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Cell-Membrane-Coated and Cell-Penetrating Peptide-Conjugated Trimagnetic Nanoparticles for Targeted Magnetic Hyperthermia of Prostate Cancer Cells

[Image: see text] Prostate malignancy represents the second leading cause of cancer-specific death among the male population worldwide. Herein, enhanced intracellular magnetic fluid hyperthermia is applied in vitro to treat prostate cancer (PCa) cells with minimum invasiveness and toxicity and highl...

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Autores principales: Nica, Valentin, Marino, Attilio, Pucci, Carlotta, Şen, Özlem, Emanet, Melis, De Pasquale, Daniele, Carmignani, Alessio, Petretto, Andrea, Bartolucci, Martina, Lauciello, Simone, Brescia, Rosaria, de Boni, Francesco, Prato, Mirko, Marras, Sergio, Drago, Filippo, Hammad, Mohaned, Segets, Doris, Ciofani, Gianni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10316402/
https://www.ncbi.nlm.nih.gov/pubmed/37312240
http://dx.doi.org/10.1021/acsami.3c07248
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author Nica, Valentin
Marino, Attilio
Pucci, Carlotta
Şen, Özlem
Emanet, Melis
De Pasquale, Daniele
Carmignani, Alessio
Petretto, Andrea
Bartolucci, Martina
Lauciello, Simone
Brescia, Rosaria
de Boni, Francesco
Prato, Mirko
Marras, Sergio
Drago, Filippo
Hammad, Mohaned
Segets, Doris
Ciofani, Gianni
author_facet Nica, Valentin
Marino, Attilio
Pucci, Carlotta
Şen, Özlem
Emanet, Melis
De Pasquale, Daniele
Carmignani, Alessio
Petretto, Andrea
Bartolucci, Martina
Lauciello, Simone
Brescia, Rosaria
de Boni, Francesco
Prato, Mirko
Marras, Sergio
Drago, Filippo
Hammad, Mohaned
Segets, Doris
Ciofani, Gianni
author_sort Nica, Valentin
collection PubMed
description [Image: see text] Prostate malignancy represents the second leading cause of cancer-specific death among the male population worldwide. Herein, enhanced intracellular magnetic fluid hyperthermia is applied in vitro to treat prostate cancer (PCa) cells with minimum invasiveness and toxicity and highly specific targeting. We designed and optimized novel shape-anisotropic magnetic core–shell–shell nanoparticles (i.e., trimagnetic nanoparticles - TMNPs) with significant magnetothermal conversion following an exchange coupling effect to an external alternating magnetic field (AMF). The functional properties of the best candidate in terms of heating efficiency (i.e., Fe(3)O(4)@Mn(0.5)Zn(0.5)Fe(2)O(4)@CoFe(2)O(4)) were exploited following surface decoration with PCa cell membranes (CM) and/or LN1 cell-penetrating peptide (CPP). We demonstrated that the combination of biomimetic dual CM-CPP targeting and AMF responsiveness significantly induces caspase 9-mediated apoptosis of PCa cells. Furthermore, a downregulation of the cell cycle progression markers and a decrease of the migration rate in surviving cells were observed in response to the TMNP-assisted magnetic hyperthermia, suggesting a reduction in cancer cell aggressiveness.
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spelling pubmed-103164022023-07-04 Cell-Membrane-Coated and Cell-Penetrating Peptide-Conjugated Trimagnetic Nanoparticles for Targeted Magnetic Hyperthermia of Prostate Cancer Cells Nica, Valentin Marino, Attilio Pucci, Carlotta Şen, Özlem Emanet, Melis De Pasquale, Daniele Carmignani, Alessio Petretto, Andrea Bartolucci, Martina Lauciello, Simone Brescia, Rosaria de Boni, Francesco Prato, Mirko Marras, Sergio Drago, Filippo Hammad, Mohaned Segets, Doris Ciofani, Gianni ACS Appl Mater Interfaces [Image: see text] Prostate malignancy represents the second leading cause of cancer-specific death among the male population worldwide. Herein, enhanced intracellular magnetic fluid hyperthermia is applied in vitro to treat prostate cancer (PCa) cells with minimum invasiveness and toxicity and highly specific targeting. We designed and optimized novel shape-anisotropic magnetic core–shell–shell nanoparticles (i.e., trimagnetic nanoparticles - TMNPs) with significant magnetothermal conversion following an exchange coupling effect to an external alternating magnetic field (AMF). The functional properties of the best candidate in terms of heating efficiency (i.e., Fe(3)O(4)@Mn(0.5)Zn(0.5)Fe(2)O(4)@CoFe(2)O(4)) were exploited following surface decoration with PCa cell membranes (CM) and/or LN1 cell-penetrating peptide (CPP). We demonstrated that the combination of biomimetic dual CM-CPP targeting and AMF responsiveness significantly induces caspase 9-mediated apoptosis of PCa cells. Furthermore, a downregulation of the cell cycle progression markers and a decrease of the migration rate in surviving cells were observed in response to the TMNP-assisted magnetic hyperthermia, suggesting a reduction in cancer cell aggressiveness. American Chemical Society 2023-06-13 /pmc/articles/PMC10316402/ /pubmed/37312240 http://dx.doi.org/10.1021/acsami.3c07248 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Nica, Valentin
Marino, Attilio
Pucci, Carlotta
Şen, Özlem
Emanet, Melis
De Pasquale, Daniele
Carmignani, Alessio
Petretto, Andrea
Bartolucci, Martina
Lauciello, Simone
Brescia, Rosaria
de Boni, Francesco
Prato, Mirko
Marras, Sergio
Drago, Filippo
Hammad, Mohaned
Segets, Doris
Ciofani, Gianni
Cell-Membrane-Coated and Cell-Penetrating Peptide-Conjugated Trimagnetic Nanoparticles for Targeted Magnetic Hyperthermia of Prostate Cancer Cells
title Cell-Membrane-Coated and Cell-Penetrating Peptide-Conjugated Trimagnetic Nanoparticles for Targeted Magnetic Hyperthermia of Prostate Cancer Cells
title_full Cell-Membrane-Coated and Cell-Penetrating Peptide-Conjugated Trimagnetic Nanoparticles for Targeted Magnetic Hyperthermia of Prostate Cancer Cells
title_fullStr Cell-Membrane-Coated and Cell-Penetrating Peptide-Conjugated Trimagnetic Nanoparticles for Targeted Magnetic Hyperthermia of Prostate Cancer Cells
title_full_unstemmed Cell-Membrane-Coated and Cell-Penetrating Peptide-Conjugated Trimagnetic Nanoparticles for Targeted Magnetic Hyperthermia of Prostate Cancer Cells
title_short Cell-Membrane-Coated and Cell-Penetrating Peptide-Conjugated Trimagnetic Nanoparticles for Targeted Magnetic Hyperthermia of Prostate Cancer Cells
title_sort cell-membrane-coated and cell-penetrating peptide-conjugated trimagnetic nanoparticles for targeted magnetic hyperthermia of prostate cancer cells
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10316402/
https://www.ncbi.nlm.nih.gov/pubmed/37312240
http://dx.doi.org/10.1021/acsami.3c07248
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