[Immunological pathogenesis of pulmonary sarcoidosis].
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Biomedical subjects
Publications and source records attributed to J Hou.
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A non-isotope method, hemoglobin-enzyme release assay (Hb-ERA), for measuring antibody-dependent cell-mediated cytotoxicity (ADCC) has been successfully developed. The assay is based on the fact that hemoglobin has peroxidase activity capable of catalyzing the oxidation of o-phenylenediamine to give coloration which can be measured by spectrophotometer. In comparison to the conventional 51Cr release assay, Hb-ERA is economic, sensitive, reproducible and does not have the shortcomings associated with manipulation of radioactive substances. It is applicable in clinical and research laboratories of any scale. The optimum conditions for the assay are as follows: an effector cell: target cell ratio of 10:1 and an incubation period of 14-16 h at 37 degrees C in 5% CO2. The splenic ADCC activity of mice was measured. The cytotoxic index of mice aged 10-14 weeks (39.71 +/- 11.19) was significantly higher than that of 20-24 week-old mice (18.42 +/- 10.31) (P less than 0.001). The ADCC activity is not influenced by sex. The merits and drawbacks of Hb-ERA are objectively evaluated.
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Heparin-binding fibroblast growth factors (HBGF) have been implicated in the regeneration of both parenchymal and nonparenchymal cells of the liver. The response to and phenotype of hepatocyte receptors for HBGF-1 (acidic fibroblast growth factor) and HBGF-2 (basic fibroblast growth factor) were compared to keratinocytes, fibroblasts, and endothelial cells. HBGF-1 stimulated DNA synthesis in hepatocytes, keratinocytes, fibroblasts, and endothelial cells whereas activity of HBGF-2 was limited to fibroblasts and endothelial cells. HBGF-2 antagonized the mitogenic activity of HBGF-1 for hepatocytes and keratinocytes. Hepatocytes and keratinocytes exhibited both high- and low-affinity, nonmatrix receptor sites for HBGF-1, but only low-affinity sites for HBGF-2. The mesenchymal cells displayed only high-affinity sites for both HBGF-1 and HBGF-2. Northern blot and immunochemical analysis revealed that the expression of HBGF receptor genes bek and flg are partitioned between normal hepatocytes and nonparenchymal cells, respectively. Expression of epithelial cell-specific, mesenchymal cell-derived HBGF-7 (keratinocyte growth factor) mRNA in regenerating liver tissue was undetectable relative to HBGF-1. The results support a multifunctional role of HBGF-1 acting through different receptor phenotypes in hepatocyte and nonparenchymal cells during liver regeneration.