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Lanthanide-Doped Inorganic Nanoprobes for Luminescent Assays of Biomarkers
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作者 Luping Wang siyuan han +2 位作者 Chenliang Li Datao Tu Xueyuan Chen 《Accounts of Materials Research》 2023年第2期193-204,共12页
Tremendous progress in nanomaterial and nanotechnology has been made in recent years,which greatly contributes to the development of inorganic nanoparticles(NPs)as luminescent probes in diverse biomedical applications... Tremendous progress in nanomaterial and nanotechnology has been made in recent years,which greatly contributes to the development of inorganic nanoparticles(NPs)as luminescent probes in diverse biomedical applications.In particular,these luminescent nanoprobes are widely employed for sensitive assays of biomarkers like disease markers.Generally,the luminescent bioassay technologies mainly rely on conventional molecular probes such as lanthanide(Ln3+)chelates or organic dyes,which suffer from inferior photochemical stability,low photobleaching,potential long-term toxicity,or high background noise.In contrast,Ln3+-doped NPs possess distinct physicochemical properties including better photostability,lower toxicity,and superior optical properties like long photoluminescent(PL)lifetime,narrow emission band,and tunable spectral range from the ultraviolet to the second near-infrared(NIR-II),which make them extremely ideal as luminescent nanoprobes.As such,enormous research enthusiasm has been invested in this fascinating field of Ln3+-doped luminescent nanoprobes in recent years.Accordingly,background-free luminescent bioassays with high signal-to-noise have been achieved by employing Ln3+-doped NPs on the basis of their downshifting luminescence(DSL)with a long PL lifetime,NIR-II luminescence with long-wavelength emissions,or upconverting luminescence(UCL)upon NIR excitation.However,there are still key challenges for Ln3+-doped nanoprobes owing to their low brightness and quantum yield,which restrict their biomedical applications.During the past decade,we have explored efficient approaches for the synthesis and design of highly efficient Ln3+-doped nanoprobes toward ultrasensitive luminescent bioassay of disease markers.In this Account,we summarize our most recent endeavors toward the development of inorganic Ln3+-doped NPs as sensitive nanoprobes for luminescent bioassays.First,we overview the approaches of controlled synthesis and optical manipulation to obtain highly efficient Ln3+-doped NPs with desirable optical properties.Second,we survey the design of Ln3+-doped nanoprobes with outstanding water dispersibility and excellent biocompatibility through surface functional bioconjugation of NPs.By employing these nanoprobes,we propose and exemplify several background-free luminescent bioassay strategies in an effort to suppress the interference of background noise from scattered lights and autofluorescence from biological samples.Third,we highlight the ultrasensitive bioassay of disease markers such as the time-resolved luminescent bioassay,NIR-II luminescent bioassay,and UCL bioassay.Finally,the major challenges,promising emerging trends,and future perspectives on this attractive field are discussed.Through this Account,we aim to offer a series of effective approaches to luminescent bioassay with high sensitivity and excellent specificity based on Ln3+-doped nanoprobes,which may broaden the roadway for clinical bioassays and accelerate the exploration of novel nanoprobes in versatile biomedical applications. 展开更多
关键词 PROPERTIES LUMINESCENCE LIFETIME
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地月空间近地小行星观测系统研究 被引量:3
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作者 唐玉华 吴伟仁 +8 位作者 李明涛 韩思远 祁海明 王新涛 周琪 张哲 田少杰 石萌 金霄 《中国科学:信息科学》 CSCD 北大核心 2022年第7期1169-1185,共17页
近地小行星撞击是造成人类毁灭性灾难的七大威胁之一,开展小行星防御、保护地球家园是全人类共同的责任.做好小行星防御,首先要建立和完善小行星监测系统.目前,国际小行星监测主要以地基光学系统监测为主,由于光学观测条件限制,导致来... 近地小行星撞击是造成人类毁灭性灾难的七大威胁之一,开展小行星防御、保护地球家园是全人类共同的责任.做好小行星防御,首先要建立和完善小行星监测系统.目前,国际小行星监测主要以地基光学系统监测为主,由于光学观测条件限制,导致来自太阳方向的小行星无法及时被“捕获”跟踪,而天基监测系统由于其特定的位置优越性,成为地基观测系统的有益补充.本文系统梳理了地基监测系统存在的问题和不足,分析了月基和地月空间轨道部署望远镜的优劣,提出了基于地月系统L4,L5点轨道部署天基望远镜用于近地小行星观测的方案,并提出了国际合作实施建议,对未来构建近地小行星监测系统具有参考价值. 展开更多
关键词 地月空间 行星防御 近地小行星 拉格朗日点轨道 红外望远镜
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