Objective To analyze the genetic characteristics of Trichomonas vaginalis isolates causing different clinical manifestation .
目的分析引起不同临床表现的 阴道 毛 滴虫分离株的遗传特性。
Effect of Mosla chinensis Maxim on Trichomonas vaginalis in vitro
中药香薷体外杀灭 阴道 毛 滴虫效果的观察
Trichomonas vaginalis is a parasite that can cause an painful infection Trichomoniasis in both men and women .
阴道 毛 滴虫是能够感染男女两性的寄生虫,受感染者会得滴虫病,十分痛苦。
In Vitro Effect of Secnidazole Benzoate on Trichomonas vaginalis
塞克硝唑苯甲酸酯体外 抗 阴道 毛 滴虫作用的研究
Hainan Huanglong Pharmaceutical-Indications : for bacteria trichomonas fungal vaginitis caused by a variety of .
海南皇隆制药厂-主治:用于细菌、 滴虫、霉菌引起的各种阴道炎。
Construction and identification of trichomonas vaginalis adhesion protein 65-3 gene eukaryotic expression plasmid
阴道 毛 滴虫粘附蛋白65-3基因真核表达载体的构建与鉴定
Experimental observation of the long-term culturing Trichomonas vaginalis
阴道 毛 滴虫长期培养传代的实验观察
The observation showed that the percentage of Trichomonas vaginalis trophozoites at the stages of interphase binary fission and multiple fission was66.5 % 24.1 % and9.4 % respectively .
采用改良吉氏染色法观察体外培养的 阴道 毛 滴虫分裂相。结果显示,分裂间期为66.5%,二分裂期为24.1%,多分裂期为9.4%。
Trichomonas vaginalis is one of the most common human sexually transmitted pathogens that colonize the urogenital mucosa .
阴道 毛 滴虫是一种常见的寄生原虫,以性传播为主。
PCR Research of Mycoplasma hominis in Trichomonas vaginalis Cells of Sichuan Province
四川地区 阴道 毛 滴虫内人型支原体的PCR检测
Objective To observe the effect of dihydroartemisinin ( DHA ) on the ultrastructure of Trichomonas vaginalis cultured in vitro .
目的观察双氢青蒿素(DHA)对 阴道 毛 滴虫超微结构的影响。
Effect of Pulsatilla chinensis on Trichomonas vaginalis in discrepancy protein expression
白头翁对体外培养 阴道 毛 滴虫蛋白质差异表达的影响
Investigation of Trichomonas columbae Disease for pigeon in Sichuan Province and Research on in Vitro Preservative Method of T. columbae Body
四川鸽 毛 滴虫病调查和鸽 毛滴虫体外保存方法
Amino acid metabolism analysis of Trichomonas vaginalis treated by Pulsatilla chinensis in vitro
白头翁对 阴道 毛 滴虫氨基酸代谢的影响
To obtain the purified protein AP65 produced by prokaryotic expression system the total RNA was extracted from clinical isolates of Trichomonas vaginalis and the gene ap65 was amplified by RT-PCR .
目的通过构建原核表达载体,获得 阴道 毛 滴虫黏附蛋白65基因重组融合蛋白。
This product nitroimidazole derivatives for trichomonas amoeba and flagellates have a role .
本品为硝基咪唑衍生物,对 滴虫、阿米巴原虫和鞭毛虫均有作用。
Construction of Prokaryotic Expression Plasmid and Expression in E. coli of AK Gene of Trichomonas Vaginalis
阴道 毛 滴虫AK基因原核表达质粒的构建及在大肠埃希菌中的表达
Conclusion Dihydroartemisinin can destroy membrane structure and organelles of Trichomonas vaginalis trophozoites which leads to decomposition and necrosis of the parasites .
结论双氢青蒿素能破坏 阴道 毛 滴虫膜系结构并导致虫体裂解死亡。
Both trichomonas had golgi-bodies but E.histolytica lacked them .
二种 毛 滴虫都有副基体,而溶组织内阿米巴缺乏此细胞器。
Survey of infectious status of Trichomonas vaginalis among patients in department of gynecology in Xi'an
西安市妇科门诊病人 阴道 毛 滴虫感染情况调查
Observation of Trichomonas vaginalis cultured in liver extract medium with different concentrations of fetal bovine serum
不同浓度胎牛血清肝浸汤培养基培养 阴道 毛 滴虫效果观察
The complication of infection of candida vagitis and trichomonas showed no marked effect of the activity of sialidase test .
当合并白假丝酵母菌和 滴虫感染时,其病原体对唾液酸酶活性检测未产生显著影响。
Trichomonas vaginalis ( causes vaginal trichomoniasis )
阴道 毛 滴虫(造成阴道滴虫病)
Rapid detection of Trichomonas vaginalis antigens by quantum dots and magnetic beads
应用量子点及磁微粒技术快速检测 阴道 毛 滴虫抗原
Both trichomonas had hydrogenosomes of anaerobic metabolism and energy producing.E.histolytica contained microbody of aerobic metabolic breathing organelle .
二种 毛 滴虫都有厌氧代谢产能的氢化酶体,而溶组织内阿米巴具有有氧代谢的呼吸细胞器微体。
Objective : To search the characteristic proteins of Trichomonas vaginalis ( T.v ) and explore the influence of Pulsatilla chinensis on discrepancy protein expression .
目的:寻找 阴道 毛 滴虫的特异蛋白质并探讨白头翁对其蛋白质差异表达的影响。
Cloning Expression and Immunogenicity Analysis of Cysteine Proteinase 3 of Trichomonas vaginalis
阴道 毛 滴虫半胱氨酸蛋白酶3基因的克隆、表达与免疫原性分析
Trichomonas vaginalis Surface Antigen Clone : 7101 Mab anti .
阴道 毛 滴虫,表面抗原,克隆号:7101,单克隆抗体。
Conclusions The prepared McAbs against the recombinant AP33 show a protective inhibition on cytoadherence of Trichomonas vaginalis in vitro .
结论制备的抗重组AP33单克隆抗体,体外对 阴道 毛 滴虫黏附有较好的抑制功能。
毛滴虫属