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Trehalose Reduces Nerve Injury Induced Nociception in Mice but Negatively Affects Alertness
Vanessa Kraft1, Katja Schmitz1, Annett Wilken-Schmitz1,2
1Institute of Clinical Pharmacology, Faculty of Medicine, Goethe-University Frankfurt, 60590 Frankfurt, Germany.
Abstract:
Trehalose, a sugar from fungi, mimics starvation due to a block of glucose transport and induces Transcription Factor EB- mediated autophagy, likely supported by the upregulation of progranulin. The pro-autophagy effects help to remove pathological proteins and thereby prevent neurodegenerative diseases such as Alzheimer's disease. Enhancing autophagy also contributes to the resolution of neuropathic pain in mice. Therefore, we here assessed the effects of continuous trehalose administration via drinking water using the mouse Spared Nerve Injury model of neuropathic pain. Trehalose had no effect on drinking, feeding, voluntary wheel running, motor coordination, locomotion, and open field, elevated plus maze, and Barnes Maze behavior, showing that it was well tolerated. However, trehalose reduced nerve injury-evoked nociceptive mechanical and thermal hypersensitivity as compared to vehicle. Trehalose had no effect on calcium currents in primary somatosensory neurons, pointing to central mechanisms of the antinociceptive effects. In IntelliCages, trehalose-treated mice showed reduced activity, in particular, a low frequency of nosepokes, which was associated with a reduced proportion of correct trials and flat learning curves in place preference learning tasks. Mice failed to switch corner preferences and stuck to spontaneously preferred corners. The behavior in IntelliCages is suggestive of sedative effects as a "side effect" of a continuous protracted trehalose treatment, leading to impairment of learning flexibility. Hence, trehalose diet supplements might reduce chronic pain but likely at the expense of alertness.
Insights
Trehalose, a fungal sugar, reduces neuropathic pain by enhancing autophagy. However, continuous use may cause sedation and impair learning flexibility in mice.
Area of Science:
- Neuroscience
- Biochemistry
- Pharmacology
Background:
- Trehalose, a fungal sugar, induces autophagy by mimicking starvation and blocking glucose transport.
- Autophagy, mediated by Transcription Factor EB and potentially progranulin, clears pathological proteins and may alleviate neurodegenerative diseases and neuropathic pain.
Purpose of the Study:
- To investigate the effects of continuous trehalose administration on neuropathic pain using the mouse Spared Nerve Injury model.
- To assess the tolerability and potential side effects of long-term trehalose treatment.
Main Methods:
- Continuous trehalose administration via drinking water in mice with Spared Nerve Injury.
- Behavioral tests including motor coordination, locomotion, and maze tasks.
- Assessment of calcium currents in primary somatosensory neurons.
- IntelliCage analysis for activity and learning behavior.
Main Results:
- Trehalose was well tolerated, with no observed effects on general behavior or motor functions.
- Trehalose significantly reduced mechanical and thermal hypersensitivity in the neuropathic pain model.
- No effect on calcium currents in primary somatosensory neurons was detected, suggesting central antinociceptive mechanisms.
- Trehalose-treated mice exhibited reduced activity and impaired learning flexibility in IntelliCages, indicative of sedative effects.
Conclusions:
- Continuous trehalose administration effectively reduces neuropathic pain in mice, likely through central mechanisms.
- While trehalose demonstrates therapeutic potential for chronic pain, its protracted use may lead to sedation and cognitive impairment, impacting alertness and learning.

