Fante Cristina, Spritzler Franziska, Calabrese Lori, Laurent Nicole, Roberts Caroline, Deloudi Sofia
MetaboliCo GmbH, Bern, Switzerland.
Keto-Check, Napa, CA, United States.
Front Nutr. 2025 Sep 1;12:1629921. doi: 10.3389/fnut.2025.1629921. eCollection 2025.
Accurate assessment of dietary adherence and metabolic outcomes remains a critical challenge in most nutrition studies. Ketogenic metabolic therapies (KMTs) provide a unique advantage by inducing nutritional ketosis and enabling the use of ketone bodies as biomarkers of metabolic state. This narrative review investigates the role of ketone testing as an integral component of KMTs. We introduce the key biomarkers and testing modalities currently used and present a comprehensive overview of the use of capillary blood β-hydroxybutyrate (BHB) testing across diverse therapeutic areas. Capillary blood BHB testing plays a multifaceted role in KMTs: it enables objective monitoring of dietary adherence, supports the interpretation of clinical outcomes, and informs personalized treatment adjustments based on individual metabolic responses. Additionally, it may facilitate behavior change through real-time feedback. Broader implementation of ketone testing in both clinical and research settings will require thoughtful protocol design that accounts for individual preferences and tolerability, continued technological innovation to enhance user experience, and further research into the relationship between ketone levels and therapeutic outcomes.
在大多数营养研究中,准确评估饮食依从性和代谢结果仍然是一项严峻挑战。生酮代谢疗法(KMTs)通过诱导营养性酮症并使酮体能够作为代谢状态的生物标志物,提供了独特的优势。本叙述性综述探讨了酮体检测作为KMTs不可或缺组成部分的作用。我们介绍了目前使用的关键生物标志物和检测方式,并全面概述了毛细血管血β-羟基丁酸(BHB)检测在不同治疗领域的应用。毛细血管血BHB检测在KMTs中发挥着多方面作用:它能够客观监测饮食依从性,辅助临床结果的解读,并根据个体代谢反应为个性化治疗调整提供依据。此外,它还可能通过实时反馈促进行为改变。要在临床和研究环境中更广泛地实施酮体检测,需要精心设计方案,考虑个体偏好和耐受性,持续进行技术创新以提升用户体验,并进一步研究酮体水平与治疗结果之间的关系。