rats.

Age-related changes in the amounts of sex-specific forms of cytochrome P-450 as well as the activities of drug-metabolizing enzymes in liver microsomes of Fischer-344 rats of different ages ranging from 3 to 30 months were studied. Activities of 7-propoxycoumarin O-depropylase and benzo(a)pyrene hydroxylase in male rats, which were higher than those in female rats in younger adults (3-12 months), decreased with increasing age, resulting in the loss of sex differences after 25 months. The male-specific form of cytochrome P-450, namely P-450-male, present in younger adults, was not detectable in older ages. In old male rats, the female-specific form of cytochrome P-450, namely P-450-female, appeared instead of P-450 male. In liver microsomes of young and old female rats, rather constant levels of P-450-female were observed, whereas P-450-male was not detectable. Serum concentrations of testosterone and estradiol were also quantitated. The ratio of testosterone to estradiol concentrations decreased with age in male rats whereas the ratio was not changed in female rats. Based on these results, we propose that the age-related decrease in the activities of drug-metabolizing enzymes in male rats is attributable to the change in the population of cytochrome P-450, especially P-450-male and P-450-female, probably owing to the alteration of the levels of gonadal hormones.

Aging↗

Catalysis of the covalent binding of 3-hydroxyamino-1-methyl-5H-pyrido[4,3-b]indole to DNA by a L-proline- and adenosine triphosphate-dependent enzyme in rat hepatic cytosol.

An enzymatic mechanism involved in the activation of 3-hydroxyamino-1-methyl-5H-pyrido[4,3-b]indole (N-hydroxy-Trp-P-2), a mutagenic intermediate of a tryptophan pyrolysate, was studied in vitro. In hepatic cytosol supplemented with adenosine triphosphate and L-proline, N-hydroxy-Trp-P-2 was converted to a form which reacts readily with DNA. The enzyme responsible for the activation was partially purified and identified as prolyl transfer RNA synthetase as judged by their cofactor requirements, inhibition by pyrophosphate or adenosine monophosphate, and copurification of their activities. The prolyl transfer RNA-dependent covalent binding of N-hydroxy-Trp-P-2 to DNA of hepatic cytosol was highest in rats, followed by mice, hamsters, rabbits, and guinea pigs in that order. The capacity for the binding of N-hydroxy-Trp-P-2 was largely consistent with their prolyl transfer RNA synthetase activity. With regard to the ultimate form of N-hydroxy-Trp-P-2 for the covalent binding, a possible formation of N,O-prolyl-3-amino-1-methyl-5H-pyrido[4,3-b]indole was proposed.

Adenosine Triphosphate↗

[Effects of 4-(o-benzylphenoxy)-N-methylbutylamine hydrochloride (bifemelane) on the synthesis of acetylcholine in anemic hypoxia].

Pretreatment of mice with 4-(o-benzylphenoxy)-N-methylbutylamine hydrochloride (bifemelane) protected against effects of anemic hypoxia. Befemelane delayed the loss of the righting reflex (from 17.8 +/- 1.3 to 21.9 +/- 1.2 min, p less than 0.05) and death (from 19.6 +/- 1.3 to 23.3 +/- 1.1, p less than 0.05) in mice with anemic hypoxia (induced with NaNO2). Pretreatment with bifemelane ameliorated the reduction in the synthesis of acetylcholine from labeled precursors in anemic hypoxia. Namely, it reduced the inhibition of acetylcholine synthesis from labeled choline (from 3.8 +/- 0.5 to 9.4 +/- 1.2 pmole/mg protein at 30 mg/kg, p less than 0.01), but not significant at 15 mg/kg. However it (15 mg/kg) caused a significant increase in the incorporation of [U-14C] glucose into acetylcholine compared to the value for hypoxic animals (from 5 +/- 0.5 to 9 +/- 1 dpm/mg protein, p less than 0.001). Under normal conditions, concentrations of acetylcholine and glucose in the brain were significantly increased by the 30 mg/kg of bifemelane, while the synthesis of acetylcholine from choline was significantly decreased. This reduction of synthesis might be caused by the increased acetylcholine concentrations in the brain. Fifteen mg/kg of bifemelane significantly increased the concentrations of glucose, 14C-acid soluble fraction and the synthesis of acetylcholine from [U-14C] glucose. In the in vitro experiments, cholinesterase activity was significantly inhibited by the bifemelane (1.47 microM). However, its inhibitory effects were about 1/9000 of physostigmine sulfate, which might be too weak to increase the acetylcholine concentration in the brain.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗

The C-C bond cleavage of a lignin model compound, 1,2-diarylpropane-1,3-diol, with a heme-enzyme model catalyst tetraphenylporphyrinatoiron(III)chloride in the presence of tert-butylhydroperoxide.

The catalytic C-C bond cleavage of a lignin model compound was investigated by use of tetraphenylporphyrinatoiron(III)chloride as a model for enzymic degradation of lignin. The C-C bond of the lignin model compound 1,2-bis(4-ethoxy-3-methoxyphenyl) propane-1,3-diol was oxidatively cleaved by catalysis of iron-porphyrins in the presence of tert-butylhydroperoxide or iodosylbenzene at a room temperature. The products formed after complete oxidation of the substrate were identified as 4-O-ethylvanillin, alpha-hydroxy-4-ethoxy-3-methoxyacetophenone, 4-O-ethylvanillic acid, 4-ethoxy-3-methoxyphenylglycol, 4-ethoxy-3-methoxy-alpha-(4-ethoxy-3-methoxyphenyl)-beta-hydroxypropi ophenone and formaldehyde.

Chemical Phenomena↗