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CONCEPTS AND ISSUES WITH INTERSPECIES SCALING IN ZOOLOGICAL PHARMACOLOGY

机译:动物学中物种间标度的概念和问题

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Zoologic medicine practitioners take approved agents (veterinary or human) and extrapolate their use to nonapproved species. The decision on dose, duration, and interval is often made with limited species-specific pharmacokinetic information. Because of the monetary value of these animals or their status as endangered species, this method of "trial and error" for therapeutic dosage selection is inappropriate. In zoologic medicine, various methods have been used in an attempt to extrapolate or predict safe and effective dosage regimens. The simplest and typical method of extrapolating a dosage to a nondomestic species is to use a mg/kg dose established for another domestic species or humans. However, this calculation results in a linear increase in the amount of drug administered as body weight increases. Although common, this method tends to overdose large animals and underdose small animals. The second method is similar, except that it takes the approved dose in a specific species and makes an additional assumption that links the dosage to a physiologic function or anatomic feature. Examples are the use of basal metabolic rate or body-surface area as the basis for dosage extrapolation. Allometric scaling of pharmacokinetic parameters is the final method of dosage extrapolation between species. This is commonly used in the pharmaceutical industry to establish the first dosage in human drug investigations. Adaptation of this method for zoologic medicine may enhance our ability to estimate therapeutic dosages for nondomestic species. This review discusses and compares these three methods for dosage selection and provides examples of extrapolation from the literature.
机译:动物医学从业人员采用经批准的药剂(兽用或人用),并将其用途外推至未经批准的物种。剂量,持续时间和间隔的决定通常是由有限的物种特异性药代动力学信息决定的。由于这些动物的金钱价值或它们作为濒危物种的地位,这种“反复试验”的治疗剂量选择方法是不合适的。在动物医学中,已使用各种方法来推断或预测安全有效的剂量方案。将剂量外推到非家畜物种的最简单和典型方法是使用为其他家养物种或人类确定的mg / kg剂量。然而,该计算导致随着体重增加线性给药的药物量增加。尽管很普遍,但这种方法往往使大动物服药过量,而小动物服药剂量不足。第二种方法类似,不同之处在于它采用特定物种的批准剂量,并做出将剂量与生理功能或解剖特征联系起来的附加假设。例如,使用基础代谢率或体表面积作为剂量外推的基础。药代动力学参数的异度缩放是物种间剂量外推的最终方法。这在制药工业中通常用于确定人类药物研究的第一剂量。将该方法应用于动物医学可能会增强我们估算非家庭物种治疗剂量的能力。这篇综述讨论并比较了这三种选择剂量的方法,并提供了从文献中推断的例子。

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