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微量热学方法研究E.coli(T4)生物活性系统 被引量:3
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作者 刘国生 谢志雄 +1 位作者 刘义 沈萍 《武汉大学学报(理学版)》 CAS CSCD 北大核心 2005年第2期209-214,共6页
用微量热学方法测定了E.coli(T4)生物活性系统在LBG培养基中37 ℃培养的热谱曲线.根据曲线数据,经过拟合得到噬菌体增殖热动力学方程ln[Pt/(1-0.077 4 Pt)]=(2.258+0.053 81) t/min和宿主细胞裂解动力学方程lnPt=(4.889 2-0.066 21) t/m... 用微量热学方法测定了E.coli(T4)生物活性系统在LBG培养基中37 ℃培养的热谱曲线.根据曲线数据,经过拟合得到噬菌体增殖热动力学方程ln[Pt/(1-0.077 4 Pt)]=(2.258+0.053 81) t/min和宿主细胞裂解动力学方程lnPt=(4.889 2-0.066 21) t/min,并根据方程求出了生长速率常数k、抑制因子S和裂解速率常数kL.用量热学方法观察到了T4噬菌体的LIN现象.讨论了该研究结果在研究、生产和噬菌体治疗等方面的意义,以及量热学方法在病毒学领域的应用前景. 展开更多
关键词 e.coli(t4)生物活性系统 微量热 热动力学
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Recombination of T4-like Phages and Its Activity against Pathogenic Escherichia coli in Planktonic and Biofilm Forms 被引量:1
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作者 Min Li Donglin Shi +5 位作者 Yanxiu Li Yuyi Xiao Mianmian Chen Liang Chen Hong Du Wei Zhang 《Virologica Sinica》 SCIE CAS CSCD 2020年第5期651-661,共11页
The increasing emergence of multi-drug resistant Escherichia coli(E.coli)has become a global concern,primarily due to the limitation of antimicrobial treatment options.Phage therapy has been considered as a promising ... The increasing emergence of multi-drug resistant Escherichia coli(E.coli)has become a global concern,primarily due to the limitation of antimicrobial treatment options.Phage therapy has been considered as a promising alternative for treating infections caused by multi-drug resistant E.coli.However,the application of phages as a promising antimicrobial agent is limited by their narrow host range and specificity.In this research,a recombinant T4-like phage,named WGqlae,has been obtained by changing the receptor specificity determinant region of gene 37,using a homologous recombination platform of T4-like phages established by our laboratory previously.The engineered phage WGqlae can lyse four additional hosts,comparing to its parental phages WG01 and QL01.WGqlae showed similar characteristics,including thermo and pH stability,optimal multiplicity of infection and one-step growth curve,to the donor phage QL01.In addition,sequencing results showed that gene 37 of recombinant phage WGqlae had genetically stable even after 20 generations.In planktonic test,phage WGqlae had significant antimicrobial effects on E.coli DE192 and DE205 B.The optical density at 600 nm(OD600)of E.coli in phage WGqlae treating group was significantly lower than that of the control group(P\0.01).Besides,phage WGqlae demonstrated an obvious inhibitory effect on the biofilm formation and the clearance of mature biofilms.Our study suggested that engineered phages may be promising candidates for future phage therapy applications against pathogenic E.coli in planktonic and biofilm forms. 展开更多
关键词 t4-like phages Escherichia coli(e.coli) Homologous recombination Gp37 PLANKTONIC BIOFILM
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