Author:
Lins Jonas,Miloslavina Yuliya A.,Carrara Stefania C.,Rösler Lorenz,Hofmann Sarah,Herr Kevin,Theiß Franziska,Wienands Laura,Avrutina Olga,Kolmar Harald,Buntkowsky Gerd
Abstract
AbstractOctreotide, a somatostatin analogue, has shown its efficacy for the diagnostics and treatment of various types of cancer, i.e., in octreotide scan, as radio-marker after labelling with a radiopharmaceutical. To avoid toxicity of radio-labeling, octreotide-based assays can be implemented into magnetic resonance techniques, such as MRI and NMR. Here we used a Parahydrogen-Induced Polarization (PHIP) approach as a cheap, fast and straightforward method. Introduction of l-propargyl tyrosine as a PHIP marker at different positions of octreotide by manual Solid-Phase Peptide Synthesis (SPPS) led to up to 2000-fold proton signal enhancement (SE). Cell binding studies confirmed that all octreotide variants retained strong binding affinity to the surface of human-derived cancer cells expressing somatostatin receptor 2. The hydrogenation reactions were successfully performed in methanol and under physiologically compatible mixtures of water with methanol or ethanol. The presented results open up new application areas of biochemical and pharmacological studies with octreotide.
Funder
Deutsche Forschungsgemeinschaft
Technische Universität Darmstadt
Publisher
Springer Science and Business Media LLC
Cited by
2 articles.
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