A new high affinity technetium analogue of bombesin containing DTPA as a pharmacokinetic modifier

Kuo-Shyan Lin1, Andrew Luu, Kwamena E Baidoo

  • 1Department of Environmental Health Sciences, The Johns Hopkins Medical Institutions, 615 North Wolfe Street, Room E6632, Baltimore, Maryland 21205, USA.

Bioconjugate Chemistry
|November 18, 2004
PubMed

Insights

A novel technetium-99m labeled bombesin (BN) analogue, [DTPA(1), Lys(3)((99m)Tc-Hx-DADT), Tyr(4)]BN, shows high affinity for bombesin/gastrin-releasing peptide (GRP) receptors. This agent demonstrates potential for imaging tumors expressing these receptors with favorable pharmacokinetic properties.

Area of Science:

  • Nuclear Medicine
  • Radiopharmaceutical Chemistry
  • Oncology

Background:

  • Bombesin (BN)/gastrin-releasing peptide (GRP) receptors are highly expressed on various tumors, making them a viable molecular target for diagnostic imaging.
  • Developing targeted radiotracers is crucial for detecting lesions expressing BN/GRP receptors.

Purpose of the Study:

  • To develop and evaluate a novel, high-affinity, hydrophilic technetium-99m labeled BN analogue, [DTPA(1), Lys(3)((99m)Tc-Hx-DADT), Tyr(4)]BN, for imaging BN/GRP receptor-positive tumors.
  • To assess the in vitro binding characteristics and in vivo pharmacokinetic profile of the developed radiotracer.

Main Methods:

  • Synthesis and labeling of a BN analogue with technetium-99m, incorporating diethylenetriaminepentaacetic acid (DTPA) for pharmacokinetic modification.
  • In vitro binding assays using human prostate cancer PC-3 cell membranes to determine inhibition constants (Ki).
  • In vivo biodistribution studies in normal mice and scintigraphic imaging of human prostate cancer xenografts in SCID mice.

Main Results:

  • The radiotracer [DTPA(1), Lys(3)((99m)Tc-Hx-DADT), Tyr(4)]BN exhibited high affinity for BN/GRP receptors (Ki = 19.9 +/- 8.0 nM).
  • In vivo studies showed rapid blood clearance, low intestinal accumulation, and significant uptake in BN/GRP receptor-rich tissues like the pancreas.
  • Specific binding was confirmed through blocking studies with BN and neuromedin B, and imaging demonstrated high target-to-nontarget ratios in tumor xenografts.

Conclusions:

  • The developed radiotracer, [DTPA(1), Lys(3)((99m)Tc-Hx-DADT), Tyr(4)]BN, possesses favorable pharmacokinetic properties and specific binding to BN/GRP receptors.
  • This agent holds significant potential for the molecular imaging of BN/GRP receptor-positive tumors, including prostate cancer.