Nanoparticle radio-enhancement: principles, progress and application to cancer treatment.

scientific article published on 10 November 2017

Nanoparticle radio-enhancement: principles, progress and application to cancer treatment. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1088/1361-6560/AA99CE
P698PubMed publication ID29125831

P50authorZdenka KuncicQ51348575
P2093author name stringSandrine Lacombe
P2860cites workNanoparticle Mediated Tumor Vascular Disruption: A Novel Strategy in Radiation TherapyQ38831572
P433issue2
P921main subjectnanoparticleQ61231
P304page(s)02TR01
P577publication date2018-01-09
P1433published inPhysics in Medicine and BiologyQ7189694
P1476titleNanoparticle radio-enhancement: principles, progress and application to cancer treatment
P478volume63

Reverse relations

cites work (P2860)
Q89537027A Chelate-Free Nano-Platform for Incorporation of Diagnostic and Therapeutic Isotopes
Q89975524A Facile One-Pot Synthesis of Versatile PEGylated Platinum Nanoflowers and Their Application in Radiation Therapy
Q64275109Challenges and Contradictions of Metal Nano-Particle Applications for Radio-Sensitivity Enhancement in Cancer Therapy
Q92920739Dual Imaging Gold Nanoplatforms for Targeted Radiotheranostics
Q90194467Fluorescent Radiosensitizing Gold Nanoparticles
Q91440069Highly Porous Hybrid Metal-Organic Nanoparticles Loaded with Gemcitabine Monophosphate: a Multimodal Approach to Improve Chemo- and Radiotherapy
Q64095885Iodine nanoparticles enhance radiotherapy of intracerebral human glioma in mice and increase efficacy of chemotherapy
Q90168895On the importance of modeling gold nanoparticles distribution in dose-enhanced radiotherapy
Q90497254Radio-enhancement effects by radiolabeled nanoparticles
Q64072603Ultra-small gadolinium oxide nanocrystal sensitization of non-small-cell lung cancer cells toward X-ray irradiation by promoting cytostatic autophagy

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