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整合计算与实验方法用于功能化安全可持续生物基低聚酯的合理生态设计与合成

Integrating Computational and Experimental Methods for the Rational Ecodesign and Synthesis of Functionalized Safe and Sustainable Biobased Oligoesters.

作者信息

Zappaterra Federico, Todea Anamaria, Asaro Fioretta, Ditalia Pasquale Fabio Alberto, Danielli Chiara, Renzi Monia, Anselmi Serena, Gardossi Lucia

机构信息

Department of Chemical and Pharmaceutical Sciences, University of Trieste, 34127 Trieste, Italy.

Biocatalysis and Green Chemistry Group, Faculty Chemical Engineering, Biotechnologies and Environmental Protection, University Politehnica Timisoara, 300223 Timisoara, Romania.

出版信息

Polymers (Basel). 2025 Sep 19;17(18):2537. doi: 10.3390/polym17182537.

Abstract

A chemical platform for post-polymerization methods was developed, starting from the ecodesign and enzymatic synthesis of safe and sustainable bio-based polyesters containing discrete units of itaconic acid. This unsaturated bio-based monomer enables the covalent linkage of molecules that can impart desired properties such as hydrophilicity, flexibility, permeability, or affinity for biological targets. Molecular descriptor-based computational methods, which are generally used for modeling the pharmacokinetic properties of drugs (ADME), were employed to predict in silico the hydrophobicity (LogP), permeability, and flexibility of virtual terpolymers composed of different polyols (1,4-butanediol, glycerol, 1,3-propanediol, and 1,2-ethanediol) with adipic acid and itaconic acid. Itaconic acid, with its reactive vinyl group, acts as a chemical platform for various post-polymerization functionalizations. Poly(glycerol adipate itaconate) was selected because of its higher hydrophilicity and synthetized via solvent-free enzymatic polycondensation at 50 °C to prevent the isomerization or crosslinking of itaconic acid. The ecotoxicity and marine biodegradability of the resulting oligoester were assessed experimentally in order to verify its compliance with safety and sustainability criteria. Finally, the viability of the covalent linkage of biomolecules via Michael addition to the vinyl pendant of the oligoesters was verified using four molecules bearing thiol and amine nucleophilic groups: N-acetylcysteine, N-Ac-Phe-ε-Lys-OtBu, Lys-Lys-Lys, and glucosamine.

摘要

开发了一种用于后聚合方法的化学平台,该平台始于对含有离散衣康酸单元的安全且可持续的生物基聚酯进行生态设计和酶促合成。这种不饱和生物基单体能够实现分子的共价连接,从而赋予所需的性质,如亲水性、柔韧性、渗透性或对生物靶点的亲和力。基于分子描述符的计算方法通常用于模拟药物的药代动力学性质(ADME),该方法被用于在计算机上预测由不同多元醇(1,4-丁二醇、甘油、1,3-丙二醇和1,2-乙二醇)与己二酸和衣康酸组成的虚拟三元共聚物的疏水性(LogP)、渗透性和柔韧性。衣康酸因其具有反应性乙烯基,可作为各种后聚合功能化的化学平台。选择聚(甘油己二酸衣康酸酯)是因为其具有较高的亲水性,并通过在50℃下进行无溶剂酶促缩聚反应合成,以防止衣康酸的异构化或交联。对所得低聚酯的生态毒性和海洋生物降解性进行了实验评估,以验证其是否符合安全和可持续性标准。最后,使用带有硫醇和胺亲核基团的四种分子:N-乙酰半胱氨酸、N-Ac-Phe-ε-Lys-OtBu、Lys-Lys-Lys和氨基葡萄糖,验证了通过迈克尔加成将生物分子共价连接到低聚酯乙烯基侧链上的可行性。

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