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1.
2.
Two ml of w mM ammonium acetate solution was introduced into 10 cm chicken intestinal sack having Meckel's diverticulum in the middle part. After the introduction, blood ammonia concentration in the mesenteric vein draining the sack reached a maximal increase within 5 min and returned to the initial level in 30 min. The difference of ammonia concentration between cardiac and mesenteric venous blood also showed a similar tendency. About 91% of the ammonia introduced into the intestinal lumen disappeared in 30 min. Amino acid metabolism in intestinal tissue appears to be affected by the introduction of ammonia into the intestinal lumen. 相似文献
3.
Sumio Shimizu Denei Karasawa Nagamori Ikeda 《Bioscience, biotechnology, and biochemistry》2013,77(2):200-201
Certain strains of Rhodotorula were found capable of utilizing L-phenylalanine as a sole carbon and nitrogen source and of accumulating ether-soluble metabolite in the cultured broth. The metabolite was isolated and identified as trans-cinnamic acid. The nonoxidative deamination of phenylalanine to trans-cinnamic acid was catalyzed by dried cells, acetone-dried cells or intact cells with surface active agents. The distribution of phenylalanine ammonia-lyase activity in yeasts was investigated. It was found that the enzyme activity specifically occurred in Rhodotorula and that the formation of enzyme was enhanced by culturing on the medium supplemented with phenylalanine. 相似文献
4.
Lixin Wang Sachiko Mogami Seiichi Yakabi Hiroshi Karasawa Chihiro Yamada Koji Yakabi Tomohisa Hattori Yvette Taché 《PloS one》2015,10(9)
Abdominal surgery inhibits food intake and induces c-Fos expression in the hypothalamic and medullary nuclei in rats. Rikkunshito (RKT), a Kampo medicine improves anorexia. We assessed the alterations in meal microstructure and c-Fos expression in brain nuclei induced by abdominal surgery and the modulation by RKT in mice. RKT or vehicle was gavaged daily for 1 week. On day 8 mice had no access to food for 6–7 h and were treated twice with RKT or vehicle. Abdominal surgery (laparotomy-cecum palpation) was performed 1–2 h before the dark phase. The food intake and meal structures were monitored using an automated monitoring system for mice. Brain sections were processed for c-Fos immunoreactivity (ir) 2-h after abdominal surgery. Abdominal surgery significantly reduced bouts, meal frequency, size and duration, and time spent on meals, and increased inter-meal interval and satiety ratio resulting in 92–86% suppression of food intake at 2–24 h post-surgery compared with control group (no surgery). RKT significantly increased bouts, meal duration and the cumulative 12-h food intake by 11%. Abdominal surgery increased c-Fos in the prelimbic, cingulate and insular cortexes, and autonomic nuclei, such as the bed nucleus of the stria terminalis, central amygdala, hypothalamic supraoptic (SON), paraventricular and arcuate nuclei, Edinger-Westphal nucleus (E-W), lateral periaqueduct gray (PAG), lateral parabrachial nucleus, locus coeruleus, ventrolateral medulla and nucleus tractus solitarius (NTS). RKT induced a small increase in c-Fos-ir neurons in the SON and E-W of control mice, and in mice with surgery there was an increase in the lateral PAG and a decrease in the NTS. These findings indicate that abdominal surgery inhibits food intake by increasing both satiation (meal duration) and satiety (meal interval) and activates brain circuits involved in pain, feeding behavior and stress that may underlie the alterations of meal pattern and food intake inhibition. RKT improves food consumption post-surgically that may involve modulation of pain pathway. 相似文献
5.
Hiroshi Karasawa Kiyosumi Takaishi Yoshihiro Kumagae 《Obesity (Silver Spring, Md.)》2011,19(3):514-521
An obesity‐induced diabetes model using genetically normal mouse strains would be invaluable but remains to be established. One reason is that several normal mouse strains are resistant to high‐fat diet‐induced obesity. In the present study, we show the effectiveness of gold thioglucose (GTG) in inducing hyperphagia and severe obesity in mice, and demonstrate the development of obesity‐induced diabetes in genetically normal mouse strains. GTG treated DBA/2, C57BLKs, and BDF1 mice gained weight rapidly and exhibited significant increases in nonfasting plasma glucose levels 8–12 weeks after GTG treatment. These mice showed significantly impaired insulin secretion, particularly in the early phase after glucose load, and reduced insulin content in pancreatic islets. Interestingly, GTG treated C57BL/6 mice did not become diabetic and retained normal early insulin secretion and islet insulin content despite being as severely obese and insulin resistant as the other mice. These results suggest that the pathogenesis of obesity‐induced diabetes in GTG‐treated mice is attributable to the inability of their pancreatic β‐cells to secrete enough insulin to compensate for insulin resistance. Mice developing obesity‐induced diabetes after GTG treatment might be a valuable tool for investigating obesity‐induced diabetes. Furthermore, comparing the genetic backgrounds of mice with different susceptibilities to diabetes may lead to the identification of novel genetic factors influencing the ability of pancreatic β‐cells to secrete insulin. 相似文献
6.
Naoyuki Kaneko Koh Miura Hideaki Karasawa Hiroyuki Sasaki Satoru Yokoyama Akihiro Yamamura Hiroki Nagase Iwao Sasaki 《Biochemical and biophysical research communications》2009,390(4):1235-4182
Ndc80 has been shown to play an important role in stable microtubule-kinetochore attachment, chromosome alignment, and spindle checkpoint activation in mitosis. It is composed of two heterodimers, CDCA1-KNTC2 and SPC24-SPC25. Overexpression of CDCA1 and KNTC2 is reported to be associated with poor prognosis in non-small cell lung cancers (NSCLC), and siRNA-mediated knockdown against CDCA1 or KNTC2 has been found to inhibit cell proliferation and induction of apoptosis in NSCLC, ovarian cancer, cervical cancer and glioma. Therefore, CDCA1 and KNTC2 can be considered good candidates for molecular target therapy as well as diagnosis in some cancers. However, the role of the Ndc80 complex in colorectal and gastric cancers (CRC and GC) still remains unclear. In the present study, we used qRT-PCR to evaluate the expression levels of CDCA1, KNTC2, SPC24 and SPC25 in CRC and GC and employed siRNA-mediated knockdown to examine cell proliferation and apoptosis. mRNA overexpression of these four genes was observed in CRCs and GCs when compared with the corresponding normal mucosae. Additionally, the expression levels of tumor/normal ratios of CDCA1, KNTC2, SPC24 and SPC25 correlated with each other in CRCs. MTT assays revealed that cell growths after the siRNA-mediated knockdown of either CDCA1 or KNTC2 were significantly suppressed, and flow cytometry analyses revealed significant increases of the subG1 fractions after knockdown against both genes. Our present results suggest that expressional control of component molecules of Ndc80 can be utilized for molecular target therapy of patients with CRC and GC. 相似文献
7.
Makoto Daimon Toshihide Oizumi Shigeru Karasawa Kiriko Wada Shinji Susa Isao Kubota Takeo Kato 《Biochemical and biophysical research communications》2009,386(1):26-29
The association of the Ser326Cys polymorphism of the 8-oxoguanine glycosylase 1 (OGG1) gene with type 2 diabetes was examined using a Japanese population (n (M/W): 4585 (2085/2500); age: 62.6 ± 10.9 years). HbA1c levels and frequency of diabetic subjects were significantly higher in subjects with genotypes with Cys allele than in those without (p = 0.032 and 0.037, respectively). Multiple logistic regression analysis showed that genotypes with Cys allele were significantly associated with diabetes (OR: 1.32, p = 0.0289). In subjects whose glucose tolerance was classified by FPG and 2-h PG (n = 1.634), the association was more substantial (genotypes with Cys allele vs. without, OR: 1.70, p = 0.0059; genotypes Cys/Cys vs. Ser/Ser, OR: 2.19, p = 0.0008). In subjects with genotype Ser/Ser, the insulin secretion index, HOMA-β, increased in the subjects with glucose intolerance and decreased in the subjects with diabetes, while, in subjects with genotypes Ser/Cys + Cys/Cys, HOMA-β decreased as the glucose tolerance progressed (p for trend = 0.010). 相似文献
8.
We examined the effects of the presence of bird's nest ferns on the species diversity of oribatid mites in the whole forest
in terms of the three categories of species diversity (α-, β-, and γ-diversity) in a subtropical forest in south-western Japan.
The species diversity (1 − D) of oribatid communities in the ferns was significantly lower than those in bark of trees and the forest-floor litter and
soil, and was similar to that in the branches. The oribatid faunas in the litter in and the roots of the fern were more similar
to those in both the forest-floor litter and soil than to the faunas in the other arboreal habitats. However, the ferns can
be colonized by endemic oribatid species specialized to such environments. The number of oribatid species estimated for a
hypothetical stand with no ferns was about 180 species from 80 samples; this value did not differ significantly from that
in another hypothetical stand with ferns (ca. 190 species). Thus, the species richness of oribatid communities estimated for
the whole forest (the γ-diversity) was not affected by the presence or absence of bird's nest ferns. The α- and β-diversities
of oribatid communities on bird's nest ferns were lower than those in other habitats, and they might not dramatically raise
the overall γ-diversity of invertebrate communities in the whole forest. The bird's nest ferns, however, can generate a unique
habitat for specialized species, and this would help to maintain species diversities of invertebrates at the whole-forest
scale in subtropical forests. 相似文献
9.
Shigeru Kitayama Takashi Karasawa Akira Matsuyama 《Bioscience, biotechnology, and biochemistry》2013,77(4):628-630
The conversion of prochaetoglobosins as plausible precursors into mycotoxin chaetoglobosin A (1) in a cell-free system of Chaetomium subaffine was unsuccessful. However, reductase activity of the 20-keto-analogues (1), and prochaetoglobosins II (5) and III (6) were found in a microsomal fraction of this fungi. Two new metabolites of chaetoglobosins, named chaetoglobosin Fex (2) and 20-dihydro-chaetoglobosin A (3), were also isolated from the same micro-organisms. Their structures were elucidated by spectroscopic data and chemical transformation. 相似文献