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1.
China Pharmacist ; (12): 1046-1048, 2015.
Article in Chinese | WPRIM | ID: wpr-669852

ABSTRACT

Objective:To collect the bioburden information in clean room to understand the bioburden status, find out weak points and risks in microbial control and improve the management efficiency in clean room. Methods: According to GB/T 16293-2010 and the standard operation practice ( SOP) in our lab, the bioburden information was obtained by the collection and identification of air-borne microbe and surface bacteria in the four main areas of clean room ( microbial limit test room, sterile room 1 and 2, positive room) and on the person entered clean room. Results:The preliminarily established bioburden information indicated that the main mi-croorganism in clean room was Micrococcus and Staphylococcus. The detection rate of fungi was about 5% in clean room. Conclusion:The movement of people and goods in clean room should be strengthened, and samples should be with thorough disinfection.

2.
Chinese Journal of Interventional Imaging and Therapy ; (12): 107-109, 2010.
Article in Chinese | WPRIM | ID: wpr-472740

ABSTRACT

Objective To assess the practical value of ultrasound-guided percutaneous pericardium centesis in patients with pericardial effusion.Methods Twenty-eight patients with pericardial effusion were treated with ultrasound-guided percutaneous pericardium centesis from May 2004 to May 2009.Results Operations were successfully done in all 28 patients.The puncture needle,guide wire and drainage catheter could be clearly visualized under ultrasound.Complications included ache,bleeding and drainage catheter obstruction or prolapsus.Conclusion Able to be used bedside,ultrasoundguided percutaneous pericardium centesis is a real time,exact,safe and convenient method for the diagnosis and treatment of pericardial effusion.

3.
Chinese Journal of Endocrinology and Metabolism ; (12): 550-554, 2010.
Article in Chinese | WPRIM | ID: wpr-388484

ABSTRACT

Objective To explore the expression of chemerin and chemerin receptor ( chemokine-like receptor 1, CMKLR1) during different periods of non-alcoholic fatty liver disease ( NAFLD) rat model induced by methionine- and choline-deficient ( MCD) diet. Methods Thirty-six Wistar rats were divided into control group and MCD group in random. After one week quarantine and acclimation period, these two groups were fed either normal chow or MCD diet. The animals were respectively sacrificed at the first week, the forth week, and the tenth week. The levels of alanine transaminase (ALT), blood lipid profile, liver function, and the content of triglyceride in liver were detected. HE staining was done to observe the morphologic change of liver. The mRNA expression changes of chemerin and CMKLR1 in liver were measured using real-time PCR, and the change in chemerin mRNA level was further confirmed in liver by Northern blot. Finally, the concentration of chemerin in serum was measured by Western blot. Results The mRNA level of chemerin decreased significantly after four and ten weeks MCD feeding, although no obvious changes were found at first week, similar changes were found in serum chemerin (1.00±0.11 vs 0.96±0.39; 1.00±0.12 vs 0.21 ±0.77; 1.00±0.42 vs 0.21 ±0. 11). Contrasting with the change of chemerin(1.00±0.08 vs 0.72±0.10;1.00±0.24 vs 0.63±0. 31 ;1.00±0.05 vs 0.50±0.13), the mRNA level of CMKLR1 increased after MCD feeding( 1.00±0. 14 vs 0. 84±0. 26; 1.00±0. 38 vs 1. 51 ±0. 33; 1. 01 ±0. 13 vs 1. 84 ± 0. 39 ). Conclusion The change of chemerin and its receptor may participate in the process of the nonalcoholic fatty liver disease.

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