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首页> 外文期刊>Frontiers in Microbiology >Endocytotic uptake of FITC-labeled anti- H. pylori egg yolk immunoglobulin Y in Candida yeast for detection of intracellular H. pylori
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Endocytotic uptake of FITC-labeled anti- H. pylori egg yolk immunoglobulin Y in Candida yeast for detection of intracellular H. pylori

机译:FITC标记的抗的胞吞摄取。用于检测细胞内 H含量的 Candida 酵母中的幽门螺杆菌蛋黄免疫球蛋白Y。幽门螺旋杆菌

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摘要

Intracellular life of Helicobacter pylori inside Candida yeast vacuole describes the establishment of H. pylori in yeast as a pre-adaptation to life in human epithelial cells. IgY-Hp conjugated with fluorescein isothiocyanate (FITC) has been previously used for identification and localization of H. pylori inside the yeast vacuole. Here we examined whether FITC-IgY-Hp internalization into yeast follows the endocytosis pathway in yeast. Fluorescent microscopy was used to examine the entry of FITC-IgY-Hp into Candida yeast cells at different time intervals. The effect of low temperature, H_(2)O_(2)or acetic acid on the internalization of labeled antibody was also examined. FITC-IgY-Hp internalization initiated within 0–5 min in 5–10% of yeast cells, increased to 20–40% after 30 min–1 h and reached >70% before 2 h. FITC-IgY-Hp traversed the pores of Candida yeast cell wall and reached the vacuole where it bound with H. pylori antigens. Internalization of FITC-IgY-Hp was inhibited by low temperature, H_(2)O_(2)or acetic acid. It was concluded that internalization of FITC-IgY-Hp into yeast cell is a vital phenomenon and follows the endocytosis pathway. Furthermore, it was proposed that FITC-IgY-Hp internalization could be recruited for localization and identification of H. pylori inside the vacuole of Candida yeast.
机译:假丝酵母酵母液泡中的幽门螺杆菌的细胞内生活描述了酵母中幽门螺杆菌的建立,作为对人类上皮细胞生命的预先适应。与荧光素异硫氰酸酯(FITC)缀合的IgY-Hp先前已用于鉴定和定位酵母液泡中的幽门螺杆菌。在这里,我们检查了FITC-IgY-Hp内在化进入酵母是否遵循酵母中的内吞途径。使用荧光显微镜检查FITC-IgY-Hp在不同时间间隔进入念珠菌酵母细胞。还检查了低温,H_(2)O_(2)或乙酸对标记抗体内在化的影响。 FITC-IgY-Hp内在化在5-10%的酵母细胞中于0-5分钟内开始,在30 min-1 h后增加至20-40%,在2 h前达到> 70%。 FITC-IgY-Hp穿过念珠菌酵母细胞壁的孔,并到达与幽门螺杆菌抗原结合的液泡。 FITC-IgY-Hp的内在化受到低温H_(2)O_(2)或乙酸的抑制。结论是,FITC-IgY-Hp内在化进入酵母细胞是重要现象,并遵循内吞途径。此外,有人提出可以招募FITC-IgY-Hp内在化来定位和鉴定假丝酵母酵母液泡中的幽门螺杆菌。

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