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Disambiguating Mechanisms in Pharmacy: Lessons from Mechanist Philosophy of Science

机译:消除药剂学中的机制:机械主义科学哲学的教训

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摘要

Talk of mechanisms is ubiquitous in the natural sciences. Interdisciplinary fields such as biochemistry and pharmacy frequently discuss mechanisms with the assistance of diagrams. Such diagrams usually depict entities as structures or boxes and activities or interactions as arrows. While some of these arrows may indicate causal or componential relations, others may represent temporal or operational orders. Importantly, what kind of relation an arrow represents may not only vary with context but also be underdetermined by empirical data. In this manuscript, we investigate how an analysis of pharmacological mechanisms in terms of producing and underlying mechanisms—as discussed in the contemporary philosophy of science—may shed light on these issues. Specifically, we shall argue that while pharmacokinetic mechanisms usually describe causal chains of production, pharmacodynamics tends to focus on mechanisms of action underlying the in vivo effects of a drug. Considering the action of thyroid gland hormones in the human body as a case study, we further demonstrate that pharmacodynamic schemes tend to incorporate entities and interactions on multiple levels. Yet, traditional pharmacodynamic schemes are sketched “flat”, i.e., non-hierarchically. We suggest that transforming flat pharmacodynamic schemes into mechanistic multi-level representations may assist in disentangling the different kinds of mechanisms and relations depicted by arrows in flat schemes. The resulting Baumkuchen model provides a powerful and practical alternative to traditional flat schemes, as it explicates the relevant mechanisms and relations more clearly. On a more general note, our discussion demonstrates how pharmacology and related disciplines may benefit from applying concepts from the new mechanist philosophy to guide the interpretation of scientific diagrams.
机译:关于机制的讨论在自然科学中无处不在。生物化学和药学等跨学科领域经常在图表的帮助下讨论机理。这样的图通常将实体描绘为结构或框,而将活动或交互描绘为箭头。尽管这些箭头中的一些可能表示因果关系或组成关系,但其他箭头可能表示时间顺序或操作顺序。重要的是,箭头所代表的关系不仅可能随上下文而变化,而且还不能由经验数据确定。在本手稿中,我们研究如何根据当代科学哲学中的讨论,对产生和潜在机制方面的药理机制进行分析,以阐明这些问题。具体而言,我们将争辩说,虽然药代动力学机制通常描述生产的因果链,但药效学倾向于集中于药物体内作用的潜在作用机制。考虑到人体中甲状腺激素的作用,我们进一步证明了药效学方案倾向于在多个水平上结合实体和相互作用。然而,传统的药效学方案是“平坦的”,即非分层的。我们建议将平面药效学方案转换为机械的多级表示形式可能有助于解开平面方案中箭头所描绘的各种机制和关系。由此产生的Baumkuchen模型为传统的平面方案提供了强大而实用的替代方案,因为它可以更清晰地阐明相关的机制和关系。从更一般的角度来看,我们的讨论表明,应用新的机械哲学中的概念指导科学图解的解释,可以使药理学和相关学科受益。

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