The development of a non-invasive infection-specific diagnostic probe holds the potential to vastly improve early-stage detection of infection, enabling precise therapeutic intervention and potentially reducing the incidence of antibiotic resistance. Towards this goal, a commercially available bacteria-targeting Zinc(II)-dipicolylamine (ZnDPA)-derived fluorophore, PSVue794, was assessed as a photoacoustic (PA) imaging probe (PIP). A radiolabeled version of the dye, [(99m)Tc]Tc-PSVue794, was developed to facilitate quantitative biodistribution studies beyond optical imaging methods, which showed a target-to-non-target ratio of 10.1â±â1.1, 12 h post-injection. The ability of the PIP to differentiate between bacterial infection, sterile inflammation, and healthy tissue in a mouse model, was then evaluated via PA imaging. The PA signal in sites of sterile inflammation (0.062â±â0.012 a.u.) was not statistically different from that of the background (0.058â±â0.006 a.u.). In contrast, high PA signal was detected at sites of bacterial infection (0.176â±â0.011 a.u.) as compared to background (0.081â±â0.04 a.u., where Pââ¤â0.03). This work demonstrates the potential of utilizing established fluorophores towards PAI and utilizing PAI as a modality in the distinction of bacterial infection from sites of sterile inflammation.
Photoacoustic imaging of a cyanine dye targeting bacterial infection.
利用光声成像技术研究靶向细菌感染的花菁染料
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作者:Swann Rowan, Hernández-Valdés Daniel, Silva Luis Rafael, Marfatia Yusra Mahmood, El-Zaria Mohamed E, Genady Afaf R, Kwiecien Jacek M, Valliant John F, Sadeghi Saman
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2024 | 起止号: | 2024 Aug 7; 14(1):18322 |
| doi: | 10.1038/s41598-024-69148-2 | 研究方向: | 微生物学 |
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