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Atroposelective Synthesis of Hindered Amides - Exploration of Synthetic Peptide Catalysts -

Atroposelective Synthesis of Hindered Amides - Exploration of Synthetic Peptide Catalysts -
受阻酰胺的天体选择性合成-合成肽催化剂的探索-
批准号:
504378162
负责人:
Dr. Tobias Morack
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
WBP Fellowship
财政年份:
2022
资助国家:
德国
项目状态:
已结题
起止时间:
2021-12-31 至 2022-12-31

项目摘要

项目成果

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中文摘要
翻译
轴向手性酰胺被认为是“药物发现中的潜在威胁”。如果在酰胺基团中存在肌萎缩异构现象仍然未被发现,它可以大大增加药物研究和药物开发的成本和努力。虽然轴向手性通常是一个未被充分研究的现象,但对于酰胺基团来说,它基本上是未被探索的,并且已经成为几个研究活动的障碍。因此,控制稳定的反二聚体出现的参数,以及以(对映)纯方式生成它们的合成方法,都是未知的。此外,值得注意的是,即使发现了具有轴性手性酰胺的有希望的候选药物,也会优先开发非手性衍生物来绕过atropisomerism问题。然而,突出的例子,如Telenzepine,表现出一个轴向手性酰胺基团,证明了开发对映选择性制备手性酰胺的合成方法和研究控制相应的atrop异构稳定性的参数的必要性。因此,本研究旨在开发一种手性酰胺的水选择性制备方案,并确定和量化决定手性酰胺中手性轴出现和稳定性的参数。在这个项目的第一部分,小的合成肽将作为人工“迷你酶”提供一个手性环境,使高atropo选择性的轴向手性酰胺的制备成为可能。经典的多肽合成方法为设计新的具有催化活性的官能团提供了平台,这些官能团将被纳入合成的多肽中。因此,可以从简单羧酸和易接近的胺开始形成所需的酰胺。该项目的第二部分旨在提高对酰胺轴向手性的理解和可预测性。利用基于dft的量子力学方法测定不同组份的atro异构酰胺的反转势垒,探讨位阻和电子因素、环尺寸和饱和程度对手性轴稳定性的影响。预计哈米特和塔夫脱相关关系将有助于任何观察到的关系的量化。所得数据将为酰胺缩异构性的鉴定、预测和设计提供依据。在本项目的最后一部分,这些发现将应用于开发、合成和生物学评价新的、稳定的轴向手性蒸汽类药物家族类似物(治疗低钠血症)。
英文摘要
Axially chiral amides are considered a "lurking menace in drug discovery". If the existence of atropisomerism in an amide group remains undiscovered, it can substantially increase the cost and effort of pharmaceutical research and drug development. Whilst axial chirality in general is an understudied phenomenon, it is basically unexplored for the amide group and has been an obstacle in several research campaigns, already. Parameters that govern the emergence of stable atropisomers, as well as synthetic methods to generate them in an (enantio-)pure fashion, are hence unknown. Furthermore, it is conspicuous that even if promising drug candidates that possess an axially chiral amide are discovered, preferentially achiral derivatives are developed to circumnavigate the issue of atropisomerism. Yet, prominent examples such as Telenzepine, which exhibit an axially chiral amide group, demonstrate the necessity to develop synthetic methods to enantioselectively prepare chiral amides and to study parameters that govern the stability of the corresponding atropisomers.For this reason, this research endeavor aims to develop a protocol for the atroposelective preparation of chiral amides and to identify and quantify the parameters that dictate emergence and stability of chiral axes in amides.In the first part of this project small synthetic peptides will serve as artificial "mini-enzymes" to provide a chiral environment that enables the preparation of axially chiral amides in high atroposelectivity. Classic methods of peptide synthesis serve as platform for the design of new, catalytically active functional groups, which will be incorporated into the synthetic peptide. Thereby formation of the desired amides will be possible starting from simple carboxylic acids and easily accessible amines.The second part of the project aims to improve understanding und predictability of axial chirality in amides. Utilizing DFT-based quantum mechanical methods inversion barriers of different sets of atropisomeric amides will be determined to explore the influence of steric and electronic factors, ring size and degree of saturation on the stability of the chiral axis. Hammett and Taft correlations are anticipated to aid quantification of any observed relationship. The thus obtained data will serve as basis for facilitated identification, prediction and design of atropisomerism of amides.In the last part of this project these findings will be applied to develop, synthesize and biologically evaluate new, stable axially chiral analogs of the vaptan-type drug family (treatment of hyponatremia).
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国内基金
海外基金
新型滤波器综合技术-直接综合技术(Direct synthesis Technique)的研究及应用
  • 批准号:
    61671111
  • 项目类别:
    面上项目
  • 资助金额:
    58.0万元
  • 批准年份:
    2016
  • 负责人:
    肖飞
  • 依托单位: