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Galdino, A.

Publications and source records attributed to Galdino, A..

2 recordsLinked to original sources

Rational in silico discovery and serological validation of Trypanosoma cruzi-specific B-cell epitopes for high-precision Chagas disease diagnosis

Chagas disease is caused by the parasite Trypanosoma cruzi and remains a neglected tropical disease presenting a substantial global health burden. Crude antigen-based assays have historically been limited in specificity; however, even contemporary recombinant-antigen tests may exhibit residual cross-reactivity, depending on antigen composition and geographic context. To overcome this limitation, this study developed a novel diagnostic strategy that integrates computational and experimental approaches to identify specific linear B-cell epitopes within the T. cruzi proteome. The strategy was developed to exclude sequences homologous to H. sapiens and Leishmania spp. proteins, thereby minimizing potential cross-reactivity. Using a consensus approach across five prediction algorithms, B-cell epitopes were identified and subsequently clustered to reveal conserved, immunoreactive consensus sequences. The peptide sequences were characterized for optimal physicochemical properties and subsequently modeled to interact with a human antibody using protein-peptide docking and molecular dynamics simulations to assess complex stability. The most promising candidates were chemically synthesized and validated using ELISA against a cohort comprising Chagas disease patients (chronic indeterminate and cardiac forms), healthy donors, and a cross-reactive control group (visceral and tegumentary leishmaniasis and leprosy). From the initial set of 19,245 proteins, the multi-tiered bioinformatic analysis identified 4,431 unique, non-homologous sequences. Consensus prediction yielded 401 high-confidence epitopes, which were refined to 179 structurally stable candidates. Computational analyses identified five top-ranking epitopes capable of forming high-affinity, stable complexes with a human antibody. Experimental validation confirmed the high diagnostic accuracy of two epitopes, which demonstrated exceptional diagnostic performance: Epitope 4 and Epitope 5 achieved 100% sensitivity. Notably, Epitope 5 exhibited superior specificity, reaching 96.67% against healthy controls and 90.91% against the cross-reactive group. This study establishes a basis for the development of an improved immunoassay for Chagas disease and provides a reproducible framework for targeted epitope discovery. Consequently, this study validates a high-precision computational pipeline capable of discovering T. cruzi-specific antigens that effectively circumvent cross-reactivity with Leishmania spp., proposing Epitope 5 as a qualified candidate for reliable serological diagnosis in co-endemic regions.

bioinformatics↗

A Comprehensive Bibliometric Investigation on Antimicrobials from Fungal Origins with a Biotechnological Perspective

Interest in research related to fungi exploration past few years, given its relevance to bioactive compounds production as these metabolites are a promising source of bacteriostatic or fungistatic compounds. Therefore, their use represents a significant alternative to traditional antibiotics by minimizing the risks related to microbial resistance. In this context, this work aimed to: assess the volume of annual publications on the subject and identify key players, analyze the collaboration network among researchers, and check the patents filed on this topic. For this purpose, the Bibliometrix R-package was used, as well as scientific metadata from the Web of Science and Scopus databases (n=506). In total, 256 sources, authors (n=2,526), keywords (n=1,812), and references (n=19,315) were analyzed from 1989 to 2023. The academic debate on the subject has been promoted by India (29%), United Kingdom (UK) (7%), China (6%) and the United States of America (USA) (6%). The authors identified as the most cited were Liu J (n=142), followed by Jesu Arockiaraj (n=106). There is a knowledge predominance of publications focusing on the life science disciplines. The most prolific institutions were the National Research Center (n=20) and the University of Pittsburgh (n=13). The most cited journals were the World Journal of Microbiology & Biotechnology (n=719) and Applied Microbiology and Biotechnology (n=661). Finally, the United States Patent and Trademark Office represented 85% of the patents filed on the subject (n=28,303). Together, these results can direct researchers and Biotech industries in their search for the most important sources related to antimicrobial biotechnology.

microbiology↗