Identification | Back Directory | [Name]
IR-1061 | [CAS]
155614-01-0 | [Synonyms]
Dye content 80 IR-1061 Dye content 80 % 4-(2-(2-chloro-3((2,6-diphenyl-4H-*thiopyran-4-yl 4-[2-[2-chloro-3-[(2,6-diphenyl-4h-thiopyran-4-ylidene)ethylidene]-1-cyclohexen-1-yl]ethenyl]-2,6-diphenylthiopyrylium tetrafluoroborate 4-(2-{2-chloro-3-[2-(2,6-diphenyl-4H-thiopyran-4-yl
idene)ethylidene]cyclohex-1-en-1-yl}ethenyl)-2,6-
diphenyl-1lambda4-thiopyran-1-ylium 4-[(E)-2-[(3Z)-2-chloro-3-[2-(2,6-diphenylthiopyran-4-ylidene)ethylidene]cyclohexen-1-yl]ethenyl]-2,6-diphenylthiopyrylium,tetrafluoroborate | [Molecular Formula]
C44H34ClS2.BF4 | [MDL Number]
MFCD00191915 | [MOL File]
155614-01-0.mol | [Molecular Weight]
749.141 |
Hazard Information | Back Directory | [Uses]
IR-1061 is a near infrared fluorescent organic dye for in vivo bimodal imaging[1][2]. | [in vivo]
IR-1061 exhibits excellent performance in in vivo imaging experiments on mice. Bimodal imaging is performed by a single injection of the PLP-D probe containing IR-1061. In OTN-NIR imaging, signals can be observed 30 seconds after injection. Blood vessels and the liver are visualized first, and the signals remains stable within 300 seconds after injection. Most of the signals accumulates in the liver and spleen 150 minutes later. In MRI, imaging startes 30 minutes after injection, and signal changes in regions such as the liver and bladder can be observed[1]. | [References]
[1] Thi Kim Dung Doan, et al. The influence of Gd-DOTA conjugating ratios to PLGA-PEG micelles encapsulated IR-1061 on bimodal over-1000 nm near-infrared fluorescence and magnetic resonance imaging. Biomater Sci. 2022 Mar 2;10(5):1217-1230. DOI:10.1039/d1bm01574e [2] Doan TKD, et al. The effect of Gd-DOTA locations within PLGA-b-PEG micelle encapsulated IR-1061 on bimodal over-1000 nm near-infrared fluorescence and magnetic resonance imaging. Biomater Sci. 2022 Oct 25;10(21):6244-6257. DOI:10.1039/d2bm01213h |
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