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Biomedical subjects

H Wiegand

Publications and source records attributed to H Wiegand.

At least 19 recordsLinked to original sources

FTY720 pharmacokinetics in mild to moderate hepatic impairment.

The influence of mild and moderate hepatic impairment on FTY720 pharmacokinetics was assessed. The authors enrolled 32 subjects consisting of 8 with mild and 8 with moderate hepatic impairment based on Child-Pugh criteria and 16 demographically matched control subjects. A single 1-mg oral dose of FTY720 was administered under fasting conditions. Blood, plasma, and urine samples were obtained over a 14-day period for measurement of FTY720 and metabolite concentrations and protein binding. Total blood lymphocyte counts and heart rate were serially monitored to assess pharmacologic responses to FTY720. Peak FTY720 blood concentrations were similar across groups. Oral clearance (CL/F) was reduced 10% in mild hepatic impairment (P = .493) and 31% in moderate hepatic impairment (P = .034). There were no significant differences in blood exposure to the hexanoic or butanoic acid metabolites among groups. The effect of FTY720 on blood lymphocytes was similar across groups, with a mean decrease of 44% from the predose value. Like-wise, the effect of FTY720 on supine heart rate was similar across groups, with a mean 13% decrease from the predose rate occurring 2 to 4 hours postdose and recovering within 1 to 2 days. Although hepatic impairment elicited changes in the disposition of FTY720, the magnitude of these changes suggests that the FTY720 dose does not need to be adjusted in mild or moderate hepatic-impaired patients.

Case-Control Studies↗

An ancient family of human endogenous retroviruses encodes a functional homolog of the HIV-1 Rev protein.

The human endogenous retrovirus K (HERV-K) family of endogenous retroviruses consists of approximately 50 proviral copies per haploid human genome. Herein, the HERV-Ks are shown to encode a sequence-specific nuclear RNA export factor, termed K-Rev, that is functionally analogous to the HIV-1 Rev protein. Like HIV-1 Rev, K-Rev binds to both the Crm1 nuclear export factor and to a cis-acting viral RNA target to activate nuclear export of unspliced RNAs. Surprisingly, this HERV-K RNA sequence, which is encoded within the HERV-K long terminal repeat, is also recognized by HIV-1 Rev. These data provide surprising evidence for an evolutionary link between HIV-1 and a group of endogenous retroviruses that first entered the human genome approximately 30 million years ago.

Carrier Proteins↗

Determination of the functional domain organization of the importin alpha nuclear import factor.

Although importin alpha (Imp alpha) has been shown to act as the receptor for basic nuclear localization signals (NLSs) and to mediate their recruitment to the importin beta nuclear import factor, little is known about the functional domains present in Imp alpha, with the exception that importin beta binding is known to map close to the Imp alpha NH2 terminus. Here, we demonstrate that sequences essential for binding to the CAS nuclear export factor are located near the Imp alpha COOH terminus and include a critical acidic motif. Although point mutations introduced into this acidic motif inactivated both CAS binding and Imp alpha nuclear export, a putative leucine-rich nuclear export signal proved to be neither necessary nor sufficient for Imp alpha nuclear export. Analysis of sequences within Imp alpha that bind to the SV-40 T antigen NLS or to the similar LEF-1 NLS revealed that both NLSs interact with a subset of the eight degenerate armadillo (Arm) repeats that form the central part of Imp alpha. However, these two NLS-binding sites showed only minimal overlap, thus suggesting that the degeneracy of the Arm repeat region of Imp alpha may serve to facilitate binding to similar but nonidentical basic NLSs. Importantly, the SV-40 T NLS proved able to specifically inhibit the interaction of Imp alpha with CAS in vitro, thus explaining why the SV-40 T NLS is unable to also function as a nuclear export signal.

Amino Acid Sequence↗

Inhibition of long-term potentiation in developing rat visual cortex but not hippocampus by in utero exposure to polychlorinated biphenyls.

The neurotoxic potential of polychlorinated biphenyls (PCBs) depends on the structure of the congener as well as on the age of the exposure. We exposed rats prenatally to a coplanar congener (PCB-77) or to a non-coplanar congener (PCB-47) and measured the amount of long-term potentiation (LTP) at postnatal days 11-19 in the visual cortex and hippocampus. While PCB-77 exposure affected LTP statistically significantly in cortical but not hippocampal slices, the exposure to PCB-47 was much less effective.

Aging↗

Blockade of voltage-operated calcium channels, increase in spontaneous catecholamine release and elevation of intracellular calcium levels in bovine chromaffin cells by the plant alkaloid tetrandrine.

Experiments were performed in bovine chromaffin cells in short term primary culture. Tetrandrine is a plant alkaloid from the chinese medical herb Stefania tetrandra. The aim of the present study was to investigate the mechanisms by which tetrandrine interacts with calcium signalling and to provide a quantitative description of effects. Tetrandrine blocked voltage-operated calcium channel currents concentration-dependently as shown in whole cell patch-clamp recordings. The blockade of calcium channels reduced the potassium-stimulated catecholamine release. Besides, the drug increased the spontaneous (not stimulated) release of catecholamines in the presence of extracellular calcium. Measurements of intracellular calcium levels [Ca]i showed a calcium release from intracellular stores by tetrandrine. This tetrandrine-induced [Ca]i elevation was higher in calcium containing as compared to calcium free solution. Tetrandrine effects partially overlap with those of thapsigargin, but tetrandrine has additional targets, since it increased [Ca]i in cells pretreated with thapsigargin. We conclude that tetrandrine blocks voltage-operated calcium channels and increases [Ca]i by blocking endoplasmic and other calcium pumps.

Alkaloids↗

Synaptic plasticity in the CA1 and CA3 hippocampal region of pre- and postnatally lead-exposed rats.

The effects of low level lead exposure on synaptic plasticity in hippocampal regions CA1 and CA3 were determined in adult rats in vitro. In the CA3 region the NMDA (N-methyl-D-aspartate)-independent mossy fiber-CA3 synapse potentiation was not influenced by chronic pre- and postnatal lead exposure, while in the same rats, in the CA1 region the NMDA-dependent long-term potentiation was slightly reduced as compared to controls. Paired-pulse facilitation was neither impaired in CA1 nor in CA3 region in the lead-exposed rats. These findings suggest that NMDA-dependent forms of synaptic plasticity are more susceptible to chronic low level lead exposure than NMDA-independent forms of potentiation or paired-pulse facilitation.

Animals↗

A 50 kilodalton protein associated with raf and pp60(v-src) protein kinases is a mammalian homolog of the cell cycle control protein cdc37.

Several oncogenic protein kinases including c-raf-1 and pp60(v-src) are known to directly interact with the 90 kDa heat shock protein (hsp90)/p50 complexes. Using a monoclonal antibody to detect p50 during a purification scheme, p50 was purified to homogeneity. Internal amino acid sequence information was obtained and used to clone a partial cDNA. Comparison of the p50 sequence to other cloned proteins revealed 89% homology with a glycosaminoglycan-binding protein and 54% homology with Drosophila cell cycle control protein (cdc) 37. Monoclonal and polyclonal antibodies were produced against a cleaved fusion protein that recognizes p50 with a high level of specificity. These antibodies recognize the 50 kDa protein present in c-raf-1 and pp60(v-src) complexes. No other proteins were recognized with these antibodies suggesting that p50 is a unique protein. Immunocytochemical visualization of p50 in NIH 3T3 cells indicates a primarily cytoplasmic localization around the nuclear membrane. A survey of p50 expression in murine tissues on a protein blot revealed the following relative levels of expression; thymus > spleen > brain > heart > kidney > liver > lung > skeletal muscle. These results link studies demonstrating complexation of certain kinases with hsp90/p50 in mammalian cells and a number of reports in yeast and Drosophila, demonstrating the importance of cdc37 in cell cycle and kinase function.

3T3 Cells↗

Postnatal development of synaptic plasticity in the CA3 hippocampal region of control and lead-exposed Wistar rats.

The object of this study was to compare the postnatal development of mossy fiber potentiation (MFP) and paired-pulse facilitation in the CA3 region of control and led-exposed rats. The postnatal development of MFP was not influenced by the chronic pre- and postnatal lead exposure nor did we find a statistically significant impairment of MFP in region CA3 following lead exposure in the four age groups studied. In contrast to the adult animals, in the three immature groups of the control as well as the lead-exposed animals MFP was preceded by a posttetanic depression after which MFP developed slowly. The results of the paired-pulse procedure depended both on the age and on the interstimulus interval (ISI) in control and lead-exposed animals. The differences between control and lead-exposed rats were statistically significant only in the adult animals at an ISI of 10 ms. In this case paired-pulse stimulation resulted in an increase of the second evoked response relative to the first response in the lead-exposed animals while the same procedure decreased the second evoked response in the control animals. It is concluded that although low lead exposure had no effect on the expression of MFP in hippocampal CA3 region, inhibitory mechanisms as revealed by paired-pulse stimulation are impaired by lead in adult rats.

Age Factors↗

Assessment of neurophysiologic and neurobehavioral effects of environmental pollutants in 5- and 6-year-old children.

To investigate the effects of environmental pollutants on neuronal functions in residents of different areas in Germany, a mobile laboratory was developed. The equipment permits the assessment of neurophysiologic as well as neurobehavioral parameters in epidemiologic studies. In two sets of field experiments in 1991 and 1994, more than 700 children, 5 and 6 years old, were tested in three different towns in East and West Germany. Visual functions were measured neurophysiologically by visually evoked potentials, using pattern reversal stimulation. By means of psychophysical methods, the contrast sensitivity was tested and the visual acuity assessed. Finger tapping, simple reaction time, vigilance, pattern comparison, pattern memory, and memory of geometric figures were measured using the Neurobehavioral Evaluation System (NES1 and NES2). In a preliminary analysis, the outcomes of the tests were related to the children's blood lead levels. The experiences with the field studies showed that all tests could be successfully performed even in pre-school-age children. The mobile laboratory has proven to be a useful tool for the detection of neurotoxic effects of environmental pollutants in larger populations, providing the opportunity for flexible operation at different locations.

Child↗

Congener specific effects by polychlorinated biphenyls on catecholamine content and release in chromaffin cells.

The effects of the non-planar polychlorinated biphenyl (PCB) congener 2,2',4,4'-tetrachlorobiphenyl (2,4-TCB) and of the coplanar PCB congener 3,3',4,4'-tetrachlorobiphenyl (3,4-TCB) were investigated on the catecholamine content and release from bovine adrenal chromaffin cells in culture. Each congener was tested at three concentrations (20, 50 and 100 microM) and two exposure periods (24 h and 5 days). Catecholamine release induced by K(+)-stimulation as well as catecholamine content of Triton X-100 treated cell cultures were examined using high-performance liquid chromatography (HPLC). 2,4-TCB showed dose- and time-dependent effects. 2,4-TCB at 100 microM reduced the K(+)-stimulated catecholamine release after 24 h of exposure. After 5 days of exposure, 2,4 TCB at 50 and 100 microM drastically reduced the K(+)-stimulated catecholamine release. 3,4-TCB even at a concentration of 100 microM over exposure of either 24 h or 5 days had no effects on the K(+)-stimulated secretion. When chromaffin cells, exposed to 2,4-TCB, were lysed with 0.5% Triton X-100, a dose- and time-dependent reduction of the catecholamine content appeared. The 3,4-TCB did not reduce the catecholamine content. Conversely there seemed to be a trend towards an increase in catecholamine content. Spontaneous release of catecholamines was strongly increased by the non-planar 2,4 TCB, while the coplanar 3,4 TCB showed no effects on this parameter. Furthermore, the effects of 2,4 TCB appeared to be reversible after replacing the highest concentration (100 microM) of the TCB-solution with culture-medium at the end of the 24-h exposure. Thus, K(+)-stimulated catecholamine release and the catecholamine content of bovine adrenal chromaffin cells was effectively reduced by the non-planar PCB congener whereas spontaneous catecholamine release was strongly increased. The coplanar PCB congener was ineffective at the same conditions.

Animals↗

Glial fibrillary acidic protein and RNA expression in adult rat hippocampus following low-level lead exposure during development.

The astroglial cytoskeletal element, glial fibrillary acidic protein (GFAP), is a generally accepted sensitive indicator for neurotoxic effects in the mature brain. We used GFAP as a marker for structural changes in rat hippocampus related to chronic low level lead exposure during different developmental periods. Four groups of rats were investigated: a control group, a perinatal group, which was exposed during brain development (E0-P16), a permanent group, exposed during and after brain development (E0-P100), and a postweaning group, exposed after brain development (P16-P100). Sections were processed for light microscopy (hematoxylin-eosin, Nissl, periodic acid Schiff (PAS) and GFAP-specific immunohistology), for electron microscopy, and for in-situ hybridization (GFAP). Sections were prepared from animals tested for active avoidance learning (AAL) and long-term potentiation (LTP). Chronic lead exposure did not affect glial and neuronal functions, as assessed by LTP and AAL, when lead exposure started after brain development (postweaning group). In this group, astrocytes displayed increased GFAP and GFAP gene transcript levels. However, lead exposure affected neuronal and glial function when the intoxication fell into the developmental period of the brain (perinatal and permanent groups). In these groups, LTP and AAL were impaired, and astrocytes failed to react to the toxic exposure with an adequate increase of GFAP and GFAP gene transcripts. Although GFAP is an accepted marker for neurotoxicity, our data suggest the marker function of GFAP to be restricted to postnatal toxic insult.

Animals↗

Reduced probability of orthodromically evoked action potential firing in CA1 pyramidal cells of guinea pig hippocampal slices after acute thallium exposure.

We investigated the effect of thallium ions on extracellular field potentials in the CA1 region of guinea pig hippocampal slices in a matched-pair experimental setup. Somatic and dendritic responses evoked by paired-pulse stimulation of the Schaffer collateral-commissural pathway were recorded before, during and after acute thallium exposure and compared to field potentials from nontreated control slices recorded simultaneously. Thallium reduced the orthodromically evoked population spike reversibly in a clear concentration-effect relationship. In contrast, the field excitatory postsynaptic potential fEPSP, as well as the presynaptic fiber volley of the afferent pathway, were not affected by thallium. Furthermore, the paired-pulse facilitation was reversibly reduced during thallium exposure. Input-output relations clearly demonstrated that thallium did not interfere with the presynaptic transmitter release mechanisms or the postsynaptic transmitter receptor sensitivity, but had a predominant postsynaptic target site. Additionally, any influence of thallium ions on the somatic and/or axonal membrane excitability could be excluded, as the antidromically evoked responses after alvear stimulation were not diminished by thallium. Therefore, the main effect of thallium was a decoupling of the somatic from the dendritic activity at the CA1 pyramidal cells. We conclude that the toxic influence of thallium ions in the guinea pig hippocampus must be confined to intracellular somatic mechanisms. Interactions with intracellular organelles and an impairment of their calcium storage capacity are supposed.

Action Potentials↗

Effects of tetrandrine on spontaneous and evoked release of acetylcholine at the mouse neuromuscular junction.

The action of tetrandrine on spontaneous and phasic acetyl-choline (ACh) release was investigated at the mouse neuromuscular junction recording miniature endplate potentials (MEPPs) and endplate potentials. Superfusion of muscles with tetrandrine (10 microM) in normal Krebs-Ringer solution induced an increase of the mean regular MEPP amplitude and the overall MEPP frequency. In addition a larger than normal proportion of high-amplitude MEPPs appeared, described as "giants." This enhancement by tetrandrine of spontaneous ACh release also occurred in the presence of tetrodotoxin (1 microM). In elevated magnesium Krebs-Ringer solution the mean amplitude as well as the quantal content of endplate potentials was reduced simultaneously with the enhancement of spontaneous ACh release. Superfusion of muscles with emetine (20 microM), an alkaloid chemically of the same kind as tetrandrine, induced an enhancement of spontaneous ACh release as recorded by MEPPs qualitatively similar to that of tetrandrine. These results suggest that the isoquinolines tetrandrine and emetine similarly increased the spontaneous ACh release. This action of tetrandrine appeared to be presynaptic and was accompanied by a decrease of phasic ACh release.

Acetylcholine↗

Maternal exposure to polychlorinated biphenyls inhibits long-term potentiation in the visual cortex of adult rats.

Rats were exposed prenatally to the coplanar congener 3,3',4,4'-tetrachlorobiphenyl (TCB). The amount of long-term potentiation (LTP) was measured in slices from the visual cortex and hippocampus of the adult males as well as of controls. While in the cortical slices from the controls a stable LTP could be induced, LTP was inhibited in the TCB-exposed rats. In hippocampal slices, the amount of LTP was not significantly different between the two groups. Our results suggest that the visual cortex of adult animals is functionally altered by TCB if the exposure takes place during embryonic development.

Animals↗

Effects of inorganic mercury (Hg2+) on calcium channel currents and catecholamine release from bovine chromaffin cells.

The effects of inorganic mercury (Hg2+) on calcium channel currents and the potassium-evoked catecholamine release of bovine chromaffin cells in culture were examined. The effects of cadmium (Cd2+), known to block calcium channels and reduce catecholamine release of chromaffin cells, were studied for comparison. Calcium channel currents were recorded in the whole-cell configuration of the patch-clamp technique. Hg2+ is a potent calcium channel blocker in bovine chromaffin cells. The IC50 value is about 3 microM, the Hill slope 1.46. In a concentration of 100 microM, Hg2+ blocked the currents completely; 100 microM Cd2+ had the same effect. Potassium-evoked catecholamine release from chromaffin cells was measured at different time-points with high-performance-liquid-chromatography (HPLC) under control conditions and in the presence of different Hg2+ concentrations. Low Hg2+ concentrations (0.1 and 1 microM) did not affect the amount of the catecholamines epinephrine (E) and norepinephrine (NE) which was released. Under identical conditions 1 microM Cd2+ also had no effect on release. With 10 microM Hg2+ there was a time-dependent increase in the potassium-evoked catecholamine release (by 27% after 8 min). The E/NE ratio was not altered, suggesting that the release of both hormones was increased similarly. In contrast to this, the release was slightly reduced with 10 microM Cd2+. In the presence of 100 microM Hg2+, there was a reduction of the release during an early phase, followed by an increase. The reduction is most probably due to the fast and effective calcium channel block by Hg2+ in this high concentration.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Omega AGA toxin IVA blocks high-voltage-activated calcium channel currents in cultured pars intercerebralis neurosecretory cells of adult locusta migratoria.

Using the whole cell patch-clamp technique, calcium (Ca) channel currents from cultured medial neurosecretory cells (MNSCs) of Locusta migratoria (Rössler and Bickmeyer, 1993) were investigated. The calcium channel blocker omega AGA toxin IVA (AGA IVA) blocks a fraction of these calcium channel currents in approximately 30% of MNSCs, without a shift in the I-V relationship. The block can be at least partially reversed by strong depolarizing voltage pulses as described for vertebrate neurones from Mintz et al. (1992). The existence of probably more than three calcium channel types in insects is discussed.

Animals↗

Effects of maternal lead exposure on functional plasticity in the visual cortex and hippocampus of immature rats.

We examined the amount of long-term potentiation (LTP) in slices from the visual cortex and hippocampus of pre- and postnatally lead-exposed rats and controls at postnatal days (PND) 12-20. A dietary lead intake of 750 ppm by the dams resulted in a mean blood lead concentration in the suckling offspring of about 17' micrograms/dl. While high-frequency stimulation (HFS) of the white matter induced LTP of the field potentials in layers II/III in cortical slices of ten out of the 14 control rats, only three of the twelve lead-exposed rats showed a small amount of LTP. However, in slices from seven of the twelve lead-exposed rats a long-term depression was found following HFS. Furthermore, paired-pulse inhibition was weaker in cortical slices from the lead-exposed as compared to the control rats. In the CA1 hippocampal region the amount of LTP was significantly reduced in the lead-exposed group only in slices taken from rats at PND 16-20, while no differences were seen in slices from younger animals. It is concluded that even low level lead exposure impairs functions of the visual cortex in the immature rat. We suggest that the developing hippocampus is able to compensate for lead-induced functional deficits in the 2nd postnatal week, being more vulnerable at older ages.

Animals↗