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Rapid and ultrasensitive enzyme immunoassay (thin aqueous layer immune complex transfer enzyme immunoassay) for HIV‐1 p24 antigen

机译:HIV-1 p24抗原的快速超灵敏酶免疫测定(薄水层免疫复合物转移酶免疫测定)

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摘要

The immune complex transfer enzyme immunoassay for HIV‐1 p24 antigen was performed in three different ways (in the present immunoassays I, II, and III) within much shorter periods of time than previously reported. In the present (simultaneous) immunoassay I, p24 antigen was incubated simultaneously with 2,4‐dinitrophenyl‐biotinyl‐bovine serum albumin‐affinity‐purified rabbit anti‐p24 Fab′ conjugate and monoclonal mouse anti‐p24 Fab′‐β‐ ‐galactosidase conjugate in a total volume of 19 μL for 15 min to form the immune complex comprising the three components. The reaction mixture was incubated with a polystyrene bead of 6.35 mm in diameter coated with affinity‐purified (anti‐2,4‐dinitrophenyl group) IgG for 5 min to trap the immune complex. After washing, the polystyrene bead was incubated with 35 μL of ‐2,4‐dinitrophenyl‐ ‐lysine for 15 min to elute the immune complex (the first eluate) and, after removing the first eluate, with an additional 35 μL of ϵ ‐2,4‐dinitrophenyl‐ ‐lysine for 1 min (the second eluate). The first and second eluates were incubated with a polystyrene test tube (12 × 75 mm) coated with streptavidin for 15 min. In the present (sequential) immunoassay II, a polystyrene bead of 6.35 mm in diameter successively coated with affinity‐purified (anti‐2,4‐dinitrophenyl group) IgG and 2,4‐dinitrophenyl‐biotinyl‐bovine serum albumin‐affinity‐purified rabbit anti‐p24 Fab′ conjugate was incubated with p24 antigen in a total volume of 20 μL for 5 min and subsequently with monoclonal mouse anti‐p24 Fab′‐β‐ ‐galactosidase conjugate in a volume of 5 μL for 20 min. The immune complex formed on the polystyrene bead was transferred to a polystyrene test tube coated with streptavidin as described above. In the present (sequential) immunoassay III, p24 antigen was incubated with monoclonal mouse anti‐p24 Fab′‐β‐ ‐galactosidase conjugate in a total volume of 19 μL for 10 min and with a polystyrene bead of 6.35 mm in diameter coated successively with affinity‐purified (anti‐2,4‐dinitrophenyl group) IgG and 2,4‐dinitrophenyl‐biotinyl‐bovine serum albumin‐ affinity‐purified rabbit anti‐p24 Fab′ conjugate for 20 min. The immune complex formed on the polystyrene bead was transferred as described above. The incubations were performed at room temperature either by shaking the polystyrene beads (one/assay) and the reaction mixtures in styrol test tubes (13.3 × 54 mm and 2.1 g) so as to randomly rotate the polystyrene beads or by rotating the polystyrene test tubes (12 × 75 mm) containing the reaction mixtures, so that small drops (19 to 70 μL) of the reaction mixtures evenly contacted all parts of the solid phase surfaces during the incubations (although they contacted only small parts of the solid phase surfaces at a time) to continuously mix thin aqueous layers covering the solid phase surfaces with the rest of the reaction mixtures. (Therefore, these immunoassays are called thin aqueous layer immunoassays.) The detection limits of p24 antigen by 1 hr assay of bound β‐ ‐galactosidase activity in the present immunoassays I, II, and III were 0.1, 0.2 and 0.1 amol/assay, respectively, and were slightly higher than or equal to that by the previously reported immune complex transfer enzyme immunoassay, in which the immune complex was formed for 4 hr, was trapped for 16 hr, and was transferred for 3 hr followed by 1‐hr assay of bound β‐ ‐galactosidase activity. By 20‐hr assay of bound β‐ ‐galactosidase activity, the detection limit of p24 antigen was further lowered to 10 zmol/assay in the present (simultaneous) immunoassay I and to 3 zmol/assay in the present (sequential) immunoassay III. However, the nonspecific reaction(s) with serum samples from HIV‐1 seronegative subjects hampered the improvement of the detection limit by 20‐hr assay of bound β‐ ‐galactosidase activity. J. Clin. Lab. Anal.12:205–212, 1998. © 1998 Wiley‐Liss, Inc.
机译:对HIV-1 p24抗原的免疫复合物转移酶免疫测定法以三种不同的方式进行(在本免疫测定法I,II和III中),其时间比以前报道的要短得多。在当前的(同时)免疫测定I中,将p24抗原与2,4-二硝基苯基-生物素基-牛血清白蛋白亲和纯化的兔抗p24 Fab'共轭物和单克隆小鼠抗p24Fab'-β-半乳糖苷酶同时孵育以19μL的总体积结合15分钟以形成包含三种成分的免疫复合物。将反应混合物与直径为6.35 mm的聚苯乙烯珠子孵育5分钟,以捕获免疫复合物,该珠子用亲和纯化的(抗2,4-二硝基苯基)IgG包被。洗涤后,将聚苯乙烯珠与35μL-2,4-二硝基苯基-赖氨酸一起孵育15分钟,以洗脱免疫复合物(第一个洗脱液),并在除去第一个洗脱液后,再与35μLϵ洗脱。 2,4-二硝基苯基-赖氨酸1分钟(第二次洗脱)。将第一和第二洗脱液与涂有抗生蛋白链菌素的聚苯乙烯试管(12×75 mm)孵育15分钟。在目前的(顺序)免疫测定II中,直径为6.35 mm的聚苯乙烯珠子依次被亲和纯化的(抗2,4,2-二硝基苯基)IgG和2,4-二硝基苯基-生物素基-牛血清白蛋白亲和纯化将兔抗p24 Fab'共轭物与p24抗原以20μL的总体积孵育5分钟,然后与单克隆小鼠抗p24Fab'-β-半乳糖苷酶共轭物以5μL的体积孵育20分钟。如上所述,将在聚苯乙烯珠上形成的免疫复合物转移到涂有链霉亲和素的聚苯乙烯试管中。在当前的(顺序)免疫测定III中,将p24抗原与总体积为19μL的单克隆小鼠抗p24Fab'-β-半乳糖苷酶偶联物孵育10分钟,并与直径为6.35 mm的聚苯乙烯珠子依次包被亲和纯化的(抗2,4-二硝基苯基)IgG和2,4-二硝基苯基-生物素基-牛血清白蛋白亲和纯化的兔抗p24 Fab'偶联物20分钟。如上所述转移形成在聚苯乙烯珠上的免疫复合物。在室温下孵育,方法是摇动聚苯乙烯珠(一次/次)和在苯乙烯试管(13.3×54 mm和2.1 g)中的反应混合物,以便随机旋转聚苯乙烯珠或旋转聚苯乙烯试管(12×75 mm)含有反应混合物,因此在孵育过程中,小滴(19至70μL)的反应混合物均匀地接触了固相表面的所有部分(尽管它们仅接触了固相表面的一小部分)。时间)将覆盖固相表面的薄水层与其余反应混合物连续混合。 (因此,这些免疫测定称为薄水层免疫测定。)在本免疫测定I,II和III中,通过1小时结合β-半乳糖苷酶结合活性检测p24抗原的检出限为0.1、0.2和0.1 amol /测定,分别略高于或等于先前报道的免疫复合物转移酶免疫测定法的结果,其中免疫复合物形成4小时,被捕获16小时,然后转移3小时,然后进行1小时分析结合的β-半乳糖苷酶活性。通过20小时结合β-半乳糖苷酶活性的测定,在当前(同时)免疫测定I中,p24抗原的检出限进一步降低至10 zmol /测定,在当前(连续)免疫测定III中进一步降低至3 zmol /测定。但是,对HIV-1血清阴性受试者血清样品的非特异性反应通过结合β-半乳糖苷酶活性的20小时分析阻碍了检测限的提高。 J.临床实验室肛门12:205–212,1998年。©1998 Wiley-Liss,Inc.。

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