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Biomedical subjects

K Adachi

Publications and source records attributed to K Adachi.

At least 217 records · Page 12Linked to original sources

Radioimmunoassay for Aquaporin-2.

OBJECTIVE: To develop radioimmunoassay for aquaporin-2 (AQP-2). METHODS: Anti-AQP-2 antiserum has been raised in New Zealand white rabbits immunized with a conjugate of synthetic AQP-2 peptide (257-271) with bovine serum albumin. Radioiodination of synthetic peptide (tyrosine-AQP2 (257-271) was performed by chloramine T method, followed by purification of radioiodinated material on Sephadex G-25 column. RESULTS: The obtained antibody did not crossreact with vasopressin, pituitary hormones, hypothalamic hormones and neuropeptides. The assay was performed with a double antibody system. The values are expressed as an equivalent of synthetic AQP-2 peptide (257-271). The dilution curve of high AQP-2 urine in radioimmunoassay system was parallel to the standard curve. The recovery percentage of AQP-2 added to urine was about 100 % in this assay system. Intra-assay and inter-assay variation was 4.5 % and 7.2 %, respectively. Mean urinary excretion of AQP-2 was 1.16 ng equivalent of AQP-2 (257-271)/mg creatine and was lower in patients with diabetes insipidus. CONCLUSION: These data suggest that his assay system is a suitable to measure AQP-2 in urine.

Journal Article↗

The effects of Soybean Diet on Thyroid Hormone and Thyrotropin Levels in Aging Rats.

OBJECTIVE: To estimate the effect of soybean diet on serum level of thyroid hormone, its metabolites and thyrotropin (TSH) during aging in rats. METHODS: Male Donryu rats were fed laboratory chow containing 40 (Group A) or 10 volume percent (Group B) soybean protein, while controls (Group C) received regular laboratory chow. Groups of 10 animals of each groups were sacrificed by decapitation at the age of 12, 18, 24 and 30 months. Serum total thyroxine (T4), free thyroxine (FT4), 3,5,3'-triiodothyronine (T3), 3,3',5'-triiodothyronine (rT3) and 3,3'-diiodothyronine (3,3'-T2) and TSH concentrations were measured by specific radioimmunoassays. RESULTS: In Group A the level of T3 decreased significantly at from the age of 18 months, while in other groups such decrease was found only from the age of 24 months. Such changes were closely resembled by these in the level of 3,3'-T2, while inverse changes were observed in the level of rT3 which was increased in Group A from the age of 18 months and in the other groups from the age of 24 months. Serum T4 and FT4 level was decreased in all groups at the age of 30 months and no changes were observed in the level of TSH. CONCLUSIONS: The findings suggest that the level of T4, FT4 and T3 with its metabolite 3,3'-T2 stepwise decreased with aging, while that of rT3 showed inversely and increase. These changes were influenced by the content of soybean protein in the diet, the most rapid changes being found in the group with the high content of such protein.

Journal Article↗

Distribution of Dopamine Transporter in the Rat: an Immunohistochemical Study.

OBJECTIVE: To investigate the organ distribution of dopamine transporter (DAT) in rats by immunohistochemical method. METHODS: Dopamine transporter (DAT) was identified immunohistochemically in the tissues using specific antipeptide antiserum raised in New Zealand white rabbits immunized with a conjugate of synthetic DAT peptide (29-45) with bovine serum albumin. Immunohistochemical analysis was performed by avidin-biotin complex method. RESULTS: DAT immunoreactivity was visualized in the neural perikarya, axons and dendrites of the central nervous system, retina, adrenal medulla, Auerbach's nervous branch and Meissner's nervous branch of the stomach, small intestine and colon, anterior pituitary, and lung. When using antiserum preincubated with synthetic DAT peptide (DAT, 29-45) or hypothalamus homogenate which contains DAT, no significant stain of neurons in the hypothalamus was detected. CONCLUSION: These findings suggest that DAT is widely distributed and that the method used is valuable in studying the distribution of DAT in rats.

Journal Article↗

[Selection criterion of limited operation for lung cancer as a radical operation].

We reviewed partial resection and segmentectomy for 75 cases (6.5%) out of 1,212 cases treated surgically for primary lung cancer between 1957 and 1996. The surgical results of limited operation in radicality group and risk group was comparable to that of standard operation for the stage I lung cancer. Five-year survival of clinical stage I non-small cell lung cancer patients that tumor size is 2.0 cm or less was excellent (88.9%). Although risk group may be the best candidates for limited surgery, careful patient selection and theoretical operative procedure could make limited operation a standard procedure in radicality group.

Adenocarcinoma↗

Distribution of RGS4 mRNA in mouse brain shown by in situ hybridization.

RGS proteins (regulators of G protein signaling) are a newly identified group of proteins that negatively regulate G proteins. Some, including RGS4, have been shown to act as GTPase-activating proteins for several members of the Gi alpha subunits and the Gq alpha subunit. However, the signaling pathways of G protein-coupled receptors regulated by RGS4 are not well understood. We isolated the mouse RGS4 cDNA to investigate the roles of RGS4 protein in mouse brain. Expression of mouse RGS4 in yeast stimulated adaptation to mating pheromone, suggesting that it negatively regulates that G protein-mediated signaling pathway. Northern blot analysis of various mouse tissues revealed that RGS4 is expressed at high levels in brain, moderately low levels in heart, and very low levels in lung, liver, and skeletal muscle. In situ hybridization of mouse brain showed RGS4 mRNA mainly in the cerebral cortex, hippocampus, anterior olfactory nucleus, piriform cortex, olfactory tubercle, caudate-putamen, nucleus accumbens, islands of Calleja, substantia nigra, amygdala, the granular layer of cerebellum, middle cerebellar peduncle, and perifacial zone. These results suggest that RGS4 is expressed in various types of cells in the brain and may regulate multiple G protein-mediated signaling pathways.

Animals↗

Role of beta87 Thr in the beta6 Val acceptor site during deoxy Hb S polymerization.

Three new Hb S variants containing beta87 Leu, Trp, or Asp instead of Thr were expressed in yeast in order to further define the role of the beta87 position in stability and polymerization of deoxy Hb S. Previous studies showed that hydrophobicity at beta85 Phe and beta88 Leu is critical for stabilization of hemoglobin. Results with the three Hb S beta87 variants, however, showed minimal differences in stability, suggesting that beta87 amino acid hydrophobicity is not critical for stabilization of hemoglobin. Polymerization properties of the variants in the deoxy form, however, were affected by the beta87 amino acid. Polymerization of Hb S beta87 Thr --> Leu and Hb S beta87 Thr --> Trp was preceded by a delay time like Hb S, while Hb S beta87 Thr --> Asp did not show a delay time. In addition, changes in time required for half polymer formation (T1/2) as a function of hemoglobin concentration for Hb S beta87 Thr --> Asp were similar to that for beta87 Thr --> Gln. Hb S beta87 Thr --> Leu polymerized at a lower hemoglobin concentration than Hb S while beta87 Thr --> Trp and Hb S beta87 Thr --> Asp required much higher hemoglobin concentrations for polymer formation. Critical concentration required for deoxy Hb S beta87 Thr --> Asp polymerization was 6- and 2.3-fold greater than that for Hb S beta85 Phe --> Glu and Hb S beta88 Leu --> Glu, respectively. These results suggest that even though beta87 Thr is not a direct interaction site for beta6 Val in deoxy Hb S polymers, it does play a critical role in formation of the hydrophobic acceptor pocket which then promotes protein-protein interactions facilitating formation of stable nuclei and polymers of deoxy Hb S.

Biopolymers↗

Amino acids responsible for decreased 2,3-biphosphoglycerate binding to fetal hemoglobin.

To clarify the role of gammaN-terminal Gly, gamma5 Glu, and gamma143 Ser in 2,3-biphosphosphoglycerate (BPG) binding to fetal hemoglobin (Hb F), we engineered and produced normal human Hb F and two Hb F variants (Hb F gammaG1V, gammaS143H, and Hb F gammaG1V, gammaE5P, gammaS143H) using a yeast expression system and then compared their oxygen-binding properties with those of native human Hb F and adult Hb (Hb A). Oxygen affinity of Hb F gammaG1V, gammaS143H in the absence of 2,3-BPG was slightly higher than that of normal Hb F. The decrease in oxygen affinities for Hb F gammaG1V, gammaS143H with increasing 2,3-BPG concentrations was larger than that of normal Hb F, but significantly less than that of Hb A. In contrast, oxygen affinities of Hb F gammaG1V, gammaE5P, gammaS143H in the absence and presence of 2,3-BPG were much lower than those of Hb F gammaG1V, gammaS143H and were similar to those of Hb A. These results indicate that differences between Pro and Glu at the A2 position in the A helix in Hb A and Hb F, respectively, are critical for reduced binding of 2,3-BPG to Hb F, even though beta5 Pro does not interact directly with 2,3-BPG in Hb A. Hb F variants such as Hb F gammaG1V, gammaE5P, gammaS143H, which exhibit reduced oxygen affinity, should facilitate design of efficient antisickling fetal Hb variants for potential use in gene therapy for sickle cell disease.

2,3-Diphosphoglycerate↗

The high resolution crystal structure of deoxyhemoglobin S.

We have refined the crystal structure of deoxyhemoglobin S (beta Glu6-->Val) at 2.05 A resolution to an R-factor of 16.5% (free R=21. 5%) using crystals isomorphous to those originally grown by Wishner and Love. A predominant feature of this crystal form is a double strand of hemoglobin tetramers that has been shown by a variety of techniques to be the fundamental building block of the intracellular sickle cell fiber. The double strand is stabilized by lateral contacts involving the mutant valine interacting with a pocket between the E and F helices on another tetramer. The new structure reveals some marked differences from the previously refined 3.0 A resolution structure, including several residues in the lateral contact which have shifted by as much as 3.5 A. The lateral contact includes, in addition to the hydrophobic interactions involving the mutant valine, hydrophilic interactions and bridging water molecules at the periphery of the contact. This structure provides further insights into hemoglobin polymerization and may be useful for the structure-based design of therapeutic agents to treat sickle cell disease.

Anemia, Sickle Cell↗

Antioxidant activity of polyphenolics in diets. Rate constants of reactions of chlorogenic acid and caffeic acid with reactive species of oxygen and nitrogen.

Phenolic non-flavonoid compounds in diets, such as chlorogenic acid and caffeic acid are widely recognized to be antioxidants. However, it is not known how these phenolics scavenge reactive species of oxygen and nitrogen. We determined the rate constants of the reactions between the phenolics with superoxide and hydroxyl radical with a pulse radiolysis. The second-order rate constants of the reactions of chlorogenic acid with superoxide and hydroxyl radical were 1.67 +/- 0.14 x 10(6) M(-1) s(-1) and 3.34 +/- 0.19 x 10(9) M(-1) s(-1), respectively, while those of caffeic acid with superoxide and hydroxyl radical were 0.96 +/- 0.01 x 10(6) M(-1) s(-1) and 3.24 +/- 0.12 x 10(9) M(-1) s(-1), respectively. By scavenging peroxy radical chlorogenic acid inhibited the initiation of chain lipid peroxidations by organic free radical. The second-order rate constant of the reaction of chlorogenic acid with peroxy radical was estimated to be 1.28 +/- 0.11 x 10(5) M(-1) s(-1). Chlorogenic acid was rapidly oxidized by peroxynitrite in concentration- and pH-dependent manners and its rate constant was determined to be 1.6 +/- 0.7 x 10(5) M(-1) s(-1), using competitive inhibitions by glutathione and methionine.

Antioxidants↗

N(omega)-nitro-L-arginine methyl ester protects retinal neurons against N-methyl-D-aspartate-induced neurotoxicity in vivo.

We investigated whether the inhibition of nitric oxide (NO) synthesis with N(omega)-nitro-L-arginine methyl ester (L-NAME), a competitive inhibitor of NO synthase, affects N-methyl-D-aspartate (NMDA)-induced neurotoxicity in the rat retina in vivo. A single intravitreal injection of NMDA damaged the ganglion cell layer and the inner plexiform layer without affecting the other retinal layers 7 days after injection. Intravitreal injection of (5R,10S)-(+)-5-methyl-10,11-dihydro-5H-dibenzo[a,d]cyclo-hepten-5, 10-imine hydrogen maleate (MK-801) with NMDA significantly reduced NMDA-induced degeneration of the retina. NMDA-induced degeneration was also prevented by intravitreal injection of L-NAME but not of D-NAME. The protective effect of L-NAME was antagonized by L-arginine. These results suggest that NO plays an important role in NMDA-induced excitotoxic degeneration in the retina.

Animals↗

Disturbed circadian core body temperature rhythm and sleep disturbance in school refusal children and adolescents.

We examined the circadian rhythm of core body temperature (CBT) in 22 school refusal patients, ages between 12 and 18 years, who did not have any physical or psychiatric disorders, but had indefinite complaints, and were suspected to have a circadian rhythm disturbance. To obtain normal data for analysis, CBT in 9 healthy age-matched school attendants who did not have any sleep, psychiatric, or medical disturbance were monitored. Circadian variation of CBT in school refusal patients did not present a clear rhythm, and appearance time of their lowest CBT was markedly delayed compared to healthy subjects. Amplitude of circadian CBT changes, fitted to a cosinor curve by the least square method, was significantly smaller in school refusals than in healthy subjects. These findings suggest that in school refusal patients who do not have physical and psychiatric disorders, clinical psychosomatic symptoms (e.g., fatigue and memory disturbance) and school refusal could be closely related to the desynchronization of their biorhythms, particularly the circadian rhythm of body temperature and sleep-wake rhythm.

Adolescent↗

All-trans retinoic acid therapy for newly diagnosed acute promyelocytic leukemia: comparison with intensive chemotherapy. The Japan Adult Leukemia Study Group (JALSG).

We analyzed the results of treating patients with newly diagnosed acute promyelocytic leukemia (APL) with all-trans retinoic acid (ATRA) in the JALSG AML-92 study and compared them with those of the AML-87 and AML-89 studies, which consisted of standard chemotherapy. In the AML-92 study, patients were scheduled to receive 45 mg/ m2 oral ATRA daily until achievement of a complete remission (CR). If patients had initial leukocyte counts of > 3.0 x 10(9)/l, they received 40 mg/m2 daunorubicin (DNR) for 3 days and 200 mg/m2 behenoyl cytarabine (BHAC) for 5 days in addition to ATRA. During remission induction therapy, if the patients showed peripheral blood myeloblast and promyelocyte counts of > 1.0 x 10(9)/l, they received additional DNR and BHAC on the same schedule. After achievement of a CR, patients received three courses of consolidation and six courses of maintenance/intensification chemotherapy. Of 196 evaluable patients, 173 (88%) achieved a CR: 59 of 62 (95%) treated with ATRA alone, 41 of 49 (84%) treated with ATRA plus later chemotherapy, 63 of 73 (86%) treated with ATRA plus initial chemotherapy, and 10 of 12 (83%) treated with ATRA plus both initial and later chemotherapy. The CR rate in AML-92 was significantly higher than that in AML-89, but not than that achieved in AML-87. In addition, the early mortality and relapse rates in AML-92 were significantly lower than those in AML-89, but were not than those in AML-87. At a median follow-up of 36 months the predicted 4-year event-free survival (EFS) rate for 196 evaluable patients and the 4-year disease-free survival (DFS) rate for the CR cases were 54% and 62%, respectively. There was a significant difference in DFS between AML-92 and AML-87 (P = 0.0418) but not between AML-92 and AML-89 (P = 0.0687). In contrast, significant differences in EFS between AML-92 and both AML-87 (P = 0.0129) and AML-89 (P = 0.005) were observed. These results suggest that non-cross-resistant therapy combined with ATRA and intensive chemotherapy for APL contributes synergistically to the significant improvement in EFS.

Adolescent↗

Suppression of the formation of megamitochondria by scavengers for free radicals.

In the present study we have attempted to suppress the formation of megamitochondria by scavengers for free radicals since conditions for the formation of megamitochondria are often intimately related to the generation of free radicals. We employed three different experimental conditions to induce megamitochondria in the liver: ethanol, hydrazine and chloramphenicol (CP). Scavengers for free radicals tested were: alpha-tocopherol, coenzyme Q10(CoQ10) and 4-hydroxy-2,2,6,6-tetramethyl-piperidine-1-oxyl(4-OH-TEMPO). Allopurinol (AP), a xanthine oxidase inhibitor, was also tested. Results obtained were as follows. (1) Changes observed in the liver of animals treated with ethanol, hydrazine or CP were: formation of megamitochondria; decreases in the body weight and the weight of the liver; remarkable increases in the level of lipid peroxidation; increases in the activity of xanthine oxidase. (2) 4-OH-TEMPO was most effective in improving these changes. A mechanism of the formation of megamitochondria is proposed stressing the role of free radicals in the mechanism.

Allopurinol↗

4-Hydroxy-2-nonenal hardly affects glycolysis.

4-Hydroxy-2-nonenal (HNE), one of the major products of lipid peroxidation, inactivated the rate-limiting enzymes (from animal sources) of the glycolytic pathway and the pentose phosphate pathway when incubated at 37 degrees C for 1 h in the absence of glutathione (GSH). The HNE concentration for half-maximal inactivation of 6-phosphofructokinase (PFK) and glyceraldehyde-3-phosphate dehydrogenase was 3-10 microM; and that value for pyruvate kinase, glucose-6-phosphate dehydrogenase, and hexokinases I and II was 0.15-0.6 mM. In the presence of 5 mM GSH, however, only PFK, irrespective of the source (muscle, liver, or erythrocyte), was inactivated by 40-50% when incubated with 0.1 mM HNE for 1 h. Even PFK was not inactivated in the presence of both GSH and its substrate, ATP (2 mM). Glycolysis in human erythrocytes was not affected by treatment of cells with 0.1 mM HNE at 37 degrees C for 30 min. The results suggest that HNE, at concentrations observable under physiological and pathological conditions, hardly affects glycolysis in cells.

Aldehydes↗

Hair follicle dermal papilla cell lines from p53-knockout mice.

We have attempted to establish a cell line from hair follicle dermal papillae microdissected from vibrissa of mice lacking p53 tumor suppressor gene. The hair follicle dermal papillae were obtained from three types of mice: null knockout, hetero-knockout and wild type litters. Continuous cell lines with short doubling time were obtained only from null knockout litter-mates. Dermal papilla cells from either the hetero-knockout or wild type mice did not multiply well, and died within three passages; provided, however, that in only three cases out of 40 primary dermal papilla implants from two hetero-knockout mice, the cell culture reached 29 passages with a much slower growth rate than the cell lines from the null-knockout mice. These data are in accordance with the notion that the loss of p53 function is closely related to perpetuation of cell cycles and or immortalization.

Animals↗

The promoter of an androgen dependent gene in the hamster flank organ.

Hamster flank organs are useful for studying androgen-dependent growth of hair follicles and sebaceous glands. A cDNA clone (FAR-17a) was isolated from the hamster flank organ, whose expression was highly sensitive to androgen. The mRNA level of this gene was reduced after castration but reappeared after testosterone treatment. To elucidate the mechanism of expression of this gene regulated by androgen we isolated a genomic clone, from a hamster genomic library, that includes the promoter and upsteam region. The promoter region was used to drive a luciferase reporter gene in Cos 7 cells. This construct was activated five to six times higher over a control plasmid lacking the promoter region. We tested the effects of testosterone by transfection of the reporter plasmid into androgen dependent SC-3 cells. The results showed up to fivefold stimulation after the addition of androgen. The sequence of this promoter region was analyzed and the transcription factor binding sites were predicted. Since no obvious androgen responsive elements were included in the promoter region, we suggest that the stimulation of the reporter construct has to be mediated indirectly by androgen-dependent transcription factor(s).

Amino Acid Sequence↗