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排序方式: 共有618条查询结果,搜索用时 15 毫秒
91.
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Isaac Brito-Morales Jorge García Molinos David S. Schoeman Michael T. Burrows Elvira S. Poloczanska Christopher J. Brown Simon Ferrier Tom D. Harwood Carissa J. Klein Eve McDonald-Madden Pippa J. Moore John M. Pandolfi James E.M. Watson Amelia S. Wenger Anthony J. Richardson 《Trends in ecology & evolution》2018,33(6):441-457
94.
Yumi Kono Suyun Yang Eve A. Roberts 《In vitro cellular & developmental biology. Animal》1997,33(6):467-472
Summary To develop a strategy for extended primary culture of human hepatocytes, we placed human hepatocytes between two layers of
collagen gel, called a “collagen gel sandwich.” Maintenance of hepatocellular functions in this system was compared with that
of identical hepatocyte preparations cultured on dry-collagen coated dishes or co-cultured with rat liver epithelial cells.
Human hepatocytes in a collagen gel sandwich (five separate cultures) survived for more than 4 wk, with the longest period
of culture being 78 d. They maintained polygonal morphology with bile canaliculuslike structures and high levels of albumin
secretion throughout the period of culture. In contrast, hepatocytes on dry-collagen became feature-less, and albumin secretion
could not be detected after 14 d of culture. This loss of albumin secretion was partially recovered by overlaying one layer
of collagen gel. Ethoxyresorufin O-deethylase activity, associated with cytochrome P450 1A2, was detected basally up to 29 d in collagen gel sandwich culture.
These activities were induced four- to eightfold after induction with dibenz(a,h)anthracene. Cocultures also maintained basal activity up to 29 d. However, their inducibility was lower than that of hepatocytes
in collagen gel sandwich. No ethoxyresorufin O-deethylase activity was detected in hepatocytes cultured on dry-collagen at 7 d. Thus, the collagen gel sandwich system preserves
differentiated morphology and functions of human hepatocytes in primary culture for a prolonged period of time. This system
is a promising model for studying human hepatocellular function, including protein synthesis and drug metabolism in vitro. 相似文献
95.
Chan Alvin C. Wagner Michelle Kennedy Chris Chen Eve Lanuville Odette Mezl Vasek A. Tran Khai Choy Patrick C. 《Molecular and cellular biochemistry》1998,185(1-2):153-159
The alteration in calcium transport in the liver nuclei of rats orally administered carbon tetrachloride (CCl4) was investigated. Rats received a single oral administration of CCl4(5, 10, and 25%, 1.0ml/100 g body weight), and 5, 24 and 48 h later the animals were sacrificed. The administration of CCl4 (25%) caused a remarkable elevetion of calcium content in the liver tissues and the nuclei of rats. Liver nuclear Ca2+-ATPase activity was markedly decreased by CCl4 (25%) administration. The presence of dibutyryl cyclic AMP(10-4 and 10-3 M) or inositol 1,4,5-trisphosphate (10-6 and 10-5 M) in the enzyme reaction mixture caused a significant decrease in Ca2+-ATPase activity in the liver nuclei obtained from normal rat, while the enzyme activity was significantly increased by calmodulin (1.0 and 2.0 g/ml). These signaling factor's effects were completely impaired in the liver nuclei obtained from CCl4 (25%)-administered rats. DNA fragmentation in the liver nuclei obtained from CCl4 -administered rats was significantly decreased by the presence of EGTA (2 mM) in the reaction mixture, suggesting that the endogenous calcium activates nuclear DNA fragmentation. The present study demonstrates that calcium transport system in the liver nuclei is impaired by liver injury with CCl4 administration in rats. 相似文献
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Rebecca E. Koch Katherine L. Buchanan Stefania Casagrande Ondi Crino Damian K. Dowling Geoffrey E. Hill Wendy R. Hood Matthew McKenzie Mylene M. Mariette Daniel W.A. Noble Alexandra Pavlova Frank Seebacher Paul Sunnucks Eve Udino Craig R. White Karine Salin Antoine Stier 《Trends in ecology & evolution》2021,36(4):321-332
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Zili Zhai Devon M. Haney Lankun Wu Avery K. Solco Patricia A. Murphy Eve S. Wurtele Marian L. Kohut Joan E. Cunnick 《Phytomedicine》2009,16(6-7):669-678
Healing of open skin wounds begins with an inflammatory response. Restraint stress has been well documented to delay wound closure, partially via glucocorticoid (GC)-mediated immunosuppression of inflammation. Echinacea, a popular herbal immunomodulator, is purported to be beneficial for wound healing. To test the hypothesis, an alcohol extract of E. pallida was administrated orally to mice for 3 days prior to, and 4 days post wounding with a dermal biopsy on the dorsum. Concominantly, mice were exposed to 3 cycles of daily restraint stress prior to, and 4 cycles post wounding. Echinacea accelerated wound closure in the stressed mice, but had no apparent wound healing effect for the non-stressed mice when compared to their respective controls. To test if the positive healing effect is through modulation of GC release, plasma corticosterone concentrations were measured in unwounded mice treated with restraint stress and the herbal extract for 4 days. Plasma GC in restraint stressed mice gavaged with Echinacea was not different from mice treated with restraint only, but was increased compared to the vehicle control. This data suggests that the improved wound healing effect of Echinacea in stressed mice is not mediated through modulation of GC signaling. 相似文献