College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu, 610065, China.
State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu, 610000, China.
Small. 2024 Sep;20(37):e2401673. doi: 10.1002/smll.202401673. Epub 2024 May 9.
One of the biggest challenges in biotechnology and medical diagnostics is finding extremely sensitive and adaptable biosensors. Since metal-based enzyme-mimetic biocatalysts may lead to biosafety concerns on accumulative toxicity, it is essential to synthesize metal-free enzyme-mimics with optimal biocatalytic activity and superior selectivity. Here, the pyridine-bridged covalent organic frameworks (COFs) with specific oxidase-like (OXD-like) activities as intelligent artificial enzymes for light-augmented biocatalytic sensing of biomarkers are disclosed. Because of the adjustable bandgaps of pyridine structures on the photocatalytic properties of the pristine COF structures, the pyridine-bridged COF exhibit efficient, selective, and light-responsive OXD-like biocatalytic activity. Moreover, the pyridine-bridged COF structures show tunable and light-augmented biocatalytic detection capabilities, which outperform the recently reported state-of-the-art OXD-mimics regarding biosensing efficiency. Notably, the pyridine-bridged COF exhibits efficient and multifaceted diagnostic activity, including the extremely low limit of detection (LOD), which enables visual assays for abundant reducibility biomarkers. It is believed that this design will offer unique metal-free biocatalysts for high-sensitive and low-cost colorimetric detection and also provide new insights to create highly efficient enzyme-like COF materials via linkage-modulation strategies for future biocatalytic applications.
在生物技术和医学诊断领域,最大的挑战之一是寻找极其敏感和适应性强的生物传感器。由于基于金属的酶模拟生物催化剂可能会导致累积毒性的生物安全问题,因此合成具有最佳生物催化活性和优异选择性的无金属酶模拟物至关重要。在这里,我们揭示了具有特定氧化酶样(OXD-like)活性的吡啶桥连共价有机框架(COFs)作为智能人工酶,用于光增强生物标志物的生物催化传感。由于吡啶结构的可调带隙对原始 COF 结构的光催化性能的影响,吡啶桥连 COF 表现出高效、选择性和光响应的 OXD-like 生物催化活性。此外,吡啶桥连 COF 结构表现出可调谐和光增强的生物催化检测能力,在生物传感效率方面优于最近报道的最先进的 OXD 模拟物。值得注意的是,吡啶桥连 COF 表现出高效和多方面的诊断活性,包括极低的检测限(LOD),这使得可以进行丰富的还原性生物标志物的可视化分析。相信这种设计将为高灵敏度和低成本的比色检测提供独特的无金属生物催化剂,并通过连接调制策略为未来的生物催化应用提供新的思路,以创造高效的酶样 COF 材料。