68Ga-radiolabeled fluorescent dye for potential non-invasive multimodal imaging of subarachnoid hemorrhage
Jona Wilhelm Gerhards, Laura Schäfer, Daniel Kang, Ute Lindauer, Susanne Lütje, Felix Manuel Mottaghy, Tobias Schmidt, Andreas Theodor Josef Vogg

TL;DR
This study developed a radiolabeled fluorescent dye for non-invasive imaging of subarachnoid hemorrhage in rats, aiming to better understand its mechanisms.
Contribution
The novel contribution is the successful radiolabeling of Alexa Fluor™ 594 with 68Ga for multimodal imaging in aSAH research.
Findings
The dye Alexa Fluor™ 594 was successfully conjugated with a chelator and labeled with 68Ga.
Optimal labeling conditions achieved a radiochemical yield of over 85%.
Impurities in the final product remained below 3%.
Abstract
Aneurysmal subarachnoid hemorrhage (aSAH) is a distinct type of stroke, primarily caused by the rupture of a brain aneurysm. The underlying mechanisms of aSAH remain incompletely understood, prompting ongoing research in this area. Recent investigations into the perivascular system revealed a distribution disturbance of the dye Alexa Fluor™ 594 during measurements. To further investigate this distribution anomaly, it is proposed to label the dye with a radionuclide for biokinetic tracking in rats by means of positron emission tomography for enhanced imaging and analysis. The fluorescent dye Alexa Fluor™ 594 after chelator conjugation was successfully labeled with the positron-emitting radionuclide 68Ga(III) in a no-carrier-added form. Initially, the NODA-GA-NHS ester was employed to react with the amino group of Alexa Fluor™ 594 1,5-diaminopentane, facilitating subsequent radiolabeling…
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Taxonomy
TopicsIntracranial Aneurysms: Treatment and Complications · Medical Imaging Techniques and Applications · Traumatic Brain Injury and Neurovascular Disturbances
