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1.
Chinese Journal of Practical Pediatrics ; (12): 1010-1016, 2019.
Article in Chinese | WPRIM | ID: wpr-817963

ABSTRACT

OBJECTIVE: To evaluate the efficacy,safety and tolerability of recombinanat human interferon α2 b(rhIFNα2b)spray in treatment of acute upper respiratory tract infection(except the flu)in children. METHODS: In total,575 children who met the inclusion criteria were enrolled from January,2019 to July,2019. They were divided into rhIFNα2b spray group(291 cases)and ribavirin group(284 cases). The children in rhIFNα2b spray group were given the rhIFNα2b spray(P.putida),and those in ribavirin groups were treated with the ribavirin spray. The curative effect and safety between the two groups were compared. RESULTS: The per-protocol set(PPS) comprised 448 patients(233 in the rhIFNα2b spray group,215 in the ribavirin group). The primary efficacy endpoint was antipyretic time which in rhIFNα2b spray group(25.0 h)was significantly shorter than that in the ribavirin group(33.6 h)(P=0.0001). In the comparison of symptomatic relief time,the relief time of nasal congestion,runny nose,sore throat and cough in rhIFNα2b spray group was shorter than that in ribavirin group(P<0.05). The recovery time in the rhIFNα2b spray group was 92 h,which showed significant decrease compared with the ribavirin group(112 h)(P<0.0001). The incidence of adverse events had no statistical differences between the two groups(P=0.2461). CONCLUSION: The rhIFNα2b spray treatment for acute upper respiratory tract infection in children is proved to be significantly effective;particularly,it can evidently relieve fever symptoms and promote the disappearance of nasal and pharyngeal symptoms. It has good safety and tolerability,so the rhIFNα2b spray is worthy to be promoted in clinical application.

2.
Article | IMSEAR | ID: sea-198205

ABSTRACT

The present study assessed 16S rRNA gene sequence analysis method as a tool for identification of fluorescent pseudomonads phenotypically difficult to identify. Using 16S rRNA gene sequencing the isolates were identified to the genus level to the species level. In this study, phylogenetic tree was constructed using complete sequence within the 16S rRNA gene. Distance tree was constructed to find out genetic similarity between the organisms. Although the phylogenetic analysis is not decisive, it is consistent with other observations, especially the capacities of the strain as a biocontrol agent. The results suggest that the JS16, JS7, JS31 and JS52 and strains are high homology with Pseudomonas fluorescens, P. Plecogloccida and P. Putida.

3.
Braz. j. microbiol ; 44(2): 595-605, 2013. graf, mapas, tab
Article in English | LILACS | ID: lil-688592

ABSTRACT

In situ biosurfactant (rhamnolipid) production by Pseudomonas putida CB-100 was achieved during a bioaugmented and biostimulated treatment to remove hydrocarbons from aged contaminated soil from oil well drilling operations. Rhamnolipid production and contaminant removal were determined for several treatments of irradiated and non-irradiated soils: nutrient addition (nitrogen and phosphorus), P. putida addition, and addition of both (P. putida and nutrients). The results were compared against a control treatment that consisted of adding only sterilized water to the soils. In treatment with native microorganisms (non-irradiated soils) supplemented with P. putida, the removal of total petroleum hydrocarbons (TPH) was 40.6%, the rhamnolipid production was 1.54 mg/kg, and a surface tension of 64 mN/m was observed as well as a negative correlation (R = -0.54; p < 0.019) between TPH concentration (mg/kg) and surface tension (mN/m), When both bacteria and nutrients were involved, TPH levels were lowered to 33.7%, and biosurfactant production and surface tension were 2.03 mg/kg and 67.3 mN/m, respectively. In irradiated soil treated with P. putida, TPH removal was 24.5% with rhamnolipid generation of 1.79 mg/kg and 65.6 mN/m of surface tension, and a correlation between bacterial growth and biosurfactant production (R = -0.64; p < 0.009) was observed. When the nutrients and P. putida were added, TPH removal was 61.1%, 1.85 mg/kg of biosurfactants were produced, and the surface tension was 55.6 mN/m. In summary, in irradiated and non-irradiated soils, in situ rhamnolipid production by P. putida enhanced TPH decontamination of the soil.


Subject(s)
Glycolipids/metabolism , Hydrocarbons/metabolism , Petroleum/metabolism , Pseudomonas putida/metabolism , Soil Microbiology , Soil Pollutants/metabolism , Surface-Active Agents/metabolism , Pseudomonas putida/growth & development
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