Johnson Nick W, Jiang Sheng Yan, Patterson Samuel B H, Hinchcliffe Trevor, Vilela Filipe, Yiu Humphrey H P
Institute of Chemical Sciences, School of Engineering & Physical Sciences, Heriot-Watt University, Edinburgh, UK.
Impact Solutions Ltd., Impact Technology Centre, Fraser Road, Kirkton Campus, Livingston, UK.
Biosci Nanotechnol. 2025;1(1):4. doi: 10.1186/s44331-025-00004-4. Epub 2025 Aug 1.
Polymers are used as an integral component in a wide range of liquid formulation products to improve formulation integrity and product performance. Due to environmental and regulatory pressures, it is necessary for the industry to shift away from petrochemically derived polymers to more sustainable and biodegradable products. However, current methods to analyse the biodegradation of polymers are time consuming and adapted to small molecules which is stifling innovation in this area. There is a requirement to re-envisage how the industry conducts biodegradability testing for polymers in liquid formulation (PLFs) from high-throughput screening methods at the preliminary stages of development to predictive modelling. Advancements in the use of nanomaterials as enzyme immobilisation scaffolds for polymer degradation could evolve how biodegradability testing is thought about and drive the PLF industry into a more sustainable future. This review highlights the current trends in the use of nanomaterials as enzyme immobilisation platforms and how this technology has been applied to the degradation of biodegradable PLFs.
聚合物被用作各种液体制剂产品的一个不可或缺的组成部分,以改善制剂的完整性和产品性能。由于环境和监管压力,该行业有必要从石化衍生聚合物转向更具可持续性和可生物降解的产品。然而,目前分析聚合物生物降解的方法耗时且适用于小分子,这阻碍了该领域的创新。需要重新设想该行业如何在从开发的初步阶段的高通量筛选方法到预测建模的过程中对液体制剂中的聚合物(PLF)进行生物降解性测试。将纳米材料用作聚合物降解的酶固定支架的应用进展可能会改变人们对生物降解性测试的看法,并推动PLF行业走向更可持续的未来。本综述强调了将纳米材料用作酶固定平台的当前趋势,以及该技术如何应用于可生物降解PLF的降解。