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Biology subjects

Mueller, C. E.

Publications and source records attributed to Mueller, C. E..

2 recordsLinked to original sources

Targeting epilepsy with photopharmacology in human brain tissue

Photo-activatable drugs (PDs) are rapidly emerging as precision therapeutics across biomedical research, yet their potential in epilepsy treatment has remained understudied. Given that 30% of epilepsies are medically refractory, and anti-seizure medications often cause multi-organ side-effects, PDs could break new ground. Here, we evaluate light-switchable ion-channel blockers QAQ and CQAQ, and a newly developed caged propofol (CaP), in murine brain slices, and postsurgical brain tissue from patients with epilepsy or brain tumors. In mice, we show that QAQ/CQAQ reversibly suppress neuronal firing, while photo-activated CaP prolonged inhibitory post-synaptic currents and enhanced leak current. While QAQ caused identical effects in human tissue, CQAQ unexpectedly increased firing. Activated CaP robustly suppressed epileptiform activity across species. This work establishes CaP as a tool for neuroscience and disease-related studies. Our results highlight the necessity for early human model testing in biomedical research, and showcase photopharmacology as a potential powerful approach to control human epilepsy.

pharmacology and toxicology↗

Positron emission tomography (PET) tracer enables imaging of high CD73 expression in cancer

Ecto-5-nucleotidase (CD73) is a potential new drug target for cancer immunotherapy. Its overexpression is associated with various aggressive cancers, including triple-negative breast cancer (TNBC) and pancreatic cancer, making it a promising target for diagnostic imaging. Besides antibodies, small molecule CD73 inhibitors have been developed and are currently in clinical trials. This study aimed to develop and evaluate fluorine-18 labeled high-affinity CD73 inhibitors as tracers for the non-invasive positron emission tomography (PET) imaging of CD73 expression in cancer. Two CD73 inhibitors were selected for radiolabeling based on their high potency (Ki values of ca. 1 nM), and favorable pharmacokinetic properties providing [18F]PSB-19427 ([18F]1) and [18F]MRS-4648 ([18F]2). Ex vivo imaging studies on human breast cancer tissues indicated specific binding of both radiotracers. Subsequent in vivo studies proved [18F]1 to be superior due to its long elimination half-life and its accumulation in TNBC and pancreatic cancer tissues, suggesting its potential as a versatile PET tracer for imaging various solid tumors. [18F]1 significantly outperformed [18F]FDG in visualizing triple-negative breast cancer, offering potential advantages over [18F]FDG in terms of specificity and diagnostic accuracy. Thus, [18F]1 is a PET tracer with outstanding properties suitable for broad application in cancer diagnosis and potentially in therapy control. Based on these results, further clinical development of PET tracers targeting CD73 is warranted. One Sentence SummaryA PET tracer for imaging CD73 expression was developed, enabling cancer diagnosis.

cancer biology↗