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A preliminary multi-stable-isotopic evaluation of three synthetic pathways of Topiramate

机译:托吡酯三种合成途径的初步多稳态同位素评估

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As a preliminary study of the utility of the natural stable-isotopic differentiation of batch samples produced by different synthetic pathways, multi-stable-isotopic analyses (delta~(13)C, delta~(15)N, delta~(18)O, (delta)D) of 53 samples of the antiepileptic drug, Topiramate, produced by three different synthetic pathways (designated "A," "B," "C") were performed,. From the outset, we note that there are two fundamental variables that determine the stable-isotopic composition of materials-the stable-isotopic composition of the reagents and starting intermediates, and the rsotope fractionation that occurs during manufacture of the product. In this study, the stable-isotopic composition of the raw materials was not controlled and we report here data obtained for a suite of samples that was produced by three synthetic pathways. Graphical examination of these data reveals marked data clustering by synthetic pathway, though in some cases with some overlapping values within standard errors. In general, the isotopic composition of Topiramate from the A and B pathways is distinct from the C pathway. The isotopic data from the A and B pathways typically abut each other, sometimes partially overlapping. The deuterium/hydrogen- (<5D) and oxygen (delta~(18)O) isotopic compositions are each significantly linearly related with the paired carbon (delta~(13)C) isotopic composition indicating possible isotopic end-members for the raw materials of the present sample suite Given that H and O typically derive from meteoric water, the linear correlations with delta~(13)C indicate that a mixture of carbon sources (viz., perhaps terrestrial C3 photosynthetic organic carbon and marine C3 organic carbon) were used in the production of the batches tested. If the H and O analyzed were derived from meteoric water, then an elementary comparison of the span of the <5D (DELTA(delta)D = 54,6+-2.l%) and of the delta~(18)O (delta~(18)O = 4.71 +-0 26%o) values in the Topiramate samples to that of the global isotopic gradients indicates that the water retained in the samples spanned from as much as 11deg of latitude (or,~-760 statute miles North-to-South). The present isotope results (delta~(13)C, delta~(15)N, delta~(18)O, (delta)D) form an initial database against which future samples can be compared to infer specific synthetic pathways. It is clear that to perform a rigorous test of the variables controlling the stable-isotopic composition of pharmaceutical materials that both the stable-isotopic composition of the starting materials and synthetic isotope fractionation must be controlled in future studies.
机译:作为对通过不同合成途径生产的批次样品进行自然稳定同位素区分的实用性的初步研究,多稳定同位素分析(δ〜(13)C,δ〜(15)N,δ〜(18)O进行了通过三种不同的合成途径(称为“ A”,“ B”,“ C”)产生的53种抗癫痫药Topiramate样品的ΔD)测定。从一开始,我们注意到有两个基本变量确定材料的稳定同位素组成-试剂和起始中间体的稳定同位素组成,以及在产品制造过程中发生的同位素分级。在这项研究中,原材料的稳定同位素组成不受控制,我们在这里报告通过三个合成途径生产的一组样品的数据。这些数据的图形检查揭示了通过合成途径标记的数据聚类,尽管在某些情况下标准误差内有一些重叠的值。通常,来自A和B途径的托吡酯的同位素组成不同于C途径。来自A和B途径的同位素数据通常彼此邻接,有时会部分重叠。氘/氢(<5D)和氧(δ〜(18)O)同位素组成均与成对的碳(δ〜(13)C)同位素组成显着线性相关,表明原料的可能同位素末端成员假设H和O通常来自陨石水,与delta〜(13)C的线性关系表明碳源(即陆地C3光合有机碳和海洋C3有机碳)的混合物为用于生产测试批次。如果分析的H和O是从流水中提取的,则对<5D(ΔδD= 54,6 + -2.l%)和δ〜(18)O(托吡酯样品的δ〜(18)O = 4.71 + -0 26%o)值与全球同位素梯度的值表明,样品中残留的水跨度高达11度(或〜-760法规)南北英里)。当前的同位素结果(δ〜(13)C,δ〜(15)N,δ〜(18)O,δD)形成了一个初始数据库,可以将其与未来的样品进行比较,以推断出特定的合成途径。显然,要对控制药物材料的稳定同位素组成的变量进行严格测试,必须在将来的研究中控制原材料的稳定同位素组成和合成同位素分馏。

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