Literature DB >> 6843516

Radiation dose enhancement in tumors with iodine.

R Santos Mello, H Callisen, J Winter, A R Kagan, A Norman.   

Abstract

The loading of tissue with iodine can result in the enhancement of the radiation dose absorbed from low-energy x-ray or gamma ray sources. We have explored the potential of this phenomenon for radiation therapy. We have demonstrated the effect of iodine concentration and radiation quality on this dose enhancement in lymphocytes, we have calculated the effect of such enhancement on depth dose distributions in the brain, we have estimated the iodine content in two human brain tumors during computerized tomography (CT) scans, we have studied the dispersion of the iodine contrast media after direct injection into rabbit tumors, and we have demonstrated that the combination of x-ray and contrast media injection is far more effective than either agent alone in causing the regression of mouse tumors. These results suggest that there may be a therapeutic advantage from loading tumors with iodine and treating them with low-energy photons.

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Year:  1983        PMID: 6843516     DOI: 10.1118/1.595378

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  18 in total

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2.  A multifunctional nanoplatform for imaging, radiotherapy, and the prediction of therapeutic response.

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3.  Absolute perfusion measurements and associated iodinated contrast agent time course in brain metastasis: a study for contrast-enhanced radiotherapy.

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4.  Energy-dependent effect of iodized contrast medium on radiation-induced chromosome aberrations.

Authors:  W Hadnagy; A Bäuml; G Stephan
Journal:  Radiat Environ Biophys       Date:  1985       Impact factor: 1.925

5.  Breaking photoswitch activation depth limit using ionising radiation stimuli adapted to clinical application.

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6.  The Effect of Contrast Material on Radiation Dose at CT: Part II. A Systematic Evaluation across 58 Patient Models.

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Journal:  Radiology       Date:  2017-03-13       Impact factor: 11.105

7.  The dosimetric feasibility of gold nanoparticle-aided radiation therapy (GNRT) via brachytherapy using low-energy gamma-/x-ray sources.

Authors:  Sang Hyun Cho; Bernard L Jones; Sunil Krishnan
Journal:  Phys Med Biol       Date:  2009-07-27       Impact factor: 3.609

Review 8.  Roadmap to Clinical Use of Gold Nanoparticles for Radiation Sensitization.

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Journal:  Int J Radiat Oncol Biol Phys       Date:  2015-09-30       Impact factor: 7.038

9.  Gold nanoparticle imaging and radiotherapy of brain tumors in mice.

Authors:  James F Hainfeld; Henry M Smilowitz; Michael J O'Connor; Farrokh Avraham Dilmanian; Daniel N Slatkin
Journal:  Nanomedicine (Lond)       Date:  2012-12-24       Impact factor: 5.307

10.  Enhancing radiotherapy by lipid nanocapsule-mediated delivery of amphiphilic gold nanoparticles to intracellular membranes.

Authors:  Yu-Sang Yang; Randy P Carney; Francesco Stellacci; Darrell J Irvine
Journal:  ACS Nano       Date:  2014-08-20       Impact factor: 15.881

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