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J G Sharp

Publications and source records attributed to J G Sharp.

At least 145 records · Page 8Linked to original sources

Blood volume determination in the mouse.

1. The blood volume of the mouse has been measured using (59)Fe-labelled red cells to determine the red cell volume and (131)I-labelled human serum albumin to determine the plasma volume.2. Values for the blood volume of 95.0 +/- 1.5, 96.3 +/- 2.7 and 84.7 +/- 1.2 ml./kg body wt. were found for CSI female, CBA female and CBA male mice respectively.3. A marked discrepancy was observed between the venous (cardiac) haematocrit and the whole body haematocrit.4. The blood volume of the mouse must be determined from the red cell volume and the plasma volume, measured using appropriate labels, and not from the red cell volume or the plasma volume using the venous haematocrit.

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Characterization of metastasis-associated antigens on RAW117 lymphosarcoma cell lines.

A syngeneic murine model system was used to study the immunobiology of metastasis. The highly malignant RAW117-H10 cell line was compared to the less malignant parental RAW117-P cell line from which it was derived, for expression of cell surface antigens. Using rabbit antisera, two major glycoprotein antigens were detected on the tumor cell surfaces. Antigen-I was uniformly distributed over the surface of these cells whereas antigen-II had a patchy, punctate distribution. Antigen-I was displayed less on RAW117-H10 cells than on RAW117-P cells, while the expression of the other serologically distinct antigen (antigen-II) was increased on RAW117-H10 cells compared to the less malignant parental (RAW117-P) cells. This differential antigen expression was assessed by immunodiffusion, a 125I-labeled protein-A binding assay, flow cytometry and rocket immunoelectrophoresis. Both these antigens had a molecular weight of 70,000 daltons. Antigen-I bound the lectin concanavalin-A whereas antigen-II did not, suggesting that antigen-I might be the viral envelope glycoprotein gp70. The identity of antigen-II is presently unknown. Syngeneic Balb/c mice injected with highly malignant and metastatic RAW117-H10 cells coated with antiserum to antigen-I were protected from early death; this effect was not seen with RAW117-H10 cells coated with antiserum to antigen-II. The opsonizing qualities of these antisera may be different due to antibody to antigen-II being shed more rapidly than antibody to antigen-I.

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Enhanced antiproliferative activity by metastatic RAW117 lymphoma cells.

The highly malignant/metastatic murine large cell lymphoma cell line RAW117-H10 forms 100-200 times more liver metastatic tumors than its parental counterpart cell line RAW117-P. RAW117-H10 cells, but not the less malignant/metastatic parental cells, significantly inhibited the mitogen-induced proliferation of normal syngeneic Balb/c and allogeneic ICRC mouse spleen cells. Such an inhibition also occurred when mitomycin-C treated metastatic lymphoma cells were added 24 h after initiation of culture, indicating that no competition with mitogen binding sites on the lymphocytes was necessary for inhibition of proliferation. 'Antiproliferative' cell surface molecules were extracted non-cytolytically from the RAW117-H10 cells using butanol. The butanol extracts from the metastatic RAW117-H10 cells also inhibited the mitogen-induced proliferation and natural killer (NK) cell-mediated cytotoxicity of normal spleen cells. Our results indicate that these 'antiproliferative' cell surface molecules of metastatic murine RAW117-H10 lymphoma cells may have important role(s) in tumor-mediated host immunosuppression.

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Difluoromethylornithine inhibits crypt fission.

Crypt fission is a physiologic mechanism of crypt reproduction. It increases in pathophysiologic situations where intestinal regeneration is required (e.g., radiation injury). Polyamine metabolism is important in the regulation of intestinal growth and recovery from injury in response to a variety of stimuli. Our aim was to determine whether inhibition of polyamine synthesis by difluoromethylornithine (DFMO) influenced crypt fission. Forty-eight rabbits underwent patch enteroplasty in the terminal ileum. One group served as a control group and the other took 2% DFMO orally. Animals (n = 6) from each group were killed at 7, 14, 21, and 28 days. Normal ileum adjacent to the enteroplasty was studied. Crypt dissection was performed 2 hours after vincristine was administered intravenously to determine crypt cell production rate, crypt depth, and proportion of bifurcating crypts (fission). DFMO administration decreased crypt fission (4 +/- 2% vs. 11 +/- 2% and 13 +/- 1% vs. 34 +/- 4% at 7 and 14 days) compared to control animals. There was a corresponding increase in crypt depth at 14 and 21 days. Crypt cell production rate was similar in both groups and did not change with time. Mucosal ornithine decarboxylase activity (11.9 +/- 2.2 vs. 1.2 +/- 0.3 specific activity at 21 days; P <0.05) and polyamine content (323 +/- 32 vs. 17 +/- 8 and 382 +/- 89 vs. 160 +/- 47 pmol/mg at 14 and 21 days, control vs. DFMO; P <0.05) were significantly lower in the DFMO group. The following conclusions were drawn: (1) DFMO administration inhibits crypt fission in stimulated intestinal epithelium; (2) this effect correlates temporally with reduced polyamine production; and (3) reduced crypt fission is another potential mechanism of inhibition of intestinal growth by altered polyamine metabolism.

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Purification of monoclonal antibodies using high performance liquid chromatography (HPLC).

Recent increases in the ability to detect low levels of immunofluorescence have shown the need for highly purified primary immunoreagents. There are now reports of purification of monoclonal antibodies using HPLC with reverse phase columns. In this study we have utilized standard size exclusion HPLC to purify both biotinylated and non-biotinylated monoclonal antibodies from hybridoma culture supernatants. Results indicated that both biotinylated and non-biotinylated monoclonal antibodies retained their antigen binding capacity after purification, and were not different in this capacity from commercially available, affinity purified reagents. These findings indicate that size exclusion HPLC may be used in the purification of biologically active monoclonal antibodies, and suggest that this technique may be used in the large scale production of antibodies and their fragments, in antibody purification from ascites fluid, and in antisera quality control.

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