99m Tc-labeled and functionalised plasmonic nanoparticles for photo-thermal therapy of primary tumours
Photo-thermal therapy (PTT) is an emerging biomedical field involving plasmonic nanoparticles (NPs), which efficiently convert light into heat due to a phenomenon known as Localized Surface Plasmon Resonance (LSPR). The ease of surface functionalization offered, especially by gold NPs (AuNPs), signi...
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Published in | Expert review of medical devices Vol. 22; no. 6; p. 545 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
England
03.06.2025
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Abstract | Photo-thermal therapy (PTT) is an emerging biomedical field involving plasmonic nanoparticles (NPs), which efficiently convert light into heat due to a phenomenon known as Localized Surface Plasmon Resonance (LSPR). The ease of surface functionalization offered, especially by gold NPs (AuNPs), significantly betters their biocompatibility and stability. The radiolabeling of AuNPs with Technetium-99 (
Tc) allows for their precise spatial localization within the body at any depth and site through nuclear medicine imaging techniques. The combination of radioactive, optical, and thermo-ablative properties makes radiolabelled AuNPs a valid tool in theranostics. This review summarizes the main concepts behind PTT and the most recent clinical applications of plasmonic
Tc-labeled NPs in cancer theranostic.
Literature research of the last 20 years was conducted using Scopus and PubMed, including papers concerning technetium-radiolabelled NPs functionalized for cancer PTT.
AuNPs have been the subject of extensive research for diverse biomedical applications, including cancer diagnostics, therapy, and prevention, as well as drug delivery, sensing and cellular imaging. Despite the limited number of in vivo animal studies, radiolabeling and functionalizing the AuNPs with technetium represents a promising strategy to obtain a specific and efficient theranostic tool for nuclear medicine imaging. |
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AbstractList | Photo-thermal therapy (PTT) is an emerging biomedical field involving plasmonic nanoparticles (NPs), which efficiently convert light into heat due to a phenomenon known as Localized Surface Plasmon Resonance (LSPR). The ease of surface functionalization offered, especially by gold NPs (AuNPs), significantly betters their biocompatibility and stability. The radiolabeling of AuNPs with Technetium-99 (
Tc) allows for their precise spatial localization within the body at any depth and site through nuclear medicine imaging techniques. The combination of radioactive, optical, and thermo-ablative properties makes radiolabelled AuNPs a valid tool in theranostics. This review summarizes the main concepts behind PTT and the most recent clinical applications of plasmonic
Tc-labeled NPs in cancer theranostic.
Literature research of the last 20 years was conducted using Scopus and PubMed, including papers concerning technetium-radiolabelled NPs functionalized for cancer PTT.
AuNPs have been the subject of extensive research for diverse biomedical applications, including cancer diagnostics, therapy, and prevention, as well as drug delivery, sensing and cellular imaging. Despite the limited number of in vivo animal studies, radiolabeling and functionalizing the AuNPs with technetium represents a promising strategy to obtain a specific and efficient theranostic tool for nuclear medicine imaging. |
Author | De Sio, Luciano De Feo, Maria Silvia De Vincentis, Giuseppe De Cristofaro, Flaminia Rosa, Paolo Frantellizzi, Viviana Conte, Miriam Raso, Clelia Petronella, Francesca |
Author_xml | – sequence: 1 givenname: Clelia surname: Raso fullname: Raso, Clelia organization: Department of Medico-Surgical Sciences and Biotechnologies, Sapienza University of Rome, Latina, Italy – sequence: 2 givenname: Miriam surname: Conte fullname: Conte, Miriam organization: Department of Radiological Sciences, Oncology and Anatomical Pathology, Sapienza, University of Rome, Rome, Italy – sequence: 3 givenname: Francesca surname: Petronella fullname: Petronella, Francesca organization: Institute of Crystallography CNR-IC, National Research Council of Italy, Monterotondo, Italy – sequence: 4 givenname: Viviana surname: Frantellizzi fullname: Frantellizzi, Viviana organization: Department of Radiological Sciences, Oncology and Anatomical Pathology, Sapienza, University of Rome, Rome, Italy – sequence: 5 givenname: Flaminia surname: De Cristofaro fullname: De Cristofaro, Flaminia organization: Department of Radiological Sciences, Oncology and Anatomical Pathology, Sapienza, University of Rome, Rome, Italy – sequence: 6 givenname: Paolo surname: Rosa fullname: Rosa, Paolo organization: Department of Medico-Surgical Sciences and Biotechnologies, Sapienza University of Rome, Latina, Italy – sequence: 7 givenname: Maria Silvia surname: De Feo fullname: De Feo, Maria Silvia organization: Department of Radiological Sciences, Oncology and Anatomical Pathology, Sapienza, University of Rome, Rome, Italy – sequence: 8 givenname: Giuseppe surname: De Vincentis fullname: De Vincentis, Giuseppe organization: Department of Radiological Sciences, Oncology and Anatomical Pathology, Sapienza, University of Rome, Rome, Italy – sequence: 9 givenname: Luciano surname: De Sio fullname: De Sio, Luciano organization: Department of Medico-Surgical Sciences and Biotechnologies, Sapienza University of Rome, Latina, Italy |
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SubjectTerms | Animals Gold - chemistry Humans Metal Nanoparticles - chemistry Neoplasms - diagnostic imaging Neoplasms - therapy Phototherapy - methods Photothermal Therapy - methods Technetium - chemistry Theranostic Nanomedicine |
Title | 99m Tc-labeled and functionalised plasmonic nanoparticles for photo-thermal therapy of primary tumours |
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