Circulatory support 1991. The Second International Conference on Circulatory Support Devices for Severe Cardiac Failure. Long-term biventricular assist.
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Biomedical subjects
Publications and source records attributed to C J Hahn.
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Previous studies have demonstrated that one of the most salient features of tumor necrosis factor (TNF) is its ability to induce tumor necrosis in vivo, and the specificity of its cytotoxic/cytostatic activity for tumor cells has been demonstrated in in vitro studies in which this lymphokine has been shown to kill cultured cells of malignant lines and to have no effect on cells of normal diploid lines. Studies described herein defined the effect of highly purified human recombinant TNF on cells of 34 different human and murine hematopoietic cell lines, particularly human leukemic T and B cells of long-term lymphoblastoid cultures. Results of these studies demonstrated that TNF at concentrations of 3,600 U/ml had no significant effect on the growth of these cells as defined by cytotoxicity, measured with the use of the trypan blue dye-exclusion assay and as defined by cytostasis, assayed by the enumeration of cells and the uptake of [3H]-thymidine and -uridine. In contrast, positive control cultures of TNF-sensitive cells from a murine tumor (L-M/clone L-929, connective tissue) displayed at 50% (LD50) reduction in growth by TNF at approximately 5 U/ml. Likewise, human tumors (MCF-7, breast, and HT-29, colon) were also highly sensitive (LD50 less than 100 U/ml). These studies demonstrate that T and B cells of lymphoblastoid lines as well as cells of other hematopoietic lines display little or no sensitivity to TNF.
The effects of zinc deficiency on the whole-body absorption and intestinal content of Zn, Cd, Cu, Co, Fe, Mn, and Cr were determined in the rat 1 h after oral administration of the isotopes. Both the absorption and intestinal content of Zn and Cr were increased in zinc-deficient rats, and the intestinal content of Feand Co was also increased in the zinc-deficient animals. Zinc administered orally with Cr decreased both absorption and intestinal content of the isotope in zinc-deficient rats. Chromium administered orally with Zn decreased intestinal content and absorption of Zn in zinc-deficient rats. Fractionation of mucosal supernatants by gel filtration showed that both zinc and chromium eluted in the same low molecular weight fraction. The elution patterns of zinc and cadmium from that of zinc-supplemented animals. These experiments provide some insight into the specificity of the zinc absorption pathway and present some explanations for the interaction or lack of interaction among trace elements.
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