OBJECTIVE: To design a combined dynamic inhalation device for testing the toxicity induced by moxa smoking. METHODS: The new apparatus (Patent No. 201120101911.5) includes air renewal and recycling systems, a gas ...OBJECTIVE: To design a combined dynamic inhalation device for testing the toxicity induced by moxa smoking. METHODS: The new apparatus (Patent No. 201120101911.5) includes air renewal and recycling systems, a gas generating device, a gas control unit, and a device to measure and control tem- perature and humidity. Sprague-dawley rats were tested for acute and sub-chronic toxicity after exposure to moxa-burning smoke.METHODS: The new apparatus (Patent No. 201120101911.5) includes air renewal and recycling systems, a gas generating device, a gas control unit, and a device to measure and control tem- perature and humidity. Sprague-dawley rats were tested for acute and sub-chronic toxicity after exposure to moxa-burning smoke.RESULTS: We found an LQ0 of 1.2× 10^4 mg/m^3 in the acute toxicity assays. In sub-chronic toxicity tests the organ coefficients studied showed no sig-nificant differences within rats groups of the same gender after treatment with moxa smoke or a month of recovery. However, mean gray degree of lung 70 heat shock protein (HSP70) was significantly elevated in the high dose group in comparison with the low dose group (P 〈 0.05), mean gray degree, mean optical density, gross area of HSP70 in other organs and caspase-9 parameters showed no significant differences between groups.CONCLUSION: These results suggest that moxa smoke had no overt toxicity in rats. This work pro- vides evidence and reference for the design of dy- namic inhalation exposure systems.展开更多
基金Supported by the Study of Warming Effect of Moxibustion and its Principle(the Major National Basic Research Program of China,No.2009CB522904)the Study of Safety of Moxibustion Products Based on High Performance Liquid Chromatography-Mass Spectrometry in Metabonomics Technology(Hunan Graduate Student Innovation Fund,No.CX2010B342)
文摘OBJECTIVE: To design a combined dynamic inhalation device for testing the toxicity induced by moxa smoking. METHODS: The new apparatus (Patent No. 201120101911.5) includes air renewal and recycling systems, a gas generating device, a gas control unit, and a device to measure and control tem- perature and humidity. Sprague-dawley rats were tested for acute and sub-chronic toxicity after exposure to moxa-burning smoke.METHODS: The new apparatus (Patent No. 201120101911.5) includes air renewal and recycling systems, a gas generating device, a gas control unit, and a device to measure and control tem- perature and humidity. Sprague-dawley rats were tested for acute and sub-chronic toxicity after exposure to moxa-burning smoke.RESULTS: We found an LQ0 of 1.2× 10^4 mg/m^3 in the acute toxicity assays. In sub-chronic toxicity tests the organ coefficients studied showed no sig-nificant differences within rats groups of the same gender after treatment with moxa smoke or a month of recovery. However, mean gray degree of lung 70 heat shock protein (HSP70) was significantly elevated in the high dose group in comparison with the low dose group (P 〈 0.05), mean gray degree, mean optical density, gross area of HSP70 in other organs and caspase-9 parameters showed no significant differences between groups.CONCLUSION: These results suggest that moxa smoke had no overt toxicity in rats. This work pro- vides evidence and reference for the design of dy- namic inhalation exposure systems.