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Updated: Feb 23, 2026

An Experimental Model of Diet-Induced Metabolic Syndrome in Rabbit: Methodological Considerations, Development, and Assessment
Published on: April 20, 2018
Physiopathology of multiple organ dysfunctions in severely monocrotophos-poisoned rabbits
Yun-Xiu Hou1, Shi-Wen Liu2, Lian-Wen Wang2
1Department of Health Management, Binzhou Medical University Hospital, Binzhou 256603, Shandong Province, China.
Objective:
Acute organophosphorus pesticides poisoning has a serious threat on people's health. This study aimed to investigate the pathogenesis and molecular mechanism of multiple organ dysfunction syndrome (MODS) in severely monocrotophos-poisoned rabbits.
Methods:
Chinchilla rabbits were used to build the monocrotophos-poisoned animal model via subcutaneous abdominal injection. Acetylcholinesterase activity was determined using the dithiobisnitrobenzoic acid enzyme kinetics method, and the free organophosphorus (FOP) toxic substances content was analyzed using the enzyme inhibition method. The contents of tumor necrosis factor (TNF-α), interleukin 1-β (IL-β) and thromboxane B2 (TXB2) in the plasma and tissue homogenates were determined via radioimmunoassay.
Results:
Twenty-four hours after exposure, in comparison to the plasma, blood cells and homogenates of various tissues, the bile had a significantly different FOP content (P < 0.05). In different phases, HE staining results confirmed that several degrees of pathological lesions (such as hemorrhage, edema, degeneration and necrosis) were detected in FOP poisoned rabbits. The TXB2 and TNF contents in plasma were significantly higher than those of the control (P < 0.05). Except for the intercostal muscle, all of the tissues had significantly higher TXB2 contents than the control. The TNF contents of the liver and lung and the IL-1β contents of the liver and kidney were significantly higher than those of the control (P < 0.05).
Conclusion:
FOP stored in the gallbladder may play important role in enterohepatic circulation. In MODS rabbits, caused by OP poisoning, the TXB2 and TNF-α may play important role in inflammatory response and complement and coagulation systems respectively.
Insights
Organophosphorus pesticide poisoning causes severe health issues. In rabbits, monocrotophos poisoning led to multiple organ dysfunction, with gallbladder accumulation of toxins and elevated inflammatory markers like TXB2 and TNF-α.
Area of Science:
- Toxicology
- Pathology
- Biochemistry
Background:
- Acute organophosphorus pesticide poisoning poses a significant health risk.
- Multiple organ dysfunction syndrome (MODS) is a severe complication of pesticide poisoning.
Purpose of the Study:
- To investigate the pathogenesis and molecular mechanisms of MODS in rabbits severely poisoned with monocrotophos.
- To understand the role of free organophosphorus (FOP) substances and inflammatory mediators in OP poisoning.
Main Methods:
- Established a monocrotophos poisoning model in Chinchilla rabbits via subcutaneous injection.
- Measured acetylcholinesterase activity, free organophosphorus (FOP) content, and levels of TNF-α, IL-1β, and TXB2 in plasma and tissues.
Main Results:
- Bile showed significantly different FOP content compared to plasma, blood cells, and tissues.
- Pathological lesions (hemorrhage, edema, necrosis) were observed in various organs.
- Elevated TXB2 and TNF-α levels were found in plasma and tissues; IL-1β was also increased in the liver and kidney.
Conclusions:
- Free organophosphorus (FOP) accumulation in the gallbladder may be crucial for enterohepatic circulation.
- TXB2 and TNF-α likely play key roles in the inflammatory response, complement, and coagulation systems in OP-induced MODS.
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