TY - JOUR A1 - Wester, Hans Jürgen A1 - Keller, Ulrich A1 - Schottelius, Margret A1 - Beer, Ambros A1 - Philipp-Abbrederis, Kathrin A1 - Hoffmann, Frauke A1 - Šimeček, Jakub A1 - Gerngross, Carlos A1 - Lassmann, Michael A1 - Herrmann, Ken A1 - Pellegata, Natalia A1 - Rudelius, Martina A1 - Kessler, Horst A1 - Schwaiger, Markus T1 - Disclosing the CXCR4 expression in lymphoproliferative diseases by targeted molecular imaging JF - Theranostics N2 - Chemokine ligand-receptor interactions play a pivotal role in cell attraction and cellular trafficking, both in normal tissue homeostasis and in disease. In cancer, chemokine receptor-4 (CXCR4) expression is an adverse prognostic factor. Early clinical studies suggest that targeting CXCR4 with suitable high-affinity antagonists might be a novel means for therapy. In addition to the preclinical evaluation of [\(^{68}\)Ga]Pentixafor in mice bearing human lymphoma xenografts as an exemplary CXCR4-expressing tumor entity, we report on the first clinical applications of [\(^{68}\)Ga]Pentixafor-Positron Emission Tomography as a powerful method for CXCR4 imaging in cancer patients. [\(^{68}\)Ga]Pentixafor binds with high affinity and selectivity to human CXCR4 and exhibits a favorable dosimetry. [\(^{68}\)Ga]Pentixafor-PET provides images with excellent specificity and contrast. This non-invasive imaging technology for quantitative assessment of CXCR4 expression allows to further elucidate the role of CXCR4/CXCL12 ligand interaction in the pathogenesis and treatment of cancer, cardiovascular diseases and autoimmune and inflammatory disorders. KW - acute myeloid leukemia KW - prognostic value KW - therapeutic target KW - chemokine receptor KW - CXCR4 KW - lymphoma KW - in vivo imaging KW - positron emission tomography Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144537 VL - 5 IS - 6 ER - TY - JOUR A1 - Lassmann, Michael A1 - Preylowski, Veronika A1 - Schlögl, Susanne A1 - Schoenahl, Frédéric A1 - Jörg, Gerhard A1 - Samnick, Samuel A1 - Buck, Andreas K. T1 - Is the Image Quality of I-124-PET Impaired by an Automatic Correction of Prompt Gammas? JF - PLoS ONE N2 - Objectives The aim of this study is to evaluate the quality of I-124 PET images with and without prompt gamma compensation (PGC) by comparing the recovery coefficients (RC), the signal to noise ratios (SNR) and the contrast to F-18 and Ga-68. Furthermore, the influence of the PGC on the quantification and image quality is evaluated. Methods For measuring the image quality the NEMA NU2-2001 PET/SPECT-Phantom was used containing 6 spheres with a diameter between 10 mm and 37 mm placed in water with different levels of background activity. Each sphere was filled with the same activity concentration measured by an independently cross-calibrated dose calibrator. The “hot” sources were acquired with a full 3D PET/CT (Biograph mCT®, Siemens Medical USA). Acquisition times were 2 min for F-18 and Ga-68, and 10 min for I-124. For reconstruction an OSEM algorithm was applied. For I-124 the images were reconstructed with and without PGC. For the calculation of the RCs the activity concentrations in each sphere were determined; in addition, the influence of the background correction was studied. Results The RCs of Ga-68 are the smallest (79%). I-124 reaches similar RCs (87% with PGC, 84% without PGC) as F-18 (84%). showing that the quantification of I-124 images is similar to F-18 and slightly better than Ga-68. With background activity the contrast of the I-124 PGC images is similar to Ga-68 and F-18 scans. There was lower background activity in the I-124 images without PGC, which probably originates from an overcorrection of the scatter contribution. Consequently, the contrast without PGC was much higher than with PGC. As a consequence PGC should be used for I-124. Conclusions For I-124 there is only a slight influence on the quantification depending on the use of the PGC. However, there are considerable differences with respect to I-124 image quality. KW - cancer treatment KW - health care KW - isotopes KW - photons KW - positron emission tomography KW - signal to noise ratio KW - super ultraviolet KW - thyroid carcinomas Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-96863 ER -