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Chinese Journal of Pancreatology ; (6): 339-342, 2011.
Article in Chinese | WPRIM | ID: wpr-422344

ABSTRACT

Objective To observe the metabolic characteristics of an experimental model of chronic pancreatitis,and to investigate its role in the grading of chronic pancreatitis.Methods Thirty-six Wistar rats were injected with dibutyltin chloride (DBTC) solution (8mg/kg) via the tail vein to establish the experimental model of chronic pancreatitis.The 36 rats were divided into 6 groups with 6 rats in each group.On0,7,14,21,28,35 days after modeling,rats was sacrificed and pancreatic tissue of the rats was harvested,and a small part was used for pathologic study,the majority part was kept at-80℃ under liquid nitrogen freezing.Metabolites of pancreatic tissue were determined by high-resolution magic angle spinning nuclear magnetic resonance spectroscopic (HR-MAS NMRS).On the basis of the abnormal structure,tubular complexes,gland atrophy,fibrosis,edema and inflammatory cell infiltration,chronic pancreatitis was graded.Results Pathologic study showed the severity of chronic pancreatitis gradually increased with time after modeling.The 7th,14th day after modeling,the pancreatic change was mild chronic pancreatitis; the 21st,28th,35th day,the pancreatic change was changed into severe chronic pancreatitis.Principal component analysis of HR-MAS NMRS showed that the betaine (Bet) and choline ( Cho)-contained components were significantly increased in severe chronic pancreatitis; while aspartate (Asp),lactate (Lac),isoleucine/leucine/valine (I/L/V) and fatty acid (FA) were significantly reduced when compared with those in mild chronic pancreatitis and normal pancreatic tissue.There was no significant difference in the amount of metabolic characteristics between mild chronic pancreatitis and normal pancreatic tissue.Conclusions HRMAS NMRS was helpful in distinguishing the severe chronic pancreatitis from mild chronic pancreatitis.

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