A DOTA based bisphosphonate with an albumin binding moiety for delayed body clearance for bone targeting
- 1. Institute of Nuclear Chemistry, Johannes-Gutenberg-University Mainz (Germany)
- 2. Department of Inorganic Chemistry, Charles University, Prague (Czech Republic)
- 3. Department of Nuclear Medicine, University Hospital, Mainz (Germany)
Description
Radiolabeled bisphosphonates are commonly used in the diagnosis and therapy of bone metastases. Blood clearance of bisphosphonates is usually fast and only 30%–50% of the injected activity is retained in the skeleton, while most of the activity is excreted by the urinary tract. A longer blood circulation may enhance accumulation of bisphosphonate compounds in bone metastases. Therefore, a chemically modified macrocyclic bisphosphonate derivative with an additional human albumin binding entity was synthesized and pharmacokinetics of its complex was evaluated. The DOTA-bisphosphonate conjugate BPAMD was compared against the novel DOTAGA-derived albumin-binding bisphosphonate DOTAGA(428-D-Lys)MBP (L1). The ligands were labeled with 68Ga(III) and were evaluated in in vitro binding studies to hydroxyapatite (HA) as well as to human serum albumin. The compounds were finally compared in in vivo PET and ex vivo organ distribution studies in small animals over 6 h. Binding studies revealed a consistent affinity of both bisphosphonate tracers to HA. Small animal PET and ex vivo organ distribution studies showed longer blood retention of [68Ga]L1. [68Ga]BPAMD is initially more efficiently bound to the bone but skeletal accumulation of the modified compound and [68Ga]BPAMD equalized at 6 h p.i. Ratios of femur epiphyseal plate to ordinary bone showed to be more favorable for [68Ga]L1 than for [68Ga]BPAMD due to the longer circulation time of the new tracer. Thus, the chemical modification of BPAMD toward an albumin-binding bisphosphonate, L1, resulted in a novel PET tracer which conserves advantages of both functional groups within one and the same molecule. The properties of this new diagnostic tracer are expected to be preserved in 177Lu therapeutic agent with the same ligand (a theranostic pair).
Availability note (English)
Available from http://dx.doi.org/10.1016/j.nucmedbio.2016.07.009Additional details
Identifiers
- DOI
- 10.1016/j.nucmedbio.2016.07.009;
- PII
- S0969-8051(16)30135-4;
Publishing Information
- Journal Title
- Nuclear Medicine and Biology
- Journal Volume
- 43
- Journal Issue
- 11
- Journal Page Range
- p. 670-678
- ISSN
- 0969-8051
- CODEN
- NMBIEO
INIS
- Country of Publication
- United Kingdom
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 49030676
- Subject category
- S62: RADIOLOGY AND NUCLEAR MEDICINE; S60: APPLIED LIFE SCIENCES;
- Descriptors DEI
- ALBUMINS; APATITES; BLOOD CIRCULATION; BLOOD SERUM; CLEARANCE; DIAGNOSIS; DRUGS; FEMUR; GALLIUM 68; IN VITRO; IN VIVO; LIGANDS; LUTETIUM 177; METASTASES; POSITRON COMPUTED TOMOGRAPHY; RETENTION; THERAPY; URINARY TRACT
- Descriptors DEC
- BETA DECAY RADIOISOTOPES; BETA-MINUS DECAY RADIOISOTOPES; BETA-PLUS DECAY RADIOISOTOPES; BIOLOGICAL MATERIALS; BLOOD; BLOOD PLASMA; BODY; BODY FLUIDS; COMPUTERIZED TOMOGRAPHY; DAYS LIVING RADIOISOTOPES; DIAGNOSTIC TECHNIQUES; ELECTRON CAPTURE RADIOISOTOPES; EMISSION COMPUTED TOMOGRAPHY; GALLIUM ISOTOPES; HOURS LIVING RADIOISOTOPES; INTERMEDIATE MASS NUCLEI; ISOMERIC TRANSITION ISOTOPES; ISOTOPES; LUTETIUM ISOTOPES; MATERIALS; MEDICINE; MINERALS; NUCLEI; ODD-EVEN NUCLEI; ODD-ODD NUCLEI; ORGANIC COMPOUNDS; ORGANS; PHOSPHATE MINERALS; PROTEINS; RADIOISOTOPES; RARE EARTH NUCLEI; SKELETON; TOMOGRAPHY
Optional Information
- Copyright
- Copyright (c) 2016 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.