Article In: cienciavitae, orcid, scopus
Cellular targets of cytotoxic copper phenanthroline complexes: a multimodal imaging quantitative approach in single PC3 cells
Metallomics
— 2024 — Oxford University Press (OUP)
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Published in
November 7, 2024
Abstract
<jats:title>Abstract</jats:title> <jats:p>Metal complexes are emerging as promising alternatives to traditional platinum-based cancer treatments, offering reduced side effects. However, understanding their cellular uptake and distribution and quantifying their presence at the single cell level remains challenging. Advanced imaging techniques, including transmission electron microscopy, synchrotron radiation X-ray fluorescence, and energetic ion beam-based nuclear microscopy (scanning transmission ion microscopy, particle-induced X-ray emission, elastic backscattering spectrometry), allow detailed high-resolution visualization of structure and morphology, high sensitivity for elemental detection with quantification within single cells, and the construction of 3D models of metal distribution, positioning them as powerful tools for assessing the cellular uptake and compartmentalization of complexes. Three Cu(II) complexes [Cu(phen)2(H2O)](NO3)2 (1), [Cu(Me2phen)2(NO3)]NO3 (2) and [Cu(amphen)2(H2O)](NO3)2 (3), (phen = 1,10-phenanthroline, Me2phen = 4,7-dimethyl-1,10-phen, amphen = 5-amino-phen) were investigated for Cu uptake and distribution in PC3 prostate cancer cells. All complexes show significant Cu uptake regardless of media concentration. Cu concentrations in the cytoplasm and nucleus are similar between treatments. Complexes 1 and 3 concentrate Cu in the nuclear region and show a vesicle-like pattern around the nucleus, while 2 shows a dispersed cytoplasmic pattern with large vesicles. The 3D models confirm that Cu is not retained at the plasma membrane, with complex 1 targeting the nucleus and 2 remaining in the cytoplasm. These results highlight the importance of quantifying metal distribution and correlating it with structural changes to understand the relevance of the ligand in the mechanisms of cellular uptake and targeting, crucial for the development of effective metal-based cancer therapies.</jats:p>
Publication details
Authors in the community:
Maria Isabel Rodrigues Correia
ist135350
Fernanda Marujo Marques
ist25359
Publication version
AM - Accepted manuscript
Publisher
Oxford University Press (OUP)
Title of the publication container
Metallomics
Volume
16
Issue
11
ISSN
1756-591X
Fields of Science and Technology (FOS)
biological-sciences - Biological sciences
Publication language (ISO code)
eng - English
Alternative identifier (URI)
https://doi.org/10.1093/mtomcs/mfae051
Rights type:
Only metadata available
Financing entity
Fundação para a Ciência e a Tecnologia
Identifier for the funding entity: UIDB/04565/2020