西南国防医药
西南國防醫藥
서남국방의약
MEDICAL JOURNAL OF NATIONAL DEFENDING FORCES IN SOUTHWEST CHINA
2014年
7期
697-700
,共4页
杜发娅%阎澜%姜远英%徐贵丽
杜髮婭%閻瀾%薑遠英%徐貴麗
두발아%염란%강원영%서귀려
白念珠菌%毒力%感染%小鼠%氟康唑%体内实验
白唸珠菌%毒力%感染%小鼠%氟康唑%體內實驗
백념주균%독력%감염%소서%불강서%체내실험
Candida albicans%virulence%infection%mice%fluconazole%in vivo
目的:建立侵袭性白念珠菌小鼠感染模型。方法体外通过菌丝生长实验评价白念珠菌的毒力大小,通过尾静脉注射白念珠菌菌悬液感染小鼠后,观察小鼠生存时间,评价白念珠菌体内毒力大小;以感染后7 d 内小鼠100%死亡为标准,建立了侵袭性白念珠菌小鼠感染模型,对感染小鼠进行氟康唑治疗效果评价。结果白念珠菌体外毒力与体内毒力一致,4种培养基中菌丝均生长良好的菌株,体内感染小鼠后,小鼠生存率也最低;感染模型中,氟康唑对敏感白念珠菌的治疗效果强于对氟康唑耐药白念珠菌(P ﹤0.05)。结论建立的侵袭性白念珠菌感染模型可用于药物体内抗白念珠菌活性的筛选。
目的:建立侵襲性白唸珠菌小鼠感染模型。方法體外通過菌絲生長實驗評價白唸珠菌的毒力大小,通過尾靜脈註射白唸珠菌菌懸液感染小鼠後,觀察小鼠生存時間,評價白唸珠菌體內毒力大小;以感染後7 d 內小鼠100%死亡為標準,建立瞭侵襲性白唸珠菌小鼠感染模型,對感染小鼠進行氟康唑治療效果評價。結果白唸珠菌體外毒力與體內毒力一緻,4種培養基中菌絲均生長良好的菌株,體內感染小鼠後,小鼠生存率也最低;感染模型中,氟康唑對敏感白唸珠菌的治療效果彊于對氟康唑耐藥白唸珠菌(P ﹤0.05)。結論建立的侵襲性白唸珠菌感染模型可用于藥物體內抗白唸珠菌活性的篩選。
목적:건립침습성백념주균소서감염모형。방법체외통과균사생장실험평개백념주균적독력대소,통과미정맥주사백념주균균현액감염소서후,관찰소서생존시간,평개백념주균체내독력대소;이감염후7 d 내소서100%사망위표준,건립료침습성백념주균소서감염모형,대감염소서진행불강서치료효과평개。결과백념주균체외독력여체내독력일치,4충배양기중균사균생장량호적균주,체내감염소서후,소서생존솔야최저;감염모형중,불강서대민감백념주균적치료효과강우대불강서내약백념주균(P ﹤0.05)。결론건립적침습성백념주균감염모형가용우약물체내항백념주균활성적사선。
Objective To establish an invasive Candida albicans infection model in mice. Methods The virulence of Candida albicans in vitro was evaluated by means of mycelial growth experiment,while that in vivo was evaluated through the mouse infection model;an aliquot of culture containing Candida albicans with 5 × 105 CFU was injected into each mouse through the tail vein and the survival time of the infected mice was observed. 100% death of the mice within 7 days of infection was used as the successful establishment of the infection model;fluconazole was applied to the infected mice and the effect on the infection of Candida albicans was evaluated as well. Results Candida albicans had the same virulence in vitro and in vivo;strains were well inducted in the 4 hyphal induction media;the survival rate of the infected mice was very low;fluconazole was more effective on Candida albicans sensitive to it than on those resistant to it( P ﹤ 0. 05). Conclusions Invasive Candida albicans infection model in mice is applicable for drug screening of anti-Candida albicans activity in vivo.