Hubei Collaborative Innovation Center for Advanced Organic Chemical Materials, Ministry of Education Key Laboratory for the Synthesis and Application of Organic Functional Molecules, College of Chemistry and Chemical Engineering, Hubei University, Wuhan 430062, PR China.
Hubei Collaborative Innovation Center for Advanced Organic Chemical Materials, Ministry of Education Key Laboratory for the Synthesis and Application of Organic Functional Molecules, College of Chemistry and Chemical Engineering, Hubei University, Wuhan 430062, PR China.
Biosens Bioelectron. 2018 Nov 30;120:175-187. doi: 10.1016/j.bios.2018.08.058. Epub 2018 Aug 25.
Organic-inorganic hybrid nanoflowers (HNFs) are a class of flower-like hybrid materials self-assembled from metal ions and organic components, such as enzymes, antibodies, DNA and amino acids et al. Based on their properties of enhanced enzyme activity, stability, facile synthesis and excellent biocompatibility, HNFs enable them to be a highly versatile platform for latent applications in many realms, such as biological sensing, biomimetic catalyst, dye decolorization and support nanomaterials, etc. Compared with free enzymes, HNFs are potentially advantageous for biological applications owing to their enhanced catalytic ability and powerful load capacity. Herein, an overview of recent developments achieved in HNFs biosensing, including electrochemical biosensors, colorimetric biosensors, and point-of-care diagnostic devices, is provided. We summarized the preparation of different HNFs based on the type of metal ions and biomolecules used. The signal tags involved in the all-in-one hybrid nanoflowers are particularly emphasized. The challenges, future trends, and prospects associated with HNFs and their related materials for biosensing are also discussed.
有机-无机杂化纳米花(HNFs)是一类由金属离子和有机成分(如酶、抗体、DNA 和氨基酸等)自组装而成的花状杂化材料。基于其增强的酶活性、稳定性、易于合成和优良的生物相容性等特性,HNFs 使其成为在许多领域具有广泛应用潜力的多功能平台,如生物传感、仿生催化剂、染料脱色和纳米材料支撑等。与游离酶相比,HNFs 在生物应用中具有增强的催化能力和强大的负载能力,因此具有潜在的优势。本文综述了 HNFs 在生物传感中的最新研究进展,包括电化学生物传感器、比色生物传感器和即时诊断设备。我们总结了基于所用金属离子和生物分子类型的不同 HNFs 的制备方法。特别强调了一体式杂化纳米花中涉及的信号标记物。还讨论了与 HNFs 及其相关材料在生物传感方面的挑战、未来趋势和前景。