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Growth and cell proliferation kinetics of hepatoma H-4-II-E and its tissue culture derivative have been studied to establish the characteristics of an in vivo--in vitro solid tumor model. The H-4-II-E line, originating from the Reuber H-35 hepatoma, can be maintained and studied either in cell culture or as a transplantable solid tumor in ACI male rats. In addition it allows for the in vitro assay of cell survival following treatment of animal tumors in situ. In vivo, hepatoma H-4-II-E is rapidly growing tumor with a mean doubling time of 49-2 hr. The cell cyle time is 39-1 hr with a cell loss factor of 0-32. Retrospective examination of tumor specimens obtained during the establishment of the H-4-II-E tumor system demonstrates that both structural as well as cell population changes have occurred. The biological characteristics of the primary tumor (H-35) and an early intermediate stage (H-35tc2) are compared with H-4-II-E and the histopathological, growth and cell kinetic changes are discussed.  相似文献   
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Cultures of lapine articular chondrocytes were exposed to purified, human, recombinant interleukin-1 alpha or partially purified preparations of lapine, synovial, cytokines in the presence of [32P]orthophosphate. After 30 min incubation, phosphoproteins were extracted from the cells, separated by two-dimensional gel electrophoresis and visualized autoradiographically. Analysis of the autoradiograms revealed that interleukin-1 and the synovial factors produced marked changes in the pattern of protein phosphorylation. The synovial cytokines induced many of the same changes as interleukin-1, as well as a number of unique changes. This finding is consistent with the notion that, in addition to interleukin-1, synoviocytes secrete other cytokines which modulate the metabolism of chondrocytes. These data support the idea that signal transduction in chondrocytes responding to interleukin-1 involves the activation of one or more protein kinases.  相似文献   
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Plasma creatinine concentrations were determined in mice, rats, dogs and humans using a kinetic alkaline picrate method and an enzymatic method with a centrifugal analyser. Lower creatinine values were obtained for all four species using the enzymatic method, but the differences between methods were greater for mice and rats. Removal of creatininase from the enzymatic method reagents gave proportionally higher values for non-creatinine chromogens in mice and rats. A single enzymatic method was not specific for creatinine when used for these species.  相似文献   
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Parasitic nematodes cause a massive worldwide burden on human health along with a loss of livestock and agriculture productivity. Anthelmintics have been widely successful in treating parasitic nematodes. However, resistance is increasing, and little is known about the molecular and genetic causes of resistance for most of these drugs. The free-living roundworm Caenorhabditis elegans provides a tractable model to identify genes that underlie resistance. Unlike parasitic nematodes, C. elegans is easy to maintain in the laboratory, has a complete and well annotated genome, and has many genetic tools. Using a combination of wild isolates and a panel of recombinant inbred lines constructed from crosses of two genetically and phenotypically divergent strains, we identified three genomic regions on chromosome V that underlie natural differences in response to the macrocyclic lactone (ML) abamectin. One locus was identified previously and encodes an alpha subunit of a glutamate-gated chloride channel (glc-1). Here, we validate and narrow two novel loci using near-isogenic lines. Additionally, we generate a list of prioritized candidate genes identified in C. elegans and in the parasite Haemonchus contortus by comparison of ML resistance loci. These genes could represent previously unidentified resistance genes shared across nematode species and should be evaluated in the future. Our work highlights the advantages of using C. elegans as a model to better understand ML resistance in parasitic nematodes.  相似文献   
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