| Literature DB >> 22935171 |
Huahuang Dong1, Jianli Liu, Hong Zhu, Chin-Yih Ou, Wenge Xing, Maofeng Qiu, Guiyun Zhang, Yao Xiao, Jun Yao, Pinliang Pan, Yan Jiang.
Abstract
BACKGROUND: HIV-1 p24 antigen is a major viral component of human immunodeficiency virus type 1 (HIV-1) which can be used to identify persons in the early stage of infection and transmission of HIV-1 from infected mothers to infants. The detection of p24 is usually accomplished by using an enzyme-linked immunosorbent assay (ELISA) with low detection sensitivity. Here we report the use of two bio-barcode amplification (BCA) assays combined with polymerase chain reaction (PCR) and gel electrophoresis to quantify HIV-1 p24 antigen.Entities:
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Year: 2012 PMID: 22935171 PMCID: PMC3496641 DOI: 10.1186/1743-422X-9-180
Source DB: PubMed Journal: Virol J ISSN: 1743-422X Impact factor: 4.099
Figure 1Schematic illustrations of two biobarcode amplification (BCA) assays and ELISA assay to detect HIV-1 p24 antigen. (A) ELISA, (B) Microplate [22] and (C) MMPs methods. The detailed description of the methods is described in Materials and Methods. The enzyme (E) used in the ELISA assay was horse radish peroxidase.
Figure 2Relative HIV-1 p24 antigen detection sensitivity using 2 BCA-based assays and an in-house ELISA assay. The X axis represents serial dilutions (log10) of HIV-1 p24 antigen, the left Y axis is OD value for ELISA, and the right Y axis is the DNA amounts (pmoles) calculated from gel electrophoresis band of samples for the two BCA assays. Each data point represents the average of 3 independent determinations. Squares : ELISA, circles: microplate method, and triangles: MMPs method.
Figure 3Linear dynamic p24 detection ranges of three assays: (A) in-house ELISA, (B) BCA-based microplates and (C) BCA-based MMPs. Each data point represents the average of three independent determinations. Statistical analysis of linear regression model between the signal value of each methods and the concentration of HIV-1 p24 are carried out with SPSS 16.0.
Figure 4Amplification detection of 10-fold diluted bio-barcode is revealed by 4% agarose gel electrophoresis. The concentration of DNA in lane 1 was 0.005 uM and 5 μl of PCR DNA were used for gel electrophoresis. Lane M is the 20 bp ladder reference DNA marker (Takara Inc.). Lanes 1 to 9 represents amplicons 3 × 109, 3 × 108, 3 × 107, 3 × 106, 3 × 105, 3 × 104, 3 × 103, 300, and 30 copies of signal bio-barcode DNA. Lane 10 represents negative control (PCR reaction mixture without input DNA).