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用于清洁产品和食品强化的可降解聚(β-氨基酯)微粒。

Degradable poly(β-amino ester) microparticles for cleansing products and food fortification.

作者信息

Zhang Linzixuan, Xiao Ruiqing, Jin Tianyi, Pan Xinyan, Fransen Katharina A, Alsaiari Shahad K, Lau Alicia, He Ruizhe, Han Jooli, Pedretti Benjamin J, Yeo Jing Ying, Yang Xin, Olsen Bradley D, Alexander-Katz Alfredo, Smith Zachary P, Langer Robert, Jaklenec Ana

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, MA USA.

David H. Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, MA USA.

出版信息

Nat Chem Eng. 2025;2(1):77-89. doi: 10.1038/s44286-024-00151-0. Epub 2024 Dec 6.

Abstract

Microplastic pollution is a pressing global crisis caused by the extensive use of nondegradable microplastic materials in daily activities. One effective approach to mitigate this issue is to replace nondegradable plastics with degradable materials that have properties amendable for targeted applications. Here we present the development of a degradable microparticle (MP) platform based on a poly(β-amino ester) (PAE) that degrades into sugar and amino acid derivatives. This PAE MP platform showed functional replacement of nondegradable microplastics used in cleansing products and food fortification. In cleansing products, PAE MPs effectively enhanced the cleansing efficiency of a representative rinse-off product and showed effective removal of potentially toxic elements, as an alternative of traditional nondegradable microbeads. In food fortification, PAE MPs provided robust protection for multiple essential vitamins and minerals against extensive cooking and storage conditions with rapid nutrient release in a simulated human digestion system. Collectively, these PAE MPs present a potential platform to replace microplastic usage on a global scale in many applications.

摘要

微塑料污染是一场紧迫的全球危机,它是由日常活动中广泛使用不可降解的微塑料材料所致。缓解这一问题的一种有效方法是用具有适用于特定应用性能的可降解材料取代不可降解塑料。在此,我们展示了一种基于聚(β-氨基酯)(PAE)的可降解微粒(MP)平台的开发,该平台可降解为糖和氨基酸衍生物。这个PAE MP平台显示出能够功能性地替代用于清洁产品和食品强化的不可降解微塑料。在清洁产品中,作为传统不可降解微珠的替代品,PAE MPs有效提高了一种代表性冲洗产品的清洁效率,并显示出能有效去除潜在有毒元素。在食品强化方面,PAE MPs为多种必需维生素和矿物质提供了强大的保护,使其在广泛的烹饪和储存条件下仍能保持稳定,并且在模拟人体消化系统中能快速释放营养成分。总体而言,这些PAE MPs为在全球范围内许多应用中取代微塑料的使用提供了一个潜在平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35f3/11782087/7a2407ab15b8/44286_2024_151_Fig1_HTML.jpg

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