Graduate School of Chemical Sciences and Engineering, Hokkaido University, Sapporo, Japan.
Division of Applied Chemistry, Faculty of Engineering, Hokkaido University, Sapporo, Japan.
Biopolymers. 2024 Nov;115(6):e23618. doi: 10.1002/bip.23618. Epub 2024 Aug 8.
This study synthesized poly(3-hydroxypropionate) [P(3HP)]-containing polyhydroxyalkanoate (PHA) block copolymers, P(3HP)-b-P[2-hydroxybutyrate (2HB)] and P(3HP)-b-P(D-lactate) (PDLA), using Escherichia coli. The cells expressing an evolved sequence-regulating PHA synthase, PhaCNDFH, and propionyl-CoA transferase were cultured with the supplementation of the corresponding monomer precursors in the medium. The block structure of P(3HP)-b-PDLA was confirmed by proton nuclear magnetic resonance analysis and solvent fractionation. The molecular weights of the polymers were in the range of 0.8-2.8 × 10. The solvent-cast polymer films were subjected to isothermal treatment to promote phase separation and crystallization and were subsequently melt-quenched to produce an amorphous phase. The melt-quenched P(3HP)-b-P(2HB) film exhibited a high elongation at break (1153%), resulting in a toughness of 181 MJ/m. The solvent-cast film of P(3HP)-b-65 mol% PDLA exhibited partial elastic deformation, in which the P(3HP) phase functioned as a soft segment. The melt-quenching of the polymer resulted in embrittlement presumably due to the high lactate fraction. Overall, the P(3HP)-based block copolymers exhibited several mechanical properties depending on the higher-order structure of the polymer and the properties of the P(2-hydroxyalkanoate) segments. This study findings show that P(3HP)-b-P(2HB) and P(3HP)-b-PDLA can function excellently if their microstructures are properly controlled.
本研究使用大肠杆菌合成了含有聚(3-羟基丙酸酯)[P(3HP)]的聚羟基烷酸酯(PHA)嵌段共聚物,P(3HP)-b-P[2-羟基丁酸酯(2HB)]和 P(3HP)-b-P(D-丙交酯)(PDLA)。通过在培养基中添加相应的单体前体,培养表达经过进化的序列调节型 PHA 合酶 PhaCNDFH 和丙酰 CoA 转移酶的细胞。质子核磁共振分析和溶剂分级分离证实了 P(3HP)-b-PDLA 的嵌段结构。聚合物的分子量在 0.8-2.8×10 之间。将溶剂浇铸的聚合物薄膜进行等温处理以促进相分离和结晶,并随后进行熔体淬火以产生非晶相。熔体淬火的 P(3HP)-b-P(2HB)薄膜表现出高断裂伸长率(1153%),韧性为 181 MJ/m。P(3HP)-b-65mol%PDLA 的溶剂浇铸薄膜表现出部分弹性变形,其中 P(3HP)相起软段的作用。聚合物的熔体淬火可能由于丙交酯分数高而导致脆化。总体而言,基于 P(3HP)的嵌段共聚物表现出几种机械性能,这取决于聚合物的高级结构和 P(2-羟基烷酸酯)段的性质。本研究结果表明,如果适当控制 P(3HP)-b-P(2HB)和 P(3HP)-b-PDLA 的微观结构,它们可以出色地发挥作用。