Published July 1996 | Version v1
Journal article

Iodine-131 labelled octreotide: not an option for somatostatin receptor therapy

  • 1. Dept. of Nuclear Medicine, Univ. Hospital Dijkzigt and Erasmus Univ. Medical School, Rotterdam (Netherlands)
  • 2. Dept. of Internal Medicine III, Univ. Hospital Dijkzigt and Erasmus Univ. Medical School, Rotterdam (Netherlands)

Description

This study deals with the radioiodination of very small amounts of peptide on a therapeutic scale, the required purification procedures after radioiodination, and the influence of high beta fluxes from 131I on a peptide during radioiodination and purification. Based on the regularly used therapeutic doses of 131I in cancer treatment and out previous experience with [111In-DTPA-D-Phe1]-octreotide, it was assumed that a minimal effective therapeutic dose of 3.7 GBq 131I has to be coupled to a maximum of ∼100 μg peptide, representing only a slight excess of peptide over 131I. This contrasts with non-peptide radiopharmaceuticals in which high compound to radionuclide ratios are usually used. Labelling at low peptide to radionuclide ratios (low labelling yields) results in the formation of di-iodinated compounds, whereas at high peptide to radionuclide ratios mono-iodinated products of low specific activity are formed. Thus, after radioiodination the desired mono-iodinated peptide has to be separated form unreacted iodide, and from di-iodinated and unreacted peptide, as both compounds compete for the receptors. Possible radiolysis of the peptide during labelling and separation steps were investigated by irradiating 30 μg unlabelled peptide with 370 MBq 131I in a small volume. The peptide composition of the incubation mixtures was investigated by high-performance liquid chromatography after irradiation for 30 min to 24 h. The results showed that the peptide was degraded with a half-life of less than 1 h. During the preparation of a real therapeutic dose (at much higher β-flux) the peptide will be degraded even faster during the various steps required. In conclusion, intact mono-iodinated 131I-labelled somatostatin analogues for peptide receptor therapy will be difficult to obtain. (orig./VHE)

Additional details

Publishing Information

Journal Title
European Journal of Nuclear Medicine
Journal Volume
23
Journal Issue
7
Journal Page Range
p. 775-781.
ISSN
0340-6997
CODEN
EJNMD9