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Biomedical subjects

S Zimmermann

Publications and source records attributed to S Zimmermann.

At least 37 records · Page 2Linked to original sources

Atypical mycobacterial tuberculosis--a diagnostic and therapeutic dilemma? Case reports and review of the literature.

In immunocompetent preschool children cervical lymphadenitis is a common clinical presentation of atypical mycobacteria. Its rapid diagnosis and treatment is still a challenge, because accurate diagnostic procedures for atypical mycobacteria are still not yet available in routine practice. Two children suffered from craniojugular (16 months old girl) and infraauricular (2.5 years old boy) located neck masses which showed resistance to the medical treatment. In the first case an abscess splitting took place initially, followed by an anti-tubercular drug treatment and necessary surgical reintervention. In the second case surgical removal of all involved lymph nodes, infiltrated surrounding soft tissue and involved skin areas were followed by medical treatment. In both cases presumed infection with mycobacterium tuberculosis was not confirmed, but atypical mycobacteria could be isolated both. In the first case atypical mycobacterium could be specified as mycobacterium avium complex and in the second case as mycobacterium malmoense. Both bacilli showed sensitivity towards medical treatment with clarithromycin, whereby in one case only the surgical reintervention led to a complete removal of clinical symptomatic. In cases of presumed tuberculous neck lymph node infections differential diagnosis of an atypical mycobacterial lymphadenitis should always be supposed, because medical and surgical treatment differ fundamentally.

Child, Preschool↗

Corticotropin-releasing hormone receptor type 1-deficiency enhances hippocampal serotonergic neurotransmission: an in vivo microdialysis study in mutant mice.

Corticotropin-releasing hormone plays an important role in the coordination of various responses to stress. Previous research has implicated both corticotropin-releasing hormone and the serotonergic system as causative factors in the development and course of stress-related psychiatric disorders such as major depression. To delineate the role of the corticotropin-releasing hormone receptor type 1 (CRH-R1) in the interactions between corticotropin-releasing hormone and serotonergic neurotransmission, in vivo microdialysis was performed in CRH-R1-deficient mice under basal (home cage) and stress (forced swimming) conditions. Hippocampal dialysates were used to measure extracellular levels of serotonin and its metabolite 5-hydroxyindoleacetic acid, and free corticosterone levels to monitor the status of the hypothalamic-pituitary-adrenocortical axis. Moreover, behavioural activity was assessed by visual observation and a scoring paradigm. Both wild-type and heterozygous mutant mice showed a clear diurnal rhythm in free corticosterone. Free corticosterone concentrations were, however, lower in heterozygous mutant mice than in wild-type animals and undetectable in homozygous CRH-R1-deficient mice. Homozygous CRH-R1-deficient mice showed enhanced hippocampal levels of 5-hydroxyindoleacetic acid but not of serotonin during the light and the dark phase of the diurnal cycle, which may point to an enhanced synthesis of serotonin in the raphe-hippocampal system. Moreover, the mutation resulted in higher behavioural activity in the home cage during the light but not during the dark period. Forced swimming caused a rise in hippocampal serotonin followed by a further increase after the end of the stress paradigm in all genotypes. Homozygous and heterozygous mutant mice showed, however, a significantly amplified serotonin response to the forced swimming as compared to wild-type control animals. We conclude that CRH-R1-deficiency results in reduced hypothalamic-pituitary-adrenocortical axis activity, in enhanced synthesis of serotonin during basal conditions, and in an augmented response in extracellular levels of serotonin to stress. These data provide further evidence for the intricate relationship between corticotropin-releasing hormone and serotonin and the important role of the CRH-R1 herein.

Animals↗

Autologous transplantation of CD133 selected hematopoietic progenitor cells in a pediatric patient with relapsed leukemia.

A pediatric patient with very early meningeal relapse of his CD34(+) CD133(-) pre-B-ALL was transplanted with 2.5 x 10(6)/kg CD133 selected autologous progenitor cells. Enrichment of CD133(+) cells resulted in a purity of 92.3 +/- 3.5% CD133(+). Hematopoietic engraftment with >1.0 x 10(9)/l neutrophils and >50 x 10(9)/l platelets was reached within 13 and 24 days, respectively. At a follow-up of 11(1/2) months after autologous transplantation, the patient is in complete remission. To our knowledge, the successful transplantation with a CD133 selected graft is the first one to be reported worldwide. CD133 selected cells may serve as an alternative in the case of CD34(+) malignancy.

AC133 Antigen↗

Therapeutic efficacy of E2F1 in pancreatic cancer correlates with TP73 induction.

Pancreatic cancer is particularly resistant to apoptosis by antineoplastic agents, which is partly attributable to the lack of functional p53. Here we show that E2F1 in combination with the most clinically efficient drug, gemcitabine, resulted in a strong induction of apoptosis independent of functional p53, whereas the effect of either therapy alone varied between different cell lines. Intratumoral injection of a helper-dependent adenovirus vector expressing E2F1 plus drug treatment resulted in a significant reduction of tumor volume. The therapeutic effect is directly correlated with the induction of the p53 homologue p73, suggesting that the recently discovered E2F1/p73 pathway plays a critical role in cancer therapy.

Adenocarcinoma↗

Regulation of Raf by Akt controls growth and differentiation in vascular smooth muscle cells.

The stimulation of platelet-derived growth factor (PDGF) receptors shifts vascular smooth muscle (VSM) cells toward a more proliferative phenotype. Thrombin activates the same signaling cascades in VSM cells, namely the Ras/Raf/MEK/ERK and the phosphatidylinositol 3-kinase (PI 3-kinase)/Akt pathways. Nonetheless, thrombin was not mitogenic, but rather increased the expression of the smooth muscle-specific myosin heavy chain (SM-MHC) indicative of an in vitro re-differentiation of VSM cells. A more detailed analysis of the temporal pattern and relative signal intensities revealed marked differences. The strong and biphasic phosphorylation of ERK1/2 in response to thrombin correlated with its ability to increase the activity of the SM-MHC promoter whereas Akt was only partially and transiently phosphorylated. By contrast, PDGF, a potent mitogen in VSM cells, induced a short-lived ERK1/2 phosphorylation but a complete and sustained phosphorylation of Akt. The phosphorylated form of Akt physically interacted with Raf. Moreover, Akt phosphorylated Raf at Ser(259), resulting in a reduced Raf kinase activity and a termination of MEK and ERK1/2 phosphorylation. Disruption of the PI 3-kinase signaling prevented the PDGF-induced Akt and Raf-Ser(259) phosphorylation. Under these conditions, PDGF elicited a more sustained MEK and ERK phosphorylation and increased SM-MHC promoter activity. Consistently, in cells that express dominant negative Akt, PDGF increased SM-MHC promoter activity. Furthermore, expression of constitutively active Akt blocked the thrombin-stimulated SM-MHC promoter activity. Thus, we present evidence that the balance and cross-regulation between the PI 3-kinase/Akt and Ras/Raf/MEK signaling cascades determine the temporal pattern of ERK1/2 phosphorylation and may thereby guide the phenotypic modulation of vascular smooth muscle cells.

Animals↗

Suppressors of cytokine signaling (SOCS)-1 and SOCS-3 are induced by CpG-DNA and modulate cytokine responses in APCs.

During infection, the functional status of the innate immune system is tightly regulated. Although signals resulting in activation have been well characterized, counterregulative mechanisms are poorly understood. Suppressor of cytokine signaling (SOCS) proteins have been characterized as cytokine-inducible negative regulators of Janus kinase/STAT signaling in cells of hemopoietic origin. To analyze whether SOCS proteins could also be induced by pathogen-derived stimuli, we investigated the induction of SOCS-1 and SOCS-3 after triggering of macrophage cell lines, bone marrow-derived dendritic cells, and peritoneal macrophages with CpG-DNA. In this study, we show that CpG-DNA, but not GpC-DNA, induces expression of mRNA for SOCS-1 and SOCS-3 in vitro and in vivo. SOCS mRNA expression could be blocked by chloroquine and was independent of protein synthesis. Inhibitors of the mitogen-activated protein kinase pathway triggered by CpG-DNA were able to impede induction of SOCS mRNA. CpG-DNA triggered synthesis of SOCS proteins that could be detected by Western blotting. SOCS proteins were functional because they inhibited IFN-gamma as well as IL-6- and GM-CSF-induced phosphorylation of STAT proteins. Furthermore, IFN-gamma-induced up-regulation of MHC class II molecules was also prevented. The same effects could be achieved by overexpression of SOCS-1. Hence, the results indicate a substantial cross-talk between signal pathways within cells. They provide evidence for regulative mechanisms of Janus kinase/STAT signaling after triggering Toll-like receptor signal pathways.

Adjuvants, Immunologic↗

Occurrence of Shiga toxin-producing Escherichia coli in fecal samples from children with diarrhea and from healthy zebu cattle in Uganda.

Fecal samples collected from 237 diarrheic infants in Kampala, Uganda and from 159 healthy cattle from a ranch in the Central Region of Uganda were investigated for the presence of Escherichia coli O157 and other types of Shiga toxin-producing E. coli (STEC). E. coli O157 were not detected in 150 stool samples from children which were cultivated on sorbitol MacConkey agar. A search for all types of STEC performed on 87 additional human stool samples with an enzyme-immunoassay for Shiga toxins (Premier EHEC) was also negative. Forty-two stool samples from infants were additionally investigated for enteropathogenic E. coli (EPEC) by DNA-hybridization with an eae-specific gene probe. Compared to STEC, EPEC were frequent and found in six (14.3%) of these 42 randomly selected stool specimens. We were further interested in the role of cattle as a reservoir for STEC in Uganda. STEC were isolated from 45 of 159 cattle from a herd in the Central Region of Uganda. STEC strains from cattle belonged to 16 different O- and nine different H-types and nine O:H types were identical to those found in bovine STEC from other continents. Only one bovine STEC strain was positive for the eae-gene, and O-groups associated with enterohemorrhagic E. coli (EHEC) types (O26, O103, O111, O145 and O157) were not found. Our report demonstrates that STEC are not frequent in urban children in Uganda, but domestic cattle were identified as an important natural reservoir for these organisms in this country.

Animals↗

Increase in final stages of follicular atresia and premature decay of corpora lutea in Insl3-deficient mice.

The insulin-like factor 3 (Insl3), a member of the insulin-like hormone family, is exclusively synthesized in gonads. Our recent analysis of Insl3-deficient mice revealed the regulating role of the Insl3 factor on the gubernaculum development during the transabdominal descent of the testis. Here we define the role of the Insl3 factor by histometric analysis of wild-type and Insl3(-/-) ovaries. Ovaries from 40-day-old- and 6-month-old Insl3(-/-) mice as well as from wild-type littermates were serially sectioned. Sections were stained with periodic acid Schiff reaction (PAS) for counting the number of zonae pellucidae which indicated the final stages of follicular atresia. Corpora lutea were also determined. Some sections were processed using either a modified TUNEL method for in situ detection of apoptosis or a lectin labelling technique with Griffonia simplicifolia I agglutinin (GS I) for endothelial cell occurrence. The number of zonae pellucidae was higher in Insl3-deficient ovaries of both ages than in ovaries of wild-type sisters (P < 0.05 for 40-day-old ovaries; P < 0.01 for 6-month-old ovaries). Additionally, the wild-type mice of both ages possessed threefold more corpora lutea than their Insl3 littermates (P < 0.01 for 40-day-old; P < 0.001 for 6-month-old). In general, wild-type corpora lutea looked healthy, showed GS I-positive endothelial cells and no apoptotic cells. Corpora lutea from mutants were rich in regressing GS I luteal cells, and apoptotic cells appeared. We conclude: Follicular atresia and luteolysis are accelerated in ovaries of Insl3-deficient mice probably because of increased apoptosis. The Insl3 function thus appears to rescue endocrine cells from the apoptotic pathway.

Animals↗

GST fusion proteins cause false positives during selection of viral movement protein specific single chain antibodies.

Glutathione S-transferase (GST) fusion proteins are used frequently for investigating protein-protein and protein-DNA interactions. The present study demonstrates that the use of GST fusion proteins caused false positives during selection of phage-displayed single-chain antibody fragments (scFvs) specific for three domains of the movement protein (NS(M)) of tomato spotted wilt virus (TSWV). To identify and exclude the false positives when using GST as a fusion partner linked to the antigen of interest, indirect phage enzyme-linked immunosorbent assay (ELISA) was compared with capture phage ELISA. Of 210 enriched phage clones, indirect phage ELISA identified 106 clones specific for binding to GST-domain fusions but not to GST. In contrast, using capture phage ELISA, all 106 selected clones were identified as false positives, reacting with the GST fusion proteins and GST. This was confirmed by characterization of soluble scFv antibodies. The data indicate that GST fusion proteins seem unsuitable for screening of phage-displayed antibody fragments and it is essential to use capture phage ELISA, instead of the indirect phage ELISA used commonly to exclude false positives in characterization of selected clones with GST fusion proteins.

Animals↗

First report on the uptake of automobile catalyst emitted palladium by European eels (Anguilla anguilla) following experimental exposure to road dust.

Following the introduction of automobile catalysts in the middle of the 1980s in Germany there is an increasing emission of the platinum-group-metals platinum, palladium (Pd) and rhodium. Still, it remains unclear if these metals are bioavailable for aquatic animals and to which extent they become accumulated by the aquatic biosphere. Because of analytical problems in detecting Pd in small biological samples the present investigation concentrates on the bioavailability of this metal. To answer the question of a Pd uptake by aquatic organisms experimental studies were conducted with European eels maintained in water containing road dust at a concentration of 10 kg/100 l. Following an exposure period of four weeks, samples of liver and kidney were analysed by total-reflection X-ray fluorescence analysis after co-precipitation of Pd with mercury. These experiments revealed an uptake of traffic related Pd by European eels which showed a mean liver Pd concentration of 0.18 +/- 0.05 ng/g (wet wt.), whereas the Pd concentration in the kidney ranged below the detection limit. Thus, in this study we can demonstrate for the first time that automobile catalyst emitted Pd is bioavailable for aquatic animals.

Air Pollutants↗

Antibody-based resistance to plant pathogens.

Plant diseases are a major threat to the world food supply, as up to 15% of production is lost to pathogens. In the past, disease control and the generation of resistant plant lines protected against viral, bacterial or fungal pathogens, was achieved using conventional breeding based on crossings, mutant screenings and backcrossing. Many approaches in this field have failed or the resistance obtained has been rapidly broken by the pathogens. Recent advances in molecular biotechnology have made it possible to obtain and to modify genes that are useful for generating disease resistant crops. Several strategies, including expression of pathogen-derived sequences or anti-pathogenic agents, have been developed to engineer improved pathogen resistance in transgenic plants. Antibody-based resistance is a novel strategy for generating transgenic plants resistant to pathogens. Decades ago it was shown that polyclonal and monoclonal antibodies can neutralize viruses, bacteria and selected fungi. This approach has been improved recently by the development of recombinant antibodies (rAbs). Crop resistance can be engineered by the expression of pathogen-specific antibodies, antibody fragments or antibody fusion proteins. The advantages of this approach are that rAbs can be engineered against almost any target molecule, and it has been demonstrated that expression of functional pathogen-specific rAbs in plants confers effective pathogen protection. The efficacy of antibody-based resistance was first shown for plant viruses and its application to other plant pathogens is becoming more established. However, successful use of antibodies to generate plant pathogen resistance relies on appropriate target selection, careful antibody design, efficient antibody expression, stability and targeting to appropriate cellular compartments.

Antibodies, Viral↗

IL-4 instructs TH1 responses and resistance to Leishmania major in susceptible BALB/c mice.

Immunity to infection with intracellular pathogens is regulated by interleukin 12 (IL-12), which mediates protective T helper type 1 (TH1) responses, or IL-4, which induces TH2 cells and susceptibility. Paradoxically, we show here that when present during the initial activation of dendritic cells (DCs) by infectious agents, IL-4 instructed DCs to produce IL-12 and promote TH1 development. This TH1 response established resistance to Leishmania major in susceptible BALB/c mice. When present later, during the period of T cell priming, IL-4 induced TH2 differentiation and progressive leishmaniasis in resistant mice. Because immune responses developed via the consecutive activation of DCs and then T cells, the contrasting effects of IL-4 on DC development and T cell differentiation led to immune responses that had opposing functional phenotypes.

Animals↗

The K+ channel SKT1 is co-expressed with KST1 in potato guard cells--both channels can co-assemble via their conserved KT domains.

An appreciable number of potassium channels mediating K+ uptake have been identified in higher plants. Promoter-beta-glucuronidase reporter gene studies were used here to demonstrate that SKT1, encoding a potato K+ inwardly rectifying channel, is expressed in guard cells in addition to KST1 previously reported. However, whereas KST1 was found to be expressed in essentially all mature guard cells, SKT1 expression was almost exclusively restricted to guard cells of the abaxial leaf epidermis. This suggests that different types of K+ channel subunits contribute to channel formation in potato guard cells and therefore differential regulation of stomatal movements in the two leaf surfaces. The overlapping expression pattern of SKT1 and KST1 in abaxial guard cells indicates that K+in channels of different sub-families contribute to ionic currents in this cell type, thus explaining the different properties of channels expressed solely in heterologous systems and those endogenous to guard cells. Interaction studies had previously suggested that plant K+ inward rectifiers form clusters via their conserved C-terminal domain, KT/HA. K+ channels co-expressed in one cell type may therefore form heteromers, which increase functional variability of K+ currents, a phenomenon well described for animal voltage-gated K+ channels. Co-expression of KST1 and SKT1 in Xenopus oocytes resulted in currents with an intermediate sensitivity towards Cs+, suggesting the presence of heteromers, and a sensitivity towards external Ca2+, which reflected the property of the endogenous K+in current in guard cells. Modulation of KST1 currents in oocytes by co-expressing KST1 with a SKT1 pore-mutant, which by itself was not able to confer activating K+ currents, demonstrated the possibility that KST1 and SKT1 co-assemble to hetero-oligomers. Furthermore, various C-terminal deletions of the mutated SKT1 channel restored KST1 currents, showing that the C-terminal KT motif is essential for heteromeric channel formation.

Animals↗

Expression of CRHR1 and CRHR2 in mouse pituitary and adrenal gland: implications for HPA system regulation.

Deficiency of corticotropin-releasing hormone receptor I (CRHR1) reduces anxiety-related behavior in mice and severely impairs the stress response of the hypothalamic-pituitary-adrenocortical (HPA) system. Most recently, we could show that severe emotional stressors induce a significant rise in plasma ACTH even in mice deficient for the CRHR1 (Crhr1-1-) which is, however, not accompanied by an increase in plasma corticosterone concentration, suggesting that CRHR1 might be directly involved in the regulation of adrenal corticosterone release. We therefore used the Crhr1-1- mouse model to clarify the potential role of adrenal CRHR1 in the regulation of the HPA system and, in particular, of corticosterone secretion. In Crhr1-/- mice, intravenous ACTH administration failed to stimulate corticosterone secretion despite a significant upregulation of ACTH receptor mRNA levels in the adrenal cortex of these mutants. Further, by means of RT-PCR and in situ hybridization analyses, we could provide first evidence that both CRHR1 and CRHR2 are expressed in the mouse pituitary and adrenal cortex. Stimulation of pituitary CRHR2 does not induce ACTH secretion either in vitro or in vivo. Our data strongly suggest that CRHR1 plays a crucial role in the release of corticosterone from the adrenal cortex, independently of pituitary function. The existence of an intra-adrenal CRH/CRHR1 regulatory system which contributes to the corticosteroid secretory activity adds to the complexity of HPA system regulation and stress hormone homeostasis.

Adrenal Cortex↗

CpG-DNA-mediated transient lymphadenopathy is associated with a state of Th1 predisposition to antigen-driven responses.

Infections can influence concurrent and subsequent Th1 vs Th2 immune responses to Ags. Through pattern recognition of foreign unmethylated CpG dinucleotides, the vertebrate innate immune system can sense infectious danger and typically replies with a Th1-polarized adaptive immune response. We examined whether CpG-DNA exposure would influence subsequent responses to infection and soluble Ags. CpG-DNA injection led to local lymphadenopathy characterized by maintenance of cellular composition with some biasing toward elevated dendritic cell composition. Sustained local production of IL-12 and IFN-gamma from dendritic cells and T cells was shown. Prior injection by up to 2 wk with CpG-DNA protected BALB/c mice from Th2 driven lethal leishmaniasis. CpG-DNA injection by up to 5 wk before soluble Ag challenge resulted in the generation of Ag-specific CTL, Th1 recall responses to Ag, and Th1-polarized Ag-specific Abs. Thus, CpG-DNA instigated a local predisposition for intense CTL responses and Th1-polarized immune responses to subsequent infections or Ag challenge. The induction by the innate immune system of a locally contained hypersensitivity could represent a capacitating immune reaction yielding rapid conditioned responses to secondary infections.

Adoptive Transfer↗

Disruption of feeding behavior in CRH receptor 1-deficient mice is dependent on glucocorticoids.

Corticotropin-releasing hormone (CRH) has been found to markedly suppress food intake and reduce body weight. However, it still remains to be clarified whether those effects are mediated via either the CRH receptor 1 (CRHR1) or the CRH receptor 2 (CRHR2), or both receptor subtypes. Therefore, we investigated whether CRHR1-deficient mice (CRHR1-KO) show abnormalities in body weight and feeding behavior. CRHR1-KO and wildtype mice showed no difference in the total amount of food intake. However, there was a significant disruption in the circadian distribution of food intake: CRHR1 mutants consumed significantly more food during the light period (p<0.01). The normal diurnal pattern could be completely restored by oral administration of corticosterone 21-sulfate (5 mg/l added to the water-based liquid diet). We therefore conclude that in CRHR1-KO mice, the disruption of feeding behavior might be causally related to glucocorticoid deficiency, but that the CRHR1 is not likely to play a critical role in the basal regulation of ingestive behavior.

Administration, Oral↗