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ID 30369
JaLCDOI
フルテキストURL
fulltext.pdf 1.34 MB
著者
Ito, Toshio Okayma University
Itoshima, Tatsuya Okayama University
Ukida, Minoru Okayama University
Tobe, Kazuo Okayama University
Kiyotoshi, Shozo Okayama University
Kawaguchi, Keiji Okayama University
Ogawa, Hiromichi Okayama University
Yamamoto, Harumi Okayama University
Hattori, Shuzo Okayama University
Kitadai, Masahiro Okayama University
Mizutani, Shigeki Okayama University
Tsuchiya, Takahiro Okayama University
Kita, Keiji Okayama University
Tanaka, Ryoji Okayama University
Nagasima, Hideo Okayama University
抄録

The whole body including extended processes of Ito's fat-storing cells was observed by scanning electron microscopy in rat liver injured with lithocholic acid (LCA). Necrotic foci developed in the midlobular zone 48 h after LCA administration. Demonstration of Ito cell bodies around the foci was probably facilitated by easy detachment of hepatocytes from Ito cells. The body and the processes were located mainly between the sinusoidal endothelium and hepatocytes; sometimes they were between hepatocytes. Ito cells often were proximate to collagen fiber bundles and sometimes were attached to them. The cell body was flatly round or elliptic, 7 to 12 micron in diameter. Its surface was finely undulated with microvillous projections about 0.1 micron in length. Branching patterns of the processes resembled a fern-leaf mantling the sinusoidal endothelium. The trunks of the processes were about 2 micron in diameter and 20-30 micron in length. These processes tapered, branching into thinner processes, with the most peripheral being 0.1 micron in diameter. Ito cells and their branching processes likely strengthen sinusoidal walls and control blood flow in the sinusoids.

キーワード
ito cell
fat-storing cell
lithocholic acied
liver cell necrosis
scanning electron microscopy
Amo Type
Article
出版物タイトル
Acta Medica Okayama
発行日
1984-02
38巻
1号
出版者
Okayama University Medical School
開始ページ
1
終了ページ
9
ISSN
0386-300X
NCID
AA00508441
資料タイプ
学術雑誌論文
言語
英語
論文のバージョン
publisher
査読
有り
PubMed ID
Web of Science KeyUT