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首页> 外文期刊>Taiwanese journal of obstetrics and gynecology >Development of a chip-based multiplexed immunoassay using liposomal nanovesicles and its application in the detection of pathogens causing female lower genital tract infections.
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Development of a chip-based multiplexed immunoassay using liposomal nanovesicles and its application in the detection of pathogens causing female lower genital tract infections.

机译:使用脂质体纳米囊泡的基于芯片的多重免疫测定方法的开发及其在检测引起女性下生殖道感染的病原体中的应用。

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摘要

Cervicovaginitis is a highly prevalent disease that is a burden on healthcare globally. Immediate and adequate treatment can eradicate the infection and block subsequent complications. The feasibility of achip-based multiplexed immunoassay using liposomal nanovesicles was tested.A multiplexed immunoassay chip containing five antibodies for five pathogens (Chlamydia trachomatis, Escherichia coli, Neisseria gonorrhoeae, Streptococcus agalactiae, and Candida albicans) was established and tested. Four patients with spiking of candidiasis were enrolled. The difference between positive and negative readings was evaluated using the paired Student t test.The detection threshold of Candida in this microarray was 100,000?CFU/mL in a vaginal sample, and the time required for the whole procedure was 3 hours. The testing of the four patients showed 100% for both sensitivity and specificity.This microarray chip was a rapid, easy, inexpensive and sensitive tool for detecting female lower genital tract Candida infection in a one-time vaginal sampling process, although the data on the four other pathogens were still unavailable. A larger population study is encouraged to test the validity of this multiplexed immunoassay chip.
机译:宫颈阴道炎是一种高度流行的疾病,已成为全球医疗保健的负担。立即和适当的治疗可以根除感染并阻止随后的并发症。测试了使用脂质体纳米囊泡进行基于芯片的多重免疫测定的可行性,建立并测试了包含针对五种病原体(沙眼衣原体,大肠杆菌,淋病奈瑟氏球菌,无乳链球菌和白色念珠菌)的五种抗体的多重免疫测定芯片。招募了四名念珠菌病患者。使用配对的Student t检验评估阳性和阴性读数之间的差异。在该微阵列中,念珠菌在阴道样本中的检测阈值为100,000?CFU / mL,整个过程所需的时间为3小时。对这四名患者的测试显示出100%的敏感性和特异性。这种微阵列芯片是一种快速,简便,廉价且灵敏的工具,可在一次阴道采样过程中检测女性下生殖道念珠菌感染,尽管尚无其他四种病原体。鼓励进行更大范围的研究以测试这种多重免疫测定芯片的有效性。

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