@article{Golshany2026, 
author = {Hazem Golshany and Zhenhua Liang and Shikang Chen and Wenyi Kang},
title = {Food as a Therapeutic Agent, Antagonist, and Enabler of Pharmacotherapy: A Clinical and Mechanistic Review},
year = {2026},
journal = {Food Science and Human Wellness},
keywords = {Food-drug interactions, food effect, pharmacotherapy, therapeutic nutrition, pharmacokinetics, medication adherence},
url = {https://www.sciopen.com/article/10.26599/FSHW.2026.9251254},
doi = {10.26599/FSHW.2026.9251254},
abstract = {Food intake is usually addressed in pharmacotherapy as a dosing condition or a source of food–drug interactions, yet this view treats food largely as a passive background exposure. To address the separation between therapeutic nutrition and food–drug interaction management, this narrative review proposes a clinically applicable role-based framework that classifies food as a therapeutic agent, an antagonist of pharmacotherapy, or an enabler of treatment according to the dietary exposure, drug and formulation, disease state, timing, and clinical intent. In this framework, food may function as a therapeutic agent, an antagonist of pharmacotherapy, or an enabler of treatment, depending not on the food itself but on the clinical context in which it is consumed. Therapeutic roles include dietary patterns, medically tailored meals, nutrients, and food-derived bioactive compounds that support disease control, symptom relief, nutritional rehabilitation, or treatment responsiveness. Antagonistic roles occur when food reduces efficacy, increases toxicity, or destabilizes response through altered absorption, metabolism, transport, pharmacodynamics, adherence, or food-access constraints. Enabling roles occur when meal timing, composition, or nutritional support increases or stabilizes drug exposure (exposure enablement), reduces gastrointestinal or other treatment-related adverse effects (tolerability enablement), or improves adherence and dosing feasibility (adherence/feasibility enablement). Mechanisms include gastrointestinal physiology, formulation behavior, enzyme and transporter activity, nutrient–drug pharmacodynamics, microbiome effects, and artificial nutrition. Applying this framework requires structured dietary assessment, explicit prescribing instructions, diet-sensitive medication review, and interprofessional care. By classifying food roles conditionally rather than assigning fixed properties to foods, this framework can support more precise prescribing, safer food–drug management, food/formulation design, and patient-centered care.}
}