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Biomedical subjects

Z Song

Publications and source records attributed to Z Song.

155 records · Page 9Linked to original sources

Proviral detection and serology in bovine leukemia virus-exposed normal cattle and cattle with lymphoma.

Twenty-seven cattle with lymphoma and 46 cows from a known bovine leukemia virus (BLV)-infected herd were tested for anti-BLV antibody by the agar gel immunodiffusion (AGID) test and an enzyme-linked immunosorbent assay (ELISA). The polymerase chain reaction (PCR) and Southern hybridization were used to detect BLV provirus in the tumor DNA of the 27 cattle with lymphoma. The PCR was used to detect BLV provirus in the peripheral blood mononuclear cell DNA of the 46 normal known-exposed cattle. Two presumed false negative AGID test results compared to ELISA were found. Of ten cattle three years of age or less with "sporadic" forms of lymphoma, four had BLV provirus in tumor DNA, detectable by PCR. In two of these four, BLV provirus was clonally integrated based on digestion of tumor DNA with restriction enzymes followed by Southern hybridization. The BLV provirus was not detected by PCR in 5 of 17 cattle with "enzootic" lymphoma and two of these five were seronegative. Among normal BLV-exposed cows, 6.5% (3 of 46) were serologically positive and PCR negative; serologically negative and PCR positive cows occurred with the same frequency. Serological and PCR test results, when considered in all cattle (n = 73), had a concordance rate of 83.6%. Discordant test results occurred with approximately equal frequency between serologically positive and PCR negative (7 of 73, 9.6%) and serologically negative and PCR positive (5 of 73, 6.8%) groups. These data suggest that the role of BLV in some "sporadic" bovine lymphomas, previously unassociated with BLV, should be reexamined. The BLV provirus was not demonstrable in the tumor DNA from five adult cattle with lymphoma, suggesting that BLV may not be the etiological agent in all adult bovine lymphomas. The findings of persistently seronegative PCR positive and seropositive PCR negative cattle indicate that further work is needed to more fully understand the host-virus interaction. Present serological screening methods may not have sufficient sensitivity for determining BLV status in some circumstances.

Animals↗

[Report of 4 cases of Chlamydia infection in the urogenital tract].

Four cases of Chlamydia infection of the urogenital tract were received-recently in our out-patient clinic for foreign patients. The 4 patients were two couples. Both male patients had histories of coitus with other partners: among these two, one had suffered gonorrhea and the other was suspected of having had gonorrhea. Urogenital tract symptoms or sustained abnormal urine analysis results are characteristic of this disease, but in females often no obvious symptoms present. Measurements with fluorescence-labeled Chlamydia trachomatis monoclonal antibody provided a simple and accurate method and was used in the diagnosis of this disease. All the 4 cases were cured by tetracycline. Finally, current epidemics, infectious features, diagnosis and treatment for this disease are discussed.

Adult↗

Bone marrow adherent cell hemopoietic growth factor production.

These data suggest that two types of radioresistant adherent stromal cells are adequate for maintenance of long term hemopoiesis in the Dexter culture system. One cell type appears to be a typical adherent macrophage while the other is an alkaline phosphatase positive epitheloid cell possibly representative of the adventitial reticular cell of the bone marrow. These two cell types seem to be clearly defined by the in-vivo irradiation studies and less clearly defined in the in-vitro irradiation experiments. These data do not exclude other cell types as playing important roles in modulating hemopoiesis but do suggest that these major types are probably playing important roles in maintaining stem cells in long term liquid cultures. In addition, data suggests that the epitheloid cell directly nurtures hemopoietic cells on its surface while the macrophages may serve a separate function. A number of growth factors are produced by these two cell types which appear to include CSF-1, a granulocyte CSA separate from CSF-1 and a megakaryocyte CSA separate from both the GM-CSA and CSF-1 (Table 5). Thus the present data suggest that there are at least three (formula; see text) separate hemopoietic growth factors produced. The FDC-P1 activity produced by irradiated stroma would appear most likely to be GM-CSA-II. The fact that lectins enhanced production of these activities is intriguing but the cell type on which the lectins are acting has not as yet been defined. It appears that lithium also acts upon adherent marrow stromal cells to induce production of myeloid regulatory growth factors. Lithium appears to stimulate both normal and irradiated stroma to produce hemopoietic maintenance and growth factors and the present data suggests that factors active on pre IL-3 cells, HPP-CFC, CFU-D, CFU-meg, and CFU-S are all induced from these stromal cells by lithium. Whether the lithium induced factors and the factors derived from irradiated stroma represent a number of different growth factors or one or two critical regulatory molecules is at present unclear. The synergistic activity derived from the TC-1 cell line is of particular interest in this regard. This CSF-1 dependent activity is capable of acting on a very primitive stem cell to induce impressive proliferation and differentiation. In addition an activity in TC-1 conditioned media which may be synergistic activity appears capable of inducing adherent marrow cell lines which then can subsequently produce more of the same factor, a classic autocrine system.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Lithium stimulation of murine hematopoiesis in liquid culture: an effect mediated by marrow stromal cells.

Lithium has previously been observed to stimulate in vitro Dexter culture hemopoiesis with increases in granulocytes, megakaryocytes, and pluripotent stem cells (CFU-S). In the present study, a two-phase murine Dexter culture system was established to study the mechanism of lithium-mediated stem cell stimulation. Different lots of horse sera or fetal calf sera were found to have markedly different effects on Dexter culture growth; given the appropriate sera supplementation, supernatant cells from Dexter cultures established from C57BL/6J mice 3 wk previously were free of stromal-forming capacity, but had stem cells and could grow on 900-950 R irradiated stroma. Conversely, in vitro irradiation (900-950 R) of 3-wk cultures resulted in a stem-cell-free adherent monolayer that could support growth for up to 9 wk in culture. The stroma from Dexter cultures preexposed to lithium chloride (1.0 mmole/liter) for 3 wk, irradiated (900 R), and then refed with 3-wk Dexter supernatant cells has an enhanced capacity to support cell production, CFU-S, and probably granulocyte-macrophage colony-forming cell (GM-CFU-C) production, as compared to stroma not preexposed to lithium. Lithium carryover was ruled out in these experiments. These data indicate that lithium stimulates CFU-S and in vitro granulopoiesis by an indirect effect on a radioresistant adherent stromal cell.

Animals↗