Abstract

Objective To study the relationship between ATP level changes detected by hepatic 31P MRS with the pathologic changes of liver in rabbits and to investigate the diagnostic value of ATP level changes in acute hepatic radiation injury. Methods A total of 30 rabbits received different radiation doses ( ranging from 5,10,20 Gy) to establish acute hepatic injury models. Blood hepatic function tests, 31P MRS and pathological examinations were carried out 24 h after irradiation The degree of injury was evaluated according to hepatocyte pathology. Ten healthy rabbits served as controls. The MR examination was performed on a 1.5 T imager using a 1H-31P surface coil with 2D chemical shift imaging technique. The relative quantities of phosphomonoesters (PME), phosphodiesters (PDE), inorganic phosphate (Pi) and adenosine triphosphate (ATP) were measured. Analysis of variance was used to compare the results of 31P MRS and histopathology under various acute hepatic radiation injuries, and SNK was used further to conduct comparison between each other if there was significant difference. Results The ATP relative quantification in control( n= 10), mild ( n = 12), moderate ( n = 11 ), and severe ( n = 7 ) injury groups according to pathological grading were 1.83 ± 0. 33, 1.58 ± 0. 25, 1.32 ± 0. 07 and 1.02 ± 0. 18, with significant differences among them (F =22. 878 ,P <0. 01 ), and it decreased progressively with the increased degree of injury. The PDE index showed no significant trend for the evaluation of hepatic radiation injury. The area under the peak of β-ATP decreased with the increased severity of radiation injury. Conclusions The relative quantification of hepatic ATP levels can reflect the pathological severity of acute hepatic radiation injury. The decreasing hepatic ATP levels may be used as biomarker of acute liver injury following radiation. Key words: Radiation injuries,experimental; Magnetic resonance spectroscopy; Pathology

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