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Toxins: Mr Hyde or Dr Jekyll?

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toxins; peptide chemistry; native chemical ligation; α-bungarotoxin; click chemistry; automated patch-clamp; fluorescent peptide; TE671 cells; nicotinic acetylcholine receptor; animal toxin; bacterial toxin; marine toxin; medical application; plant toxin; toxin function/activity; toxin receptor/target; toxin structure; Debaryomyces hansenii; Wickerhamomyces anomalus; Saccharomyces cerevisiae; PDR transporters; killer toxin; fetal adrenomedullary chromaffin cell; gambierol; potassium currents; calcium-activated K+ channels; ATP-sensitive K+ channels; catecholamine release; Clostridium tetani; Clostridium botulinum; botulinum neurotoxin; tetanus neurotoxin; toxin gene regulation; two-component system; small RNA; adenylate cyclase toxin; Bordetella pertussis; cyclic nucleotide; cAMP; spectrophotometric enzymatic assay; ASIC; sodium channels; peptide; PcTx1; APETx2; MitTx; mambalgin; pain; nociception; clostridial C3 toxin; C3bot; C3botE174Q; dendritic cells; macrophages; monocytes; stimulated emission depletion (STED); super-resolution microscopy; trained immunity; effector-triggered immunity; effector-triggered trained immunity; staphylococcal superantigen; enterotoxin; toxin pathogenicity; immunomodulation; molecular and cellular targets; n/a

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