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Biomedical subjects

B Schlotter-Weigel

Publications and source records attributed to B Schlotter-Weigel.

6 recordsLinked to original sources

Characterization of neuronal nicotinic acetylcholine receptors in the membrane of unmyelinated human C-fiber axons by in vitro studies.

Application of acetylcholine to peripheral nerve terminals in the skin is a widely used test in studies of human small-fiber functions. However, a detailed pharmacological profile and the subunit composition of nicotinic acetylcholine receptors in human C-fiber axons are not known. In the present study, we recorded acetylcholine-induced changes of the excitability and of the intracellular Ca2+ concentration in C-fiber axons of isolated human nerve segments. In addition, using immunohistochemistry, an antibody of a subtype of nicotinic acetylcholine receptor was tested. Acetylcholine and agonists reduced the current necessary for the generation of action potentials in C fibers by > 5-Iodo-A-85380 > 1,1-dimethyl-4-phenylpiperazinium iodide > nicotine > cytisine > acetylcholine; choline had no effect. The epibatidine-induced increase in axonal excitability was blocked by mecamylamine and, less efficiently, by methyllycacontine and dihydro-beta-erythroidine. Many C-fiber axons were labeled by an antibody that recognizes the alpha5 subunit of nicotinic acetylcholine receptors. In summary, electrophysiological and immunohistochemical data indicate the functional expression of nicotinic acetylcholine receptors composed of alpha3, alpha5, and beta4 but not of alpha4/beta2 or of alpha7 subunits in the axonal membrane of unmyelinated human C fibers. In addition, the observations suggest that the axonal membrane of C fibers in isolated segments of human sural nerve can be used as a model for presumed cholinergic chemosensitivity of axonal terminals.

Action Potentials↗

[Diagnosis and therapy of vasculitic neuropathy. Consensus statement of the German Centers for Neuromuscular Disease].

Vasculitic neuropathies are immune mediated diseases of the peripheral nervous system, in which inflammation of the blood vessels causes damage to the nerves. We distinguish neuropathies associated with primary and secondary systemic vasculitis, with rheumatic diseases, with malignant disorders, drug-induced vasculitis and the non-systemic vasculitic neuropathies (NSVN). The typical clinical picture consists in an asymmetric or multifocal, painful sensorimotor neuropathy with an acute, subacute or chronic course and acute relapses. Neurophysiology reveals an active, asymmetric, axonal sensorimotor neuropathy. The disorders usually respond to immunosuppressive treatment. A diagnosis of definite vasculitis can be made with evidence of vasculitis in a biopsy specimen. The absence of positive morphological evidence, however, does not exclude the diagnosis. There is no single laboratory test that can prove or exclude vasculitis, in NSVN even an elaborate panel of blood tests can show normal findings. Systemic vasculitis has an incidence of 4/100,000 per year and, untreated, has a poor prognosis, which is greatly improved by the use of immunosuppressive treatment. The prognosis of NSVN is generally better, although many patients need long term immunosuppression. Current treatment recommendations for vasculitic neuropathies are presented.

Humans↗

Successful treatment of muscle sarcoidosis with thalidomide.

A 36-year-old male patient suffered from therapy resistant sarcoidosis with long-standing contractures, myopathy, skin lesions and pulmonary changes. Low-dose therapy with thalidomide (50 mg/day) was well tolerated, and the patient rapidly improved. Thalidomide was effective for muscular, cutaneous, and pulmonary involvement in our patient. This is the first report on the efficacy of thalidomide in muscle sarcoidosis. Therefore, thalidomide may become a second-line agent in patients with severe muscle and skin involvement, but further studies are warranted.

Adult↗