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Flow cytometric detection of hepatitis C virus antigens in infected peripheral blood leukocytes: Binding and entry

机译:流式细胞术检测感染的外周血白细胞中的丙型肝炎病毒抗原:结合和进入

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摘要

AIM: We designed two synthetic-core-specific peptides core 1 (C1) and core 2 (C2), and an E1-specific peptide (E1). We produced specific polyclonal antibodies against these peptides and used the antibodies for detection of HCV antigens on surface and within infected peripheral blood leukocytes.METHODS: Peripheral blood from a healthy individual who tested negative for HCV RNA was incubated with HCV type 4 infected serum for 1 h and 24 h at 37 °C. Cells were stained by direct and indirect immunofluorescence and measured by flow cytometry.RESULTS: After 1 h of incubation, antibodies against C1, C2, and E1 detected HCV antigens on the surface of 27%, 26% and 73% of monocytes respectively, while 10%, 5% and 9% of lymphocytes were positive with anti-C1, anti-C2 and anti-E1 respectively. Only 1-3% of granulocytes showed positive staining with anti-C1, anti-C2 and anti E1 antibodies. After 24 h of incubation, we found no surface staining with anti-C1, anti-C2 or anti-E1. Direct immunostaining using anti-C2 could not detect intracellular HCV antigens, after 1 h of incubation with the virus, while after 24 h of incubation, 28% of infected cells showed positive staining. Only plus strand RNA was detectable intracellularly as early as 1 h after incubation, and remained detectable throughout 48 h post-infection. Interestingly, minus RNA strand could not be detected after 1 h, but became strongly detectable intracellularly after 24 h post-infection.CONCLUSION: Monocytes and lymphocytes are the preferred target cells for HCV infection in peripheral blood leukocytes. Our specific anti-core and anti-E1 antibodies are valuable reagents for demonstration of HCV cell cycle. Also, HCV is capable of infecting and replicating in peripheral blood mononuclear cells as confirmed by detection of minus strand HCV RNA as well as intracellular staining of core HCV antigen.
机译:目的:我们设计了两个合成核心特异性肽核心1(C1)和核心2(C2),以及一个E1特异性肽(E1)。我们生产了针对这些肽的特异性多克隆抗体,并将该抗体用于检测表面和感染的外周血白细胞内的HCV抗原。方法:将健康个体的HCV RNA检测为阴性的外周血与HCV 4型感染血清孵育1次在37°C下静置24小时。结果:经1小时温育后,针对C1,C2和E1的抗体分别在单核细胞的27%,26%和73%的表面上检测到HCV抗原。抗C1,抗C2和抗E1的淋巴细胞分别为10%,5%和9%。只有1-3%的粒细胞显示抗C1,抗C2和抗E1抗体呈阳性染色。孵育24小时后,我们没有发现抗C1,抗C2或抗E1的表面染色。与病毒一起孵育1小时后,使用抗C2进行的直接免疫染色无法检测到细胞内HCV抗原,而孵育24小时后,有28%的感染细胞显示阳性染色。仅在培养后1小时内即可在细胞内检测到正链RNA,并且在感染后48小时内仍可检测到。有趣的是,感染后1 h不能检测到负RNA链,但是感染后24 h可以在细胞内强烈检测到该RNA。结论:单核细胞和淋巴细胞是外周血白细胞HCV感染的首选靶细胞。我们特异的抗核心和抗E1抗体是证明HCV细胞周期的有价值的试剂。而且,如通过检测负链HCV RNA以及核心HCV抗原的细胞内染色所证实的那样,HCV能够在外周血单核细胞中感染和复制。

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