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首页> 外文期刊>Current medicinal chemistry >Recent Progress in 808 nm Excited Upconversion Nanomaterials as Multifunctional Nanoprobes for Visualized Theranostics in Cancers
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Recent Progress in 808 nm Excited Upconversion Nanomaterials as Multifunctional Nanoprobes for Visualized Theranostics in Cancers

机译:808 nm激发上转化纳米材料作为多功能纳米体的癌症近期进展

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摘要

Near-infrared (NIR) light responsive nanomaterials have attracted considerable attention due to their location in the biological window. Especially, lanthanide-doped nanomaterials exhibit unique upconversion luminescence (UCL) properties with low background interference and long luminescence lifetime, which makes them promising in imaging diagnosis of cancers. Compared with traditional upconversion nanomaterials excited by 980 nm laser, 808 nm excitation can overcome the disadvantages of high heating effect and weak penetration depth induced by excitation source. Therefore, developing 808 nm excited upconversion nanoprobes will be important for the in vivo bio-imaging and visualized theranostics of tumors in deep-tissue. In the review paper, we systematically summarized the synthesis strategy and luminescence modulation of Nd3+-sensitized upconversion nanomaterials under 808 nm excitation, discussed the influence of excitation source on heating effect and penetration depth, and particularly focused on their applications in UCL imaging, multi-modal imaging and imaging-guided therapy of cancers.
机译:近红外(NIR)光响应性纳米材料由于其在生物窗口中的位置而引起了相当大的关注。特别是,含镧掺杂的纳米材料具有低背景干扰和长发光寿命的独特升高的发光(UCL)性能,这使得它们在成像诊断方面具有很大的癌症。与980nm激光激发激发的传统上转换纳米材料相比,808nm激励可以克服激发源引起的高加热效果和弱渗透深度的缺点。因此,发育808nm激发上转化纳米体对深组织中的肿瘤的体内生物成像和可视化治疗是重要的。在审查论文中,我们系统地总结了在808 nm激发下的Nd3 + - 敏化型纳米材料的合成策略和发光调节,讨论了激发源对加热效果和渗透深度的影响,特别是在UCL成像中的应用,多 - 癌症的模态成像和成像引导治疗。

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