Related Experiment Video
Updated: May 20, 2025

Assessment of the Metabolic Effects of Isocaloric 2:1 Intermittent Fasting in Mice
Published on: November 27, 2019
Bioequivalence Study of Two Oral Methocarbamol Formulations in Healthy Subjects Under Fasting Conditions: A
Ana Ascaso-Del-Rio1,2,3, Paola Camargo-Mamani4, Inmaculada Gilaberte4
1Clinical Pharmacology Department, Hospital Clínico San Carlos, C/Prof Martín Lagos s/n, 28040 Madrid, Spain.
Abstract:
Objective: This study aimed to assess the bioequivalence of two oral methocarbamol formulations, as follows: the test (T) methocarbamol 1500 mg tablets and the reference (R) Robaxin® 500 mg tablets (3 tablets, total dose: 1500 mg) under fasting conditions, and compare their pharmacokinetic performance. Methods: This was a single-center, phase I, randomized, open-label (blinded for analytical determination), two-sequence, two-period, crossover, bioequivalence study. A total of 32 healthy volunteers were randomly assigned to receive the T-R or R-T administration sequence. Each volunteer received a single dose of each methocarbamol formulation (T or R) separated by a washout period of 7 days. To evaluate the pharmacokinetic profile, blood samples were collected at nineteen time points after dosing. Results: The arithmetic mean Cmax was 31.72 µg/mL for R and 32.39 µg/mL for T, and the arithmetic mean AUC0-t was 90.25 h × µg/mL and 89.72 h × µg/mL, respectively. All adverse events reported were mild for both formulations. The 90% confidence intervals for the corresponding logarithmically transformed geometric mean ratios of Cmax and AUC0-t fell within the acceptance interval of 80.00-125.00%, as their values were 91.67-112.47% for ln(Cmax) and 92.34-103.47% for ln(AUC0-t). Conclusion: Therefore, one tablet of methocarbamol 1500 mg was found to be bioequivalent to the Robaxin® 500 mg tablets (3 tablets), with comparable tolerability and safety profiles.
More Related Videos
09:24Application and Methodology of the Non-destructive 19F Time-domain NMR Technique to Measure the Content in Fluorine-containing Drug Products
Published on: August 22, 2017
00:04A Clinical Trial Assessing the Safety, Efficacy, and Delivery of Olive-Oil-Based Three-Chamber Bags for Parenteral Nutrition
Published on: September 20, 2019
Related Concept Videos
Bioequivalence: Overview
One-Compartment Open Model for IV Bolus Administration: General Considerations
The drug's presence in the body is defined by an equation representing the difference between the rates of drug entry and exit. Key parameters—elimination rate constant,...
Compartment Models: Two-Compartment Model
Noncompartmental Analysis: Mean Transit, Absorption and Dissolution Time
One of the key parameters is the mean transit time (MTT), which refers to the total duration required for drug molecules to transit through the body. MTT is determined by calculating the ratio of the area under the moment curve to the area...
Bioavailability: Overview
One-Compartment Open Model for IV Bolus Administration: Estimation of Elimination Rate Constant, Half-Life and Volume of Distribution