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Biomedical subjects

S L Tang

Publications and source records attributed to S L Tang.

5 recordsLinked to original sources

Selective killing of tumor cells in vitro by an immunotoxin composed of ricin and monoclonal antibody against Ia antigen.

A monoclonal antibody (MAb-HB55) directed against a HLA class II antigen (Ia), was purified by DE-52 chromatography. The purified MAb contained less than 5% impure protein detected by SDS-PAGE. Ricin was conjugated with the MAb via a disulfide bond to construct an immunotoxin (ricin-HB55). The concentration causing fifty percent growth inhibition (IC50) was 2 x 10(-11)M for the Raji cells. In contrast, the IC50 for Molt-4 and K562 cells was 100 times higher than that for the Raji cells. B lymphocytes separated from peripheral blood lymphocytes by nylon wool were selectively killed by the conjugate, but T lymphocytes were not apparently affected. Our results demonstrate that the immunotoxin is selectively cytotoxic to Raji cells and B-cells, and may have potential for purging malignant cells from bone marrow of patients with B-cell leukemia and lymphoma.

Ammonium Chloride

Uptake of metabolites by germinating blastospores of Histoplasma capsulatum.

The uptake of radioactive L-leucine, L-glutamic acid, and guanine was monitored during blastospore germination of Histoplasma capsulatum. Blastospores of H. capsulatum, grown in Salvin's medium at 37 degrees C for 48 h and shifted to 23 degrees C, germinated within 24 h. Metabolite uptake was faster in mycelial cells at 23 degrees C than it was in yeast cells at 37 degrees C. During the yeast to mold transition, the initial rate of uptake was first markedly depressed and then increased and achieved a level characteristic of the mycelial phase of growth. Estimates of macromolecular synthesis occurring during transitional morphological events might be influenced by these differences in the rate of uptake.

Culture Media

Uptake and utilization of glutamic acid by Cryptococcus albidus.

Cryptococcus albidus utilizes glutamate as a sole carbon source. The kinetics of uptake of this amino acid were studied. l-Glutamic acid was taken up by two saturable systems: a high affinity system with a Michaelis constant (K(m)) of 1.15 x 10(-5) M and a V(max) of 0.049 mumol per mg per h and a low affinity system with a K(m) of 2.5 x 10(-3) M and a V(max) of 3.61 mumol per mg per h. Both systems possessed characteristics of active transport which were dependent on temperature and pH and which required metabolic energy. Uptake was inhibited at 37 C but the temperature-sensitive step was reversible. Chemical fractionation of cells with 5% trichloroacetic acid showed that glutamic acid initially entered a soluble pool which decreased after 1 h as the amino acid was incorporated into the protein and nucleic acid fractions of the yeast. Some of the glutamate was completely oxidized and could be recovered as (14)CO(2). Therefore, the amino acid was also used as an energy source.

Amino Acids

Metabolism, macromolecular synthesis, and nuclear behavior of Cryptococcus albidus at 37 C.

The temperature-sensitive events which prevent Cryptococcus albidus from growing at 37 C were investigated. Cultures incubated at 37 C immediately after inoculation did not increase in optical density nor in cell numbers, and by 24 h 90% of cells in such cultures were deformed and dead. When cultures in log phase were shifted from 23 to 37 C the optical density increased but the cell numbers did not. Morphological observations revealed that the increase in turbidity at 37 C represented enlargement and distortion of cells without appreciable replication. Uptake and incorporation of (14)C-leucine were similar at 23 and 37 C. There was no difference in (14)CO(2) evolution from cells at either temperature. Uptake and incorporation of adenine-8-(14)C into RNA was slightly lower in cells incubated at 37 C. There was, however, a 60% reduction in incorporation of adenine-8-(14)C into DNA after 3 hr at 37 C. Nuclear staining revealed that nuclear migration did not occur in cells incubated at 37 C. Thus the data indicate that both adenine incorporation into DNA and nuclear migration prior to nuclear division by C. albidus are temperature sensitive.

Adenine