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Biomedical subjects

E Amtmann

Publications and source records attributed to E Amtmann.

At least 37 records · Page 2Linked to original sources

Tumor prevention by a xanthate compound in experimental mouse-skin tumorigenesis.

The antiviral and antitumoral compound tricyclodecan-9-yl-xanthogenate (D609), which is an inhibitor of protein kinase C activation, has been used for tumor prevention in vivo. When applied chronically together with 12-O-tetradecanoylphorbol-13-acetate (TPA) in the classic initiation-promotion mouse-skin model, D609 prevented tumor induction in a dose-dependent manner. At the concentration that inhibited tumor formation by 97%, no toxic effects were detected and the TPA-induced hyperplasia remained unaffected. As D609 failed to prevent the activity of a chronically applied carcinogen, it is concluded that the observed tumor prevention achieved with D609 is tumor-promotion-specific and is not due to killing of tumor cells.

9,10-Dimethyl-1,2-benzanthracene↗

The extraction of high-molecular-mass DNA from hair shafts.

A simple and efficient method is presented for the extraction of DNA from hair shafts. DNA preparations obtained by this approach can be made amenable to restriction enzyme digestion, thereby allowing further molecular biological analysis.

Centrifugation↗

Interruption of growth signal transduction by an antiviral and antitumoral xanthate compound.

The binding of growth factors to the cellular receptors elicits the phosphorylation of proteins which transmit growth signals to the nucleus [E. Rozengurt (1986) Science 234, 161-166]. Both the tyrosine-specific kinase (growth factor receptor) and the threonine-serine phosphorylating protein kinase C (pkC) become activated upon binding of the epidermal growth factor (EGF) to its receptor. Here we describe the selective inhibition of the pkC activation by tricyclodecane-9-yl-xanthogenate (D609) in the presence of unsuppressed receptor tyrosine autophosphorylation. As a consequence the affinity of EGF to the receptor was not down-regulated and the complex failed to be internalized.

Animals↗

Inhibition of HIV-1 replication by an antiviral xanthate compound in vitro.

The antiviral xanthate compound tricyclodecan-9-yl-xanthogenate (code name D609) is capable of inhibiting DNA and RNA viruses in vitro. It can also inhibit the shedding of infectious HIV into the tissue culture medium from chronically infected lymphoma cells (KE37-III) as shown by infectivity assays and Western blots of the supernatant. HIV-specific proteins, however, were accumulated intracellularly. The initiation of a de novo HIV replication after infection of permissive KE37-1 cells was completely inhibited at concentrations of D609 which still permitted mitotic divisions of the cells. Furthermore, the selective antiviral activity of the xanthate compound was evidenced by the absence of HIV replicative intermediate DNA. The expression of cellular genes, such as c-myc, remained unimpaired within these cells.

Antiviral Agents↗

Synergistic antiviral effect of xanthates and ionic detergents.

Xanthate compounds have been shown to exhibit antiviral activity against various DNA and RNA viruses under acidic pH conditions. It is now possible to utilize the unique broad range antiviral spectrum of these compounds under physiological pH conditions (pH 7.4) by simultaneous administration of certain ionic detergents. When used in conjunction with tricyclodecan-9-yl-xanthate (D609), sodium deoxycholate, sodium dodecylsulfate and certain fatty acids, which have no antiviral activity of their own, inhibit the replication of various DNA and RNA viruses (such as herpes simplex, vesicular stomatitis and Coxsackie B 4) in vitro at pH 7.4. Among saturated fatty acids of various chain lengths there was a marked size restriction in that the efficiency of undecanoic acid (11 C atoms) was three orders of magnitude greater than that of shorter (6 C atoms) or longer (18 C atoms) monocarbonic acids. Dose-response kinetics revealed a synergistic interaction between the xanthate and the monocarbonic acid. A dose that inhibited the replication of herpesvirus by a factor of 1000 still permitted mitotic activity in uninfected growing control cultures.

Animals↗

Selective killing of tumor cells by xanthates.

Xanthate derivatives of primary alcohols with antiviral properties exert, in combination with monocarboxylic C11 or C12 acids a pronounced anti-tumor activity in vitro and in vivo. Tricyclodecan-9-yl-xanthogenate (D609) or cyclododecyl xanthogenate (D435) when administered together with either undecanoic or dodecanoic acid to various transformed animal and human tumor cells (displaying low serum requirement) cause cell death. In contrast, normal cells from which transformed derivatives arose, were unaffected.

Animals↗

Inhibition of the phosphorylation of the regulatory non-structural protein of vesicular stomatitis virus by an antiviral xanthate compound.

The growth of vesicular stomatitis virus (VSV) can be inhibited by the antiviral compound tricyclo-decane-9-yl-xanthogenate (D609). On analysing the antiviral mechanism we found no effect on the primary transcription of infecting VSV genomes. In contrast, the processes of replication and transcription during late stages of infection were inhibited. Despite the synthesis of all five virus-coded proteins (41% to 56% of the uninhibited control), as shown by labelling with [35S]methionine, the phosphorylation of the non-structural (NS) protein was reduced in the presence of the xanthate by a factor of at least 17. The pattern of phosphorylation of the bulk of cellular proteins remained unaltered under the same conditions. A relation between a possible loss of biological activity of the NS protein owing to the lack of phosphorylation and the decreased VSV RNA synthesis is suggested.

Antiviral Agents↗

Reversion of bovine papillomavirus-induced transformation and immortalization by a xanthate compound.

Bovine papilloma virus-transformed hamster embryo fibroblasts (HEF-BPV) reacted to exposure to tricyclodecan-9-yl-xanthogenate (D609) with immediate reversion to the growth kinetics and the flat morphology of the untransformed parental cells. After six population doublings in the presence of D609, clones which displayed an untransformed morphology in the absence of D609 arose with a high frequency (90%). Such clones had reacquired a limited in vitro lifetime and had lost the ability to induce tumors in athymic nude mice. At the molecular level the revertant clones had lost all extrachromosomal monomeric BPV-1 DNA molecules. Only high molecular weight (HMW) oligomeric BPV-1 DNA that was probably integrated into the cellular genome was still detectable in a methylated transcriptionally inactive state. In contrast to transformed cells, the revertant clones no longer transcribed BPV-1-specific mRNA molecules, but were stimulated by a tumor promoter to transient viral gene expression. This article provides direct evidence for the complete reversibility of the property of "immortality".

Animals↗

The therapeutic efficacy of a xanthate compound on herpes simplex virus in skin lesions of mice and guinea-pigs.

Xanthates have recently been shown to inhibit the replication of both DNA and RNA viruses in vitro. The antiviral activity was exerted only under acidic pH conditions. Curative effects in vivo on herpes simplex virus (HSV)-induced skin lesions were only observed when the xanthate compound was administered in the form of an ointment containing acidic buffer (sodium phosphate pH 5.0). Advanced HSV-2-induced skin lesions in mice were healed by topical treatment with the xanthate compound. HSV-1-induced lesions on skin of guinea-pigs were cured within 2 days even when the treatment was initiated as late as 4 days after infection. Both HSV-1 DNA synthesis and virus production in the skin of guinea-pigs were also shown to be inhibited after treatment with the xanthate compound.

Acyclovir↗

Distribution of mechanical robustness in the human femoral shaft.

The object of the present study was to determine the mechanical robustness of the human femoral shaft. The geometric properties of the cross sections were measured. The compressive strength, the gamma-ray absorption, and the ash density of the compact bone were examined at 40 points along the shaft. The geometric properties connected with the mechanical robustness increased with the body size. The distribution of the mineral density, the material compressive strength, and the endurable bending moment on the surface of the bone were determined. The density and the strength were great in specimens from the postero-lateral side and in those from the antero-medial to the postero-medial side of the shaft. The calculated endurable bending moment was large on the anterior, the postero-lateral, and the postero-medial surfaces of the middle part of the bone. The anterior side was especially able to endure a large bending moment when the bone had a large moment of inertia of the cross-sectional area in the sagittal direction. The distribution of these mechanical properties could be the functional adaptation of the human femur against external bending forces mainly caused by muscle activity.

Aged↗

Chromosomal changes in bovine papillomavirus type 1-induced Syrian hamster tumors.

Bovine papillomavirus type 1 (BPV-1) induced fibrosarcomas in the Syrian hamster were studied cytogenetically by G- and C-banding techniques. All tumor derived cells showed chromosome abnormalities that remained stable during serial tumor transplantations. Cells without chromosome abnormalities found in two cultures were derived from the host animals on account of heterochromatin polymorphisms. In most tumors pseudodiploid cells prevailed, some cells were hypodiploid lacking one or two chromosomes, and one tumor showed two hyperdiploid cell clones with one and three additional chromosomes, respectively. Some of the chromosome abnormalities apparently are nonrandom. Three chromosomes (#1, #4, and #15) were most frequently involved in aberrations.

Animals↗

DNA and RNA virus species are inhibited by xanthates, a class of antiviral compounds with unique properties.

Various DNA and RNA virus species are inhibited by xanthate compounds at concentrations that leave the mitotic activity of uninfected cells unimpaired. The concentration of tricyclodecan -9-yl- xanthogenate that reduces the yield of herpes simplex virus types 1 and 2 by 50% is between 4.5 and 33 microM. The replication of DNA viruses such as simian virus 40 can be blocked at the DNA and RNA level both early and late after infection. The xanthates are not incorporated into nucleic acids. Episomal bovine papilloma virus DNA replication and transcription are also inhibited in transformed cells. The treated cells revert to the normal phenotype by acquisition of contact inhibition and a flat morphology.

Antiviral Agents↗

The simultaneous extraction of high-molecular-weight DNA and of RNA from solid tumors.

A novel method for the isolation of both macromolecular DNA and RNA from solid tissues based upon the disruption by vibration of deep-frozen material in a mechanical device termed Mikro-dismembrator, is described. This technique reveals a yield of, on the average, 1 to 3 mg of either DNA or RNA per gram of tissue. The quality of the purified nucleic acids permits the detailed analysis of integrated tumor virus DNA sequences and their mRNA transcripts. Furthermore, the efficient isolation of papilloma virions from keratinized wart tissue is facilitated by the application of the Mikro-dismembrator.

Animals↗

Bovine papilloma virus transcription: polyadenylated RNA species and assessment of the direction of transcription.

The bovine papilloma virus type 1 (BPV-1)-specific RNA species were identified in virus-induced bovine warts, hamster tumors, and transformed hamster and mouse cells. In each case two major species were present (1.1 and 1.3 kilobases [kb]). Also two species of 1.6 and 1.8 kb appearing in variable amounts were found. Only in the keratinized periphery of the warts, where virus replication takes place, was it possible to reveal an additional 2-kb RNA species. In this tissue, however, the 1.6-kb species was not detected. The basal part of a bovine wart contained an additional minor, 2.9-kb, BPV-1-specific RNA sequence. By hybridization with purified defined BPV-1 DNA fragments it was shown that most of the coding sequences of the 2-kb species were transcribed from a region between 0.02 and 0.19 map units. The majority of the coding sequences of the smaller species in transformed cells were located in the region between 0.31 and 0.61 map units. The putative 5' ends mapped between 0.72 and 0.96 map units. Oligodeoxythymidylic acid-primed [(32)P]cDNA was synthesized from various RNA preparations to generate probes for the detection of 3' termini of the polyadenylated BPV-1 RNAs. By hybridization across the BPV-1 genome only one signal between the map positions 0.30 and 0.40 was obtained when RNA from transformed cells and from a tumor was used as a template. In contrast, RNA from the periphery of a wart led to the detection of an additional signal which was confined to the region between 0.96 and 1.00 map units. From the arrangement of both the 3' termini and the coding areas along the viral genome it appears that several RNA species are transcribed from one DNA strand.

Animals↗

Episomal simian virus 40 genomes in human brain tumors.

Eight out of 35 human intracranial tumors were shown by restriction enzyme analysis to contain unintegrated simian virus 40 (SV40) DNA molecules. The relative amount of viral DNA was estimated to be the equivalent of one viral genome within every 10th to 20th cell. No infectious virus was detected in tissue cultures established from the tumors. From only one tumor was it possible to rescue, by cell fusion, infectious SV40 displaying wild-type properties. In those cases that permitted a more detailed analysis, the restriction enzyme cleavage patterns appeared to correspond to the wild-type patterns with one exception, in which the SV40 episomes displayed a deletion of approximately 70 base pairs close to the origin of DNA replication. From one tumor, the SV40 genomes were transferred into permissive CV-1 monkey cells by transfection with the total tumor DNA. Despite their persistence as episomes no infectious virus was produced. Furthermore, no viral antigens were detectable, although the SV40 messengers for the small and the large tumor antigens were present. These cells had, however, acquired the ability to form colonies in low concentrations of serum. Thus this report provides, by restriction enzyme analysis, direct evidence for the presence of SV40 DNA in human tumors.

Base Sequence↗