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Biomedical subjects

T Nakamoto

Publications and source records attributed to T Nakamoto.

At least 19 recordsLinked to original sources

Basic fibroblast growth factor in human prostate cancer cells.

To increase our understanding of the potential role of basic fibroblast growth factor (bFGF) in malignant progression of prostate cancer, we determined the production of bFGF, the expression of FGF receptor (flg), and the response to exogenous bFGF in LNCaP, DU 145, and PC 3 cells. We observed that these three prostate cancer cell lines, which differed in their dependence on androgens for growth in vitro and in their in vivo behavior in nude mice, could be distinguished as follows: (a) androgen-sensitive LNCaP cells, which do not metastasize in nude mice, did not produce measurable amounts of bFGF, expressed small but measurable amounts of FGF receptor mRNA, and did respond to exogeneous bFGF; (b) androgen-insensitive, moderately metastatic DU 145 cells did produce measurable amounts of biologically active bFGF, expressed large amounts of FGF receptor mRNA, and responded to exogeneous bFGF and the heparin-binding fractions from DU 145 cell extracts; (c) androgen-insensitive and highly metastatic PC3 cells also produced measurable amounts of bFGF but did not demonstrate a growth response to either the heparin-binding fractions from PC3 cell extracts or exogenous bFGF, even though large amounts of FGF receptor mRNA were expressed in PC 3 cells. These results suggest the possibility that differences in production of, and response to, bFGF may be associated with different biological behavior.

3T3 Cells

The effects of caffeine on the maxillary composition in the newborn rat.

The possible influence of caffeine on maxillary structure was studied. Seventeen pregnant rats at days 9 of gestation were randomly divided into two groups. The dams of group 1 received a 20% protein diet ad libitum throughout the experimental period. The dams of group 2 were pair-fed, with group 1, a 20% protein diet supplemented with 2 mg/100 g body weight (B.W.) caffeine. At birth, pups were mixed within the same group and 8 randomly selected pups were assigned to each dam and continuously fed the respective diet. On day 22, 11 male pups from the control and 12 males from the caffeine group were randomly selected, separated from the dams, and continued to be fed their respective diets. On day 44, a rubber elastic band was inserted between the first and second maxillary right molars. The size of the elastic band was increased throughout the next 5 days. Animals were sacrificed at day 49 and the composition of the maxillas was analyzed. After pulverization, organic and inorganic contents of the bones were measured. Zinc (Zn) and hydroxyproline concentration of the caffeine group showed a significant decrease when compared with those of the controls. However, Ca, P, Mg, and hexosamine concentration showed no difference between the groups. The interdental space measured occlusally and laterally with the visual method, and occlusally in histological sections showed no significant difference between the control and caffeine groups, although variation of the space in the caffeine group was less than in the control group.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Effect of caffeine and zinc on DNA and protein synthesis of neonatal rat cardiac muscle cell in culture.

The effect of caffeine and/or zinc on DNA and protein synthesis of purified neonatal-rat ventricular cardiac myocytes was studied. Caffeine (0.2-2 mM) inhibited both DNA and protein synthesis of the cells. Addition of EDTA in the growth medium inhibited both DNA and protein synthesis. Without caffeine and in the presence of lower concentrations of caffeine (0.2 mM) in the growth medium, 10 microM of zinc concentration reversed DNA synthesis, which was inhibited by the chelating agent (EDTA). Higher concentrations of caffeine (2 mM) in the growth medium completely abolished sensitivity of cardiac myocytes to zinc. Additional zinc supplementation to the growth medium of cardiac myocytes did not alter the rate of protein synthesis. The present results suggest that the effect of caffeine on cardiac myocytes may be associated with the zinc-dependent enzymes involved in DNA synthesis.

Animals

Effects of maternal caffeine intake during lactation on molar enamel surfaces in new-born rats.

Dams were fed normal laboratory chow until delivery. At birth, the litters were combined, and eight pups were randomly assigned to each dam. Dams with the recombined litters were divided into two groups. Dams of group 1 were fed a 20% protein diet as a control; dams of group 2 were fed a 20% protein diet supplemented with caffeine (2 mg/100 g of the dam's weight). On day 22, the dams of group 2 were anaesthetized with ether. They were injected with 2 iu of oxytocin in order to collect milk. Blood was collected from pups and dams to determine its caffeine concentration. The first and second molars were removed from each pup's mandible and maxilla. Radiographs were taken of 10 randomly selected first or second molars from each group. Four randomly selected molars from each litter were placed in a specially designed chamber and bathed with a constant flow of acid solution to determine the amount of mineral dissolved from the enamel surfaces. The remaining non-acid exposed molars were pulverized in freezer mills. A small portion of this powder was then analysed for the total amount of minerals. No differences were found in the radiographic density of enamel between the groups. The amount of dissolved calcium, phosphorus and magnesium from enamel surfaces in the caffeine group was consistently greater than that of the non-caffeine group in the first molars, whereas, in the second molars, there was no difference between the groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Physical examination of caffeine's effects on the enamel surface of first molar in new-born rats.

Samples of the first molars of offspring whose dams were fed a diet supplemented with caffeine were examined by scanning electron microscopy, X-ray diffractometry and electron microprobe analysis. Scanning microscopy of the enamel surface of the caffeine group revealed a consistently rougher surface than in the non-caffeine controls, both before and after acid exposure. X-ray diffraction analysis of the pulverized whole tooth in the caffeine group showed broader diffraction peaks for the lattice plane reflections (202) and (300), indicating smaller crystallites. Pure enamel samples of the caffeine group examined with a Gandolfi X-ray camera also revealed more diffuse diffraction lines than in the non-caffeine controls, further indicating smaller crystallites in the enamel. The calcium and phosphorus contents of the acid-exposed samples in both control and caffeine groups were lower than the non-acid exposed control and caffeine groups by electron microprobe analysis. After exposure to acid, the calcium and phosphorus contents of the outer surface of the enamel in the caffeine group were greatly reduced as compared to that of the non-caffeine controls. Thus various methods consistently indicate that caffeine ingestion during early growth affects the enamel surface of the first molars, resulting in impaired mineralization. Caffeine intake may therefore have a negative effect on amelogenesis and possibly increases susceptibility to dental caries.

Animals

Effects of caffeine on the DNA and protein synthesis of the protein-energy malnourished neonatal cardiac muscle cells in culture.

1. The growth of cardiac cells derived from newborn rats whose dams were either malnourished or malnourished with caffeine during pregnancy was inhibited in culture over the period of 5 days as compared to that of the normally nourished cells. 2. Cells derived from malnourished rats with caffeine added to their diets showed a greater inhibition than those from the malnourished rats not given caffeine. 3. Both DNA and protein synthesis showed an inhibition due to caffeine in a dose-dependent manner using normally nourished cells. 4. In the presence of exogenous 2 mM caffeine, the degree of percent inhibition of DNA and protein synthesis of cells derived from rats malnourished with caffeine was less than that from the rats with malnutrition alone. 5. The present data indicated that malnutrition combined with caffeine during pregnancy exerted a greater negative effect on the nature of cell growth than malnutrition alone and these cells became less sensitive to exogenous caffeine.

Animals

Differential effects of positive end expiratory pressure and cardiac tamponade on left-right ventricular mechanical function in the dog.

OBJECTIVE: The aim was to examine the hypothesis that an increased coupling occurs between the ventricles during tamponade via a ventricular-pericardial-ventricular interaction, but that ventricular coupling would be unaltered or reduced with positive end expiratory pressure (PEEP). METHODS: An in situ arrested, canine heart preparation was used. Changes in left and right ventricular pressure (dPl, dPr) and volume (dVl, dVr) caused by increasing the volume of the other ventricle were measured at normal and at matched levels of raised pericardial pressures (Pp) caused by 20 cm H2O PEEP and by tamponade. RESULTS: With PEEP, the coupling between the ventricles was unaltered when compared to control. With tamponade, dPl/dPr, dVl/dPr, dPr/dPl, and dVr/dPl increased significantly (p less than 0.05) by 0.21 (SEM 0.03, unitless), 0.45(0.04) ml.mm Hg-1, 0.18(0.03), and 0.28(0.04) ml.mm Hg-1 respectively. CONCLUSIONS: Augmented ventricular interdependence occurs during tamponade but not with PEEP, which may help to explain the different haemodynamic patterns observed under these conditions.

Animals

Caffeine decreases zinc and metallothionein levels in heart of newborn and adult rats.

The purpose of the present study is to show that dietary caffeine, heart tissue Zn levels, and metallothionein (MT) concentration are all interrelated in newborn rats. Dams with eight pups in the control group were fed a 20% protein diet upon delivery, whereas dams in the experimental group were fed a 20% protein diet supplemented with caffeine (2 mg/100 g body weight). Offspring were killed at d 22 postbirth and the hearts and livers were removed to determine the Zn and MT concentrations. Hearts of the newborn rats in the caffeine group showed decreased Zn levels as well as decreased MT concentration. To explain the observed effects in newborn rats, the relationship between Zn and MT levels was studied in adult female rats. They were injected intraperitoneally with either ZnCl2 (20 mg/kg body weight) dissolved in saline solution or ZnCl2 and caffeine (4 mg/kg body weight) over a period of 2 d. Injection of ZnCl2 into adult female rats resulted in an increase in heart MT levels, whereas injection of caffeine caused decreased Zn levels and MT concentration. Current findings indicate that dietary caffeine intake during the lactational period by newborn pups causes a decrease of the heart Zn and MT levels.

Animals

Sandwich immunoassay for intact human osteocalcin.

To overcome the problems of limited-region specificity associated with conventional radioimmunoassay (RIA), we developed a sandwich enzyme immunoassay (EIA) for intact human osteocalcin (hOC). For this EIA we used antibodies to the N- and C-terminal regions of hOC that were raised against an N-terminal 20-residue peptide and a C-terminal 7-residue peptide, both synthetic. Immunoassay profiles of tryptic digests of hOC and serum from patients with renal failure, fractionated by reversed-phase HPLC, facilitated direct demonstration of the region specificity of this method. A preliminary study of serum osteocalcin concentrations in patients with renal failure further confirmed this specificity, showing lower positive rates obtained by this method than by conventional RIA. The cross-reactivity data of hOC with bovine and rat osteocalcins by the sandwich method indicated its species specificity. These studies demonstrate the superior specificity of this sandwich EIA compared with conventional RIA and thus confirm its potential diagnostic superiority.

Adult

[Estimation of pulmonary vascular permeability by indocyanine green in permeability pulmonary edema].

In this study we attempted to estimate pulmonary vascular permeability by indocyanine green (ICG). Permeability pulmonary edema was produced in 9 adult dogs by injecting 0.08 ml/kg oleic acid. We injected 50 mg ICG intravenously in 18 dogs (9 dogs with pulmonary edema and 9 control dogs). We measured the time course of ICG concentrations in pulmonary arterial blood, ICG concentration of peripheral lung tissue, tissue/serum ICG concentration ratios, and wet/dry lung weight ratios. The following results were obtained. The time course of ICG concentration in pulmonary arterial blood showed peak values at 2 minutes and became constant at 5 or 10 minutes after injection. The ICG concentration in peripheral lung tissue, tissue/serum ICG concentration ratios, and wet/dry lung weight ratios in the pulmonary edema group were significantly higher than those in the normal group. There was a strong linear correlation between wet/dry lung weight ratio and ICG concentration in peripheral lung tissue, with correlation coefficients of r = 0.936 (p < 0.01) in the right lung and r = 0.901 (p < 0.01) in the left lung. From these results, we conclude that estimation of pulmonary vascular permeability by ICG is a useful method.

Animals

Relationship of prenatal caffeine exposure and zinc supplementation on fetal rat brain growth.

Pregnant rat dams were divided into four groups on the 3rd day of gestation. Group 1 dams were fed a 20% protein diet as controls. Dams of group 2 were fed a 20% protein diet supplemented with zinc (0.6 g ZnCl2/kg diet). Group 3 dams were fed a 20% protein diet supplemented with caffeine (2 mg/100 g body weight) and dams of group 4 were fed a 20% protein diet supplemented with both caffeine and zinc. Fetuses were surgically delivered on day 22, and brains were removed and analyzed for alkaline phosphatase activity, protein, zinc, cholesterol and DNA concentrations. Fetal brain caffeine levels, as well as maternal and fetal plasma caffeine levels, were determined in caffeine-supplemented groups. The body weight of group 4 and brain weights of groups 3 and 4 were higher than those of groups 1 and 2. Alkaline phosphatase activity of group 3 was less than that of group 1. The brain zinc concentration of group 2 was higher than in the other groups, but that of group 4 was less than that of group 1. The present study indicated that the supplementation of caffeine to the maternal diet decreased zinc levels in the fetal brain, and the addition of extra zinc to this diet did not return the zinc level to that of the control level as we had expected. In addition, the supplementation of caffeine and zinc together increased the body weights of the fetuses compared to the controls, but the addition of only one of these substances had no effect, suggesting that the combination of caffeine and zinc may have unique effects on fetal growth.

Administration, Oral

Autoregulation of androgen receptor expression in rodent prostate: immunohistochemical and in situ hybridization analysis.

Autoregulation of androgen receptor mRNA and protein was investigated by immunohistochemical and in situ hybridization techniques. In both mouse and rat prostate, the epithelial cell nuclei were stained with the monoclonal or polyclonal antibodies raised against human androgen receptor. It was observed that 3 days after castration, nuclear staining of the epithelium was greatly reduced, while androgen treatment restored the staining intensity to a normal level. In situ hybridization using an androgen receptor cDNA fragment as probe demonstrated that the change in androgen receptor mRNA level correlated with the change in antibody staining intensity. These data suggested an up-regulation of androgen receptor expression by androgen.

Animals

Identification of the genomic region determining serotype specificity of Vibrio cholerae 01.

A 2.1-kb genomic region responsible for Ogawa serotype specificity of Vibrio cholerae 01 was identified by cosmid cloning and recombinant plasmid experiments. The plasmid carrying this region derived from Ogawa type Vibrio cholerae NIH 41 coded for a specific protein of 27 kD, and was found to convert serotype specificity from Inaba to Ogawa when co-introduced into the Escherichia coli cells harboring a cloned 20-kilobase genomic DNA fragment of Inaba type Vibrio cholerae 35A3.

Antigens, Bacterial

Lasting effects of early chronic caffeine feeding on rats' behavior and brain in later life.

Pregnant dams were fed a 20% protein diet with caffeine (2 mg/100 g b.wt.), starting on day 9 of gestation. At birth, each dam with 8 assigned pups was fed this diet until weaning, day 22. On day 22, female rats were caged and fed this diet until day 93. Starting on day 93, the caffeine-supplemented diet was replaced with a caffeine-free, 20% protein diet until day 388. Starting on day 31, each animal was placed in a photoactivity cage, and locomotive activity was measured until day 375. On day 388, the animals were killed, and their brains were removed and divided into 7 regions. The weight, DNA, protein and zinc contents, and alkaline phosphatase activity of each region were determined. Locomotive activity of the caffeine-fed group was higher than in the noncaffeine control group. Accumulative activity scores showed 3 subgroups (high, medium, and low) in both groups at day 93. The medium activity subgroup in the caffeine group was greater than the controls from day 72 to day 93. These differences reappeared 5 weeks after cessation of caffeine supplementation and continued until day 375. The differences in activity were minimum in the high and low subgroups. Chronic caffeine intake in early life permanently affected the medium activity subgroup. Furthermore, various regions of the brain were biochemically altered in spite of the feeding of a noncaffeine diet for almost 300 days after caffeine.

Animals

Interaction between caffeine and zinc on brain in newborn rats.

The purpose of this study was to determine whether adding zinc to the caffeine-supplemented diet of dams during gestation and lactation would affect brain development in newborn rats. On day 9 of gestation, dams of group 1 were fed to a 20% protein diet as a control. Dams of group 2 were fed a 20% protein diet supplemented with caffeine. Dams of group 3 were fed a 20% protein diet supplemented with caffeine and zinc. The amount of caffeine added to the maternal diet was 2 mg/100 g of body weight. The amount of zinc chloride added to diet was 0.6 g/kg of diet. At birth, 8 randomly selected pups from each group were assigned to each dam of the respective group and were continuously fed the same diet. On day 15, the pups were killed and brains were removed. Zinc, protein, DNA, alkaline phosphatase activity and cholesterol contents were measured. Milk and maternal and neonatal blood were collected to determine caffeine levels. There was a significant correlation between the milk caffeine and brain caffeine concentrations in group 3. A significant correlation between the neonatal plasma caffeine and brain caffeine concentrations was observed in groups 2 and 3. There was no correlation between neonatal brain weight and zinc content per brain in each group. The correlation between neonatal brain weight and alkaline phosphatase activity was significant in groups 1 and 3. The neonatal zinc content and concentration of group 2 was less than that of group 1. The DNA content and concentration of group 3 was greater than that of either groups 1 or 2. Supplementation of zinc to the caffeine-added diet could restore the brain zinc levels observed in brains of newborn rats.

Alkaline Phosphatase

[Clinical application of subtraction CT imaging for evaluation of pulmonary vascular permeability].

In this clinical study, one normal subject, one patient with primary interstitial pneumonia, one patient with segmental pneumonia due to Staphylococcus aureus, one patient with post-operative esophageal carcinoma, and two patients with mitral stenosis were studied. Dynamic CT scan images under continuous injection of low osmotic contrast medium were analyzed in series, in an attempt to evaluate vascular permeability quantitatively. The following results were obtained: 1) Subtraction CT scan image 10 minutes after the start of contrast medium injection in two patients with pneumonia, showed a reduction of pulmonary vascular permeability following therapy. 2) Subtraction CT scan image of the patient with post-operative esophageal carcinoma treated with 25 Gy radiation showed a discrepancy between pulmonary vascular permeability and other findings. 3) In hemodynamically stable patients with mitral stenosis, subtraction CT images demonstrated that pulmonary vascular permeability was not affected by pulmonary congestion, irrespective of its severity.

Adult

Effects of caffeine intake during gestation and lactation on bones of young growing rats.

The objective of this study was to evaluate the extended effect of caffeine intake received during gestation and lactation on the mandible and femur of rats. Timed-pregnant dams were divided into two groups. Dams of group 1 were fed a 20% protein diet throughout the experimental period from day 9 of gestation. Dams of group 2 were also fed a 20% protein diet, supplemented with caffeine (1 mg/100 g of body weight). Upon delivery, 8 pups were assigned to each dam, and the dams were continued on their respective diets. At weaning (day 22 postnatally), only male rats were selected. Pups of both groups were fed a 20% protein diet without caffeine. At day 56 postnatally the rats were killed. Mandibles and femurs were removed and the following parameters analyzed: weight, physical dimension, volume, and Knoop microhardness. Caffeine intake during gestation and lactation resulted in an impairment of femur growth and development and to a lesser extent mandibular growth and development. The early effects of caffeine in the maternal diet were lasting, as noted by the lack of recovery of the offspring even after changing to a caffeine-free diet for an extended time after weaning.

Animals

Effects of maternal caffeine with zinc intake during gestation and lactation on bone development in newborn rats.

On day 9 of gestation, pregnant dams were randomly divided into 3 groups. Dams of group 1 were fed a 20% protein diet as a control. Dams of group 2 were fed a 20% protein diet supplemented with caffeine. Dams of group 3 were fed a 20% protein diet supplemented with caffeine and zinc. The amount of caffeine added to the maternal diet was 2 mg/100 g body weight; the amount of zinc was 0.6 g/kg of diet. At birth, pups were mixed within each group, and 8 randomly selected pups from each group were assigned to each dam of the respective group and were continuously fed the same diet. On day 15, the pups were killed and cranial bones, mandibles and femurs removed. The bones were measured, and the mineral content of the mandibles and femurs was determined. Although there were no differences in the dimensions of the cranial bones among the groups, the measurements and mineral content of the mandibles and femurs were consistently affected by the caffeine in the diet. On the other hand, supplementation of the caffeine-added diets with zinc led to greatly improved bone development, reaching values up to or beyond control levels. Thus zinc supplementation of a caffeine diet given to the dams during gestation and lactation can favourably influence the otherwise impaired bone development of their offspring.

Animals