Experimental autoimmune myasthenia gravis.

Author:

Lindstrom J

Publisher

BMJ

Subject

Psychiatry and Mental health,Neurology (clinical),Surgery

Reference73 articles.

1. Chemical modification of the active site of the acetylcholine receptor;Karlin, A.;J Gen Physiol,1969

2. Influence of denervation on localization of neurotoxins from clapid venoms in rat diaphragms;Lee, C.Y.; Tseng, L.F.; Chiu, T.H.;Nature,1967

3. An assay for antibodies to human acetylcholine receptor in serum from patients with myasthenia gravis;Lindstrom, J.;J Clin Immunol & Immunopath,1977

4. Studies on the Cholinergic Receptor Proteins of Electrophorus;Changeux, J.P.; Meunier, J.C.; Huchet, M.;Mol Pharmacol; pathological mechanisms of EAMG,1971

5. The discovery of EAMG validated the hypo-Steinbach JH. Appearance of Acetylcholine Rethesis' that the weakness characteristic of MG could arise from an autoimmune response to AChR. Further, studies of EAMG provided methods for assay of human AChR,84 anti-AChR antibody from MG patients,6 7 and for development of other techniques which could be applied to human material for the study of MG. It is now ceptors During Differentiation of a;Patrick, J.; Heinemann, S.; Lindstrom, J.; Schubert, D.,1972

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1. Autoimmunity to acetylcholine receptor channels;Neurology and Clinical Neuroscience;2022-08-04

2. Myasthenia Gravis;Bioscience Biotechnology Research Communications;2021-06-15

3. Miastenia grave autoimune;Revista Neurociências;2019-01-23

4. Antibodies to striated muscle and acetylcholine receptors in evaluation of surgical treatment outcomes in patients with autoimmune myasthenia gravis;Grekov's Bulletin of Surgery;2017-06-28

5. Animal models of myasthenia gravis: utility and limitations;International Journal of General Medicine;2016-03

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