Matches in SemOpenAlex for { <https://semopenalex.org/work/W2904869503> ?p ?o ?g. }
- W2904869503 endingPage "1803712" @default.
- W2904869503 startingPage "1803712" @default.
- W2904869503 abstract "Responsive nanoprobes play an important role in bioassay and bioimaging, early diagnosis of diseases and treatment monitoring. Herein, a upconversional nanoparticle (UCNP)-based nanoprobe, Ru@UCNPs, for specific sensing and imaging of hypochlorous acid (HOCl) is reported. This Ru@UCNP nanoprobe consists of two functional components,, i.e., NaYF4:Yb, Tm UCNPs that can convert near infrared light-to-visible light as the energy donor, and a HOCl-responsive ruthenium(II) complex [Ru(bpy)2(DNCH-bpy)](PF6)2 (Ru-DNPH) as the energy acceptor and also the upconversion luminescence (UCL) quencher. Within this luminescence resonance energy transfer nanoprobe system, the UCL OFF–ON emission is triggered specifically by HOCl. This triggering reaction enables the detection of HOCl in aqueous solution and biological systems. As an example of applications, the Ru@UCNPs nanoprobe is loaded onto test papers for semiquantitative HOCl detection without any interference from the background fluorescence. The application of Ru@UCNPs for background-free detection and visualization of HOCl in cells and mice is successfully demonstrated. This research has thus shown that Ru@UCNPs is a selective HOCl-responsive nanoprobe, providing a new way to detect HOCl and a new strategy to develop novel nanoprobes for in situ detection of various biomarkers in cells and early disgnosis of animal diseases." @default.
- W2904869503 created "2018-12-22" @default.
- W2904869503 creator A5010069559 @default.
- W2904869503 creator A5013681904 @default.
- W2904869503 creator A5017647093 @default.
- W2904869503 creator A5018805094 @default.
- W2904869503 creator A5027475930 @default.
- W2904869503 creator A5028383230 @default.
- W2904869503 creator A5045169513 @default.
- W2904869503 creator A5057162505 @default.
- W2904869503 creator A5071211303 @default.
- W2904869503 date "2018-12-13" @default.
- W2904869503 modified "2023-10-10" @default.
- W2904869503 title "Responsive Upconversion Nanoprobe for Background‐Free Hypochlorous Acid Detection and Bioimaging" @default.
- W2904869503 cites W1077569315 @default.
- W2904869503 cites W1172910237 @default.
- W2904869503 cites W1748931913 @default.
- W2904869503 cites W1805299795 @default.
- W2904869503 cites W1942989260 @default.
- W2904869503 cites W1957985554 @default.
- W2904869503 cites W1964238882 @default.
- W2904869503 cites W1977242080 @default.
- W2904869503 cites W1978059875 @default.
- W2904869503 cites W1988000218 @default.
- W2904869503 cites W1990135886 @default.
- W2904869503 cites W1994994658 @default.
- W2904869503 cites W1995713813 @default.
- W2904869503 cites W1996648985 @default.
- W2904869503 cites W2012795541 @default.
- W2904869503 cites W2021557363 @default.
- W2904869503 cites W2031440397 @default.
- W2904869503 cites W2040631879 @default.
- W2904869503 cites W2044925238 @default.
- W2904869503 cites W2063795872 @default.
- W2904869503 cites W2066171122 @default.
- W2904869503 cites W2088706298 @default.
- W2904869503 cites W2099409400 @default.
- W2904869503 cites W2106631502 @default.
- W2904869503 cites W2139153231 @default.
- W2904869503 cites W2160937534 @default.
- W2904869503 cites W2171542167 @default.
- W2904869503 cites W2187445553 @default.
- W2904869503 cites W2216327016 @default.
- W2904869503 cites W2278623434 @default.
- W2904869503 cites W2314305710 @default.
- W2904869503 cites W2314719402 @default.
- W2904869503 cites W2314938965 @default.
- W2904869503 cites W2315080745 @default.
- W2904869503 cites W2320589001 @default.
- W2904869503 cites W2321149562 @default.
- W2904869503 cites W2321291727 @default.
- W2904869503 cites W2326174240 @default.
- W2904869503 cites W2327521311 @default.
- W2904869503 cites W2332389521 @default.
- W2904869503 cites W2332697994 @default.
- W2904869503 cites W2335550643 @default.
- W2904869503 cites W2344489611 @default.
- W2904869503 cites W2413756079 @default.
- W2904869503 cites W2414530386 @default.
- W2904869503 cites W2494570684 @default.
- W2904869503 cites W2516686359 @default.
- W2904869503 cites W2520401927 @default.
- W2904869503 cites W2522318270 @default.
- W2904869503 cites W2562234377 @default.
- W2904869503 cites W2570418679 @default.
- W2904869503 cites W2570928904 @default.
- W2904869503 cites W2734756111 @default.
- W2904869503 cites W2745250761 @default.
- W2904869503 cites W2746891585 @default.
- W2904869503 cites W2753333879 @default.
- W2904869503 cites W2753567232 @default.
- W2904869503 cites W2753802390 @default.
- W2904869503 cites W2762625063 @default.
- W2904869503 cites W2767100753 @default.
- W2904869503 cites W2768365123 @default.
- W2904869503 cites W2772515727 @default.
- W2904869503 cites W2790813883 @default.
- W2904869503 cites W2800366941 @default.
- W2904869503 cites W2805751293 @default.
- W2904869503 cites W2809301047 @default.
- W2904869503 doi "https://doi.org/10.1002/smll.201803712" @default.
- W2904869503 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30548763" @default.
- W2904869503 hasPublicationYear "2018" @default.
- W2904869503 type Work @default.
- W2904869503 sameAs 2904869503 @default.
- W2904869503 citedByCount "56" @default.
- W2904869503 countsByYear W29048695032019 @default.
- W2904869503 countsByYear W29048695032020 @default.
- W2904869503 countsByYear W29048695032021 @default.
- W2904869503 countsByYear W29048695032022 @default.
- W2904869503 countsByYear W29048695032023 @default.
- W2904869503 crossrefType "journal-article" @default.
- W2904869503 hasAuthorship W2904869503A5010069559 @default.
- W2904869503 hasAuthorship W2904869503A5013681904 @default.
- W2904869503 hasAuthorship W2904869503A5017647093 @default.
- W2904869503 hasAuthorship W2904869503A5018805094 @default.
- W2904869503 hasAuthorship W2904869503A5027475930 @default.
- W2904869503 hasAuthorship W2904869503A5028383230 @default.