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1.
J Eukaryot Microbiol ; 70(5): e12978, 2023.
Article in English | MEDLINE | ID: mdl-37195413

ABSTRACT

Blastocystis sp. is among the most frequent intestinal protists identified in humans globally. However, characterization of Blastocystis subtype diversity in humans is ongoing. We report here the identification of novel Blastocystis subtype ST41 in a Colombian patient undergoing colorectal cancer screening involving colonoscopy and fecal testing (microscopy, culture, PCR). The full-length ssu rRNA gene sequence of the protist was generated using MinION long-read sequencing technology. The validity of the novel subtype was confirmed via phylogenetic and pairwise distance analyses of the full-length ST41 sequence and all other valid subtypes. The study provides reference material essential for conducting subsequent experimental studies.


Subject(s)
Blastocystis Infections , Blastocystis , Colorectal Neoplasms , Humans , Blastocystis/genetics , Blastocystis Infections/diagnosis , Phylogeny , Colombia , Early Detection of Cancer , Feces , Colorectal Neoplasms/diagnosis , Prevalence , Genetic Variation
2.
Acta Trop ; 154: 50-62, 2016 Feb.
Article in English | MEDLINE | ID: mdl-26571070

ABSTRACT

Neurocysticercosis (NC) is a serious public health problem mainly in developing countries. NC caused by the cysticercus stage from cestode Taenia solium is considered by the WHO and ITFDE as a potentially eradicable disease. Definitive diagnosis of NC is challenging because of the unspecific clinical manifestations such as the non-definitive evidence presented by neuroimaging (in most cases) and the lack of definitive serological test. Taenia crassiceps (ORF strain) is a cestode closely related to T. solium and it has frequently been used as a source of antigens for immunodiagnostics. A murine model to study host immune response to infection has also been established by using T. crassiceps. Despite the extensive use of T. crassiceps for research, molecular information for this cestode is scarce in public databases. With the aim of providing more extensive information on T. crassiceps biology, an RNA-seq experiment and subsequent bioinformatic transcriptome processing of this cestode parasite mRNA in its cysticercus stage were carried out. A total of 227,082 read/ESTs were sequenced using the 454-GS FLX Titanium technology and assembled into 10,787 contigs. This transcriptome dataset represents new and valuable molecular information of the cestode T. crassiceps (ORF). This information will substantially improve public information and will help to achieve a better understanding of the biology of T. crassiceps and to identify target proteins for serodiagnosis and vaccination.


Subject(s)
Cysticercus/genetics , Gene Expression Profiling , Neurocysticercosis/immunology , Taenia/genetics , Animals , Female , Mice , Mice, Inbred BALB C , Neurocysticercosis/diagnosis , Protein Structure, Tertiary , Serologic Tests
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