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Journal of the American Veterinary Medical Association|January 1, 1983
Myasthenia gravis in two catsR J Indrieri, S R Creighton, E H Lambert, et al.
Clinical Chemistry|February 1, 1985
Stability of bombesin in serum, plasma, urine, and culture mediaK Tateishi, G G Klee, J M Cunningham, et al.
Annals of the New York Academy of Sciences|January 1, 1981
Genetic control of autoimmunity to acetylcholine receptors: role of Ia moleculesP Christadoss, V A Lennon, C J Krco, et al.
Journal of Neuropathology and Experimental Neurology|September 1, 1976
Experimental autoimmune myasthenia gravis: a sequential and quantitative study of the neuromuscular junction ultrastructure and electrophysiologic correlationsA G Engel, M Tsujihata, E H Lambert, et al.
Journal of Neuropathology and Experimental Neurology|March 1, 1978
Ultrastructural localization of immune complexes (IgG and C3) at the end-plate in experimental autoimmune myasthenia gravisK Sahashi, A G Engel, J M Linstrom, et al.
Journal of Immunology (Baltimore, Md. : 1950)|April 1, 1991
Recombinant human acetylcholine receptor alpha-subunit induces chronic experimental autoimmune myasthenia gravisV A Lennon, E H Lambert, K R Leiby, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 1, 1985
Region of peptide 125-147 of acetylcholine receptor alpha subunit is exposed at neuromuscular junction and induces experimental autoimmune myasthenia gravis, T-cell immunity, and modulating autoantibodiesV A Lennon, D J McCormick, E H Lambert, et al.
Journal of Immunology (Baltimore, Md. : 1950)|October 15, 1987
Myasthenogenicity of human acetylcholine receptor synthetic alpha-subunit peptide 125-147 does not require intramolecular disulfide cyclizationD J McCormick, G E Griesmann, Z X Huang, et al.
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