| Literature DB >> 27517281 |
Fred Luciano Neves Santos1, Paola Alejandra Fiorani Celedon2, Nilson Ivo Tonin Zanchin2,3, Tatiana de Arruda Campos Brasil3, Leonardo Foti2,3, Wayner Vieira de Souza1, Edmilson Domingos Silva4, Yara de Miranda Gomes1, Marco Aurélio Krieger2,3.
Abstract
The performance of serologic tests in chronic Chagas disease diagnosis largely depends on the type and quality of the antigen preparations that are used for detection of anti-Trypanosoma cruzi antibodies. Whole-cell T. cruzi extracts or recombinant proteins have shown variation in the performance and cross-reactivity. Synthetic chimeric proteins comprising fragments of repetitive amino acids of several different proteins have been shown to improve assay performances to detect Chagasic infections. Here, we describe the production of four chimeric T. cruzi proteins and the assessment of their performance for diagnostic purposes. Circular Dichroism spectra indicated the absence of well-defined secondary structures, while polydispersity evaluated by Dynamic Light Scattering revealed only minor aggregates in 50 mM carbonate-bicarbonate (pH 9.6), demonstrating that it is an appropriate buffering system for sensitizing microplates. Serum samples from T. cruzi-infected and non-infected individuals were used to assess the performance of these antigens for detecting antibodies against T. cruzi, using both enzyme-linked immunosorbent assay and a liquid bead array platform. Performance parameters (AUC, sensitivity, specificity, accuracy and J index) showed high diagnostic accuracy for all chimeric proteins for detection of specific anti-T. cruzi antibodies and differentiated seropositive individuals from those who were seronegative. Our data suggest that these four chimeric proteins are eligible for phase II studies.Entities:
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Year: 2016 PMID: 27517281 PMCID: PMC4982698 DOI: 10.1371/journal.pone.0161100
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1SDS-polyacrylamide gel stained with Coomassie Brilliant Blue G-250.
IBMP chimeric proteins were purified from the total protein extracts (A) and 1.5 μg of each pure recombinant antigen were applied per lane (B). MM: molecular weight marker. IBMP-8.1 (17 kDa); IBMP-8.2 (36 kDa); IBMP-8.3 (30 kDa); IBMP-8.4 (45 kDa).
Fig 2Far-UV circular dichroism spectra for IBMP recombinant chimeric proteins.
Panel A) IBMP-8.1; Panel B) IBMP-8.2; Panel C) IBMP-8.3; Panel D) IBMP-8.4.
Fig 3Dynamic light scattering measurements of IBMP recombinant chimeric proteins.
Panel A) IBMP-8.1. Panel B) IBMP-8.2. Panel C) IBMP-8.3. Panel D) IBMP-8.4. M (% mass); Hr (Hydrodynamic radius); Pd (Polydispersity).
Fig 4Anti-Trypanosoma cruzi IgG level in serum samples from chagasic (Ch) and non-chagasic (NCh) individuals assayed by ELISA.
The cut-off value is 1.0 and shadowed area represents the grey-zone. Horizontal lines and numbers for each group of results represent the geometric means (± 95%CI).
Fig 5Anti-Trypanosoma cruzi IgG level in serum samples from chagasic (Ch) and non-chagasic (NCh) individuals assayed by liquid microarray.
The cut-off value is 1.0 and shadowed area represents the grey-zone. Horizontal lines and numbers for each group of results represent the geometric means (± 95%CI).
Strength of agreement of chimeric proteins for Trypanosoma cruzi IgG detection.
| Chimeras IBMP | Agreement to Reference Tests (%) | κ (95%CI) | Agreement | |
|---|---|---|---|---|
| 8.1 | 99.0 | 0.92 (0.84–1.01) | Almost perfect | |
| 8.2 | 97.7 | 0.82 (0.70–0.95) | Almost perfect | |
| 8.3 | 85.3 | 0.71 (0.56–0.86) | Substantial | |
| 8.4 | 99.7 | 0.97 (0.92–1.03) | Almost perfect | |
| 8.1 | 98.0 | 0.85 (0.72–0.97) | Almost perfect | |
| 8.2 | 98.3 | 0.87 (0.77–0.98) | Almost perfect | |
| 8.3 | 99.3 | 0.95 (0.88–1.02) | Almost perfect | |
| 8.4 | 99.7 | 0.97 (0.92–1.03) | Almost perfect |
κ, Cohen’s Kappa coefficient; CI, confidence interval.