Naoto Nakanishi
National Agriculture and Food Research Organization
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Publication
Featured researches published by Naoto Nakanishi.
Bioscience, Biotechnology, and Biochemistry | 2012
Keisuke Sasaki; Masayuki Hayashi; Takumi Narita; Michiyo Motoyama; Mika Oe; Koichi Ojima; Ikuyo Nakajima; Susumu Muroya; Koichi Chikuni; Katsuhiro Aikawa; Yasuyuki Ide; Naoto Nakanishi; Nobuaki Suzuki; Shigeru Shioya; Akio Takenaka
This study examined the accumulation and tissue distribution of radioactive cesium nuclides in Japanese Black beef heifers raised on roughage contaminated with radioactive fallout due to the accident at the Fukushima Daiichi Nuclear Power Station on March 2011. Radiocesium feeding increased both (134)Cs and (137)Cs levels in all tissues tested. The kidney had the highest level and subcutaneous adipose had the lowest of radioactive cesium in the tissues. Different radioactive cesium levels were not found among parts of the muscles. These results indicate that radiocesium accumulated highly in the kidney and homogenously in the skeletal muscles in the heifers.
Biochemical and Biophysical Research Communications | 2014
Tomoya Yamada; Mikito Higuchi; Naoto Nakanishi
Preadipocyte factor-1 (pref-1) is specifically expressed in preadipocytes and acts as a gatekeeper of adipogenesis by maintaining the preadipocyte state and preventing adipocyte differentiation. We hypothesized that the breed differences of adipogenic capacity in cattle could be explained by the expression level of pref-1. In this experiment, we studied the expression level of the pref-1 gene and adipocyte cellularity in subcutaneous and mesenteric adipose tissues of Japanese Black (Wagyu) and Holstein fattening cattle. In subcutaneous adipose tissue, there were no significant differences in the pref-1 gene expression levels and adipocyte sizes between the breeds. In contrast, the expression level of the pref-1 gene in mesenteric adipose tissue of Holsteins was significantly higher than that of Wagyu. In addition, the size of mesenteric adipocytes in Holsteins was significantly smaller than that of Wagyu. These results indicate that the breed differences of fattening cattle affect the expression pattern of the pref-1 gene and adipocyte cellularity in a fat depot-specific manner.
Biochemical and Biophysical Research Communications | 2015
Tomoya Yamada; Mikito Higuchi; Naoto Nakanishi
Adipose tissue growth is associated with preadipocyte proliferation and differentiation. Telomere length is a biological marker for cell proliferation. Preadipocyte factor-1 (pref-1) is specifically expressed in preadipocytes and acts as a molecular gatekeeper of adipogenesis. In the present study, we investigated the fat depot-specific differences in telomere length and pref-1 gene expression in various anatomical sites (subcutaneous, intramuscular and visceral) of fattening Wagyu cattle. Visceral adipose tissue expressed higher pref-1 mRNA than did subcutaneous and intramuscular adipose tissues. The telomere length in visceral adipose tissue tended to be longer than that of subcutaneous and intramuscular adipose tissues. The telomere length of adipose tissue was not associated with adipocyte size from three anatomical sites. No significant correlation was found between the pref-1 mRNA level and the subcutaneous adipocyte size. In contrast, the pref-1 mRNA level was negatively correlated with the intramuscular and visceral adipocyte size. These results suggest that anatomical sites of adipose tissue affect the telomere length and expression pattern of the pref-1 gene in a fat depot-specific manner.
Journal of Veterinary Medical Science | 2018
Tomoya Yamada; Mituru Kamiya; Mikito Higuchi; Naoto Nakanishi
Obesity is associated with the chronic inflammation and senescence of adipose tissues. Macrophage is a key mediator of chronic inflammation that infiltrates obese adipose tissue and stimulates metabolic disorders. However, the fat depot-specific differences of macrophage infiltration and senescence, especially the influence on intramuscular adipose tissue, have remained unclear. We investigated the fat depot-specific differences of macrophage infiltration and senescence in obese bovine adipose tissue from three different anatomical sites (subcutaneous, intramuscular and visceral). Macrophage infiltrations and crown-like structures were observed in visceral adipose tissue, although there were few macrophages in subcutaneous and intramuscular adipose tissues. The positive reaction of senescence marker SA-βgal activity was observed in visceral adipose tissue. In contrast, the activity of SA-βgal in subcutaneous and intramuscular adipose tissues were low. The expression of p53 gene, the master regulator of cellular senescence, in visceral adipose tissue was higher than that of subcutaneous and intramuscular adipose tissue. At the cellular level, p53 gene expression was negatively correlated with the size of subcutaneous adipocytes. In contrast, p53 gene expressions were positively correlated with the size of intramuscular and visceral adipocytes. These results indicate that anatomical sites of obese adipose tissue affect macrophage infiltration and the senescent state in a fat depot-specific manner.
Animal Science Journal | 2003
Seung Hak Yang; Tohru Matsui; Hiroyuki Kawachi; Tomoya Yamada; Naoto Nakanishi; Hideo Yano
Journal of Veterinary Medical Science | 1996
Kota Sato; Naoto Nakanishi; Mitsuru Mitsumoto
Journal of Veterinary Medical Science | 2010
Tomoya Yamada; Shinichi Kawakami; Naoto Nakanishi
Animal Science Journal | 2003
Tomoya Yamada; Shinichi Kawakami; Naoto Nakanishi
Journal of Veterinary Medical Science | 2013
Tomoya Yamada; Mikito Higuchi; Naoto Nakanishi
Nihon Chikusan Gakkaiho | 2002
Takayuki Muramoto; Katsuhiro Aikawa; Masahiro Shibata; Naoto Nakanishi
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Obihiro University of Agriculture and Veterinary Medicine
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