PubMed Health⌕ Search

Biomedical subjects

T Müller

Publications and source records attributed to T Müller.

At least 379 records · Page 21Linked to original sources

Three-dimensional electric field traps for manipulation of cells--calculation and experimental verification.

The forces acting on dielectric particles and living cells exposed to alternating and rotating fields generated by three-dimensional multi-electrode arrangements are investigated. Numerical procedures are described for the calculation of the electric field distribution and forces. The physical treatment considers electrodes of any shape and dielectric particles of complex structure. Particle and cell trapping are based on negative dielectrophoretic forces produced by high-frequency a.c. or rotating electric fields up to 400 MHz. Various multi-electrode systems were realised in commercially fabricated microelectrode systems, and tested for their ability to move and assemble microparticles or living cells without contact with the electrodes. The field distribution and accuracy of phase-controlled power application was tested using individual artificial particles trapped in the electric field cage. Position and trajectories of particle motion were measured. The paper gives an overview of electrode and field cage design in the microscale range.

Animals↗

A traveling-wave micropump for aqueous solutions: comparison of 1 g and microgram results.

The operation of a micro-chip-based fluid circulator based on the interaction of a high-frequency traveling wave with a thermally generated inhomogeneity in an aqueous medium is investigated. The profiles of the electric field, the thermal gradient and the driving force within the device are derived numerically, and the dependence upon applied voltage under different experimental conditions is derived. The importance of convection in the operation of the device is assessed by operating it in various orientations, as well as under microgravity, and also by investigating the reversal and turn-on characteristics. The pump showed the unexpected ability to trap microparticles present in the driven fluid.

Electricity↗

Therapy with central active catechol-O-methyltransferase (COMT)-inhibitors: is addition of monoamine oxidase (MAO)-inhibitors necessary to slow progress of neurodegenerative disorders?

Neurotrophic factors, like e.g. nerve growth factor (NGF), neurotrophin 3 (NT-3) or brain-derived neurotrophic factor (BDNF) promote the survival and function of neurones in the peripheral and central nervous system. Dopamine or other biogenic amines induce the biosynthesis of neurotrophic factors in glial and neuronal cells. Therefore inhibition of enzymes, like the extraneuronal and neuronal located MAO or the predominantly glial situated COMT, which both metabolize catecholamines, may induce an increased biosynthesis of neurotrophic factors. Due to clinical studies especially MAO-B-inhibitors appear to slow the progression of neurological deficits in Parkinson's disease and the cognitive decline in Alzheimer's disease. On the one hand inhibition of COMT alone may also slow the metabolisation of biogenic amines in glial cells and may consequently induce synthesis of neurotrophic factors in glial cells. But on the other hand in vivo and in vitro studies show, that COMT-inhibitors may intensify the metabolisation of catecholamines in neurones by MAO, what may cause an enhanced generation of free radicals. This increase of free radicals may induce lipid peroxidation of membranes and therefore cause accelerated neuronal and glial cell death. For that reason we conclude, that centrally active COMT-inhibitors may only be used together with MAO-inhibitors in the neuroprotective treatment of neurodegenerative disorders. Medical treatment with both inhibitors will have to be performed very carefully due to cytotoxic effects of high catecholamine levels on neuronal and glial cells and due to possible prolongation or potentiation of the activity of several noradrenergic drugs in the periphery.

Animals↗

Patch-clamp recording from Müller (glial) cell endfeet in the intact isolated retina and acutely isolated Müller cells of mouse and guinea-pig.

Müller cells span through the entire retina and terminate with the formation of endfeet at the vitreous body. These endfeet are thought to be specialized for maintaining the K+ homeostasis in the retina based on the assumption that voltage signals can passively spread from the cell body to the endfeet. We employed the patch-clamp technique to study the physiological properties of these endfeet in a retinal wholemount preparation from guinea-pig or mouse. After assessing one endfoot with the patch pipette and establishing the whole cell recording configuration, a membrane area which approximately matched the size of one endfoot and proximal process could be voltage-clamped. This morphological correlation could be established by filling the cytoplasm with the fluorescent dye Lucifer Yellow via the patch-pipette. The morphological, immunocytochemical and ultrastructural inspection of the recorded cells revealed that mouse Müller cell endfeet were connected by only a thin stalk to the proximal process. In contrast, guinea-pig endfeet were connected by thick stalks. The endfoot current in the mouse was dominated by a voltage and time-independent K+ conductance. In contrast, in some of the recordings from guinea-pig, delayed and inwardly rectifying K+ currents were observed. These voltage-gated currents were more frequently observed or were facilitated when the membrane area under voltage clamp was increased, blocking the passive K+ currents by Ba2+ in both, mouse and guinea-pig. We thus assume that the voltage-gated currents were not in the endfeet membrane, but rather in the proximal process and could thus be better activated in the guinea-pig with its thicker stalk or after increasing the membrane area under voltage clamp control. Similar results were obtained in freshly isolated Müller cells; in contrast to the cells from the wholemount the voltage-gated currents were more frequently observed. These studies demonstrate that the Müller cell endfoot of the mouse with its vascularized retina is an electrically isolated unit and that voltage signals do not spread to the proximal process. Such a property would, however, be required for the redistribution of K+ via spatial buffer currents. In contrast, guinea-pig Müller glial cells with their stout morphological connection between endfoot and proximal process are better suited to fulfil this task.

Animals↗

[Intracranial lymphoma. Radiologic findings in 40 patients].

We analysed the radiologically findings of 40 patients with histologically confirmed cerebral lymphoma but without AIDS in a retrospective study; 31 of these had primary cerebral lymphoma without any other manifestation of the disease. All patients had CT, 24 had angiography and in five patients MRT had been performed in addition. CT showed a solitary lesion in 60%, of these 62% had scalloped margins and 38% were nodular, 34% were isodense and 57% were hyperdense. Following contrast injection, there was increased density in 97% of the lesions. The most frequent localisation was in the region of the basal ganglia and the corpus callosum (33%), in the frontal lobes (30%) and in the temporal lobes (20%). Angiographically, 63% showed evidence of a space-occupying lesion, there were vascular irregularities in 33% and tumour contrast in 21%; in 25% of the patients angiography was normal. Early venous filling was not found in any case. T1 weighted sequences during MRT of 5 patients showed the tumour to be isointense or slightly hypointense. T2 weighted images showed the tumour to be hyperintense or with mixed signal intensities.

Adolescent↗

NMDA-activated currents in Bergmann glial cells.

NMDA receptors play a crucial role in synaptic plasticity of the central nervous system and were thought to be exclusive to neurones. In this study we provide evidence that Bergmann glial cells from mouse cerebellar slices show intrinsic responses to NMDA. As in neurones, NMDA increased membrane conductance and the responses were blocked by the NMDA antagonist ketamine, but not by the non-NMDA glutamate receptor antagonist CNQX. In contrast to responses in neurones, the current voltage relation of the glial NMDA-induced current was linear, reversed at -40 mV, currents were not blocked by Mg2+ or enhanced by glycine and NMDA did not induce an increase in cytosolic Ca2+ as recorded with a fura-2 imaging system. These data imply the presence of distinct NMDA receptors on Bergmann glial cells; these glial receptors could be the substitute for complex neurone-glia interactions in the cerebellum.

6-Cyano-7-nitroquinoxaline-2,3-dione↗

Granulocyte-monocyte colony-stimulating factor levels during hemodialysis-induced leukopenia.

Hemodialysis (HD), especially with cellulosic membranes, leads regularly to a transient but marked drop of peripheral neutrophils. Such neutropenia during the initial 10-30 min of HD is followed by a reincrease in granulocyte count up to a mild leukocytosis. Although this phenomenon accounts for the best documented side effect of HD, little is known about the underlying regulatory mechanisms. Therefore in this study the blood levels of granulocyte-macrophage colony-stimulating factor (GM-CSF) were measured during HD. Previous investigations have demonstrated that GM-CSF plays the central role in controlling the homeoiostasis of leukocytes by up- and downregulation of proliferation and efflux of cells out of the maturation compartment within the bone marrow. Three patients with chronic renal failure underwent HD with cuprophane membranes. In all cases a significant drop of peripheral granulocytes occurred, but GM-CSF levels remained unchanged and were found in the normal range during the whole period of the treatment. It is therefore concluded that GM-CSF may not be significantly involved in the regulation of peripheral leukocytes during HD.

Cellulose↗

[Experiences with the aerial distribution of baits for the oral immunization of foxes against rabies in eastern Germany].

Since the first test in spring 1990, aerial distribution of baits has been developed as the main bait distribution variant in the new federal states of Germany. Experiences are given in respect of organisation, management and enforcement of oral immunization campaigns and cooperation between veterinary agencies and flight enterprises. Practical aspects are described to ensure bait density, preparation of maps, creation of technical preconditions and realisation of dropping rhythm. Aerial dropping in comparison with hand distribution of baits was shown to be equivalent at least in respect of bait uptake and seroconversion rate.

Administration, Oral↗

[Testing of a new bait for the oral immunization of red foxes (Vulpes vulpes) against rabies].

A field trial is described for testing the acceptance of a new machine made bait (ALTROFOX/91) for oral immunization of red foxes. The investigations were undertaken in direct comparison with a bait with known attractiveness for foxes. After the choice of suitable field trial areas the baits were distributed at a density of 18/km2 by fixed-wing aircraft. Each bait version contained a different derivate of tetracycline as a biomarker. The evaluation of the attractiveness and acceptance by red foxes and non target species was established by visual controls on the third, seventh and 14th day after distribution and biomarker proving in bone specimens of investigated animals.

Administration, Oral↗

Levitation, holding, and rotation of cells within traps made by high-frequency fields.

Biological cells and other particles can be electrically manipulated by means of negative dielectrophoresis within microchambers whose electrode geometry is of the order of the cell size. Very-high-frequency fields (50 MHz and above) and media of increased relative permittivity are especially suitable for the purpose, as shown by experimental data on levitation and rotation. It appears to be possible to move and rotate cells or particles at will using this technology.

Cytological Techniques↗

Calcium entry through kainate receptors and resulting potassium-channel blockade in Bergmann glial cells.

Glutamate receptors, the most abundant excitatory transmitter receptors in the brain, are not restricted to neurons; they have also been detected on glial cells. Bergmann glial cells in mouse cerebellar slices revealed a kainate-type glutamate receptor with a sigmoid current-to-voltage relation, as demonstrated with the patch-clamp technique. Calcium was imaged with fura-2, and a kainate-induced increase in intracellular calcium concentration was observed, which was blocked by the non-N-methyl-D-aspartate (NMDA) glutamate receptor antagonist 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX) and by low concentrations of external calcium, indicating that there was an influx of calcium through the kainate receptor itself. The entry of calcium led to a marked reduction in the resting (passive) potassium conductance of the cell. Purkinje cells, which have glutamatergic synapses, are closely associated with Bergmann glial cells and therefore may provide a functionally important stimulus.

Animals↗

Classification of oxygen transport to tissue with neural networks.

In the current stage of the development of the EMPHO II it was shown that the transport of oxygen to tissue can be classified for all applications in real time by using neural networks. The resolution of the oxygen classification is 1%. The implementation of the neural network is possible on a commercial signal processor TMS 320C30 board which is compatible with an IBM PC. The implementation of the neural network is done fully in software and no special neurocomputer is necessary. The results are very promising so that the neural network design goals will be established in the future. In the future further efforts will be made in order to increase the data base and to train the network in more detail.

Animals↗

5-HT1A receptor-effector system responsivity in panic disorder.

To explore 5-HT1A receptor responsivity in panic disorder (PD), hypothermic, neuroendocrine and behavioral responses to the selective partial 5-HT1A receptor agonist ipsapirone (IPS) were investigated in patients with primary PD and healthy controls. Fourteen patients and matched controls received a single oral dose of 0.3 mg/kg IPS or placebo under double-blind, random-assignment conditions. IPS induced hypothermia and corticotropin (ACTH)/cortisol release but had only minimal effects on behavior. Compared with controls, the patients with PD exhibited significantly attenuated thermoregulatory and neuroendocrine responses to IPS. Although the healthy subjects reported increased drowsiness and the PD patients rated themselves more nervous and less calm following administration of IPS, no consistent changes in ratings of anxiety or panic symptoms were recorded. The impaired hypothermic and ACTH/cortisol responses following 5-HT1A receptor activation reflects subsensitivity of both the pre- and post-synaptic 5-HT1A receptor-effector system, thus supporting the hypothesis that a 5-HT1A receptor-related serotonergic dysfunction may be linked to the pathophysiology of PD. Future studies of 5-HT1A receptor-effector complex function in conjunction with assessment of the responsivity of other subtypes (e.g. 5-HT2, 5-HT3) should promote the evaluation of 5-HT system integrity in anxiety disorders and its involvement in anxiolytic drug effects.

Adrenocorticotropic Hormone↗

Hemophan versus hemophan--a philippic against the suggestion of constant membrane quality.

All statements referring to biocompatibility of dialyzers depend on the suggestion of a constant and reproducible structure of the investigated membrane material. The data presented here strike this concepts in case of hemophane. Two commercially available hemophane dialyzers, the GF MC 120 (Gambro) and the MO 450 (SMAD) membranes, were compared. Significant differences could be seen in the induction of leukopenia and leukocyte sequestration reaction within patients lungs, but also in capacity to influence granulocyte oxidative metabolism and release of granular enzymes. According to these data it seems questionable whether hemophane is a membrane material with constant structure and quality normally expected for products bearing trade names. Excluding other differences (like surface-area or sterilization method) variable amounts of DEAE substituents and/or an inconstant distribution of the DEAE groups within the membranes may be the most possible reason responsible for the differences found. The study underlines the urgent need of an exact physico-chemical characterization of dialyzer membranes and is therefore a challenge for free publication of such basic data by the producers.

Biocompatible Materials↗

p53 mosaicism with an exon 8 germline mutation in the founder of a cancer-prone pedigree.

Changes in the tumor-suppressor gene p53 are frequently acquired during the course of malignant development of human tumors. Recently, constitutional heterozygous mutations in p53 exon 7 have been identified as the primary cause of cancer predisposition in cases of the familial Li-Fraumeni cancer syndrome. These findings underline the need for extensive mutation screening in families with high cancer incidence. This report describes the detection and follow-up by two-dimensional single-strand conformation polymorphism analysis (2DSSCP) of a new germline mutation of p53 exon 8 in a case of suspected Li-Fraumeni syndrome. Although a high cancer incidence had been reported in the family history of the father of siblings suffering from brain tumor and rhabdomyosarcoma, a constitutional heterozygous p53 mutation was identified only in the affected children. Retrospective analysis of archival tissue of a half-sister who died several years ago from a tumor of previously uncertain diagnosis revealed the same mutation. The mutation had therefore occurred in the germ cells of the mother, who thus appears to be a mosaic. The cancer predisposition of the paternal ancestors must have been due to other factors.

Adolescent↗