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Biomedical subjects

T Jung

Publications and source records attributed to T Jung.

At least 127 records · Page 7Linked to original sources

Biological effects of recombinant human tumor necrosis factor and its novel muteins on tumor and normal cell lines.

We investigated optimal conditions for cytotoxicity to tumor cell lines by recombinant human tumor necrosis factor (rhTNF) and the effect of amino-terminal deletions on the bioactivity of the rhTNF molecule. Two of four deletion muteins (-4 and -7) of rhTNF exhibit 2- to 3-fold enhancement of cytotoxicity/cytostasis against a variety of human carcinomas, a fibrosarcoma, and a melanoma cell line with no toxicity on normal fibroblastic and epithelial cultures. Of the two other muteins the -8 displayed equivalent and/or increased cytotoxicity/cytostasis while the -10 was consistently less cytotoxic than the parent on the same cell lines. Continuous exposure to TNF for greater than or equal to 96 h led to maximal cytotoxicity to tumor lines (99.99% with L929 cells) with no evidence of recovery. Pretreatment with actinomycin D (0.003-10 micrograms/ml for 1 h) rendered 82% of rhTNF-resistant cell lines (both tumor and normal) susceptible to its cytotoxic action within 24 h. However, the highest nontoxic concentrations of Actinomycin D necessary for rendering normal cell lines susceptible to TNF action were about 10-3000-fold higher than those necessary for converting resistant tumor cell lines. Similarly, preinfection of L929 cells with vesicular stomatitis virus (multiplicity of infection, 10(-2)-10(-4) for 1 h) rendered the cells 2-10-fold more susceptible to the cytotoxic action of rhTNF in 18 h. Our data suggest that rhTNF and its muteins represent potentially useful anticancer agents; however, adequate dosing and prolonged exposure may be critical in demonstrating cytotoxicity/cytostasis. The data also show that although normal and tumor cell lines became susceptible to cytotoxicity by rhTNF and actinomycin D, combination therapy of the two agents may be possible at defined concentrations.

Amino Acid Sequence↗

Cyclophosphamide-induced alterations in human monocyte functions.

This investigation was designed to study the effects of relatively low doses of cyclophosphamide (CY) on monocyte function in patients with surgically resected melanoma. Monocytes taken from patients 3 days after receiving 300 mg, 150 mg, or 75 mg CY/m2 had decreased interleukin-1 (IL-1) production. Production of tumor necrosis factor (TNF)-like molecules by the same monocytes appeared to be enhanced following 300 mg/m2 CY but not after 150 or 75 mg/m2 CY. In vitro studies of the direct effects of CY metabolites (mafosfamide and 4-hydroperoxycyclophosphamide) on human monocytes showed only concomitant decreases in production of IL-1 and TNF-like molecules. This occurred at concentrations that did not obviously affect viability, although monocyte spreading was inhibited. No evidence was obtained for in vitro enhancement of TNF-production. We conclude that CY can affect monocyte function. In vivo it may have both direct effects leading to decreased TNF and IL-1 production and indirect effects through lymphocytic or haematopoietic systems that activate monocytes to enhanced TNF production. The effects are dose-dependent. These CY-induced changes could be responsible in part for some of the alterations in host immunity and tumor resistance that follows administration of the drug.

Combined Modality Therapy↗

Quantitative aspects of protein synthesis in non-cultured and cultured rabbit blastocysts.

Day 4 rabbit blastocysts were cultured in Ham's F-10 medium supplemented either with homologous serum or uterine flushings. Development was assessed by leucine and methionine incorporation at 24 h and 48 h, respectively, after initiation of culture and compared with day 4 and day 5 non-cultured controls. After 24 h in culture, incorporation data were similar for both media groups. After 48 h, a significantly higher protein synthesis activity was found in blastocysts which had access to uterine secretions in vitro. However, incorporation levels of day 5 controls were not reached. Modes of incorporation of leucine and methionine revealed to be very similar in all experimental groups but ranged on a different level. Leucine was incorporated on a 5.5-fold higher level than methionine. We conclude that (i) supplementation of culture media with uterine secretions is beneficial for blastocyst development, and (ii) further studies should focus on non-serum components within the uterine fluid and their significance for embryonic development.

Animals↗