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复合纳米粒子:两全其美。

Composite nanoparticles: the best of two worlds.

机构信息

Department of Chemistry and Biochemistry and BIO5 Institute, University of Arizona, Tucson, AZ 85721-0041, USA.

出版信息

Anal Bioanal Chem. 2012 Jan;402(1):83-9. doi: 10.1007/s00216-011-5482-5. Epub 2011 Oct 21.

Abstract

Nanomaterials have rapidly moved into the mainstream for chemical and biological analysis. Nanoparticle probes enhance signal intensity, increase the chemical and physical stability of the probe, and facilitate surface modification for specific targeting. Unfortunately, common problems are encountered with many nanoparticle probes, e.g., poor solubility, poor biocompatibility, and leakage of encapsulated components, that severely restrict the application of probes to ex vivo samples under carefully controlled conditions. A wide range of recently developed multifunctional nanomaterials are poised to make significant contributions to molecular analysis of biological systems. Composite nanoparticle geometries, including composites, hybrids, and core-shell nanoparticles prepared using two or more materials, e.g., silica/inorganic, silica/polymer, or polymer/inorganic combinations, offer improved solubility, easier functionalization, and decreased toxicity compared with the related single-component materials. Furthermore, composite nanomaterials present substantial signal amplification, and improved multiplexing for higher-sensitivity and higher-resolution measurements. Further development and integration of composite nanomaterials into the quantitative sciences will play a key role in the future of functional probes for imaging, quantitative analysis, and biological manipulation.

摘要

纳米材料已迅速成为化学和生物分析的主流。纳米粒子探针增强了信号强度,提高了探针的化学和物理稳定性,并便于进行表面修饰以实现特定的靶向。然而,许多纳米粒子探针都存在常见问题,例如溶解度差、生物相容性差和封装成分泄漏,这严重限制了探针在精心控制条件下对离体样品的应用。最近开发的各种多功能纳米材料有望为生物系统的分子分析做出重大贡献。复合纳米粒子的几何形状,包括复合材料、杂化材料和使用两种或更多种材料(例如,硅石/无机、硅石/聚合物或聚合物/无机组合)制备的核壳纳米粒子,与相关的单一组分材料相比,提供了更好的溶解度、更容易的功能化和更低的毒性。此外,复合纳米材料提供了大量的信号放大,并提高了多重检测的灵敏度和分辨率。将复合纳米材料进一步开发和集成到定量科学中,将在功能探针的成像、定量分析和生物操作的未来中发挥关键作用。

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