Suppr超能文献

个体化的离散事件模拟为缓释药品的个体间和个体内变异性提供了深入见解。

Individualized, discrete event, simulations provide insight into inter- and intra-subject variability of extended-release, drug products.

作者信息

Kim Sean H J, Jackson Andre J, Hur Rim, Hunt C Anthony

机构信息

Department of Bioengineering and Therapeutic Sciences, University of California, San Francisco, CA, USA.

出版信息

Theor Biol Med Model. 2012 Aug 31;9:39. doi: 10.1186/1742-4682-9-39.

Abstract

OBJECTIVE

Develop and validate particular, concrete, and abstract yet plausible in silico mechanistic explanations for large intra- and interindividual variability observed for eleven bioequivalence study participants. Do so in the face of considerable uncertainty about mechanisms.

METHODS

We constructed an object-oriented, discrete event model called subject (we use small caps to distinguish computational objects from their biological counterparts). It maps abstractly to a dissolution test system and study subject to whom product was administered orally. A subject comprises four interconnected grid spaces and event mechanisms that map to different physiological features and processes. Drugs move within and between spaces. We followed an established, Iterative Refinement Protocol. Individualized mechanisms were made sufficiently complicated to achieve prespecified Similarity Criteria, but no more so. Within subjects, the dissolution space is linked to both a product-subject Interaction Space and the GI tract. The GI tract and Interaction Space connect to plasma, from which drug is eliminated.

RESULTS

We discovered parameterizations that enabled the eleven subject simulation results to achieve the most stringent Similarity Criteria. Simulated profiles closely resembled those with normal, odd, and double peaks. We observed important subject-by-formulation interactions within subjects.

CONCLUSION

We hypothesize that there were interactions within bioequivalence study participants corresponding to the subject-by-formulation interactions within subjects. Further progress requires methods to transition currently abstract subject mechanisms iteratively and parsimoniously to be more physiologically realistic. As that objective is achieved, the approach presented is expected to become beneficial to drug development (e.g., controlled release) and to a reduction in the number of subjects needed per study plus faster regulatory review.

摘要

目的

针对11名生物等效性研究参与者观察到的个体内和个体间的巨大变异性,开发并验证具体、明确且抽象但合理的计算机模拟机制解释。在机制存在相当大不确定性的情况下完成此任务。

方法

我们构建了一个名为“subject”的面向对象离散事件模型(我们使用小写字母来区分计算对象与其生物学对应物)。它抽象地映射到一个溶出度测试系统以及口服给药的研究对象。一个“subject”包含四个相互连接的网格空间和映射到不同生理特征及过程的事件机制。药物在这些空间内以及空间之间移动。我们遵循既定的迭代细化协议。使个体化机制足够复杂以达到预先设定的相似性标准,但不过度复杂。在个体内部,溶出空间与产品 - 个体相互作用空间以及胃肠道相连。胃肠道和相互作用空间与血浆相连,药物从血浆中被清除。

结果

我们发现了参数设置,使得对11名个体的模拟结果能够达到最严格的相似性标准。模拟曲线与具有正常、奇数和双峰的曲线非常相似。我们在个体内部观察到了重要的剂型 - 个体相互作用。

结论

我们假设在生物等效性研究参与者内部存在与个体内部剂型 - 个体相互作用相对应的相互作用。进一步的进展需要方法将当前抽象的个体机制迭代且简约地转变为更符合生理实际的机制。随着这一目标的实现,所提出的方法预计将对药物开发(例如控释)有益,并减少每项研究所需的个体数量,加快监管审查速度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f80/3563477/352d4e6426b7/1742-4682-9-39-1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验