| Literature DB >> 27384081 |
Frédéric Lardeux1,2, Gino Torrico1,2, Claudia Aliaga1,2.
Abstract
In ELISAs, sera of individuals infected by Trypanosoma cruzi show absorbance values above a cut-off value. The cut-off is generally computed by means of formulas that need absorbance readings of negative (and sometimes positive) controls, which are included in the titer plates amongst the unknown samples. When no controls are available, other techniques should be employed such as change-point analysis. The method was applied to Bolivian dog sera processed by ELISA to diagnose T. cruzi infection. In each titer plate, the change-point analysis estimated a step point which correctly discriminated among known positive and known negative sera, unlike some of the six usual cut-off formulas tested. To analyse the ELISAs results, the change-point method was as good as the usual cut-off formula of the form "mean + 3 standard deviation of negative controls". Change-point analysis is therefore an efficient alternative method to analyse ELISA absorbance values when no controls are available.Entities:
Mesh:
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Year: 2016 PMID: 27384081 PMCID: PMC4981115 DOI: 10.1590/0074-02760160119
Source DB: PubMed Journal: Mem Inst Oswaldo Cruz ISSN: 0074-0276 Impact factor: 2.743
Cut-off formulas
| Formula |
|
| Computation | Comment |
|---|---|---|---|---|
|
| 2 | 0 | 2 x MEAN of negative controls | - |
|
| 3 | 0 | 3 x MEAN of negative controls | - |
|
| 1 | 0 | MEAN of negative controls + 0.13 x MEAN of positive controls | Pan et al. (1992) formula |
|
| 1 |
| MEAN + | Frey et al. (1998) formula. Confidence level (1-α) for |
|
| 1 |
| MEAN + | Frey et al. (1998) formula. Confidence level (1-α) for |
|
| 1 | 3 | (MEAN + 3 x SD) of negative controls | Classen et al. (1987) |
a: for the computation of F and F j is the number of negative controls used in the plate (16 in the present study) and t is the (1-α)th percentile of the one-tailed Student t-distribution with (j-1) degrees of freedom. Because 16 negative controls were used in the study, and taking into account the confidence level for the computation of the Student t, the f values were 2.197 and 3.848 for F and F respectively.
Absorbance cut-off values for each of the seven titer plates, computed with formulas F and step points detected by the change-point analysis
| Plate | F1 | F2 | F3 | F4 | F5 | F6 | Change-point analysis | Highest negative control | Lowest positive control |
|---|---|---|---|---|---|---|---|---|---|
| 1 | 0.519 | 0.779 | 0.418 | 0.441 | 0.578 | 0.508 | 0.471 | 0.471 | 0.862 |
| 2 | 0.494 | 0.741 | 0.404 | 0.369 | 0.461 | 0.414 | 0.710 | 0.380 | 0.710 |
| 3 | 0.614 | 0.920 | 0.473 | 0.455 | 0.566 | 0.509 | 0.462 | 0.462 | 0.941 |
| 4 | 0.503 | 0.755 | 0.414 | 0.374 | 0.466 | 0.419 | 0.496 | 0.370 | 0.808 |
| 5 | 0.424 | 0.636 | 0.358 | 0.359 | 0.469 | 0.412 | 0.598 | 0.343 | 0.598 |
| 6 | 0.456 | 0.684 | 0.384 | 0.354 | 0.448 | 0.400 | 0.570 | 0.356 | 0.843 |
| 7 | 0.552 | 0.828 | 0.475 | 0.415 | 0.519 | 0.466 | 0.432 | 0.420 | 1.115 |