[an error occurred while processing this directive] | [an error occurred while processing this directive]
Establishment and effect evaluation of a variety of radiation-induced lung injury animal models
Qi Runzhi1, Liu Jiangang2, Wu Xianwen3
1Department of Oncology,Guang′anmen Hospital,China Academy of Chinese Medical Sciences,Beijing 100053,China; 2Center of Cardiovascular Diseases,Xiyuan Hospital,China Academy of Chinese Medical Sciences,Beijing 100091,China; 3Department of Oncology, Xiyuan Hospital, China Academy of Chinese Medical Sciences, Beijing 100091, China
Abstract Radiation-induced lung injury (RILI) is a common complication after radiotherapy for thoracic tumors. It is one of the most urgent problems to explore the optimal animal model and evaluate the effect for basic research and drug intervention along with the extensive studies of radiation pneumonia. By reviewing the literatures published in recent 10 years, the selection of irradiation site, determination of irradiation dosage, irradiation method and effect evaluation were statistically compared among different RILI animal models, aiming to explore a stable method of establishing the animal model with RILI and identify a definite effect mechanism. It provides a reliable approach for basic research and drug development to prevent and mitigate the incidence and development of RILI.
Qi Runzhi,Liu Jiangang,Wu Xianwen. Establishment and effect evaluation of a variety of radiation-induced lung injury animal models[J]. Chinese Journal of Radiation Oncology, 2019, 28(6): 472-475.
Qi Runzhi,Liu Jiangang,Wu Xianwen. Establishment and effect evaluation of a variety of radiation-induced lung injury animal models[J]. Chinese Journal of Radiation Oncology, 2019, 28(6): 472-475.
[1] Machtay M,Bae K,Movsas B,et al. Higher biologically effective dose of radiotherapy is associated with improved outcomes for locally advanced non-small cell lung carcinoma treated with chemoradiation:an analysis of the Radiation Therapy Oncology Group[J].Int J Radiat Oncol Biol Phys,2012,82(1):425-234.DOI:10.1016/j.ijrobp.2010.09.004. [2] Rajan RR,Chandrasekharan G.Pulmonary injury associated with radiation therapy-Assessment,complications and therapeutic targets[J].Biomed Pharmacother,2017,89:1092-1104.DOI:10.1016/j.biopha.2017.02.106. [3] Dent P,Yacoub A,Contessa J,et al. Stress and radiation-induced activation of multiple intracellular signaling pathways[J].Radiat Res,2003,159(3):283-300. [4] Dabjan MB,Buck CM,Jackson IL,et al. A survey of changing trends in modelling radiation lung injury in mice:bringing out the good,the bad,and the uncertain[J].Lab Invest,2016,96(9):936-949.DOI:10.1038/labinvest.2016.76. [5] Down JD,Steel GG.The expression of early and late damage after thoracic irradiation:a comparison between CBA and C57B1 mice[J].Radiat Res,1983,96(3):603-610.DOI:10.2307/3576125 [6] Singh VK,Newman VL,Berg AN,et al. Animal models for acute radiation syndrome drug discovery[J].Expert Opin Drug Discov,2015,10(5):497-517.DOI:10.1517/17460441.2015.1023290. [7] 陆忠华,万美珍,马燕,等.小鼠放射性肺损伤模型的建立与鉴定[J].江苏医药,2013,39(7):761-763+869.DOI:10.19460/j.cnki.0253-3685.2013.07.006. Lu ZH,Wan MZ,Ma Y,et al. Establishment and identification of the mice model with radiation-induced lung injury[J].Jiangsu Med,2013,39(7):761-763+869.DOI:10.19460/j.cnki.0253-3685.2013.07.006. [8] Zanette B,Stirrat E,Jelveh S,et al. Detection of regional radiation-induced lung injury using hyperpolarized 129Xe chemical shift imaging in a rat model involving partial lung irradiation:Proof-of-concept demonstration[J].Adv Radiat Oncol,2017,2(3):475-484.DOI:10.1016/j.adro.2017.05.005. [9] 邢月明,李晓丽.甲强龙干预放射性肺损伤的动物实验[J].中国辐射卫生,2009,18(2):137-139.DOI:10.13491/j.cnki.issn.1004-714x.2009.02.062. Xing YM,Li XL.Experiment research of Prednisolone in New Zealand White rabbits with radiation induced lung injury[J].Chin J radiol health,2009,18(2):137-139.DOI:10.13491/j.cnki.issn.1004-714x.2009.02.062. [10] Lee JG,Park S,Bae CH,et al. Development of a minipig model for lung injury induced by a single high-dose radiation exposure and evaluation with thoracic computed tomography[J].J Radiat Res,2016,57(3):201-209.DOI:10.1093/jrr/rrv088. [11] Williams JP,Brown SL,Georges GE,et al. Animal models for medical countermeasures to radiation exposure[J].Radiat Res,2010,173(4):557-578.DOI:10.1667/RR1880.1. [12] Kong FM,Hayman JA,Griffith KA,et al. Final toxicity results of a radiation-dose escalation study in patients with non-small-cell lung cancer (NSCLC):predictors for radiation pneumonitis and fibrosis[J].Int J Radiat Oncol Biol Phys,2006,65(4):1075-1086.DOI:10.1016/j.ijrobp.2006.01.051. [13] Liao ZX,Travis EL,Tucker SL.Damage and morbidity from pneumonitis after irradiation of partial volumes of mouse lung[J].Int J Radiat Oncol Biol Phys,1995,32(5):1359-1370. [14] Fryer CJ,Fitzpatrick PJ,Rider WD,et al. Radiation pneumonitis:experience following a large single dose of radiation[J].Int J Radiat Oncol Biol Phys,1978,4(11-12):931-936. [15] Willner J,Jost A,Baier K,et al. A little to a lot or a lot to a little? An analysis of pneumonitis risk from dose-volume histogram parameters of the lung in patients with lung cancer treated with 3-D conformal radiotherapy[J].Strahlenther Onkol,2003,179(8):548-556.PubMed PMID:14509954. [16] Marks LB,Bentzen SM,Deasy JO,et al. Radiation dose-volume effects in the lung[J].Int J Radiat Oncol Biol Phys,2010,76(3 Suppl):S70-76.DOI:10.1016/j.ijrobp.2009.06.091. [17] 杜雪梅,崔玉芳,毛春明,等.放射性肺损伤小鼠动物模型的建立及其病变规律[J].中国体视学与图像分析,2003(4):203-206.DOI:10.13505/j.1007-1482.2003.04.004. Du XM,Cui YF,Mao CM,et al. Establishment of radiation-induced lung injury mouse model and its pathological changes regularity[J].Chin J Stereol Imag Anal,2003(4):203-206.DOI:10.13505/j.1007-1482.2003.04.004. [18] Rodrigues G,Lock M,D′Souza D,et al. Prediction of radiation pneumonitis by dose-volume histogram parameters in lung cancer-a systematic review[J].Radiother Oncol,2004,71(2):127-138.DOI:10.1016/j.radonc.2004.02.015. [19] 马雪梅,王晓茜,鲍文华,等.大鼠放射性肺损伤模型的建立与探讨[J].齐齐哈尔医学院学报,2016,37(11):1385-1388. Ma XM,Wang XQ,Bao WH,et al. The establishment and discussion of radioactive lung injury in rats[J].Journal of Qiqihar University of Medicine.2016,37(11):1385-1388. [20] Johnston CJ,Wright TW,Rubin P,et al. Alterations in the expression of chemokine mRNA levels in fibrosis-resistant and sensitive mice after thoracic irradiation[J].Exp Lung Res,1998,24(3):321-337.DOI:10.3109/01902149809041538. [21] 韩光,周云峰,彭敏,等.小鼠放射性肺损伤模型的建立与鉴定[J].中华放射医学与防护杂志,2006(5):442-445. Han G,Zhou YF,Peng M,et al. Establishment of mice model of radiation_induced lung injury[J].Chin J Radiol Med Prot,2006(5):442-445. [22] 刘文其,袁堃,康敏,等.不同剂量模式照射对大鼠放射性肺损伤的影响[J].中国生化药物杂志,2012,33(4):436-440. Liu WQ,Yuan K,Kang M,et al. Impact of radiation-induced pulmonary injury in rats by different dose fractionation. Chin J Biochem Pharm,2012,33(4):436-440. [23] 潘纯国,刘智华,王静怡,等.单次与分次剂量照射大鼠放射性肺损伤模型的建立[J].实用癌症杂志,2015,30(10):1423-1425+1429.DOI:10.13505/j.1007-1482.2003.04.004. Pan CG,Liu ZH,Wang JY,et al. Establishment of irradiation induced lung injury in rats model underwent single and fractional irradiation[J].Pract J Cancer,2015,30(10):1423-1425,1429.DOI:10.13505/j.1007-1482.2003.04.004. [24] Crawford SW,Hackman RC,Clark JG.Open lung biopsy diagnosis of diffuse pulmonary infiltrates after marrow transplantation[J].Chest,1988,94(5):949-953.DOI:10.1378/chest.94.5.949. [25] 曹小飞,陈龙华,刘国龙.大鼠放射性肺损伤模型的动态病理学观察[J].中华肿瘤防治杂志,2010,17(11):818-822.DOI:10.16073/j.cnki.cjcpt.2010.11.023. Cao XF,Chen LH,Liu GL,et al. Dynamic observation on pathological changes of radiation-induced lung injury in rat model[J].Chin J Cancer Prev Treat,2010,17(11):818-822.DOI:10.16073/j.cnki.cjcpt.2010.11.023. [26] Szapiel SV,Elson NA,Fulmer JD,et al. Bleomycin-induced interstitial pulmonary disease in the nude,athymic mouse[J].Am Rev Respir Dis,1979,120(4):893-899. [27] 张洁旻,张纬建,黄春芳,等.放射性肺损伤小鼠动物模型的建立与鉴定[J].中华肿瘤防治杂志,2009,16(19):1455-1457.DOI:10.16073/j.cnki.cjcpt.2009.19.024. Zhang JW,Zhang WJ,Huang CF,et al. Establishment and identification of mouse model of radiation-induced lung injury[J].Chin J Cancer Prev Treat,2009,16(19):1455-1457.DOI:10.16073/j.cnki.cjcpt.2009.19.024. [28] Marks LB,Yu X,Vujaskovic Z,et al. Radiation-induced lung injury[J].Semin Radiat Oncol,2003,13(3):333-345.DOI:10.1016/S1053-4296(03)00034-1. [29] Vogelius IR,Bentzen SM.A literature-based meta-analysis of clinical risk factors for development of radiation induced pneumonitis[J].Acta Oncol,2012,51(8):975-983.DOI:10.3109/0284186X.2012.718093. [30] Chen HX,Xiang H,Xu WH,et al. Manganese superoxide dismutase gene-modified mesenchymal stem cells attenuate acute radiation-induced lung injury[J].Hum Gene Ther,2017,28(6):523-532.DOI:10.1089/hum.2016.106. [31] Chen Y,Williams J,Ding I,et al. Radiation pneumonitis and early circulatory cytokine markers[J].Semin Radiat Oncol,2002,12(Suppl 1):26-33.DOI:10.1053/srao.2002.31360. [32] Szabo S,Ghosh SN,Fish BL,et al. Cellular inflammatory infiltrate in pneumonitis induced by a single moderate dose of thoracic X-ray radiation in rats[J].Radiat Res,2010,173(4):545-556.DOI:10.1667/RR1753.1.