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首页> 外文期刊>Biomacromolecules >Biosynthesis and Characterization of Diblock Copolymer of P(3-Hydroxypropionate)-block-P(4-hydroxybutyrate) from Recombinant Escherichia coli
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Biosynthesis and Characterization of Diblock Copolymer of P(3-Hydroxypropionate)-block-P(4-hydroxybutyrate) from Recombinant Escherichia coli

机译:重组大肠杆菌P(3-羟基丙酸酯)-P-(4-羟基丁酸酯)二嵌段共聚物的生物合成与表征

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Poly(4-hydroxybutyrate) (P4HB) is a highly elastic polymer, whereas poly(3-hydroxypropionate) (P3HP) is a polymer with enormous tensile strength. This study aimed to biosynthesize a block copolymer consisting of soft P4HB block with a strong P3HP block to gain unique and excellent material properties. A recombinant Escherichia coli strain that produces homopolymers of P3HP and P4HB was employed for the block copolymer synthesis. "When the strain was grown in the presence of 1,4-butanediol (BDO) as a 4HB precursor, P4HB block was formed. Sequential supplementation of 1,3- propanediol (PDO) as a 3HP precursor allowed the strain to produce P3HP block. Thermal, NMR, fractionation, and mechanical characterizations confirmed the resulting polymer as a block copolymer of P3HP-b-P4HB, Two block copolymers were formed from this study, including the P3HP-b-29% P4HB and P3HP-b-37% P4HB, they showed superior properties over random copolymers P(3HP-ω-4HB). The block copolymers had two glass transition temperatures (T_g) and two melting temperatures (T_m). In comparison to the homopolymers P3HP and P4HB, incorporation of block microstructure resulted in the lowering of T_m block copolymers were revealed with higher Young's modulus, yield strengths, and tension strengths much better than the previously reported random copolymers of similar compositions. Block copolymerization of P3HP and P4HB adds a new vision on PHA polymerization by generation of new polymers with superior properties.
机译:聚(4-羟基丁酸酯)(P4HB)是高弹性聚合物,而聚(3-羟基丙酸酯)(P3HP)是具有极大拉伸强度的聚合物。这项研究旨在生物合成由软P4HB嵌段与强P3HP嵌段​​组成的嵌段共聚物,以获得独特而优异的材料性能。产生P3HP和P4HB均聚物的重组大肠杆菌菌株用于嵌段共聚物的合成。 “当菌株在作为4HB前体的1,4-丁二醇(BDO)存在下生长时,形成P4HB嵌段。顺序补充作为3HP前体的1,3-丙二醇(PDO)使菌株产生P3HP嵌段热,NMR,分馏和机械表征证实了所得聚合物为P3HP-b-P4HB的嵌段共聚物,该研究形成了两种嵌段共聚物,包括P3HP-b-29%P4HB和P3HP-b-37% P4HB表现出优于无规共聚物P(3HP-ω-4HB)的特性。嵌段共聚物具有两个玻璃化转变温度(T_g)和两个熔融温度(T_m)。与均聚物P3HP和P4HB相比,嵌段微结构的引入导致T_m嵌段共聚物的降低,其杨氏模量,屈服强度和拉伸强度都比以前报道的类似组成的无规共聚物高得多,P3HP和P4HB的嵌段共聚为PHA聚合物提供了新的视角通过产生具有优异性能的新型聚合物来实现工业化。

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