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1.
Exp Parasitol ; 210: 107830, 2020 Mar.
Article in English | MEDLINE | ID: mdl-31917970

ABSTRACT

Chagas disease, also known as American trypanosomiasis, is a potentially life-threatening illness caused by the protozoan parasite Trypanosoma cruzi, which is transmitted by insects of the family Reduviidae. Since conventional treatments with nitroheterocyclic drugs show serious adverse reactions and have questionable efficiency, different research groups have investigated polypeptide-based approaches to interfere with the parasite cell cycle in other Trypanosomatids. These strategies are supported by the fact that surface players are candidates to develop surface ligands that impair function since they may act as virulence factors. In this study, we used a phage display approach to identify peptides from one library-LX8CX8 (17 aa) (where X corresponds to any amino acid). After testing different biopanning conditions using live or fixed epimastigotes, 10 clones were sequenced that encoded the same peptide, named here as EPI18. The bacteriophage expressing EPI18 binds to epimastigotes from distinct strains of T. cruzi. To confirm these results, this peptide was synthetized, biotinylated, and assayed using flow cytometry and confocal microscopy analyses. These assays confirmed the specificity of the binding capacity of EPI18 toward epimastigote surfaces. Our findings suggest that EPI18 may have potential biotechnological applications that include peptide-based strategies to control parasite transmission.


Subject(s)
Chagas Disease/drug therapy , Peptides/pharmacology , Trypanosoma cruzi/drug effects , Amino Acid Sequence , Bacteriophages/isolation & purification , Bioprospecting , Biotinylation , Chagas Disease/parasitology , Chagas Disease/prevention & control , Enzyme-Linked Immunosorbent Assay , Flow Cytometry , Humans , Microscopy, Confocal , Microscopy, Fluorescence , Peptide Library , Peptides/chemistry , Peptides/isolation & purification , Peptides/metabolism , Temperature , Trypanosoma cruzi/genetics
2.
Talanta ; 187: 165-171, 2018 Sep 01.
Article in English | MEDLINE | ID: mdl-29853030

ABSTRACT

The biotechnological evolution towards the development of antigens to detect leprosy has been progressing. However, the identification of leprosy in paucibacillary patients, based solely on the antigen-antibody interaction still remains a challenge. The complexity of clinical manifestations requires innovative approaches to improve the sensitivity of assays to detect leprosy before the onset of symptoms, thus avoiding disabilities and contributing, indirectly, to reduce transmission. In this study, the strategies employed for early leprosy diagnosis were: i. using a phage-displayed mimotope (APDDPAWQNIFNLRR) which mimics an immunodominant sequence (PPNDPAWQRNDPILQ) of an antigen of Mycobacterium leprae known as Ag85B; ii. engineering the mimotope by adding a C-terminal flexible spacer (SGSG-C); iii. conjugating the mimotope to a carrier protein to provide better exposure to antibodies; iv. amplifying the signal using biotin-streptavidin detection system in an ELISA; and v. coating the optimized mimotope on a quartz crystal microbalance (QCM) sensor for label-free biosensing. The ELISA sensitivity increased up to 91.7% irrespective of the immunological profile of the 132 patients assayed. By using comparative modeling, the M. tuberculosis Ag85B was employed as a template to ascertain which features make the mimotope a good antigen in terms of its specificity. For the first time, a sensitive QCM-based immunosensor to detect anti M. leprae antibodies in human serum was used. M. leprae antibodies could also be detected in the sera of paucibacillary patients; thus, the use of a mimotope-derived synthetic peptide as bait for antibodies in a novel analytical label-free immunoassay for leprosy diagnosis exhibits great potential.


Subject(s)
Biosensing Techniques , Immunoassay , Leprosy/diagnosis , Mycobacterium leprae/isolation & purification , Quartz Crystal Microbalance Techniques , Adult , Animals , Biomarkers/analysis , Female , Humans , Male , Mice , Mice, Inbred BALB C
3.
Appl Microbiol Biotechnol ; 98(21): 8887-94, 2014 Nov.
Article in English | MEDLINE | ID: mdl-25081558

ABSTRACT

Bovine cysticercosis is detected during the routine post mortem examination of carcasses by visual inspection (knife and eye method). However, the sensitivity of this procedure is several times lower than immunoassays, even when it is performed by qualified professionals. In the present study, a new generation capture antigens were screened from a phage display peptide library using antibodies from Taenia saginata-infected animals. Eight phage clones were selected, and one, Tsag 3 (VHTSIRPRCQPRAITPR), produced similar results to the T. saginata metacestode crude antigen (TsCa) when used as a capture antigen in an ELISA. The phage-displayed peptides competed with TsCa for binding sites, reducing the reactivity by approximately 30 %. Alanine scanning indicated that proline, arginine, and serine are important residues for antibody binding. Tsag 1 (HFYQITWLPNTFPAR), the most frequent affinity-selected clone, and Tsag 6 (YRWPSTPSASRQATL) shared similarity with highly conserved proteins from the Taeniidae family with known immunogenicity. Due to their epitopic or mimotopic properties, these affinity-selected phages could contribute to the rational design of an ante mortem immunodiagnosis method for bovine cysticercosis, as well as an epitope-based vaccine to interrupt the taeniosis/cysticercosis complex.


Subject(s)
Antibodies, Helminth/blood , Antigens, Helminth , Cattle Diseases/diagnosis , Cell Surface Display Techniques/methods , Taenia saginata/immunology , Taeniasis/veterinary , Animals , Antigens, Helminth/genetics , Cattle , Recombinant Proteins/genetics , Taeniasis/diagnosis
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