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Protasio, A. V.

Publications and source records attributed to Protasio, A. V..

2 recordsLinked to original sources

Peptides derived of kunitz-type serine protease inhibitor as potential vaccine against experimental schistosomiasis

Schistosomiasis is a significant public health problem in sub-Saharan Africa, China, South-East Asia and regions of South and central America affecting about 189 million people. Kunitz-type serine protease inhibitors have been identified as important players in the interaction of other flatworm parasites with their mammalian hosts. Here, we evaluate the protective efficacy of chemically synthesized of T- and B-cell peptide epitopes derived from a kunitz protein from Schistosoma mansoni. Putative kunitz-type protease inhibitor proteins were identified in the S. mansoni genome and their expression analyzed by RNA-seq. Gene expression analyses showed that the kunitz protein Smp_147730 (Syn. Smp_311670) was dramatically and significantly up-regulated in schistosomula and adult worms when compared to the invading cercariae. T- and B-cell epitopes were predicted using bioinformatics tools, chemically synthesized and formulated in the Adjuvant Adaptation (ADAD) vaccination system. BALB/c mice were vaccinated and challenged with S. mansoni cercariae. Kunitz peptides were highly protective in vaccinated BALB/c mice showing significant reductions in recovery of adult females (89-91%), and in the numbers of eggs trapped in the livers (77-81%) and guts (57-77%) of mice. Moreover, liver lesions were significantly reduced in vaccinated mice (64-65%) compared to infected control mice. The vaccination regime was well tolerated with both peptides. We propose the use of these peptides, alone or in combination, as reliable candidates for vaccination against schistosomiasis.

immunology

A library of cell-surface and secreted proteins from Schistosoma mansoni identifies early serological markers of infection

Schistosomiasis is a major global health problem caused by blood-dwelling parasitic worms and is currently treated by the mass administration of the drug praziquantel. Appropriate drug treatment strategies are informed by diagnostics that establish the prevalence and intensity of infection, which, in regions of low transmission should be highly sensitive. To identify sensitive new serological markers of Schistosoma mansoni infections, we have compiled a recombinant protein library of 115 parasite cell surface and secreted proteins expressed in mammalian cells. The vast majority of them were shown to be immunoreactive and to contain heat-labile conformational epitopes when tested against pooled human sera from endemic regions. After probing the library against a time series of sera samples from experimental infections in mice, we identified several markers of infection, the majority of which belong to the saposin-domain-containing and cathepsin families of proteins. These new markers will be a valuable tool to detect ongoing and previous S. mansoni infections, including in regions of low transmission. We envisage that this new recombinant protein resource will be used in a wide range of cellular and molecular assays to further our understanding of Schistosoma biology.

immunology