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Article

Presynaptic Terminal Proteins and Nicotinic Receptors Are Depleted from Mouse Parasympathetic Ganglionic Junctions Paralysed with Botulinum Neurotoxin Type A †

by
Ahmed Al-Sabi
1,2,* and
Gary W. Lawrence
1,*
1
School of Biotechnology, Dublin City University, D09 K20V Dublin, Ireland
2
College of Integrative Studies, Abdullah Al Salem University, Khaldiya 72303, Kuwait
*
Authors to whom correspondence should be addressed.
This is an extended version of a paper presented at the ‘Toxins 2026 8th International Conference: Basic Science and Clinical Aspects of Botulinum and Other Neurotoxins’ in Madrid, Spain, from 14 to 16 January.
Toxins 2026, 18(1), 43; https://doi.org/10.3390/toxins18010043
Submission received: 18 December 2025 / Revised: 10 January 2026 / Accepted: 12 January 2026 / Published: 14 January 2026

Abstract

Plasticity is fundamental to the development, strengthening, and maintenance of healthy synaptic connections and recovery from injury in both the central and peripheral nervous systems. Yet, the processes involved are poorly understood. Herein, using a combination of patch-clamp electrophysiology and immuno-fluorescence confocal microscopy in adult mice, it is shown that blockade of synaptic transmission at submandibular ganglion junctions exposed to botulinum neurotoxin type A was accompanied by a rapid and striking decline in the abundance of synaptic vesicle markers—SV2, vesicle-associated membrane protein 2, and vesicular acetylcholine transporter—plus SNAP-25 (cleaved and intact) and postsynaptic α7 nicotinic acetylcholine receptors. Such alterations by the neurotoxin of parasympathetic synapses contrast starkly with the stability of postsynaptic proteins at nearby skeletal neuromuscular junctions. Both neurotransmission and the expression of SV2 and α7 nicotinic acetylcholine receptors remained depressed for 4 weeks, with full recovery of synaptic function delayed for more than 8 weeks. These novel findings may explain the relatively slow recovery of autonomic function after botulism or following therapeutic injections to alleviate hypersecretory disorders.
Keywords: acetylcholine; botulinum neurotoxin; ganglionic neurotransmission; hypersalivation; salivary duct; submandibular ganglion; synaptic plasticity; SNAREs acetylcholine; botulinum neurotoxin; ganglionic neurotransmission; hypersalivation; salivary duct; submandibular ganglion; synaptic plasticity; SNAREs

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MDPI and ACS Style

Al-Sabi, A.; Lawrence, G.W. Presynaptic Terminal Proteins and Nicotinic Receptors Are Depleted from Mouse Parasympathetic Ganglionic Junctions Paralysed with Botulinum Neurotoxin Type A. Toxins 2026, 18, 43. https://doi.org/10.3390/toxins18010043

AMA Style

Al-Sabi A, Lawrence GW. Presynaptic Terminal Proteins and Nicotinic Receptors Are Depleted from Mouse Parasympathetic Ganglionic Junctions Paralysed with Botulinum Neurotoxin Type A. Toxins. 2026; 18(1):43. https://doi.org/10.3390/toxins18010043

Chicago/Turabian Style

Al-Sabi, Ahmed, and Gary W. Lawrence. 2026. "Presynaptic Terminal Proteins and Nicotinic Receptors Are Depleted from Mouse Parasympathetic Ganglionic Junctions Paralysed with Botulinum Neurotoxin Type A" Toxins 18, no. 1: 43. https://doi.org/10.3390/toxins18010043

APA Style

Al-Sabi, A., & Lawrence, G. W. (2026). Presynaptic Terminal Proteins and Nicotinic Receptors Are Depleted from Mouse Parasympathetic Ganglionic Junctions Paralysed with Botulinum Neurotoxin Type A. Toxins, 18(1), 43. https://doi.org/10.3390/toxins18010043

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