Literature DB >> 27033892

Biomarkers for Radiation Pneumonitis Using Noninvasive Molecular Imaging.

Meetha Medhora1, Steven Haworth2, Yu Liu3, Jayashree Narayanan4, Feng Gao4, Ming Zhao5, Said Audi6, Elizabeth R Jacobs7, Brian L Fish4, Anne V Clough8.   

Abstract

UNLABELLED: Our goal is to develop minimally invasive biomarkers for predicting radiation-induced lung injury before symptoms develop. Currently, there are no biomarkers that can predict radiation pneumonitis. Radiation damage to the whole lung is a serious risk in nuclear accidents or in radiologic terrorism. Our previous studies have shown that a single dose of 15 Gy of x-rays to the thorax causes severe pneumonitis in rats by 6-8 wk. We have also developed a mitigator for radiation pneumonitis and fibrosis that can be started as late as 5 wk after radiation.
METHODS: We used 2 functional SPECT probes in vivo in irradiated rat lungs. Regional pulmonary perfusion was measured by injection of (99m)Tc-macroaggregated albumin. Perfused volume was determined by comparing the volume of distribution of (99m)Tc-macroaggregated albumin to the anatomic lung volume obtained by small-animal CT. A second probe, (99m)Tc-labeled Duramycin, which binds to apoptotic cells, was used to measure pulmonary cell death in the same rat model.
RESULTS: The perfused volume of lung was decreased by about 25% at 1, 2, and 3 wk after receipt of 15 Gy, and (99m)Tc-Duramycin uptake was more than doubled at 2 and 3 wk. There was no change in body weight, breathing rate, or lung histology between irradiated and nonirradiated rats at these times. Pulmonary vascular resistance and vascular permeability measured in isolated perfused lungs ex vivo increased at 2 wk after 15 Gy of irradiation.
CONCLUSION: Our results suggest that SPECT biomarkers have the potential to predict radiation injury to the lungs before substantial functional or histologic damage is observed. Early prediction of radiation pneumonitis in time to initiate mitigation will benefit those exposed to radiation in the context of therapy, accidents, or terrorism.
© 2016 by the Society of Nuclear Medicine and Molecular Imaging, Inc.

Entities:  

Keywords:  99mTc-Duramycin; SPECT; lung perfusion; radiation injury; radiological terrorism

Mesh:

Substances:

Year:  2016        PMID: 27033892      PMCID: PMC5053021          DOI: 10.2967/jnumed.115.160291

Source DB:  PubMed          Journal:  J Nucl Med        ISSN: 0161-5505            Impact factor:   10.057


  33 in total

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3.  Renin-Angiotensin system suppression mitigates experimental radiation pneumonitis.

Authors:  Swarajit N Ghosh; Rong Zhang; Brian L Fish; Vladimir A Semenenko; X Allen Li; John E Moulder; Elizabeth R Jacobs; Meetha Medhora
Journal:  Int J Radiat Oncol Biol Phys       Date:  2009-12-01       Impact factor: 7.038

4.  Tumor response to radiotherapy regulated by endothelial cell apoptosis.

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5.  99mTc-labeled duramycin as a novel phosphatidylethanolamine-binding molecular probe.

Authors:  Ming Zhao; Zhixin Li; Scott Bugenhagen
Journal:  J Nucl Med       Date:  2008-07-16       Impact factor: 10.057

6.  Temporal onset of hypoxia and oxidative stress after pulmonary irradiation.

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7.  Bronchial circulation angiogenesis in the rat quantified with SPECT and micro-CT.

Authors:  Christian Wietholt; David L Roerig; John B Gordon; Steven T Haworth; Robert C Molthen; Anne V Clough
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8.  Effect of an angiotensin II receptor blocker and two angiotensin converting enzyme inhibitors on transforming growth factor-beta (TGF-beta) and alpha-actomyosin (alpha SMA), important mediators of radiation-induced pneumopathy and lung fibrosis.

Authors:  Agostino Molteni; Lisa F Wolfe; William F Ward; C Hsin Ts'ao; Loredana Brizio Molteni; Patricia Veno; Brian L Fish; Joan M Taylor; Norma Quintanilla; Betty Herndon; John E Moulder
Journal:  Curr Pharm Des       Date:  2007       Impact factor: 3.116

9.  A single-step kit formulation for the (99m)Tc-labeling of HYNIC-Duramycin.

Authors:  Ming Zhao; Zhixin Li
Journal:  Nucl Med Biol       Date:  2012-08-02       Impact factor: 2.408

10.  Dose-modifying factor for captopril for mitigation of radiation injury to normal lung.

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2.  In vivo molecular imaging stratifies rats with different susceptibilities to hyperoxic acute lung injury.

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Review 3.  Development of Duramycin-Based Molecular Probes for Cell Death Imaging.

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Journal:  Mol Imaging Biol       Date:  2022-02-10       Impact factor: 3.484

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Review 5.  Guidelines for evaluating myocardial cell death.

Authors:  Paras K Mishra; Adriana Adameova; Joseph A Hill; Christopher P Baines; Peter M Kang; James M Downey; Jagat Narula; Masafumi Takahashi; Antonio Abbate; Hande C Piristine; Sumit Kar; Shi Su; Jason K Higa; Nicholas K Kawasaki; Takashi Matsui
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6.  A rapid dynamic in vivo near-infrared fluorescence imaging assay to track lung vascular permeability after acute radiation injury.

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7.  Changes in miRNA in the lung and whole blood after whole thorax irradiation in rats.

Authors:  Feng Gao; Pengyuan Liu; Jayashree Narayanan; Meiying Yang; Brian L Fish; Yong Liu; Mingyu Liang; Elizabeth R Jacobs; Meetha Medhora
Journal:  Sci Rep       Date:  2017-03-17       Impact factor: 4.379

8.  Protective Effect of Selenium-L-methionine on Radiation-induced Acute Pneumonitis and Lung Fibrosis in Rat.

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9.  Protection by Inhaled Hydrogen Therapy in a Rat Model of Acute Lung Injury can be Tracked in vivo Using Molecular Imaging.

Authors:  Said H Audi; Elizabeth R Jacobs; Xiao Zhang; Amadou K S Camara; Ming Zhao; Meetha M Medhora; Benjamin Rizzo; Anne V Clough
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10.  Aptamer-Modified Magnetic Nanosensitizer for In Vivo MR Imaging of HER2-Expressing Cancer.

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