第八章。环赖氨酸开环聚合法制备聚(ε-赖氨酸)

Jia-Fang Lian, Jinlong Chen, Y. Tao, Xianhong Wang
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摘要

聚赖氨酸是一种罕见的阳离子均聚物,具有许多潜在的高价值应用。由于其显著的抗菌活性和对人体无毒,聚赖氨酸现在通过发酵过程作为添加剂在工业上生产,例如用于食品和化妆品。然而,生物合成途径只能制造分子量约为3kda的聚合物。在这里,我们提出了使用碱开环聚合(ROP)环赖氨酸(e-内酰胺)单体到聚(e-赖氨酸)。在被评估的碱基中,na和t-BuP2对e-内酰胺单体的聚合最有效,提供含有聚e-赖氨酸的垂链2,5-二甲基吡咯保护基团,其平均分子量高达45 kg mol−1。此外,通过去除2,5-二甲基吡咯保护基团制备了聚e-赖氨酸。最后,一个中试规模的研究证明,获得聚(e-赖氨酸)与Mn高达10 kg mol - 1。开环聚合路线的新发展和聚赖氨酸锰的改进为工业创造了新的机遇。特别是赖氨酸的低成本可能有助于生产低成本的聚赖氨酸,为克服成本问题提供了一种新的解决方案,这一问题自诞生以来一直困扰着聚赖氨酸行业。
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CHAPTER 8. Chemosynthesis of Poly(ε-Lysine) via Ring-opening Polymerization of Cyclic Lysine
Poly(e-lysine) is an uncommon cationic homopolymer and has many potential high-value applications. Due to its significant antimicrobial activity and nontoxicity to humans, poly(e-lysine) is now industrially produced by a fermentation process as an additive, e.g. for food and cosmetics. However, the biosynthetic route can only make polymers with a molecular weight of about 3 kDa. Here, we propose the use of bases for the ring-opening polymerization (ROP) of cyclic lysine (e-lactam) monomer towards poly(e-lysine). Among the evaluated bases, NaH and t-BuP2 were found to be the most effective for the polymerization of e-lactam monomer, affording poly(e-lysine) bearing pendant 2,5-dimethylpyrrole protecting groups with a number average molecular weight of up to 45 kg mol−1. Moreover, poly(e-lysine) was prepared by the removal of the 2,5-dimethylpyrrole protecting groups. Finally, a pilot-scale study was demonstrated to obtain poly(e-lysine) with Mn up to 10 kg mol−1. The new development in the ring-opening polymerization route and Mn improvement for poly(e-lysine) have created new chances for industry. In particular, the low cost of lysine may help to produce low-cost poly(e-lysine), providing a new solution that can overcome the cost problem, which has puzzled the poly(e-lysine) industry since its birth.
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