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Biomedical subjects

S Henning

Publications and source records attributed to S Henning.

At least 19 recordsLinked to original sources

A case of cerebral Whipple's disease initially presenting with isolated focal myoclonus.

Neurological manifestations in Whipple's disease are highly variable and tend to occur at later stages of the disease. However, isolated, focal neurological symptoms are reported to be rare. Here we describe the successful treatment of a case of cerebral Whipple's disease initially presenting solely with isolated myoclonic jerks of the left hand and forearm evolving to a segmental myoclonus at a later stage. Additionally, we present - to our knowledge - a novel treatment by administration of immunomodulatory therapy (IVIg) in addition to established antibiotics.

Adult↗

Evaluation of cerebral perfusion deficit in stroke patients using new transcranial contrast imaging CPS technology--preliminary results.

BACKGROUND AND PURPOSE: Contrast-enhanced transcranial duplex sonography can be used to examine cerebral perfusion. This technique, however, is still faced with methodological problems. The aim of the present study is to evaluate cerebral perfusion deficit after administration of the contrast agent SonoVue in acute stroke patients using new contrast imaging software. METHODS: Ten subjects (6 male stroke patients and 4 healthy volunteers), were examined using transcranial duplex sonography (Acuson Sequoia 512 Ultrasound System) after a bolus injection of the contrast agent SonoVue. The transcranial examination was performed using transient response harmonic grey scale imaging with refill kinetics. The Sequoia ultrasonographic system was equipped with a new contrast harmonic imaging software "Cadence contrast pulse sequencing technology" (CPS). Triggered images with the mechanical index (MI) at 1.1 as well as continuous registration with MI at 0.28 were used for the evaluation of time intensity curves in several regions of interest. The sonographically imaged hypoperfused areas were compared with findings from MR imaging. RESULTS: In all healthy volunteers, the contrast-enhanced signal could be recognized well in the ipsi- and also in the contralateral hemisphere up to the skull crown. In stroke patients, the perfusion deficit in the area of the MCA could be detected ipsilaterally in all subjects using triggered registration. Additionally, the area of MCA infarction could also be visualized in two patients using contralateral insonation. The low MI continuous imaging was successful in three patients. For all patients, the ischaemic region corresponded well in shape and size with the findings from MR imaging. CONCLUSIONS: CPS enhances the possibility of perfusion-imaging in cerebral microcirculation and of perfusion-deficit-imaging in patients with cerebral ischaemia. Further studies with a larger number of patients should be carried out to improve this method.

Cerebrovascular Circulation↗

Pharmacological modulation of cortical excitability shifts induced by transcranial direct current stimulation in humans.

Transcranial direct current stimulation (tDCS) of the human motor cortex results in polarity-specific shifts of cortical excitability during and after stimulation. Anodal tDCS enhances and cathodal stimulation reduces excitability. Animal experiments have demonstrated that the effect of anodal tDCS is caused by neuronal depolarisation, while cathodal tDCS hyperpolarises cortical neurones. However, not much is known about the ion channels and receptors involved in these effects. Thus, the impact of the sodium channel blocker carbamazepine, the calcium channel blocker flunarizine and the NMDA receptor antagonist dextromethorphane on tDCS-elicited motor cortical excitability changes of healthy human subjects were tested. tDCS-protocols inducing excitability alterations (1) only during tDCS and (2) eliciting long-lasting after-effects were applied after drug administration. Carbamazepine selectively eliminated the excitability enhancement induced by anodal stimulation during and after tDCS. Flunarizine resulted in similar changes. Antagonising NMDA receptors did not alter current-generated excitability changes during a short stimulation, which elicits no after-effects, but prevented the induction of long-lasting after-effects independent of their direction. These results suggest that, like in other animals, cortical excitability shifts induced during tDCS in humans also depend on membrane polarisation, thus modulating the conductance of sodium and calcium channels. Moreover, they suggest that the after-effects may be NMDA receptor dependent. Since NMDA receptors are involved in neuroplastic changes, the results suggest a possible application of tDCS in the modulation or induction of these processes in a clinical setting. The selective elimination of tDCS-driven excitability enhancements by carbamazepine proposes a role for this drug in focussing the effects of cathodal tDCS, which may have important future clinical applications.

Adult↗

Role of endothelial MCP-1 in monocyte adhesion to inflamed human endothelium under physiological flow.

Monocyte chemoattractant protein-1 (MCP-1) is an essential chemokine involved in monocyte traffic across endo- and epithelial barriers both in vitro and in vivo. However, the contribution of endothelial MCP-1 signaling via its CCR2 receptor in monocyte adhesion to inflamed endothelium under flow is incompletely understood. A sensitive flow chamber assay was used to assess monocyte adhesion to TNF-alpha-activated primary human pulmonary artery endothelial cells (HPAEC) during physiological shear stress. Monocyte adhesion was markedly reduced ( approximately 45%) when HPAEC-derived MCP-1 was either neutralized with anti-MCP-1 mAb or inhibited by translational arrest of MCP-1 mRNA transcripts with MCP-1 antisense oligomers. Corresponding efficacy was observed for blockade of monocyte CCR2 receptor function by anti-CCR2 mAb or MCP-1 antagonists (9-76 analog). The impact of endothelial MCP-1 on monocyte-HPAEC adhesion occurred via beta(2)-integrin but not via beta(1)-integrin adhesion pathways. In this line, pretreatment of monocytes with MCP-1 but not RANTES provoked a rapid and transient neoepitope 24 expression on beta(2)-integrin alpha-chains, as analyzed by increased reporter mAb24 binding. Collectively, our data show an important cross talk of endothelial MCP-1 with monocyte CCR2 effecting monocyte firm adhesion to inflamed HPAEC under physiological flow conditions.

Antibodies, Monoclonal↗

Multicentre evaluation of the VITEK 2 Advanced Expert System for interpretive reading of antimicrobial resistance tests.

Interpretive reading analyses the complete resistance profiles of bacteria to multiple antibiotics and infers the resistance mechanisms present; it aids therapeutic choice and enhances surveillance data. We evaluated the Advanced Expert System (AES), which interprets MICs generated by the VITEK 2. Ten European laboratories tested 42 reference strains and 76-106 of their own strains, representing important resistance genotypes. Interpretive reading by the VITEK 2 AES achieved full agreement with genotype data for 88-89% of strains, with the correct mechanism identified as one of two possibilities for a further 5-6%. Mechanisms inferred with 90% agreement with reference data included methicillin resistance in staphylococci, glycopeptide resistance in enterococci, quinolone resistance in staphylococci and Enterobacteriaceae, AAC(6')-APH(2")-mediated aminoglycoside resistance in Gram-positive cocci, erm-mediated macrolide resistance in pneumococci, extended-spectrum beta-lactamases (ESBLs) in Enterobacteriaceae and Pseudomonas aeruginosa, and acquired penicillinases in Enterobacteriaceae. VanA, VanB and VanC phenotypes of enterococci were distinguished reliably, and ESBL production was accurately inferred in AmpC-inducible species as well as Escherichia coli and Klebsiella spp. Mechanisms identified, but only as possibilities among several, included IRT-type beta-lactamases and individual aminoglycoside-modifying enzymes in Enterobacteriaceae. Most disagreements with reference data concerned pneumococci found to have high-level penicillin resistance by the VITEK 2 AES but previously determined, phenotypically, to have intermediate resistance. When ESBL production was inferred in E. coli and klebsiellae, the VITEK 2 AES edited susceptible results for cephalosporins (except cefoxitin) to resistant; when an acquired penicillinase was inferred in Enterobacteriaceae, piperacillin results were edited to resistant; and when staphylococci were found methicillin resistant, resistance was reported for all beta-lactams. Further editing may be desirable (e.g. of cephalosporin results for salmonellas inferred to have ESBLs).

Data Interpretation, Statistical↗

[Mechanical changes in bone after roentgen irradiation with low dosage].

We investigated the micromechanical properties using doses from 1 up to 7 Gray and could observe a roughening on the surface of the bone material in the microscopic range by scanning acoustic microscopic measurements. In addition, a preceding irradiation promoted an extension of microcracks during the polishing process indicating an embrittlement. After irradiation and removal of the surface layer, the SAM measurements indicate a preferential increasing of hardness of softer regions. These results are consistent with our measurements by environmental scanning electron microscopy.

Aged↗

Ring-opening polymerization of lactones in the presence of hydroxyapatite.

The ring-opening polymerization of epsilon-caprolactone, delta-valerolactone (VL) and D,L-lactide, respectively, in the presence of different proportions of hydroxyapatite (HA) was catalyzed by stannous (II)octoate (SnOct2) at 130 degrees C and resulted in composites. The lactones were almost completely converted to the polymers within a reaction time of 70 up to 240 min. The number-average molecular weights Mn as determined by size exclusion chromatography decreased with increasing content of HA. The initiating efficiency of HA as calculated from the difference of the polymerization degrees P. obtained with and without HA turned out to be relatively low with ca. 11 to 0.5% for 1 to 80 wt% HA, respectively. For the polymerization of VL, the initiating efficiency of HA was on the average threefold higher. The quantitative proof of non-extractable polymer on HA by means of thermogravimetric analysis, fourier transform infrared spectroscopy with photoacoustic detection and differential scanning calorimetry confirmed the initiating efficiency of HA as mentioned above. This poly(lactone) can be debound from HA by treatment with aqueous HCl. Hence it is assumed to be ionically bound.

Biopolymers↗

Substantially reduced risk of cancer of the aerodigestive tract in subjects with variant--463A of the myeloperoxidase gene.

Myeloperoxidase (MPO), an enzyme that is highly expressed in neutrophil leukocytes, transforms precarcinogens such as benzo(a)pyrene and aromatic amines to highly reactive intermediates. A G/A polymorphism located 463 bp upstream of exon 1 in the promoter region strongly reduces MPO mRNA expression. In a matched case-control study, 196 lung cancer, 245 laryngeal cancer, and 255 pharyngeal cancer patients from the Berlin area were investigated for frequency of the G-463A polymorphism by PCR/RFLP, using AciI. They were matched by age and gender to hospital patients without known malignancies. Moreover, 270 healthy volunteers were genotyped, obtaining 61.1% of individuals with MPO genotype -463G/G, 34.8% of individuals with genotype G/A, and 4.1% of individuals with genotype A/A. In lung and laryngeal cancer patients, but not in pharyngeal cancer patients, mutant genotypes were significantly less frequent. Crude odds ratios for carriers of one or two A alleles, compared to wild-type G/G, were 0.58 [95% confidence interval (CI), 0.38-0.88; P = 0.011] for lung cancer patients, 0.63 (95% CI, 0.43-0.92; P = 0.017) for laryngeal cancer patients, and 0.82 (95% CI, 0.57-1.17; P = 0.27) for pharyngeal cancer patients. The relative risks, adjusted for age, gender, and extent of cigarette smoking were 0.47 (95% CI, 0.28-0.79; P = 0.004), 0.66 (95% CI, 0.44-1.01; P = 0.054), and 0.75 (95% CI, 0.51-1.12; P = 0.16) for lung, larynx, and pharyngeal cancer, respectively. Strikingly, relative risk for carriers of -463A among adenocarcinoma of the lung was 0.24 (95% CI, 0.10-0.58; P = 0.002). Two cases with larynx cancer, one case with lung cancer, and one reference subject displayed novel G/A mutations at -297 nucleotide and -296 nucleotide, destroying a constitutive AciI cleavage site. Our data finally suggest that the MPO -463A variant is a protective factor in the etiology of lung and larynx cancer, but possibly not of pharyngeal cancer.

Adult↗

Molecular genetics of cancer susceptibility.

Studies on the role of genetically polymorphic enzymes like cytochrome P450 1A1, arylamine N-acetyltransferase 2 or glutathione S-transferase M1 as cancer susceptibility factors date back more than 20 years, and some associations have been confirmed in several studies and meta-analyses. Overall, the extent of risk modulation due to these polymorphisms is only moderate but remains epidemiologically relevant. The role of some of these polymorphisms in human health may even be ambiguous: rapid acetylation, for example, protects from urinary bladder cancer but appears to increase the risk of laryngeal, lung and colon cancer. The first genetic polymorphisms in xenobiotics transporters such as P-gp (MDR1) and MRP2 have recently been identified. These polymorphisms may have great impact as cancer susceptibility factors as well as factors modulating the outcome of cancer treatment. Enzymes involved in generation or detoxification of reactive oxygen species also have to be considered; one of these enzymes, myeloperoxidase, constitutes a relatively strong lung cancer risk factor, as confirmed in 4 independent studies. Other genes, including those coding for DNA repair enzymes, signal transduction and cell growth regulation, may ultimately prove more important than the metabolic enzymes as cancer susceptibility factors. Study designs in molecular genetic epidemiology are evolving; large ongoing prospective trials increasingly allow confirmatory nested case control studies to be performed. However, carefully controlled, large case-control studies will remain the mainstay in molecular genetic epidemiology. Molecular genetic epidemiological evaluation of response to chemoprevention as well as response to the adverse events of cancer chemotherapy are likely to provide results that may be useful for individualized prevention and treatment in the near future. Since routine genotyping of all persons is now feasible, something like a genotype passport may soon become reality, and molecular and clinical epidemiological studies will have to provide the basis for understanding how to use genotype data for the benefit of the population.

Animals↗

Inhibition of Rho at different stages of thymocyte development gives different perspectives on Rho function.

Development of thymocytes can be staged according to the levels of expression of the cell-surface markers CD4, CD8, CD44, CD25 and CD2. Thymocyte development is regulated by a complex signalling network [1], one component of which is the GTPase Rho. The bacterial enzyme C3 transferase from Clostridium botulinum selectively ADP-ribosylates Rho in its effector-binding domain and thereby abolishes its biological function [2,3]. To explore the function of Rho in thymocyte development, we previously used the proximal promoter of the gene encoding the Src-family kinase p56lck to make transgenic mice that selectively express C3 transferase in the thymus [4,6]. In these mice, which lack Rho function from the earliest thymocyte stages, thymocyte numbers are reduced by approximately 50- to 100-fold. Here, we describe transgenic mice that express C3 transferase under the control of the locus control region (LCR) of the CD2 gene; this regulatory element drives expression at a later stage of thymocyte development than the lck proximal promoter [7]. In these mice, thymocyte numbers were also reduced by 50- to 100-fold, but unlike the lck-C3 mice, in which the reduction predominantly results from defects in cell survival of CD25(+) thymocyte progenitors, the CD2-C3 transgenic mice had a pre-T-cell differentiation block at the CD25(+) stage after rearrangement of the T-cell receptor (TCR) beta chains. Analysis of CD2-C3 mice demonstrated that Rho acts as an intracellular switch for TCR beta selection, the critical thymic-differentiation checkpoint. These results show that Rho-mediated survival signals for CD25(+) pre-T cells are generated by the extracellular signals that act on earlier thymocyte precursors and also that temporal cell-type-specific elimination of Rho can reveal different functions of this GTPase in vivo.

ADP Ribose Transferases↗

Small GTPases in lymphocyte biology: Rho proteins take center stage.

Almost a decade ago, the small GTPase Ras was shown to be activated in response to antigen receptor triggering in T cells. Since then, Ras has been further characterized as a central molecule for the regulation of signal transduction pathways in lymphocytes. However, over the last couple of years, its exclusive role in lymphocyte biology has been challenged by the emergence of its relatives of the Rho family. Today it is well established that Rho GTPases act as unique molecular switches at several critical checkpoints in lymphocyte development and function. Additionally, a new and critical concept in GTPase signaling has taken shape over the last couple of years in that small GTPases are able to regulate quite diverse cellular processes in the immune response by linking to multiple biochemical effector pathways.

GTP Phosphohydrolases↗

Association of arylamine N-acetyltransferases NAT1 and NAT2 genotypes to laryngeal cancer risk.

Genetically polymorphic xenobiotic metabolizing enzymes are supposed to be host factors for an individual's cancer susceptibility. A total of 255 laryngeal cancer patients was genotyped for NAT1 and NAT2 and compared with 510 reference individuals, matched by age and gender. NAT1 genotypes (NAT1*3, *4, *10, and *11 ) were found equally distributed between cases and control individuals. However, there was a significant overrepresentation of 20 (7.8%) homozygous NAT2 genotypes coding for rapid acetylation (NAT2*4/*4 and NAT2*4/*12A) amongst laryngeal cancer patients versus 19 (3.7%) such individuals in the control group (odds ratio 2.18, 95% confidence limits 1.13, 4.22; P = 0.018). Furthermore, an increasing NAT2*4/*4 frequency in cases with strong cigarette consumption was observed, but also in non-smokers. Heterozygous genotypes of NAT2*4/slow were not overrepresented. These results correspond with earlier findings in lung cancer. Analysis of NAT1 and NAT2 combinations revealed a linkage disequilibrium between NAT1*10 and NAT2*4; NAT1*10 frequency was twofold higher in NAT2*4/*4 carriers than in slow NAT2 coding genotypes. In conclusion, the distinct genotype NAT2*4/*4 proved to be a rare, but powerful host risk factor for larynx carcinoma. These data support the notion that an individual's specific NAT2 genotype may be decisive for the organ of his smoking-initiated cancer.

Adult↗

The internal migration patterns of the foreign-born and native-born populations in the United States: 1975-80 and 1985-90.

"The focus of this article is on an examination of the influence of birthplace on the internal migration and spatial redistribution patterns of the foreign-born and native-born populations in the United States during the 1975-80 and 1985-90 periods. The analyses presented here consider the following principal questions: (1) What are the internal migration patterns of the foreign-born population in the United States, and how do they differ from those of the native-born population? (2) How do the relocation choices of various birthplace-specific foreign-born and native-born subpopulations differ from each other? (3) Are the internal migration patterns generating an increased or a decreased geographical concentration of such birthplace-specific subgroups?"

Americas↗

Multiple p21ras effector pathways regulate nuclear factor of activated T cells.

The transcription factor, Nuclear Factor of Activated T cells (NFAT) is a major target for p21ras and calcium signalling pathways in the IL-2 gene and is induced by p21ras signals acting in synergy with calcium/calcineurin signals. One p21ras effector pathway involves the MAP kinase ERK-2, and we have examined its role in NFAT regulation. Expression of dominant negative MAPKK-1 prevents NFAT induction. Constitutively active MAPKK-1 fully activates ERK-2 and the transcription factor Elk-1, but does not substitute for activated p21ras and synergize with calcium/calcineurin signals to induce NFAT. Expression of dominant negative N17Rac also prevents TCR and p21ras activation of NFAT, but without interfering with the ERK-2 pathway. The transcriptional activity of the NFAT binding site is mediated by a complex comprising a member of the NFAT group and AP-1 family proteins. The induction of AP-1 by p21ras also requires Rac-1 function. Activated Rac-1 could mimic activated p21ras to induce AP-1 but not to induce NFAT. Moreover, the combination of activated MAPKK-1 and Rac-1 could not substitute for activated p21ras and synergize with calcium signals to induce NFAT. Thus, p21ras regulation of NFAT in T cells requires the activity of multiple effector pathways including those regulated by MAPKK-1/ERK-2 and Rac-1.

Base Sequence↗

Costimulatory signals for human T-cell activation induce nuclear translocation of pp19/cofilin.

Resting T lymphocytes that have recognized antigen bound to a major histocompatibility complex molecule with the T-cell receptor require costimulatory signals through accessory receptors, including CD2, CD4, CD8, and CD28, for their clonal growth and expression of their functional repertoires. Absence of costimulation, in contrast, can induce clonal anergy in vitro and selective tolerance in vivo. Here we have defined a potential intracellular messenger for T-cell activation which is strictly regulated by costimulatory signals mediated through accessory receptors: pp19/cofilin, a small actin-binding protein, undergoes dephosphorylation and subsequent translocation from the cytosol into the nucleus. In untransformed T cells this process correlates with functional responses essential for the induction of T-cell proliferation (i.e., production of interleukin 2). Moreover, spontaneous dephosphorylation as well as nuclear translocation of pp19/cofilin occur in the autonomously proliferating T-lymphoma cell line Jurkat.

Actin Depolymerizing Factors↗

[Cerebral symptoms in pre- or perinatally HIV-infected children].

Eight of 13 children pre- or perinatally infected with the HIV virus subsequently developed neurological symptoms. Three children also had other nonspecific symptoms (fever, lymphadenopathy, diarrhoea, hepatosplenomegaly, failure to thrive and mucocutaneous thrush). Five children developed illnesses associated with AIDS (opportunistic infections, cachexia and lymphocytic interstitial pneumonia). The neurological abnormalities predominantly affected motor functions, only later also involving sensory ones. Motor, cognitive and language development was impaired in all eight children. A loss of developmental milestones occurred in three children with HIV encephalopathy: they have since died. In all the children the HIV infection caused symptoms within the first year, progressing more quickly in the three with encephalopathy. There were no discernible risk factors to account for the difference in the course of the disease.

AIDS Dementia Complex↗

Alterations of CD2 association with T cell receptor signaling molecules in "CD2 unresponsive" human T lymphocytes.

CD2-associated molecules were identified by means of in vitro kinase assays of CD2 immunoprecipitates obtained from nontransformed human T lymphocytes lysed in the detergent brij 58. Under these conditions CD2 was found to be associated with the protein tyrosine kinases p56lck and p59fyn as well as two low molecular weight phosphoproteins. The latter were identified as the zeta and epsilon chains, the major signaling components of the CD/7 TcR complex. Importantly, induction of T cell unresponsiveness towards CD2-mediated stimuli by means of CD3/T cell receptor (TcR) modulation results in uncoupling of zeta and epsilon from the CD2 molecule, while its associations with p56lck and p59fyn remain unaffected. Moreover, despite the incapacity of T lymphocytes to undergo DNA synthesis in the CD3/TcR-modulated state, CD2 triggering still results in tyrosine phosphorylation of some unknown protein substrates. Thus, the same zeta and epsilon chains which are components of a functional TcR complex appear to also couple to the CD2 molecular complex. Moreover, dissociation of TcR and CD2 complexes in intact cells seems to block CD2-mediated T cell growth but does not result in complete abolishment of the signal transducing capacity of the CD2 receptor.

Antigens, Differentiation, T-Lymphocyte↗