BAI Shou-min,LIAO Cheng-de,GUO Ruo-mi,et al.Experimental study of Gadofluorine M enhancement in early diagnosis of radiation brain injury by MRI in rats[J].Chinese Journal of Radiological Medicine and Protection,2011,31(3):273-276
Experimental study of Gadofluorine M enhancement in early diagnosis of radiation brain injury by MRI in rats
Received:August 25, 2010  
DOI:10.3760/cma.j.issn.0254-5098.2011.03.007
KeyWords:Radiation brain injury  Magnetic resonance imaging  Gadofluorine M  Early diagnosis
FundProject:国家自然科学基金(30770656);广东省科技计划项目(2009B030801104)
Author NameAffiliation
BAI Shou-min Department of Radiation Oncology, Second Affiliated Hospital, SUN Yat-sen University, Guangzhou 510120,China 
LIAO Cheng-de 510120 广州,中山大学附属第二医院放射科 
GUO Ruo-mi 510120 广州,中山大学附属第二医院放射科 
HUANG Ying 华南肿瘤学国家重点试验室 中山大学肿瘤防治中心放疗科 
LIANG Bi-ling 510120 广州,中山大学附属第二医院放射科 
SHEN Jun 510120 广州,中山大学附属第二医院放射科 
LU Tai-xiang 华南肿瘤学国家重点试验室 中山大学肿瘤防治中心放疗科 
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Abstract::
      Objective To explore the value of Gadofluorine M, a novel MRI enhancement agent, in the diagnosis the early radiation brain injury. Methods Seventy-two Wistar rats were randomly divided into 5 equal groups. To establish the radiation injury model, the rat's posterior brain was irradiated with 0 (blank controls), 25, 35, 45, 55, and 65 Gy, respectively. After irradiation MR plain scanning and Gadofluorine M enhancement scanning (after the T1WI and T2WI scanning Gf at the dosage of 0.1 mmol/kg was injected intravenously and scanning was performed again 12 h later) were performed once a week for 8 weeks. Another 12 rats were randomly divided into 2 equal groups to exposure to 55 and 65 Gy, respectively, and MR scanning was performed once a week for 8 weeks since the third week after MR. After T1WI and T2WI scanning Gd-DTPA was injected intravenously, MR was conducted again 30 min later, and Gf was injected intravenously (Gd-DTPAenhancement and Gf enhancement contrast). The MR image and the pixel count were compared. Since the third week 2 rats from the Gf enhancement scanning group and 1 rat from the Gd-DTPA enhancement and Gf enhancement contrast were killed after MR with their brains taken out to undergo pathological examination. Results No abnormal signal changes were found in MRI in 25 and 35 Gy groups within 2 months after irradiation. A high signal in the Gf enhancement T1 WI image was found in 45, 55, and 65 Gy groups within the period of 4-6 weeks after radiation. The signal intensity was significantly higher than that of the control, 25, and 35 Gy groups(F =2.15, P <0.05). The emerge time of this signal was negatively correlated with the dose of radiation(r=-0.62, P <0.05). When there was no obvious change was found by Gd-DTPA enhancement, a high signal representing change of injury could be found in Gf enhancement in the same rat. The signal intensity was significantly enhanced in Gf enhancement compared to the Gd-DTPA enhancement(F =2.74, P <0.01). Histopathology examination of the 65 Gy group showed frosted degeneration in part of the region, however, no obvious necrotic damage was found in other groups. Conclusions The Gf enhancement change appears before histopathological changes, it helps discover early radiation injury in brain. Compared to the regular MRI and Gd-DTPA enhancement, Gadofluorine M enhancement has obvious advantage and is worth further research and application.
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