Exploring the thermally-controlled fentanyl transdermal therapy to provide constant drug delivery by physics-based digital twins

IF 4.3 3区 医学 Q1 PHARMACOLOGY & PHARMACY European Journal of Pharmaceutical Sciences Pub Date : 2024-07-08 DOI:10.1016/j.ejps.2024.106848
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Abstract

Transdermal drug delivery is suitable for low-molecular-weight drugs with specific lipophilicity, like fentanyl, which is widely used for cancer-induced pain management. However, fentanyl's transdermal therapy displays high intra-individual variability. Factors like skin characteristics at application sites and ambient temperature contribute to this variation. In this study, we developed a physics-based digital twin of the human body to cope with this variability and propose better adapted setups. This twin includes an in-silico skin model for drug penetration, a pharmacokinetic model, and a pharmacodynamic model. Based on the results of our simulations, applying the patch on the flank (side abdominal area) showed a 15.3 % higher maximum fentanyl concentration in the plasma than on the chest. Additionally, the time to reach this maximum concentration when delivered through the flank was 19.8 h, which was 10.3 h earlier than via the upper arm. Finally, this variation led to an 18 % lower minimum pain intensity for delivery via the flank than the chest. Moreover, the impact of seasonal changes on ambient temperature and skin temperature by considering the activity level was investigated. Based on our result, the fentanyl uptake flux by capillaries increased by up to 11.8 % from an inactive state in winter to an active state in summer. We also evaluated the effect of controlling fentanyl delivery by adjusting the temperature of the patch to alleviate the pain to reach a mild pain intensity (rated three on the VAS scale). By implementing this strategy, the average pain intensity decreased by 1.1 points, and the standard deviation for fentanyl concentration in plasma and average pain intensity reduced by 37.5 % and 33.3 %, respectively. Therefore, our digital twin demonstrated the efficacy of controlled drug release through temperature regulation, ensuring the therapy toward the intended target outcome and reducing therapy outcome variability. This holds promise as a potentially useful tool for physicians.

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探索热控芬太尼透皮疗法,通过基于物理的数字双胞胎提供持续给药。
透皮给药适用于具有特定亲脂性的低分子量药物,如芬太尼,它被广泛用于癌症引起的疼痛治疗。然而,芬太尼的透皮疗法显示出较高的个体内变异性。使用部位的皮肤特征和环境温度等因素都会导致这种差异。在这项研究中,我们开发了一个基于物理学的人体数字孪生体,以应对这种变异性,并提出更好的适应性设置。这个孪生体包括一个用于药物渗透的皮肤模型、一个药代动力学模型和一个药效学模型。根据我们的模拟结果,将贴片贴在侧腹部位,血浆中芬太尼的最大浓度比贴在胸部高出 15.3%。此外,从侧腹给药达到最大浓度的时间为 19.8 小时,比从上臂给药提前了 10.3 小时。最后,这种变化导致经腹部给药的最低疼痛强度比胸部低 18%。此外,通过考虑活动水平,研究了季节变化对环境温度和皮肤温度的影响。根据我们的结果,从冬季的非活跃状态到夏季的活跃状态,毛细血管对芬太尼的吸收通量最多增加了 11.8%。我们还评估了通过调节贴片温度来控制芬太尼给药的效果,以减轻疼痛,使疼痛强度达到轻度(在 VAS 量表中评定为 3 级)。通过实施这一策略,平均疼痛强度降低了 1.1 分,血浆中芬太尼浓度的标准偏差和平均疼痛强度分别降低了 37.5% 和 33.3%。因此,我们的数字孪生证明了通过温度调节控制药物释放的有效性,确保了治疗达到预期的目标结果,并降低了治疗结果的变异性。这有望成为医生的一种有用工具。
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来源期刊
CiteScore
9.60
自引率
2.20%
发文量
248
审稿时长
50 days
期刊介绍: The journal publishes research articles, review articles and scientific commentaries on all aspects of the pharmaceutical sciences with emphasis on conceptual novelty and scientific quality. The Editors welcome articles in this multidisciplinary field, with a focus on topics relevant for drug discovery and development. More specifically, the Journal publishes reports on medicinal chemistry, pharmacology, drug absorption and metabolism, pharmacokinetics and pharmacodynamics, pharmaceutical and biomedical analysis, drug delivery (including gene delivery), drug targeting, pharmaceutical technology, pharmaceutical biotechnology and clinical drug evaluation. The journal will typically not give priority to manuscripts focusing primarily on organic synthesis, natural products, adaptation of analytical approaches, or discussions pertaining to drug policy making. Scientific commentaries and review articles are generally by invitation only or by consent of the Editors. Proceedings of scientific meetings may be published as special issues or supplements to the Journal.
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