Population Pharmacokinetic–Pharmacodynamic Analysis of a Reserpine-Induced Myalgia Model in Rats

Author:

Alfosea-Cuadrado Gloria M.1,Zarzoso-Foj Javier23ORCID,Adell Albert45ORCID,Valverde-Navarro Alfonso A.1,González-Soler Eva M.1ORCID,Mangas-Sanjuán Víctor23ORCID,Blasco-Serra Arantxa1ORCID

Affiliation:

1. Department of Human Anatomy and Embryology, University of Valencia, 46010 Valencia, Spain

2. Department of Pharmacy and Pharmaceutical Technology and Parasitology, University of Valencia, 46100 Valencia, Spain

3. Interuniversity Research Institute for Molecular Recognition and Technological Development, Polytechnic University of Valencia, University of Valencia, 46100 Valencia, Spain

4. Systems Neurobiology, Institute of Biomedicine and Biotechnology of Cantabria (IBBTEC), Spanish National Research Council (CSIC), 39011 Santander, Spain

5. Biomedical Research Networking Centre for Mental Health (CIBERSAM), 39011 Santander, Spain

Abstract

(1) Background: Fibromyalgia syndrome (FMS) is a chronic pain condition with widespread pain and multiple comorbidities, for which conventional therapies offer limited benefits. The reserpine-induced myalgia (RIM) model is an efficient animal model of FMS in rodents. This study aimed to develop a pharmacokinetic–pharmacodynamic (PK–PD) model of reserpine in rats, linking to its impact on monoamines (MAs). (2) Methods: Reserpine was administered daily for three consecutive days at dose levels of 0.1, 0.5, and 1 mg/kg. A total of 120 rats were included, and 120 PK and 828 PD observations were collected from 48 to 96 h after the first dose of reserpine. Non-linear mixed-effect data analysis was applied for structural PK–PD model definition, variability characterization, and covariate analysis. (3) Results: A one-compartment model best described reserpine in rats (V = 1.3 mL/kg and CL = 4.5 × 10−1 mL/h/kg). A precursor-pool PK–PD model (kin = 6.1 × 10−3 mg/h, kp = 8.6 × 10−4 h−1 and kout = 2.7 × 10−2 h−1) with a parallel transit chain (k0 = 1.9 × 10−1 h−1) characterized the longitudinal levels of MA in the prefrontal cortex, spinal cord, and amygdala in rats. Reserpine stimulates the degradation of MA from the pool compartment (Slope1 = 1.1 × 10−1 h) and the elimination of MA (Slope2 = 1.25 h) through the transit chain. Regarding the reference dose (1 mg/kg) of the RIM model, the administration of 4 mg/kg would lead to a mean reduction of 65% (Cmax), 80% (Cmin), and 70% (AUC) of MA across the brain regions tested. (4) Conclusions: Regional brain variations in neurotransmitter depletion were identified, particularly in the amygdala, offering insights for therapeutic strategies and biomarker identification in FMS research.

Funder

Conselleria d’Innovació, Universitats, Ciència i Societat Digital of the Generalitat Valenciana

Publisher

MDPI AG

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