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小鼠CD45^-/CD31^+肺侧群细胞诱导分化的研究
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作者 张明杰 李宗泽 +1 位作者 徐杨 梁迅 《中国现代医学杂志》 CAS 北大核心 2017年第6期17-22,共6页
目的探讨在体外诱导分化肺侧群细胞(SP)的特性。方法取小鼠肺组织,流式细胞术分选小鼠白细胞分化抗原(CD)45^-/CD31^+肺SP;免疫荧光检测分选肺SP三磷酸腺苷结合转运蛋白G超家族成员2(ABCG2)的表达;逆转录聚合酶链反应(RT-PCR)检测肺SP中... 目的探讨在体外诱导分化肺侧群细胞(SP)的特性。方法取小鼠肺组织,流式细胞术分选小鼠白细胞分化抗原(CD)45^-/CD31^+肺SP;免疫荧光检测分选肺SP三磷酸腺苷结合转运蛋白G超家族成员2(ABCG2)的表达;逆转录聚合酶链反应(RT-PCR)检测肺SP中ABCG2、酪氨酸激酶2(Tie2)及血管性血友病因子(vWF)的表达。细胞体外分化诱导14 d后,免疫荧光检测细胞vWF的表达;RT-PCR检测分化诱导前后细胞中ABCG2和vWF的表达。结果流式细胞术成功分选出CD45^-/CD31^+肺SP细胞,免疫荧光检测其表达ABCG2;RT-PCR检测SP表达ABCG2和Tie2,不表达vWF。主群细胞表达vWF;分化诱导前的肺SP表达ABCG2;分化诱导后的肺SP表达vWF。结论 CD45^-/CD31^+肺SP是血管内皮细胞的祖细胞,具有干细胞分化特性。在体外培养可分化为血管内皮细胞。 展开更多
关键词 侧群细胞 血管内皮细胞 三磷酸腺苷结合转运蛋白G超家族成员2 atp-binding CASSETTE sub-family G member 2
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A <i>wzt</i>Mutant <i>Burkholderia mallei</i>Is Attenuated and Partially Protects CD1 Mice against Glanders
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作者 Aloka B. Bandara 《Advances in Infectious Diseases》 2012年第3期53-61,共9页
Burkholderia mallei is the etiologic agent of glanders in solipeds and humans. Lipopolysaccharide (LPS) is a major component of cell envelop of this pathogen. O-antigen, the most external component of LPS, is a virule... Burkholderia mallei is the etiologic agent of glanders in solipeds and humans. Lipopolysaccharide (LPS) is a major component of cell envelop of this pathogen. O-antigen, the most external component of LPS, is a virulence factor and a protective antigen in many pathogenic bacteria. Two putative proteins named Wzm (integral membrane protein) and Wzt (hydrophilic ATP-binding protein) are believed to make up an ABC-2 transporter of B. mallei that facilitates transport of components of O-antigen from cytosol to outer-membrane. We studied the importance of wzt (encoding Wzt) to growth, LPS O-antigen profile, and pathogenicity of B. mallei. A wzt mutant strain was generated by deleting a portion of the wzt in B. mallei wild type strain ATCC 23344 by gene replacement. Compared to the wild type strain, the wzt mutant displayed slower growth in vitro and less lethality in CD1 mice when inoculated intraperitoneally. The 50% lethal doses (LD50) of the wild type and the wzt mutant strains were 5.9 × 105 and 9.1 × 105 cfu, respectively. CD1 mice inoculated with a non-lethal dose of the wzt mutant produced specific serum immunoglobulins IgG1 and IgG2a and were partially protected against challenge with 11.2 times LD50 of the wild type strain. These findings suggest that the wzt is required for optimal in vitro growth and pathogenesis of B. mallei, and a wzt mutant protects CD1 mice against glanders. 展开更多
关键词 BURKHOLDERIA mallei ABC-2 Transporter wzm Integral Membrane PROTEIN wzm Hydrophilic atp-binding PROTEIN Glanders CD1 MICE Pathogenicity Protection
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