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Mitigating the Risk of Coprecipitation of Pinacol during Isolation from Telescoped Miyaura Borylation and Suzuki Couplings Utilizing Boron Pinacol Esters: Use of Modeling for Process Design

机译:利用硼品那醇酯减少从套筒式宫浦硼化和Suzuki偶联中分离出品那醇的共沉淀风险:使用模型进行工艺设计

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摘要

Process definition and optimization of a telescoped Miyaura borylation and Suzuki coupling reaction employing bis(pinacolato)diboron (BisPin), used in the developmental synthesis of an intermediate for Abemaciclib, led to the unexpected coprecipitation of pinacol during the isolation. Thermodynamic phase separation, distillation, and pinacol phase diagram models were used to guide the design of a modified process to maintain pinacol fully soluble. A Quality by Design (QbD) approach was used to illustrate the control strategy and provide a maximally flexible process for manufacturing to maintain high purity of the intermediate. Different possible representations of the design space to mitigate pinacol precipitation are discussed and compared. The risk of pinacol precipitation may not be unique to the system of study and could have broad implication to the development of this class of reactions.
机译:使用双(pinacolato)diboron(BisPin)的套筒式Miyaura硼酸酯化和Suzuki偶联反应的过程定义和优化,用于Abemaciclib中间体的开发合成,在分离过程中导致频哪醇意外共沉淀。使用热力学相分离,蒸馏和频哪醇相图模型来指导改进工艺的设计,以保持频哪醇完全可溶。设计质量(QbD)方法用于说明控制策略,并为制造过程提供最大程度的灵活性,以保持中间体的高纯度。讨论并比较了减轻频哪醇沉淀的设计空间的不同可能表示形式。频哪醇沉淀的风险可能不是该研究系统所独有的,并且可能对此类反应的发展产生广泛的影响。

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