Department of Chemical and Pharmaceutical Engineering, Sofia University, Sofia, Bulgaria; Department of Pharmaceutical and Pharmacological Sciences, KU Leuven, Leuven, Belgium.
Medicine Development and Supply, GlaxoSmithKline Research and Development, Ware, United Kingdom.
Int J Pharm. 2023 Mar 25;635:122758. doi: 10.1016/j.ijpharm.2023.122758. Epub 2023 Feb 18.
Food-drug interactions frequently hamper oral drug development due to various physicochemical, physiological and formulation-dependent mechanisms. This has stimulated the development of a range of promising biopharmaceutical assessment tools which, however, lack standardized settings and protocols. Hence, this manuscript aims to provide an overview of the general approach and the methodology used in food effect assessment and prediction. For in vitro dissolution-based predictions, the expected food effect mechanism should be carefully considered when selecting the level of complexity of the model, together with its drawbacks and advantages. Typically, in vitro dissolution profiles are then incorporated into physiologically based pharmacokinetic models, which can estimate the impact of food-drug interactions on bioavailability within 2-fold prediction error, at least. Positive food effects related to drug solubilization in the GI tract are easier to predict than negative food effects. Preclinical animal models also provide a good level of food effect prediction, with beagle dogs remaining the gold standard. When solubility-related food-drug interactions have large clinical impact, advanced formulation approaches can be used to improve fasted state pharmacokinetics, hence decreasing the fasted/fed difference in oral bioavailability. Finally, the knowledge from all studies should be combined to secure regulatory approval of the labelling instructions.
由于各种物理化学、生理和制剂相关的机制,食物-药物相互作用经常会阻碍口服药物的开发。这刺激了一系列有前途的生物制药评估工具的发展,但这些工具缺乏标准化的设置和方案。因此,本文旨在概述食物效应评估和预测中使用的一般方法和方法。对于基于体外溶解的预测,在选择模型的复杂程度时,应仔细考虑预期的食物作用机制,同时考虑其优缺点。通常,体外溶解曲线随后被纳入生理相关的药代动力学模型,该模型可以在至少 2 倍预测误差内估计食物-药物相互作用对生物利用度的影响。与胃肠道中药物增溶相关的正食物效应比负食物效应更容易预测。临床前动物模型也提供了很好的食物效应预测水平,比格犬仍然是金标准。当与溶解度相关的食物-药物相互作用具有较大的临床影响时,可以使用先进的制剂方法来改善空腹状态下的药代动力学,从而降低口服生物利用度的空腹/进食差异。最后,应综合所有研究的知识,以确保获得标签说明的监管批准。