Anti Galectin 3 radiolabelled antibody: small animal imaging with High-resolution and Anger camera (Abstract/Poster in atti di convegno)

Type
Label
  • Anti Galectin 3 radiolabelled antibody: small animal imaging with High-resolution and Anger camera (Abstract/Poster in atti di convegno) (literal)
Anno
  • 2008-01-01T00:00:00+01:00 (literal)
Alternative label
  • Parisella, M.; Bartolazzi, A.; Alberto, S.; Calogero, D.; Del Prete, F.; Braesch-Andersen, S.; Trotta, C.; Scopinaro, F.; Soluri, A. (2008)
    Anti Galectin 3 radiolabelled antibody: small animal imaging with High-resolution and Anger camera
    in Congress EANM - European Association of Nuclear Medicine 2008, MUNICH (Germany), 11-15/10/2008
    (literal)
Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#autori
  • Parisella, M.; Bartolazzi, A.; Alberto, S.; Calogero, D.; Del Prete, F.; Braesch-Andersen, S.; Trotta, C.; Scopinaro, F.; Soluri, A. (literal)
Pagina inizio
  • 341 (literal)
Pagina fine
  • 341 (literal)
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  • http://biblioproxy.cnr.it:2106/journal/259 (literal)
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  • European Journal of Nuclear Medicine and Molecular Imaging (literal)
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  • 35 (literal)
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  • 35 (literal)
Rivista
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  • 1 (literal)
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  • 2 (literal)
Note
  • Poster (literal)
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  • 1, 3, 4:University Sapienza, Rome, ITALY; 2, 5, 7: Pathology Research Laboratory St. Andrea Hospital., Rome, ITALY; 6: Mabtech Research Laboratory, Nacka, SWEDEN; 7, 9: National research council, Rome, ITALY; 8: University, Rome, ITALY; (literal)
Titolo
  • Anti Galectin 3 radiolabelled antibody: small animal imaging with High-resolution and Anger camera (literal)
Abstract
  • High resolution camera (HRC) can be useful in small animal imaging. Our HRC shows 4inch2 FOV,  CsI crystals are integrated with tungsten blade, square parallel hole collimator and coupled with a  position sensitive photomultiplier (PSPMT). Its spatial resolution is 2mm. AIM: To verify if small  animal  imaging  with  HRC  is  more  reliable  than  Anger  camera  imaging,  Methods:  We  have  labelled a rat monoclonal antibody anti-human galectin-3 with 99mTc and studied its targeting  potential in n/n balbc mice xenografted with poorly differentiated ARO cell line. Twenty mice  were  transplanted  with  galectin-3  positive  ARO  cells  and  developed  tumours  of  0.5-1.0  cm  diameter.  The  animals  were  injected  i.v.  with  37MBq  (100?Ci)  of 99mTc-labeled  mAb  (30  µg  protein). Whole body images were acquired at 1, 3, 6, 9 and 24 hours, using Anger camera and  HRC.  Images  were  analyzed  by  drawing  ROIs  on  the  tumour.  Hip  muscle  was  taken  as  background. Uptake was expressed as target to background ratio (T/M). All mice were divided in  5 groups of 4 animals. One animal of each group was scarified at a planned time and tissue  samples from blood, major organs and tumours were removed, weighted and counted. The ex  vivo bio-distribution of radiolabelled galectin-3 mAb was expressed as % of injected dose per  gram of tissue (%ID/g). Ex-vivo T/M ratios obtained from autopsy were compared with data from  the  two  cameras.  Results:  Inhomogeneous  radioactivity  within  xenografted  tumours  was  identified only by HRC images. In the sites presenting low activity with HRC images, autopsy  identified necrotic zones. T/M ratio is reported in table   Conclusion. Parallel hole collimator HRC is very useful in small animal imaging. Actually, the  trend of T/M ratio was consistent with ex vivo data, owing precise drawing of ROIs and linearity  of device counting. In a future, the combination of HRC with highly specific radiopharmaceuticals,  such as radiolabelled anti-G3 antibody, can be useful also on man.  (literal)
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