Van der Veken Matthias, Brouwers Joachim, Parrott Neil, Augustijns Patrick, Stillhart Cordula
Drug Delivery and Disposition, KU Leuven, Gasthuisberg O&N II, Herestraat 49-Box 921, 3000 Leuven, Belgium.
Pharmaceutical Sciences, Roche Pharma Research and Early Development, Roche Innovation Centre Basel, 4070 Basel, Switzerland.
Int J Pharm X. 2024 Oct 9;8:100290. doi: 10.1016/j.ijpx.2024.100290. eCollection 2024 Dec.
Considering the predominantly milk-based diet of neonates and infants and their immature gastrointestinal digestion, milk proteins may affect drug behaviour and absorption in this population. Using in vitro models, this study investigated the impact of the representative milk proteins, whey and casein, on the solubility and permeation of the lipophilic model drugs spironolactone, clopidogrel and ritonavir. Drug solubility experiments revealed that the presence of milk proteins increased drug solubility. Next, permeation studies demonstrated that the same milk proteins reduced drug permeation across an artificial membrane. These results highlight the importance of the solubility-permeability interplay and indicate the effect of these proteins may be considered during (paediatric) drug development. Lastly, the findings underscore the importance of considering milk protein-drug interactions to optimize drug delivery strategies during (paediatric) drug development and especially for the youngest and most vulnerable part of this population.
考虑到新生儿和婴儿以乳类为主的饮食及其未成熟的胃肠消化功能,乳蛋白可能会影响该人群中药物的行为和吸收。本研究利用体外模型,研究了具有代表性的乳蛋白(乳清蛋白和酪蛋白)对亲脂性模型药物螺内酯、氯吡格雷和利托那韦的溶解度和渗透性的影响。药物溶解度实验表明,乳蛋白的存在增加了药物溶解度。接下来,渗透性研究表明,同样的乳蛋白降低了药物跨人工膜的渗透性。这些结果突出了溶解度-渗透性相互作用的重要性,并表明在(儿科)药物研发过程中可能需要考虑这些蛋白的作用。最后,这些发现强调了在(儿科)药物研发过程中,尤其是针对该人群中最年幼、最脆弱的部分,考虑乳蛋白-药物相互作用以优化给药策略的重要性。