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Pericanalicular location of hepatocyte lysosomes and effects of fasting: A morphometric analysis
Author(s) -
Sewell Richard B.,
Dillon Catherine,
Grinpukel Susan,
Yeomans Neville D.,
Smallwood Richard A.
Publication year - 1986
Publication title -
hepatology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.488
H-Index - 361
eISSN - 1527-3350
pISSN - 0270-9139
DOI - 10.1002/hep.1840060225
Subject(s) - hepatocyte , vacuole , cytoplasm , bone canaliculus , catabolism , biology , lysosome , steatosis , medicine , microbiology and biotechnology , endocrinology , chemistry , biochemistry , anatomy , metabolism , enzyme , in vitro
Lysosomes constitute a small proportion of hepatocyte volume, but they play a key degradative role, particularly during catabolic states such as nutritional deprivation. Our preliminary observations in hepatocytes suggested that fasting may alter the distribution of lysosomes, which are thought to congregate about the biliary canaliculus. Thecurrent study aimed to provide, in both fed and fasted rats, a quantitative morphometric analysis of lysosomes in the immediate pericanalicular and successively more distant regions. We selected three regions of radius 0 to 2 (region 1), 2 to 4 (region 2) and 4to 6 μm (region 3) about the bile canaliculus and compared lysosomal numerical and volume densities. In fed rats, numerical and volume densities of both primary andsecondary lysosomes were 5 to 10 times greater in region 1 than in region 3. After a 72‐hr fast, this gradient was lost due largely to a reduced number of primary and secondary lysosomes in region 1. Our calculations suggest that during fasting, lysosomes are redistributed away from the bile canaliculus towards the more distant cytoplasm rather than being lost from the cell, for example, into bile. The number of overt macroautophagic vacuoles was not altered by fasting. We estimate that, in fed rats, there areapproximately 270 lysosomes per hepatocyte, and that 43% of lysosomes are contained in the immediate pericanalicular region 1, which comprises only 7 to 8% of the cytoplasmic volume. The reason for this pericanalicular concentration of lysosomes and the mechanism of the redistribution with fasting remain to be determined.

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