Stochastic Differential Equation-Driven GANs for Simulating Variable Drug Absorption in the Gastrointestinal Tract

dc.contributor.authorDhivya S.
dc.contributor.authorDivya M K
dc.contributor.authorGandhiraja R
dc.date.accessioned2026-05-26T11:32:52Z
dc.date.available2026-05-26T11:32:52Z
dc.date.issued2026-05-26
dc.description.abstractVariability in drug absorption within the gastrointestinal (GI) tract remains a major challenge in pharmacokinetic modeling and oral drug development. Traditional compartmental models often fail to capture stochastic fluctuations due to gastric emptying, pH variations, and motility patterns. This paper proposes a novel framework combining Stochastic Differential Equations (SDEs) with Generative Adversarial Networks (GANs) — termed SDE-GAN — to simulate realistic, time-varying drug absorption profiles. The SDE component models the inherent randomness of GI physiology, while the GAN refines generated trajectories to match empirical absorption data. Using in vitro and in vivo absorption datasets, we demonstrate that SDE-GAN outperforms deterministic models and vanilla GANs in terms of distributional accuracy (p < 0.05, Kolmogorov– Smirnov test). Our results indicate improved simulation of inter- and intra-subject variability, with potential applications in virtual bioequivalence trials.
dc.identifier.urihttp://192.168.75.5:4000/handle/123456789/21431
dc.titleStochastic Differential Equation-Driven GANs for Simulating Variable Drug Absorption in the Gastrointestinal Tract
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