Max Planck Institute for Polymer Research , 55128 Mainz , Germany.
Institute of Inorganic Chemistry and Analytical Chemistry , Johannes Gutenberg University , 55128 Mainz , Germany.
ACS Appl Mater Interfaces. 2018 Dec 26;10(51):44722-44730. doi: 10.1021/acsami.8b16307. Epub 2018 Dec 12.
Electrospun polymer mats are widely used in tissue engineering, wearable electronics, and water purification. However, in many environments, the polymer nanofibers prepared by electrospinning suffer from biofouling during long-term usage, resulting in persistent infections and device damage. Herein, we describe the fabrication of polymer mats with CeO nanorods that can prevent biofouling in an aqueous environment. The embedded CeO nanorods are functional mimics of natural haloperoxidases that catalyze the oxidative bromination of Br and HO to HOBr. The generated HOBr, a natural signaling molecule, disrupted the bacterial quorum sensing, a critical step in biofilm formation. The polymer fibers provide porous structures with high water wettability, and the embedded cerium oxide nanozymes act as a catalyst that can efficiently trigger oxidative bromination, as shown by a haloperoxidase assay. Additionally, the embedded nanozymes enhance the mechanical property of polymer mats, as shown by a single-fiber bending test using atomic force microscopy. We envision that the fabricated polymer mats with CeO nanorods may be used to provide mechanically robust coatings with antibiofouling properties.
电纺聚合物垫在组织工程、可穿戴电子设备和水净化等领域得到了广泛应用。然而,在许多环境中,电纺制备的聚合物纳米纤维在长期使用过程中会遭受生物污垢的影响,导致持续感染和设备损坏。在此,我们描述了具有 CeO 纳米棒的聚合物垫的制造,该聚合物垫可以防止水相环境中的生物污垢。嵌入的 CeO 纳米棒是天然过氧化物酶的功能模拟物,可催化 Br 和 HO 的氧化溴化反应生成 HOBr。生成的 HOBr 是一种天然信号分子,可破坏细菌群体感应,这是生物膜形成的关键步骤。聚合物纤维提供具有高润湿性的多孔结构,嵌入的氧化铈纳米酶作为催化剂,可以通过过氧化物酶测定有效地触发氧化溴化反应。此外,嵌入的纳米酶还可以增强聚合物垫的机械性能,这可以通过原子力显微镜的单纤维弯曲测试来证明。我们设想,具有 CeO 纳米棒的聚合物垫的制造可能用于提供具有抗生物污垢性能的机械坚固涂层。