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Herbal medicines and phytoconstituents modulate vagus nerve activity and cholinergic neurotransmission in animal modelsHerbal Medicines May Influence Vagus Nerve Activity in Animal Models

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Key Takeaway
Note that herbal-derived compounds may modulate vagus nerve activity in animal models via cholinergic pathways.

This systematic review synthesizes evidence from 75 preclinical studies to evaluate the impact of herbal medicines, phytoconstituents, and essential oils on vagus nerve activity and related physiological functions. The review included multi-herb prescriptions, single-herb extracts, phytoconstituents, derivatives, and essential oils.

Key findings indicate that these interventions significantly increased acetylcholine (ACh) levels, choline acetyltransferase (ChAT) activity, and alpha7 nicotinic acetylcholine receptor (alpha7 nAChR) expression. Additionally, heart rate variability (HRV) indices increased, while acetylcholinesterase (AChE) activity and pro-inflammatory cytokines decreased (p < 0.05-0.001). These results suggest that herbal-derived compounds may modulate vagus nerve activity through cholinergic neurotransmission and anti-inflammatory pathways.

A primary limitation noted by the authors is that the preclinical studies utilized parenteral administration routes. These routes may not accurately reflect the bioavailability or first-pass metabolism of oral herbal consumption in humans. Consequently, the clinical relevance of herbal-induced vagal modulation in humans remains uncertain. Clinical application of these findings is currently limited by the lack of human clinical trials.

How this fits prior evidence

This systematic review extends the understanding of herbal medicines' mechanisms, similar to the finding that herbal medicines may protect against avian infectious bronchitis through multi-target immune and stress-adaptive modulation. While the current review focuses on vagus nerve modulation and cholinergic neurotransmission in animal models, it shares the common theme of multi-target effects of herbal components. However, like the Curcumae Radix review, these findings are preclinical, and clinical evidence for human application is currently lacking.

Researchers reviewed 75 preclinical studies to see how herbal medicines, essential oils, and plant-based compounds affect the vagus nerve. This nerve plays a key role in the body's ability to manage inflammation and maintain balance in various systems, including the heart and digestive tract. The study looked at several types of treatments, including multi-herb prescriptions and single-herb extracts.

The findings showed that these herbal substances were linked to increased acetylcholine levels and improved heart rate variability in animal models. They also appeared to decrease certain markers of inflammation. These results suggest that herbal compounds might influence the body's internal signaling pathways through the vagus nerve.

It is important to note that these findings come from preclinical studies using animal models. Some of these studies used methods of delivery that do not reflect how humans take herbal products by mouth. Because these results are from early laboratory research, they do not yet confirm how these substances would work in humans or if they are safe for people to use.

What this means for you:
Early animal studies suggest herbal medicines may affect the vagus nerve, but human effects are not yet known.

Common questions

What did the study find about herbal medicines?

The review of 75 studies found that herbal medicines, essential oils, and plant-based compounds were linked to increased acetylcholine levels and increased heart rate variability in animal models. These findings suggest a link between these substances and improved vagus nerve activity.

Can these herbal treatments help with inflammation?

The study showed that certain herbal treatments were linked to a decrease in pro-inflammatory cytokines in animal models. However, because these are preclinical results, the effects on human inflammation are not yet known.

Are these results applicable to humans?

These results are currently limited to animal models. Some studies used delivery methods that may not reflect how humans take herbal products. More research is needed to determine if these effects occur in humans.

Study Details

Study typeMeta analysis
EvidenceLevel 1
PublishedAug 2026
View Original Abstract ↓
BackgroundThe vagus nerve regulates autonomic, inflammatory, metabolic, and neurobehavioral functions. Although invasive vagus nerve stimulation (VNS) is gaining clinical relevance, herbal medicines may represent accessible, non-invasive modulators of vagal activity. However, the extent and nature of in vivo evidence supporting these effects remain unclear. This systematic review evaluates herbal medicines and phytoconstituents that modulate vagus nerve-related outcomes in animal models.MethodsA systematic search was conducted in PubMed, Embase, Cochrane Library, ScienceDirect, China National Knowledge Infrastructure (CNKI), Wanfang, Citation Information by National Institute of Informatics (CiNii), Ichushi Web, Research Information Service System (RISS), and Oriental Medicine Advanced Searching Integrated System (OASIS) databases for in vivo studies evaluating the impact of herbal medicines, extracts or phytoconstituents on vagus nerve activity, vagal tone, or vagus-mediated physiological functions. Inclusion criteria included studies using intact animal models with direct assessments of vagally mediated outcomes. Risk of bias was evaluated using the Systematic Review Centre for Laboratory Animal Experimentation (SYRCLE) tool.ResultsOut of 10,342 studies screened, 75 studies met inclusion criteria. Interventions included multi-herb prescriptions (n = 22), single-herb extracts (n = 15), phytoconstituents (n = 29), phytoconstituent derivatives or formulations (n = 6), and essential oils (n = 3). Across cardiovascular, neurological, inflammatory, metabolic, and gastrointestinal models, interventions frequently increased acetylcholine (ACh) levels, choline acetyltransferase (ChAT) activity, α7 nicotinic acetylcholine receptor (α7 nAChR) expression, and heart rate variability (HRV) indices, while decreasing acetylcholinesterase (AChE) activity and pro-inflammatory cytokines (p < 0.05–0.001). Proposed mechanisms predominantly involved enhancement of cholinergic neurotransmission, suggesting the involvement of the cholinergic anti-inflammatory pathway.ConclusionEvidence from preclinical studies indicates that certain herbal medicines and phytoconstituents can modulate vagus nerve activity, primarily through anti-inflammatory and autonomic regulation pathways. Rigorous mechanistic studies and translational research are needed to determine the clinical relevance of herbal-induced vagal modulation, particularly given that many preclinical studies employed parenteral administration routes that may not reflect the bioavailability and first-pass metabolism associated with oral herbal use in humans.
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