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首页> 外文期刊>Chemistry: A European journal >Parameters Influencing the Release of Tertiary Alcohols from the Surface of Spherical Dendrimers and Linear Stylomers by Neighbouring-Group-Assisted Hydrolysis of 2-Carbamoylbenzoates
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Parameters Influencing the Release of Tertiary Alcohols from the Surface of Spherical Dendrimers and Linear Stylomers by Neighbouring-Group-Assisted Hydrolysis of 2-Carbamoylbenzoates

机译:通过邻基团辅助水解2-氨基甲酰基苯甲酸酯影响球形树枝状大分子和线性直链异构体表面叔醇释放的参数

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摘要

The influence of structural and physico-chemical parameters on the release of a volatile tertiary alcohol(2-methyl-1-phenyl-2-propanol) by neighbouring-group-assisted cyclisation of 2-carbamoylbenzoates at neutral pH was investigated by comparing the covalent-bond cleavage from the surface of linear, comblike poly(propylene imine) stylomers and their corresponding spherical, globular dendrimers.Determination of the kinetic rate constants for the stepwise intramolecular cyclisation of the 2-carbamoylbenzoate moiety by using HPLC showed that the polarity of the conjugates, and thus their solubility in the aqueous reaction medium, has a stronger influence on the rates of hydrolysis than the size (generation) or shape (linear or spherical) of the macromolecules. Furthermore, structural modifications in close proximity to the release unit, such as the presence of functionalities with catalytic activity, have a strong impact on the release efficiency of the active molecules. An understanding of the physico-chemical parameters determining the local environment of the covalent-bond cleavage site is therefore an important prerequisite to transfer the characteristics of small molecules to larger structures such as oligomers and polymers and thus to design efficient macromolecular conjugates for the controlled delivery of bioactive compounds.
机译:通过比较共价键,研究了邻位基团辅助的2-氨基甲酰基苯甲酸环化环化过程中结构和物理化学参数对挥发性叔醇(2-甲基-1-苯基-2-丙醇)释放的影响。线性,梳状聚(丙烯亚胺)定型剂及其相应的球形,球形树枝状聚合物表面的键断裂与大分子的大小(生成)或形状(线性或球形)相比,共轭物及其在水反应介质中的溶解度对水解速率的影响更大。此外,紧邻释放单元的结构修饰,例如具有催化活性的官能团的存在,对活性分子的释放效率具有强烈影响。因此,了解决定共价键裂解位点局部环境的物理化学参数是将小分子的特性转移到较大的结构(如低聚物和聚合物)并因此设计有效的大分子共轭物以进行受控递送的重要前提生物活性化合物。

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