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聚[(R)-3-羟基烷酸酯]共聚物的生物合成及其重复单元组成和物理性能的控制。

Biosynthesis of poly[(R)-3-hydroxyalkanoate] copolymers with controlled repeating unit compositions and physical properties.

机构信息

Chemistry Department, State University of New York - College of Environmental Science and Forestry, 1 Forestry Drive, Syracuse, New York 13210, USA.

出版信息

Biomacromolecules. 2012 Sep 10;13(9):2964-72. doi: 10.1021/bm301043t. Epub 2012 Aug 17.

Abstract

As applications for biodegradable and biologically produced poly[(R)-3-hydroxyalkanoates] (PHAs) grow into more specialized areas, the need to precisely control the repeating unit composition and consequently the physical properties of these polymers has become essential. A previous study reported our development of Escherichia coli LSBJ in order to produce PHA polymers composed of single repeating units ranging from 4 to 12 carbon atoms. This investigation expands the scope of our effort toward controlling the repeating unit composition of a variety of PHA copolymers. The sizes for the repeating units within the copolymers were modulated by feeding specific ratios of fatty acids with defined carbon lengths to E. coli LSBJ, which resulted in defined mole ratios for the repeating units. Various physical properties of the copolymers (including the Young's modulus, elongation to break, and glass-transition temperature) were shown to be strongly dependent upon the mole ratios of repeating units. This work demonstrates that copolymers of PHAs with repeating units from 4 to 12 carbons can be incorporated accurately to obtain any desired mole ratio within the PHA copolymers. Our methodology may thus be extended to generate tailor-made PHA copolymers with prescribed values for key sets of physical properties.

摘要

随着生物可降解和生物合成的聚[(R)-3-羟基烷酸酯](PHA)的应用扩展到更专业的领域,精确控制重复单元组成,从而控制这些聚合物的物理性质变得至关重要。之前的一项研究报告了我们开发的大肠杆菌 LSBJ,用于生产由 4 到 12 个碳原子的单一重复单元组成的 PHA 聚合物。本研究扩展了我们控制各种 PHA 共聚物重复单元组成的努力范围。通过向大肠杆菌 LSBJ 中喂食具有特定碳长的脂肪酸的特定比例,调节共聚物中重复单元的大小,从而使重复单元的摩尔比得到定义。共聚物的各种物理性质(包括杨氏模量、断裂伸长率和玻璃化转变温度)强烈依赖于重复单元的摩尔比。这项工作表明,具有 4 到 12 个碳原子重复单元的 PHA 共聚物可以精确地掺入,以在 PHA 共聚物中获得任何所需的摩尔比。因此,我们的方法可以扩展到生成具有预定值的特定物理性质的定制 PHA 共聚物。

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