Preface
Preface
Translational Cancer Research
2013;
2
(4)
:227
.
(26 September 2013)
Original Articles
Third generation gold nanoplatform optimized for radiation therapy
Translational Cancer Research
2013;
2
(4)
:228-239
.
(26 September 2013)
Nanoformulation enhances anti-angiogenic efficacy of tunicamycin
Translational Cancer Research
2013;
2
(4)
:240-255
.
(26 September 2013)
Review Articles
Convergence of nanotechnology with radiation therapy—insights and implications for clinical translation
Translational Cancer Research
2013;
2
(4)
:256-268
.
(26 September 2013)
Radiosensitization by gold nanoparticles: effective at megavoltage energies and potential role of oxidative stress
Translational Cancer Research
2013;
2
(4)
:269-279
.
(26 September 2013)
Gold nanoparticles in radiation research: potential applications for imaging and radiosensitization
Translational Cancer Research
2013;
2
(4)
:280-291
.
(26 September 2013)
Externally modulated theranostic nanoparticles
Translational Cancer Research
2013;
2
(4)
:292-308
.
(26 September 2013)
Tumor microenvironment and nanotherapeutics
Translational Cancer Research
2013;
2
(4)
:309-319
.
(26 September 2013)
Improving chemoradiotherapy with nanoparticle therapeutics
Translational Cancer Research
2013;
2
(4)
:320-329
.
(26 September 2013)
Nanoparticles in radiation therapy: a summary of various approaches to enhance radiosensitization in cancer
Translational Cancer Research
2013;
2
(4)
:330-342
.
(26 September 2013)
Harnessing cerium oxide nanoparticles to protect normal tissue from radiation damage
Translational Cancer Research
2013;
2
(4)
:343-358
.
(26 September 2013)
Spot light on intestinal microbiota
Translational Cancer Research
2013;
2
(4)
:359-369
.
(26 September 2013)
Disclosure:
The focused issue “Nanotechnology in Radiation Research” was commissioned by the editorial office, Translational Cancer Research without any sponsorship or funding. Rao Papineni and Pataje G.S. Prasanna served as the unpaid Guest Editors for the focused issue.
