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Mongolian Gerbils as an Animal Model of Wound Healing
Published on: January 6, 2023
Giardia duodenalis: adhesion-deficient clones have reduced ability to establish infection in Mongolian gerbils
Javier Hernández-Sánchez1, Rocío Fonseca Liñan, María del Rosario Salinas-Tobón
1Departamento de Genética y Biología Molecular, Centro de Investigación y de Estudios Avanzados del IPN, Mexico, DF, Mexico.
Abstract:
The role of Giardia duodenalis surface molecules in the attachment of trophozoites to epithelial cells has been established through the dual strategies of characterizing G. duodenalis clones with deficient adhesion and blocking experiments with surface-specific monoclonal antibodies. Also, the infectivity of the analyzed clones was tested using Mongolian gerbils as experimental model. Two adhesion-deficient G. duodenalis clones, C6 and C7, were isolated from the wild type C5 clone which in turn was obtained from the WB strain. The adhesion efficiencies of C6 and C7 clones (48.2+/-4.9 and 32.6+/-2.4, respectively) were significantly lower as compared with WB strain or C5 clone (82.8+/-6.4 and 79.9+/-7.9). Analysis of radiolabel surface proteins by 1D and 2D SDS-PAGE revealed prominently labelled 28 and 88 kDa components in C6 and C7 clones and a major 200 kDa protein in the C5 clone and the WB strain. The 88 and 200 kDa components are acidic proteins by two-dimensional electrophoretic analyses. The most striking difference between wild-type and adhesion-deficient Giardia trophozoites was the reduced expression of a 200 kDa surface protein in the latter. Significantly, a mAb (IG3) specific for the 200 kDa protein that reacted with more than 99% of WB and C5 trophozoites and less than 1% of C6 and C7 trophozoites as determined by indirect immunofluorescence inhibited the adhesion of trophozoites from WB and C5 clone to Madin Darby Canine Kidney cells by 52% and 40.9%, respectively, suggesting a participation of this antigen in adherence. Finally, the functional relevance of trophozoite adhesion to epithelial cells was indicated by the reduced capacity of the adhesion-deficient clones to establish the infection in Mongolian gerbils.
Insights
Giardia duodenalis surface proteins are key to parasite attachment. A 200 kDa protein is crucial for Giardia trophozoite adhesion to epithelial cells and infection establishment.
Area of Science:
- Microbiology
- Parasitology
- Cell Biology
Background:
- Giardia duodenalis is a significant enteric parasite.
- Trophozoite attachment to host epithelial cells is critical for Giardia infection.
- Surface molecules play a role in Giardia trophozoite adhesion.
Purpose of the Study:
- To investigate the role of Giardia duodenalis surface molecules in trophozoite adhesion to epithelial cells.
- To identify specific surface proteins involved in Giardia attachment and infectivity.
Main Methods:
- Isolation and characterization of adhesion-deficient Giardia duodenalis clones (C6, C7).
- Radiolabeling and electrophoretic analysis (1D and 2D SDS-PAGE) of surface proteins.
- Monoclonal antibody (mAb) blocking experiments and indirect immunofluorescence assays.
- Infection studies using Mongolian gerbils as a model.
Main Results:
- Adhesion-deficient clones (C6, C7) showed significantly lower adhesion efficiencies compared to wild-type (WB, C5).
- A 200 kDa surface protein was highly expressed in wild-type but reduced in adhesion-deficient clones.
- A mAb (IG3) targeting the 200 kDa protein inhibited trophozoite adhesion.
- Adhesion-deficient clones exhibited reduced infectivity in Mongolian gerbils.
Conclusions:
- The 200 kDa surface protein is a key molecule mediating Giardia duodenalis trophozoite attachment to epithelial cells.
- This surface protein plays a significant role in the infectivity of Giardia duodenalis.
- Targeting this 200 kDa protein could be a strategy for controlling Giardia infections.

