Chiriac Aurica P, Ghilan Alina, Serban Alexandru-Mihail, Macsim Ana-Maria, Bargan Alexandra, Doroftei Florica, Chiriac Vlad Mihai, Nita Loredana Elena, Rusu Alina Gabriela, Sandu Andreea-Isabela
Petru Poni Institute of Macromolecular Chemistry, 41 A Grigore Ghica Voda Alley, 700487 Iasi, Romania.
Faculty of Electronics Telecommunications and Information Technology, Gh. Asachi Technical University, Bd. Carol I no. 11A, 700506 Iasi, Romania.
Antioxidants (Basel). 2022 Dec 15;11(12):2471. doi: 10.3390/antiox11122471.
The study presents the achievement of a new assembly with antioxidant behaviour based on a copolymacrolactone structure that encapsulates erythritol (Eryt). Poly(ethylene brassylate-co-squaric acid) (PEBSA) was synthesised in environmentally friendly conditions, respectively, through a process in suspension in water by opening the cycle of ethylene brassylate macrolactone, followed by condensation with squaric acid. The compound synthesised in suspension was characterised by comparison with the polymer obtained by polymerisation in solution. The investigations revealed that, with the exception of the molecular masses, the compounds generated by the two synthetic procedures present similar properties, including good thermal stability, with a T of 456 °C, and the capacity for network formation. In addition, the investigation by dynamic light scattering techniques evidenced a mean diameter for PEBSA particles of around 596 nm and a zeta potential of -25 mV, which attests to their stability. The bio-based copolymacrolactone was used as a matrix for erythritol encapsulation. The new PEBSA-Eryt compound presented an increased sorption/desorption process, compared with the PEBSA matrix, and a crystalline morphology confirmed by X-ray diffraction analysis. The bioactive compound was also characterised in terms of its biocompatibility and antioxidant behaviour.
该研究展示了一种基于包裹赤藓糖醇(Eryt)的共聚大环内酯结构且具有抗氧化性能的新型组装体的成果。聚(乙二酸癸二酯 - 共 - 方酸)(PEBSA)分别在环境友好的条件下合成,通过在水中悬浮的过程,打开乙二酸癸二酯大环内酯的环,然后与方酸缩合。通过与溶液聚合得到的聚合物进行比较,对悬浮合成的化合物进行了表征。研究表明,除分子量外,两种合成方法生成的化合物具有相似的性质,包括良好的热稳定性,其热分解温度为456℃,以及形成网络的能力。此外,通过动态光散射技术研究表明,PEBSA颗粒的平均直径约为596nm,zeta电位为 - 25mV,这证明了它们的稳定性。这种生物基共聚大环内酯被用作赤藓糖醇包封的基质。与PEBSA基质相比,新型PEBSA - Eryt化合物呈现出增强的吸附/解吸过程,并且通过X射线衍射分析证实具有晶体形态。还对该生物活性化合物的生物相容性和抗氧化行为进行了表征。