首页> 美国卫生研究院文献>Beilstein Journal of Organic Chemistry >Enhanced single-isomer separation and pseudoenantiomer resolution of new primary rim heterobifunctionalized α-cyclodextrin derivatives
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Enhanced single-isomer separation and pseudoenantiomer resolution of new primary rim heterobifunctionalized α-cyclodextrin derivatives

机译:新的主要边缘异双功能化的α-环糊精衍生物的增强的单异构体分离和伪对映体拆分

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摘要

The synthesis of batch-to-batch reproducible cyclodextrin (CD) derivatives often requires functionalization at specific positions of the CD skeleton. However, the regioselective preparation of this type of CD derivatives remains a challenge in synthetic chemistry. Thus, the present study aimed to prepare all positional regioisomers on the primary rim of homobifunctionalized diazido-α-CDs by selective substitution on the primary rim. Specifically, three positional regioisomers 6A,6B-, 6A,6C-, and 6A,6D-diazido-α-CDs were prepared via different intermediates (using sulfonylation with capping agents, bromination and tosylation). Furthermore, heterobifunctionalized 6A-azido-6X-mesitylenesulfonyl-α-CDs were also synthesized, and all regioisomers were successfully separated by HPLC. Moreover, the heterobifunctionalized α-CD regioisomers were isolated in gram-scale quantities, isomers AB and AC in the form of a pseudoenantiomeric mixture. The pseudoenantiomers AC/CA and AB/BA were resolved on an analytical scale by HPLC–MS at 10 °C. Thus, the presented synthetic and analytical methods for homo- and heterodisubstituted α-CDs are efficient and reproducible for the preparation of various pure regioisomeric CD derivatives. Accordingly, our findings indicate, (i) the versatility of selectively modified azido and mesitylene CD skeletons in preparing new types of α-CD derivatives and (ii) the potential of using resolved α-CD pseudoenantiomers in other research fields such as organocatalysis.
机译:批间可复制的环糊精(CD)衍生物的合成通常需要在CD骨架的特定位置进行功能化。然而,这种CD衍生物的区域选择性制备在合成化学中仍然是一个挑战。因此,本研究旨在通过在主边缘上进行选择性取代,在同双功能化的叠氮基-α-CD的主边缘上制备所有位置区域异构体。具体而言,三个位置区域异构体6 A ,6 B -,6 A ,6 C -和6 < sup> A ,6 D -二叠氮基-α-CDs是通过不同的中间体制备的(使用带有封端剂的磺酰化,溴化和甲苯磺酸化)。此外,还合成了异双官能化的6 A -叠氮基-6 X -亚甲基磺酰基-α-CDs,并通过HPLC成功分离了所有区域异构体。此外,以克级量分离了异双官能化的α-CD区域异构体,以假对映体混合物的形式分离了异构体AB和AC。假对映体AC / CA和AB / BA在10°C下通过HPLC–MS进行了分析规模的拆分。因此,本发明的用于均二和杂二取代的α-CD的合成和分析方法对于制备各种纯的区域异构CD衍生物是有效且可重复的。因此,我们的发现表明,(i)选择性修饰的叠氮基和均三甲苯基CD骨架在制备新型α-CD衍生物中的多功能性,以及(ii)在其他研究领域(例如有机催化)中使用已分解的α-CD假对映体的潜力。

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