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Photodynamic Therapy Based on Graphene and MXene in Cancer Theranostics
by
Delogu, Lucia Gemma
, Fusco, Laura
, Khan, Anooshay
, Bedognetti, Davide
, Zavan, Barbara
, Yilmazer, Acelya
, Gazzi, Arianna
, Vitale, Flavia
in
Apoptosis
/ Autophagy
/ Bioengineering and Biotechnology
/ Cancer
/ Cancer therapies
/ Cell death
/ Diagnosis
/ FDA approval
/ Gene transfer
/ Graphene
/ Light
/ MXene
/ nanomedicine
/ Photodynamic therapy
/ Physicochemical properties
/ Precision medicine
/ theranostics
2019
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Photodynamic Therapy Based on Graphene and MXene in Cancer Theranostics
by
Delogu, Lucia Gemma
, Fusco, Laura
, Khan, Anooshay
, Bedognetti, Davide
, Zavan, Barbara
, Yilmazer, Acelya
, Gazzi, Arianna
, Vitale, Flavia
in
Apoptosis
/ Autophagy
/ Bioengineering and Biotechnology
/ Cancer
/ Cancer therapies
/ Cell death
/ Diagnosis
/ FDA approval
/ Gene transfer
/ Graphene
/ Light
/ MXene
/ nanomedicine
/ Photodynamic therapy
/ Physicochemical properties
/ Precision medicine
/ theranostics
2019
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Do you wish to request the book?
Photodynamic Therapy Based on Graphene and MXene in Cancer Theranostics
by
Delogu, Lucia Gemma
, Fusco, Laura
, Khan, Anooshay
, Bedognetti, Davide
, Zavan, Barbara
, Yilmazer, Acelya
, Gazzi, Arianna
, Vitale, Flavia
in
Apoptosis
/ Autophagy
/ Bioengineering and Biotechnology
/ Cancer
/ Cancer therapies
/ Cell death
/ Diagnosis
/ FDA approval
/ Gene transfer
/ Graphene
/ Light
/ MXene
/ nanomedicine
/ Photodynamic therapy
/ Physicochemical properties
/ Precision medicine
/ theranostics
2019
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Photodynamic Therapy Based on Graphene and MXene in Cancer Theranostics
Journal Article
Photodynamic Therapy Based on Graphene and MXene in Cancer Theranostics
2019
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Overview
Cancer is one of the leading causes of death in the world. Therefore, the development of new advanced and targeted strategies in cancer research for early diagnosis and treatment has become essential to improve diagnosis outcomes and reduce therapy side effects. Graphene and more recently, MXene, are the main representatives of the family of two-dimensional (2D) materials and are widely studied as multimodal nanoplatforms for cancer diagnostics and treatment, in particular leveraging their potentialities as photodynamic therapeutic agents. Indeed, due to their irreplaceable physicochemical properties, they are virtuous allies for photodynamic therapy (PDT) in combination with bioimaging, photothermal therapy, as well as drug and gene delivery. In this review, the rapidly progressing literature related to the use of these promising 2D materials for cancer theranostics is described in detail, highlighting all their possible future advances in PDT.
Publisher
Frontiers Media SA,Frontiers Media S.A
Subject
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