In Vivo Trafficking of the Anticancer Drug Tris(8-Quinolinolato) Gallium (III) (KP46) by Gallium-68/67 PET/SPECT Imaging

Author:

Darwesh Afnan M. F.12ORCID,Imberti Cinzia1ORCID,Bartnicka Joanna J.1,Al-Salemee Fahad1,Blower Julia E.1,Rigby Alex1ORCID,Bordoloi Jayanta1,Griffiths Alex3,Ma Michelle T.1,Blower Philip J.1ORCID

Affiliation:

1. College London, School of Biomedical Engineering and Imaging Sciences, St. Thomas’ Hospital, London SE1 7EH, UK

2. Department of Radiologic Sciences, Faculty of Applied Medical Sciences, King Abdulaziz University, Jeddah 21589, Saudi Arabia

3. London Metallomics Facility, King’s College London, London SE1 9NH, UK

Abstract

KP46 (tris(hydroxyquinolinato)gallium(III)) is an experimental, orally administered anticancer drug. Its absorption, delivery to tumours, and mode of action are poorly understood. We aimed to gain insight into these issues using gallium-67 and gallium-68 as radiotracers with SPECT and PET imaging in mice. [67Ga]KP46 and [68Ga]KP46, compared with [68Ga]gallium acetate, were used for logP measurements, in vitro cell uptake studies in A375 melanoma cells, and in vivo imaging in mice bearing A375 tumour xenografts up to 48 h after intravenous (tracer level) and oral (tracer and bulk) administration. 68Ga was more efficiently accumulated in A375 cells in vitro when presented as [68Ga]KP46 than as [68Ga]gallium acetate, but the reverse was observed when intravenously administered in vivo. After oral administration of [68/67Ga]KP46, absorption of 68Ga and 67Ga from the GI tract and delivery to tumours were poor, with the majority excreted in faeces. By 48 h, low but measurable amounts were accumulated in tumours. The distribution in tissues of absorbed radiogallium and octanol extraction of tissues suggested trafficking as free gallium rather than as KP46. We conclude that KP46 likely acts as a slow releaser of gallium ions which are inefficiently absorbed from the GI tract and trafficked to tissues, including tumour and bone.

Funder

Wellcome Trust and EPSRC

Wellcome Trust

EPSRC programme for Next Generation Molecular Imaging and Therapy with Radionuclides

Wellcome Multiuser Equipment

NIHR Biomedical Research Centre

CRUK City of London Centre Award

MRC Doctoral Training Partnership

King Abdulaziz University

Saudi Arabian Cultural Bureau in the UK

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference56 articles.

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