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On page 1 showing 1 ~ 3 papers out of 3 papers

Molecular characterization of a putative serine protease from Trichinella spiralis and its elicited immune protection.

  • Ge Ge Sun‎ et al.
  • Veterinary research‎
  • 2018‎

In our previous work, a Trichinella spiralis putative serine protease (TsSP) was identified from ES products of T. spiralis intestinal infective larvae (IIL) and adult worms (AW) by immunoproteomics: it was highly expressed in IIL compared with muscle larvae (ML). In this study, the TsSP biological characteristics in larval invasion and growth were identified and its potential as a vaccine target against Trichinella infection were investigated. Expression of TsSP at various developmental phases (newborn larvae, ML, IIL, and AW) was detected by qPCR, immunofluorescent test and Western blotting. The rTsSP could specifically bind to the intestinal epithelial cell (IEC) membrane and enter into the cytoplasm. Anti-rTsSP serum suppressed the larval invasion of enterocytes in a dose-dependent mode, and killed newborn and ML of T. spiralis, decreased larval infectivity and development in the host by an ADCC-mediated mechanism. Immunization of mice with rTsSP produced a Th2 predominant immune response, and resulted in a 52.70% reduction of adult worms at 5 days post-infection (dpi) and a 52.10% reduction of muscle larvae at 42 dpi. The results revealed there was an interaction between TsSP and the host's IEC; TsSP might be a pivotal protein for the invading, growing and parasiting of this nematode in the host. Vaccination of mice with rTsSP elicited immune protection, and TsSP is a potential target molecule for vaccines against enteral Trichinella infection.


Characterization of a chymotrypsin-like enzyme from Trichinella spiralis and its facilitation of larva penetration into the host's enteral epithelial cells.

  • Jia Xu‎ et al.
  • Research in veterinary science‎
  • 2020‎

The aim of this work was to identify the molecular characteristics of a chymotrypsin-like enzyme from Trichinella spiralis (Tschy) and its facilitation of larval penetration into enteral epithelial cells (EECs). The complete Tschy cDNA sequence was cloned and expressed in Escherichia coli BL21. RT-PCR, IIFA and western blotting showed that Tschy was expressed at the T. spiralis muscle larvae (ML), intestinal infective L1 larvae (IL1), adult worms (AW) and embryo stages and was primarily located in the stichosome of this parasite. The results of ELISA, IIFA and Far-western assays showed that there was a specific binding between rTschy and EECs, and the binding was dependent on the dose of both rTschy and EEC proteins. Confocal microscopy demonstrated that the binding was located in the EEC cytoplasm. rTschy facilitated T. spiralis larval penetration of EECs, and anti-rTschy antibodies impeded the larval intrusion of EECs. These results demonstrate that Tschy facilitated the larval intrusion of the host's enteral epithelium and could be a candidate molecular target for vaccine against the enteral invasive phase of T. spiralis.


Molecular characterization of Trichinella spiralis galectin and its participation in larval invasion of host's intestinal epithelial cells.

  • Jia Xu‎ et al.
  • Veterinary research‎
  • 2018‎

The aim of this study was to study the molecular characteristics of Trichinella spiralis galectin (Tsgal) and interactions between Tsgal and host's intestinal epithelial cells (IECs). The functional domain of Tsgal was cloned and expressed in an E. coli system. The Tsgal was 97.1% identity to the galectin of T. nativa and 20.8% identity to the galectin-8 of humans. Conserved domain analysis revealed that Tsgal belongs to TR-type galectin and has two carbon recognized domain. The rTsgal with 29.1 kDa could be recognized by T. spiralis-infected mice at 42 days post-infection (dpi). The transcription and expression of Tsgal gene was detected by RT-PCR and Western blotting in all T. spiralis developmental stages (intestinal infective larvae, adult worms, newborn larvae, and muscle larvae). The IFA results revealed that Tsgal was mainly located at the cuticles and stichosomes of T. spiralis larvae (ML, IIL and NBL). The rTsgal had hemagglutinating function for erythrocytes from human, rabbit and mouse. The results of Far Western blot and confocal microscopy indicated there was specific binding between rTsgal and IECs, and the binding was located the membrane and cytoplasm of the IECs. Out of four sugars (sucrose, glucose, lactose and maltose), only lactose was able to inhibit the rTsgal agglutinating role for human type B erythrocytes. Moreover, the rTsgal could promote the larval invasion of IECs, while the anti-rTsgal serum inhibited the larval invasion. These results demonstrated that Tsgal might participate in the T. spiralis invasion of intestinal epithelium in early infection stage.


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