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基于无机镧系掺杂纳米探针的时间分辨发光生物传感

Time-resolved luminescent biosensing based on inorganic lanthanide-doped nanoprobes.

作者信息

Zheng Wei, Tu Datao, Huang Ping, Zhou Shanyong, Chen Zhuo, Chen Xueyuan

机构信息

Key Laboratory of Optoelectronic Materials Chemistry and Physics, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, China.

出版信息

Chem Commun (Camb). 2015 Mar 11;51(20):4129-43. doi: 10.1039/c4cc10432c.

Abstract

Time-resolved (TR) photoluminescence (PL) biosensing has been widely adopted in many research and medical institutions. However, commercial molecular TRPL bioprobes like lanthanide (Ln(3+))-chelates suffer from poor photochemical stability and long-term toxicity. Inorganic Ln(3+)-doped nanocrystals (NCs), owing to their superior physicochemical properties over Ln(3+)-chelates, are regarded as a new generation of luminescent nanoprobes for TRPL biosensing. The long-lived PL of Ln(3+)-doped NCs combined with the TRPL technique is able to completely suppress the interference of the short-lived background, resulting in a background-free signal and therefore a remarkable sensitivity for biosensing. In this feature article, we summarize the latest advancements in inorganic Ln(3+)-doped NCs as TRPL nano-bioprobes from their fundamental optical properties to their potential applications for ultrasensitive biodetection and high-resolution bioimaging. Future efforts towards the commercialization of these nanoprobes are also proposed.

摘要

时间分辨(TR)光致发光(PL)生物传感已在许多研究机构和医疗机构中广泛应用。然而,诸如镧系元素(Ln(3+))螯合物之类的商业化分子TRPL生物探针存在光化学稳定性差和长期毒性的问题。无机掺杂Ln(3+)的纳米晶体(NCs)由于其相对于Ln(3+)螯合物具有更优异的物理化学性质,被视为用于TRPL生物传感的新一代发光纳米探针。掺杂Ln(3+)的NCs的长寿命PL与TRPL技术相结合,能够完全抑制短寿命背景的干扰,产生无背景信号,从而实现生物传感的卓越灵敏度。在这篇专题文章中,我们总结了无机掺杂Ln(3+)的NCs作为TRPL纳米生物探针的最新进展,从其基本光学性质到其在超灵敏生物检测和高分辨率生物成像方面的潜在应用。我们还提出了这些纳米探针商业化的未来努力方向。

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