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Biomedical subjects

I Müller

Publications and source records attributed to I Müller.

At least 73 records · Page 4Linked to original sources

Anthracycline-derived chemotherapeutics in apoptosis and free radical cytotoxicity (Review).

Anthracycline-derivatives are frequently used chemotherapeutics in treatment of numerous human malignancies. Anthracyclines are known for their complex cytotoxic mechanism involving i) inhibition of enzymes such as topoisomerase II, RNA polymerase, cytochrome c oxidase and others; ii) intercalation into DNA; iii) chelation of iron and generation of reactive oxygen species (ROS); iv) induction of apoptosis. Here, mechanistic aspects for successful cytostasis and for side effects, e.g. cardiomyopathy, are discussed. We emphasize recent developments in anthracycline-mediated apoptosis and focus on a well known representative, doxorubicin (adriamycin, adriblastin). We reflect on the role of oxidative stress and interactions with intracellular signaling pathways.

Animals↗

Characterization of T cell-mediated responses in nonhealing and healing Leishmania major infections in the absence of endogenous IL-4.

IL-4 drives polarized Th2 responses, and differentiating Th2 cells down-regulate their sensitivity to IL-12. Therefore, the failure of BALB/c mice to heal Leishmania major infection could be due to an IL-4-dependent biased Th2 response or to a reduced capacity of Leishmania-specific Th cells to respond to IL-12. We examined the ability of CD4+ Th cells from L. major-infected wild-type and IL-4-deficient BALB/c mice to respond to IL-12. We show that the inability of normal and IL-4-deficient BALB/c mice to heal L. major infections is due to their inability to generate effective Th1 responses and not to persistent IL-4-dominated Th2 responses. Redirection of immune responses in vivo by administration of IL-12 or anti-CD4 mAb treatment in the early phase of infection (+/-12 days) allows both normal and IL-4-deficient BALB/c mice to heal their lesions by allowing them to develop an efficient Th1 response regardless of the presence or the absence of IL-4. Finally, on a population level, Ag-specific Th cells from infected animals induced to heal display a strongly elevated response to IL-12.

Adjuvants, Immunologic↗

Two-dimensional electrophoretic analysis of vesicular and micellar proteins of gallbladder bile.

Proteins associated with lipid vesicles or mixed micelles of human gallbladder bile were separated by Sepharose-2B gel filtration chromatography followed by protein concentration and delipidation. After two-dimensional polyacrylamide gel electrophoresis and silver staining up to 59 and 471 polypeptide spots were counted in vesicular and micellar fractions, respectively. As major components the plasma proteins transferrin, albumin, alpha-fibrinogen, beta-fibrinogen, gamma-immunoglobulin G, immunoglobulin light chains, alpha-1 antitrypsin and haptoglobin alpha-2 chain were identified in the lipid vesicles by comparison with human protein reference maps. However, most biliary proteins including the anionic polypeptide fraction are associated with mixed micelles. The pathophysiological significance of these proteins associated with lipids needs to be investigated further.

Bile↗

Effect of concentration on the cytotoxic mechanism of doxorubicin--apoptosis and oxidative DNA damage.

Anthracycline derivatives such as doxorubicin are part of many chemotherapeutic regimens and reach peak plasma concentrations of 5 microM. We investigated the cytotoxic mechanisms of various doxorubicin concentrations in MOLT-4 ALL-cells. Concentrations of up to 100 microM doxorubicin achieved similar cytotoxic effects in cultures of MOLT-4 cells, but acted via different mechanisms. Doxorubicin induced apoptosis (maximum effect at 1 microM), which was dependent on RNA synthesis and involved oxidative stress. Concentrations higher than 3 microM did not induce apoptosis, but significantly inhibited RNA synthesis. DNA strand breaks in MOLT-4 cells occurred in the presence of 1 to 5 microM doxorubicin to a similar extent, but showed a dose-dependence at higher concentrations. There was no GC/MS-detectable oxidation of DNA bases in apoptotic cells and only 1 out of 13 DNA base oxidation products, 8-hydroxyguanine, increased significantly in the presence of as much as 100 microM doxorubicin. These results suggest that at pharmacologically relevant concentrations apoptosis and not oxidative DNA damage is the main killing mechanism of doxorubicin against ALL-cells.

Antibiotics, Antineoplastic↗

Leishmania major infection in C57BL/10 mice differing at the Lps locus: a new non-healing phenotype.

The course of cutaneous leishmaniasis was examined in mice from two genetically closely related strains, C57BL/10ScCr (Cr) and C57BL/10ScSn (Sn). Sn mice are able to heal Leishmania major infections, while Cr mice are unable to heal. The cutaneous lesions of the Cr mice progressed continuously and the increase in lesion size was paralleled by an unrestricted growth of the parasites in vivo. Cr mice, in contrast to their Sn counterparts, are highly resistant to all effects of lipopolysaccharide (LPS). The nonhealing L. major infection in Cr mice is in sharp contrast to the course of infection in another endotoxin-nonresponder mouse strain, C3H/HeJ, which heal infections with L. major. Cr mice exhibit, in addition to the defective LPS responsiveness, an impaired interferon-gamma (IFN-gamma) response after infection with a variety of microorganisms. The insufficient activation of parasitized macrophages to kill intracellular L. major could be due to the inability of splenocytes from infected Cr mice to secrete IFN-gamma upon restimulation with L. major. IFN-gamma is essential for the efficient activation of parasitized macrophages to kill intracellular L. major by producing nitric oxide (NO). Although bone marrow-derived Cr macrophage do not produce NO in response to LPS, both Sn and Cr macrophages release NO upon stimulation with IFN-gamma and tumor necrosis factor, indicating that they are responsive to activation by these cytokines.

Animals↗

Evidence for an active type of cell death with ultrastructural features distinct from apoptosis: the effects of 3-acetylpyridine neurotoxicity.

3-Acetylpyridine is a niacinamide antagonist with potent neurotoxic properties in vitro and in vivo. 3-Acetylpyridine neurotoxicity was associated with positive DNA end-labelling and displayed features of active cell death without the ultrastructural changes of apoptotic cell death. After systemic administration in rats (70 mg/kg), we detected labelled nuclei in the inferior olive using in situ DNA end-labelling. However, the conventional chromatin stain did not show chromatin condensation or fragmentation and electron microscopy studies failed to reveal features of apoptosis. Although areas of condensed chromatin were present in some nuclei, cytoplasmic damage with extensive organelle swelling was the most prominent finding. In vitro, 3-acetylpyridine (0.1-1 mM) induced degeneration of cerebellar granule neurons in a concentration- and time-dependent manner. The protein synthesis inhibitor cycloheximide (10 micrograms/ml) and the transcriptional inhibitor actinomycin D (10 microM) protected against 3-acetylpyridine toxicity. In contrast, neither the free radical scavenger alpha-phenyl-N-tertbutylnitron (100 microM), nor glutathione ethyl ester (10-100 microM), N-acetyl-cysteine (10-200 microM) or 3-aminobenzamide (0.1-4 mM), an inhibitor of poly(ADP-ribose) synthesis, were effective. 3-Acetylpyridine-induced neuronal death in vitro was associated with positive in situ DNA labelling. However, DNA fragmentation could not be demonstrated prior to neuronal cell loss and no DNA "laddering" was detected by DNA gel electrophoresis. Correspondingly, no apoptotic nuclei were revealed upon electron microscopy but organelle swelling and extensive vacuolization, changes similar to autophagocytosis. In conclusion, 3-acetylpyridine induces an active form of cell death that required de novo protein synthesis but is distinct from apoptosis. A loss of glutathione accompanies, but does not precede, cell death.

Animals↗

On the origin of Metazoan adhesion receptors: cloning of integrin alpha subunit from the sponge Geodia cydonium.

Integrins are prominent receptors known from vertebrates and the higher phyla of invertebrates. Until now, no evidence has been provided for the existence of integrins in the lowest Metazoa, the sponges (Porifera). We have isolated and characterized a cDNA clone encoding the alpha subunit of integrin from the marine sponge Geodia cydonium (GCINTEG). The open reading frame encodes a polypeptide of 1,086 residues (118 kDa). The intracellular domain features the sequence Tyr-Phe-x-Gly-Phe-Phe-x-Arg, which is different in one residue from the characteristic consensus pattern for integrin alpha subunits. We conclude that sponges, the oldest multicellular animal phylum, already utilize the structural elements which are required for a tuned and controlled interaction among cells, and between cells and the extracellular matrix.

Animals↗

The comparative clinical efficacy of pyrophosphate/triclosan, copolymer/triclosan and zinc citrate/triclosan dentifrices for the reduction of supragingival calculus formation.

Three triclosan-containing "multi-benefit" dentifrices were compared for clinical efficacy in reducing supragingival calculus formation following a dental prophylaxis. A total of 544 subjects completed a double-blind parallel-group clinical study using the Volpe-Manhold Index (VMI) to record severity and occurrence of supragingival calculus. The study design included a pre-test period where the calculus formation rate was measured in subjects brushing with a placebo dentifrice. Following a prophylaxis, subjects were stratified for age, gender and VMI scores and assigned to one of four treatments: 1) a dentifrice containing 5.0% soluble pyrophosphate/0.145% fluoride as NaF/silica abrasive/0.28% triclosan (hereafter PPi/TCS-comparable to Crest Complete dentifrice, Procter & Gamble, UK); 2) a commercial dentifrice containing 2.0% Gantrez acid copolymer/ 0.145% fluoride as NaF/silica abrasive/0.30% triclosan (hereafter Gan/TCS-Colgate Total dentifrice, Colgate-Palmolive Company, UK); 3) a commercial dentifrice containing 0.5% zinc citrate trihydrate/0.15% fluoride as sodium monofluorophosphate/silica abrasive/0.20% triclosan (hereafter Zn/TCS-Mentadent P dentifrice, Unilever, UK); and 4) a control dentifrice comprised of 0.145% fluoride as NaF/silica abrasive (hereafter Control). Subjects were instructed to use their assigned dentifrice at least twice per day and to brush as they do normally. Supragingival calculus formation was assesed at two and four months using site-specific and whole-mouth VMI indices for both calculus severity and occurrence. Following four months of use, the PPi/TCS dentifrice provided statistically significant reductions in calculus severity (22-23%) and occurrence (15%) as compared with the Control dentifrice. The Zn/TCS dentifrice also provided significant reductions in calculus severity (17-19%) and occurrence (12-13%) as compared with the Control. The Gan/TCS produced no statistically significant reductions in calculus formation (occurrence or severity) compared with the Control. The PPi/TCS dentifrice provided statistically significant reductions in calculus severity (15-21%) and occurrence (12-16%) as compared with the Gan/TCS dentifrice. These results support the clinical effectiveness of PPi/TCS and Zn/TCS dentifrices for the reduction of supragingival dental calculus formation following a dental prophylaxis.

Adolescent↗

Cloning of sponge (Geodia cydonium) and tunicate (Botryllus schlosseri) proteasome subunit epsilon (PRCE): implications about the vertebrate MHC-encoded homologue LMP7 (PRCC).

Proteasomes are large protein complexes that play a major role in selective degradation of intracellular proteins. Eukaryotes feature seven different alpha and beta subunits. Two of the vertebrate housekeeping beta-subunits have MHC-encoded homologues that can substitute for the housekeeping counterparts upon interferon-gamma induction. In the present study we report the cloning of invertebrate beta-subunit proteasome epsilon (PRCE), from the marine sponge Geodia cydonium and from the colonial tunicate Botryllus schlosseri. Sequence comparisons revealed that the sponge and tunicate proteins are strikingly similar to vertebrate and yeast PRCEs and their MHC-linked counterparts the PRCCs (also termed LMP7), and to a lesser degree also to archaebacterial proteasome subunit beta. Based on this comparison we suggest that all eukaryotic PRCEs and PRCCs feature a cleavable N-terminal propeptide, including the two mammalian PRCEs which appear to have been wrongly predicted from incomplete cDNAs. Our comparative analysis outlines 25 amino acid positions which appear to be unique for PRCCs, distinct from the corresponding residues in metazoan PRCEs.

Amino Acid Sequence↗

Susceptibility to Leishmania major infection in interleukin-4-deficient mice.

Interleukin-4 (IL-4), a pleiotropic cytokine, is a major regulator of the immune system and is considered crucial for the development of T helper cell type 2 (TH2) responses. The susceptibility of BALB/c mice to infection with Leishmania major has been associated with a polarized TH2 response and an inability to down-modulate IL-4 production. The role of IL-4 in vivo was examined directly by disrupting the IL-4 gene in BALB/c embryonic stem cells. Despite the absence of IL-4, the genetically pure BALB/c mutant mice remained susceptible to L. major infection, showed no signs of lesion healing or parasite clearance, and did not switch to a TH1 phenotype.

Animals↗

Molecular cloning and sequence analysis of two cDNAs coding for putative anionic trypsinogens from the colonial Urochordate Botryllus schlosseri (Ascidiacea).

Botryllus schlosseri is a colonial marine invertebrate that belongs to the subphylum Urochordata. Previously we analyzed the activity of a serine protease in this species, and cloned a tunicate chymotrypsin-like molecule. In the present study we further analyzed the protease activity of this animal, and found biochemical evidence also for specific trypsin-like activity. Subsequently we utilized a degenerate polymerase chain reaction (PCR) primer to clone two B. schlosseri cDNAs coding for two different putative trypsinogens, each 243 amino acids long, that differ within the coding region in 42 amino acids and 99 nucleotides. Both clones feature the characteristics of animal anionic trypsinogens. Sequence analysis of the tunicate putative trypsinogens revealed the invertebrate characteristics of three disulfide bridges, and higher similarity to invertebrate than to vertebrate trypsinogens. We therefore propose that the typical characteristics of vertebrate trypsinogens evolved after the divergence of Urochordates and Cephalochordates.

Amino Acid Sequence↗

Infection of human and murine macrophages with Leishmania major is associated with early parasite heat shock protein synthesis but fails to induce a host cell stress response.

Heat shock/stress proteins (HSP) represent the most conserved proteins expressed in prokaryotes and eukaryotes. These constitutive and inducible proteins function as molecular chaperones and are part of virulence factors. They participate in self/non-self discrimination and may protect phagocytes from the toxic effects of the reactive oxygen species generated by these cells during bacterial phagocytosis and infection. In this study, we investigated the early stress response of host cells [either human alveolar macrophages (AM) or murine peritoneal macrophages (PM)] during infection by an obligate intracellular parasite (Leishmania major), which lives within phagolysosomes. Immunoblotting with specific antibodies demonstrated that L. major had no effect on host stress protein synthesis, but synthesized high levels of its own stress proteins within AM and PM. The lack of induction of a host cell stress response may relate to the failure of L. major to activate the respiratory burst in these cells, whereas the upshift of L. major HSP within macrophages is part of an adaptive response of the parasite to the host.

Animals↗

SDZ PRI 053, an orally bioavailable human immunodeficiency virus type 1 proteinase inhibitor containing the 2-aminobenzylstatine moiety.

A series of inhibitors of human immunodeficiency virus type 1 (HIV-1) proteinase containing the 2-aralkyl-amino-substituted statine moiety as a novel transition-state analog was synthesized, with the aim to obtain compounds which combine anti-HIV potency with oral bioavailability. The reduced-size 2-aminobenzylstatine derivative SDZ PRI 053, which contains 2-(S)-amino-3-(R)-hydroxyindane in place of an amino acid amide, is a potent and orally bioavailable inhibitor of HIV-1 replication. The antiviral activity of SDZ PRI 053 was demonstrated in various cell lines, in primary lymphocytes, and in primary monocytes, against laboratory strains as well as clinical HIV-1 isolates (50% effective dose = 0.028 to 0.15 microM). Cell proliferation was impaired only at 100- to 300-fold-higher concentrations. The mechanism of antiviral action of the proteinase inhibitor SDZ PRI 0.53 was demonstrated to be inhibition of gag precursor protein processing. The finding that the inhibitory potency of SDZ PRI 053 in chronic virus infection, determined by p24 release, was considerably lower than that in de novo infection may be explained by the fact that the virus particles produced in the presence of SDZ PRI 053 are about 50-fold less infectious than those from untreated cultures. Upon intravenous administration, half-lives in blood of 100 and 32 min in mice and rats, respectively, were measured. Oral bioavailability of SDZ PRI 053 in rodents was 20 to 60%, depending on the dose. In mice, rats, and dogs, the inhibitor levels after oral administration remained far above the concentrations needed to efficiently block HIV replication in vitro for a prolonged period. This compound is thus a promising candidate for clinical use in HIV disease.

Administration, Oral↗

Leishmania major-specific CD8+ T cells are inducers and targets of nitric oxide produced by parasitized macrophages.

Lines of Leishmania major-specific CD8+ T cells were derived from the lymph nodes and spleens of CBA mice, immune following resolution of a primary infection, 7 days after secondary challenge with viable L. major. Specific stimulation of these CD8+ T cells by bone marrow-derived macrophages infected with L. major led to the release of interferon-gamma by CD8+ T cells and nitric oxide by macrophages. Interestingly, the nitric oxide released by bone marrow-derived macrophages down-regulated the production of interferon-gamma by specifically activated CD8+ T cells. The proliferation and long-term maintenance of these parasite-specific CD8+ T cells was impaired by the nitric oxide produced by stimulating infected macrophages as a result of cytokines released by activated stimulating infected macrophages as a result of cytokines released by activated CD8+ T cells. Taken together, the results indicate that L. major-specific CD8+ T cells are sensitive to the toxic effect of the nitric oxide that they induce.

Amino Acid Oxidoreductases↗

Morphometric investigation on nuclear and nucleolar arrangement and AgNOR content in the rat hippocampus under normal and ischemic conditions.

A morphometric analysis of constituents of the rat hippocampus was performed in the different hippocampal regions that are known to be vulnerable in various degrees to experimental global ischemia. In the hippocampus formation of the normal Fisher rat the number and areas of neuronal nuclei and of their constituents, nucleoli and AgNOR particles, were counted and measured. Nuclear and nucleolar size were different in the various parts of the Ammon's formation. AgNORs, i.e. silver stainable proteins that represent actively rRNA transcribing genes, equally varied in number and extension in the different hippocampal subfields. In granule cells of the dentate gyrus and in pyramidal cells of CA 1, CA 3 and CA 4, AgNORs usually occupy half of the nucleolar area. Using the determined values an estimate of the length and volume of the neuronal layers within the different parts of the rats Ammon's horn was performed. After the development of delayed ischemia all measured structures were significantly smaller despite the fact that only nuclei with well preserved outlines could be analysed. They represent only 5-10% of controls. Nuclear sizes were reduced between 20 and 55%. The strongest reduction was observed in the transition zone between CA 1 and CA 3, the least in CA 3. Nucleoli and AgNORs equally were considerably smaller than in normal cells. For AgNORs a skewed distribution to the left resulted, whereas the nuclear size had normally distributed shape with peak at lower values. We conclude that an architecture of both nucleoli and AgNORs exists in the hippocampal subfields in addition to the known cytological architecture. Under ischemic conditions, even the healthy looking cells remain damaged to a variable extent in the different subfields corresponding to their selective vulnerability. There are some indications that damage to nucleoli and AgNORs is earlier and stronger than to nuclei. A time course of AgNOR damage can be constructed.

Animals↗