ABSTRACT Pharmaceutical excipients have traditionally been regarded as pharmacologically inert carriers, serving merely as vehicles for active pharmaceutical ingredients. However, this conventional paradigm is increasingly challenged by emerging evidence revealing clinically significant drug–excipient interactions that can profoundly influence therapeutic outcomes. This study investigates a previously unrecognized pharmacokinetic interaction between nimodipine, a dihydropyridine calcium channel blocker, and polysorbate 80, a commonly used solubilizing excipient in nimodipine formulations. A novel HPLC–MS/MS method for simultaneous quantification of nimodipine and polysorbate 80 was developed and validated, achieving excellent analytical performance with linearity ( r > 0.995), precision (RSD < 15%), and accuracy (RE < 15%). Pharmacokinetic studies in rats revealed that polysorbate 80 co‐administration dramatically enhanced nimodipine systemic exposure, increasing AUC by 51.1%, decreasing clearance by 36.5%, and prolonging half‐life by 16.1%. Mechanistic investigations using rat liver microsomes demonstrated that polysorbate 80 competitively inhibited nimodipine metabolism with an IC 50 of 103.30 μmol/L and K i of 94.35 μmol/L, while remaining minimally metabolized itself. These findings provide the first evidence of a clinically significant pharmacokinetic interaction between nimodipine and polysorbate 80, challenging the assumption of excipient inertness and highlighting the critical importance of evaluating excipient–drug interactions in pharmaceutical development and clinical practice.
Qu et al. (Mon,) studied this question.