Integrated photodynamic Raman theranostic system for cancer diagnosis, treatment, and post-treatment molecular monitoring
File(s)v11p2006.pdf (2.62 MB)
Published version
Author(s)
Type
Journal Article
Abstract
Theranostics, the combination of diagnosis and therapy, has long held promise as a means to achieving personalised precision cancer treatments. However, despite its potential, theranostics has yet to realise significant clinical translation, largely due the complexity and overriding toxicity concerns of existing theranostic nanoparticle strategies.
Methods: Here, we present an alternative nanoparticle-free theranostic approach based on simultaneous Raman spectroscopy and photodynamic therapy (PDT) in an integrated clinical platform for cancer theranostics.
Results: We detail the compatibility of Raman spectroscopy and PDT for cancer theranostics, whereby Raman spectroscopic diagnosis can be performed on PDT photosensitiser-positive cells and tissues without inadvertent photosensitiser activation/photobleaching or impaired diagnostic capacity. We further demonstrate that our theranostic platform enables in vivo tumour diagnosis, treatment, and post-treatment molecular monitoring in real-time.
Conclusion: This system thus achieves effective theranostic performance, providing a promising new avenue towards the clinical realisation of theranostics.
Methods: Here, we present an alternative nanoparticle-free theranostic approach based on simultaneous Raman spectroscopy and photodynamic therapy (PDT) in an integrated clinical platform for cancer theranostics.
Results: We detail the compatibility of Raman spectroscopy and PDT for cancer theranostics, whereby Raman spectroscopic diagnosis can be performed on PDT photosensitiser-positive cells and tissues without inadvertent photosensitiser activation/photobleaching or impaired diagnostic capacity. We further demonstrate that our theranostic platform enables in vivo tumour diagnosis, treatment, and post-treatment molecular monitoring in real-time.
Conclusion: This system thus achieves effective theranostic performance, providing a promising new avenue towards the clinical realisation of theranostics.
Date Issued
2021-01-01
Date Acceptance
2020-11-25
Citation
Theranostics, 2021, 11 (4), pp.2006-2019
ISSN
1838-7640
Publisher
Ivyspring International Publisher
Start Page
2006
End Page
2019
Journal / Book Title
Theranostics
Volume
11
Issue
4
Copyright Statement
© The author(s). This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
License URL
Sponsor
Commission of the European Communities
Commission of the European Communities
GlaxoSmithKline Services Unlimited
Wellcome Trust
Grant Number
676137
701713
Mark Buswell
098411/Z/12/Z
Subjects
Science & Technology
Life Sciences & Biomedicine
Medicine, Research & Experimental
Research & Experimental Medicine
Raman Spectroscopy
Photodynamic Therapy
Theranostics
Cancer
Nanoparticle-Free
MULTIFUNCTIONAL NANOPARTICLES
5-AMINOLEVULINIC ACID
BARRETTS-ESOPHAGUS
THERAPY
SPECTROSCOPY
PROBE
PROGRESS
PHOTOSENSITIZERS
NANOSHELLS
MECHANISMS
Cancer
Nanoparticle-Free
Photodynamic Therapy
Raman Spectroscopy
Theranostics
physics.med-ph
physics.med-ph
physics.optics
1112 Oncology and Carcinogenesis
Publication Status
Published