Impact of Aluminium phthalocyanine nanoconjugate on melanoma stem cells

Metastatic melanoma cancer stem cells are subpopulations linked to tumour development, immunoevasive behaviour, treatment resistance, and metastasis, all of which contribute to a poor prognosis. Photodynamic treatment (PDT) is an alternate strategy to cancer eradication that involves the generation...

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Veröffentlicht in:Artificial cells, nanomedicine, and biotechnology nanomedicine, and biotechnology, 2023-12, Vol.51 (1), p.334-345
Hauptverfasser: Mkhobongo, Bridgette, Chandran, Rahul, Abrahamse, Heidi
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Sprache:eng
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Zusammenfassung:Metastatic melanoma cancer stem cells are subpopulations linked to tumour development, immunoevasive behaviour, treatment resistance, and metastasis, all of which contribute to a poor prognosis. Photodynamic treatment (PDT) is an alternate strategy to cancer eradication that involves the generation of reactive oxygen species. As a carrier, nanoparticles enable efficient cellular uptake of photosensitizers, improving organelle accumulation and cancer cell targeted therapy. This study considered at the effect of PDT on CD133 + Melanoma Stem Cells utilising an Aluminium Phthalocyanine Gold Nanoparticle (AlPcS 4 Cl-AuNP) combination. A ligand exchange approach was used to conjugate AlPcS 4 Cl-PEG-AuNP-COOH and was characterised using UV-Vis, FTIR, DLS and Zeta Potential. Stem cells isolated from the A375 cell line irradiated with a laser at 673.2 nm with a fluency of 5 J/cm 2 were evaluated. Furthermore, it was important to study if apoptosis was one of the mechanisms causing to cell death which was substantiated with Annexin V/PI, caspase 3 and p53 analysis. The nanoparticle conjugate mediated PDT promoted apoptotic cell death, showing increased expression of p53 and caspase-3. The study proposed a strategy aimed at extending the understanding of PDT in enhancing the therapy of melanoma, suggesting a probable improved cell death when AlPcS 4 Cl was conjugated to AuNPs.
ISSN:2169-1401
2169-141X
DOI:10.1080/21691401.2023.2233568