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Method for measuring cervical vagal nerve activity in conscious rats
Kenju Miki1, Wakana Miyaura1, Shizuka Ikegame1
1Autonomic Physiology Laboratory, Faculty of Life Science and Human Technology, Nara Women's University, Nara, Japan.
American Journal of Physiology. Endocrinology and Metabolism
|January 9, 2025
Summary
Researchers developed a new method to measure cervical vagal nerve activity (cVNA) and renal sympathetic nerve activity (RSNA) in rats. This technique reveals how CCK-8 affects the nervous system via afferent cVNA.
Area of Science:
- Neuroscience
- Physiology
- Autonomic Nervous System Research
Background:
- Understanding the interplay between the vagal and sympathetic nervous systems is crucial for homeostasis.
- Direct measurement of cervical vagal nerve activity (cVNA) alongside renal sympathetic nerve activity (RSNA) in conscious subjects is challenging.
- Existing methods may not fully capture the dynamic interactions between these two key autonomic pathways.
Purpose of the Study:
- To propose and validate a novel method for simultaneously measuring cVNA and RSNA in conscious rats.
- To selectively block afferent cVNA to isolate efferent cVNA.
- To investigate the influence of peripherally administered cholecystokinin-8 (CCK-8) on autonomic nerve activity.
Main Methods:
- Surgical exposure of the right cervical vagus nerve in conscious rats.
- Placement of a bipolar electrode for cVNA recording.
- Selective blockade of afferent cVNA using levobupivacaine microcatheter administration.
- Measurement of RSNA and cardiovascular parameters (arterial pressure, heart rate).
- Administration of CCK-8 via intravenous and intraperitoneal routes.
Main Results:
- A method was established to directly measure cVNA and RSNA in conscious rats.
- Levobupivacaine administration successfully reduced cVNA by 84%, enabling selective efferent cVNA assessment.
- Intraperitoneal CCK-8 significantly impacted afferent cVNA without altering RSNA, arterial pressure, or heart rate.
- Intravenous CCK-8 also influenced autonomic nerve activity, with specific effects detailed in the study.
Conclusions:
- The developed technique allows for direct quantification of dynamic changes in vagal and sympathetic nerve activity interactions.
- Peripherally administered CCK-8 modulates central nervous system activity primarily through afferent cVNA.
- This method provides a valuable tool for studying autonomic dysfunction in conditions like obesity and diabetes.

