Published June 2001 | Version v1
Journal article

Targeting of liver tumour in rats by selective delivery of holmium-166 loaded microspheres: a biodistribution study

  • 1. Dept. of Nuclear Medicine, University Medical Center, Utrecht (Netherlands)
  • 2. Animal Inst., Utrecht Univ. (Netherlands)
  • 3. Dept. of Radiology, Univ. Medical Center, Utrecht (Netherlands)
  • 4. Dept. of Pathology, Univ. Medical Center, Utrecht (Netherlands)
  • 5. Dept. of Pharmaceutics, Utrecht Univ. (Netherlands)

Description

Intra-arterial administration of beta-emitting particles that become trapped in the vascular bed of a tumour and remain there while delivering high doses, represents a unique approach in the treatment of both primary and metastatic liver tumours. Studies on selective internal radiation therapy of colorectal liver metastases using yttrium-90 glass microspheres have shown encouraging results. This study describes the biodistribution of 40-μm poly lactic acid microspheres loaded with radioactive holmium-166, after intra-arterial administration into the hepatic artery of rats with implanted liver tumours. Radioactivity measurements showed >95% retention of injected activity in the liver and its resident tumour. The average activity detected in other tissues was ≤0.1%ID/g, with incidental exceptions in the lungs and stomach. Very little 166Ho activity was detected in kidneys (<0.1%ID/g), thereby indicating the stability of the microspheres in vivo. Tumour targeting was very effective, with a mean tumour to liver ratio of 6.1±2.9 for rats with tumour (n=15) versus 0.7±0.5 for control rats (n=6; P<0.001). These ratios were not significantly affected by the use of adrenaline. Histological analysis showed that five times as many large (>10) and medium-sized (4-9) clusters of microspheres were present within tumour and peritumoural tissue, compared with normal liver. Single microspheres were equally dispersed throughout the tumour, as well as normal liver parenchyma. (orig.)

Additional details

Publishing Information

Journal Title
European Journal of Nuclear Medicine
Journal Volume
28
Journal Issue
6
Journal Page Range
p. 743-749
ISSN
0340-6997
CODEN
EJNMD9