Mechanics of the Toxoplasma gondii oocyst wall.

The ability of microorganisms to survive under extreme conditions is closely related to the physicochemical properties of their wall. In the ubiquitous protozoan parasite Toxoplasma gondii, the oocyst stage possesses a bilayered wall that protects the dormant but potentially infective parasites from...

Full description

Bibliographic Details
Main Authors: Dumètre, A, Dubey, J, Ferguson, D, Bongrand, P, Azas, N, Puech, P
Format: Journal article
Language:English
Published: 2013
_version_ 1797082329521324032
author Dumètre, A
Dubey, J
Ferguson, D
Bongrand, P
Azas, N
Puech, P
author_facet Dumètre, A
Dubey, J
Ferguson, D
Bongrand, P
Azas, N
Puech, P
author_sort Dumètre, A
collection OXFORD
description The ability of microorganisms to survive under extreme conditions is closely related to the physicochemical properties of their wall. In the ubiquitous protozoan parasite Toxoplasma gondii, the oocyst stage possesses a bilayered wall that protects the dormant but potentially infective parasites from harsh environmental conditions until their ingestion by the host. None of the common disinfectants are effective in killing the parasite because the oocyst wall acts as a primary barrier to physical and chemical attacks. Here, we address the structure and chemistry of the wall of the T. gondii oocyst by combining wall surface treatments, fluorescence imaging, EM, and measurements of its mechanical characteristics by using atomic force microscopy. Elasticity and indentation measurements indicated that the oocyst wall resembles common plastic materials, based on the Young moduli, E, evaluated by atomic force microscopy. Our study demonstrates that the inner layer is as robust as the bilayered wall itself. Besides wall mechanics, our results suggest important differences regarding the nonspecific adhesive properties of each layer. All together, these findings suggest a key biological role for the oocyst wall mechanics in maintaining the integrity of the T. gondii oocysts in the environment or after exposure to disinfectants, and therefore their potential infectivity to humans and animals.
first_indexed 2024-03-07T01:26:38Z
format Journal article
id oxford-uuid:9231726f-134d-431b-98d1-69ea0a715474
institution University of Oxford
language English
last_indexed 2024-03-07T01:26:38Z
publishDate 2013
record_format dspace
spelling oxford-uuid:9231726f-134d-431b-98d1-69ea0a7154742022-03-26T23:23:48ZMechanics of the Toxoplasma gondii oocyst wall.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:9231726f-134d-431b-98d1-69ea0a715474EnglishSymplectic Elements at Oxford2013Dumètre, ADubey, JFerguson, DBongrand, PAzas, NPuech, PThe ability of microorganisms to survive under extreme conditions is closely related to the physicochemical properties of their wall. In the ubiquitous protozoan parasite Toxoplasma gondii, the oocyst stage possesses a bilayered wall that protects the dormant but potentially infective parasites from harsh environmental conditions until their ingestion by the host. None of the common disinfectants are effective in killing the parasite because the oocyst wall acts as a primary barrier to physical and chemical attacks. Here, we address the structure and chemistry of the wall of the T. gondii oocyst by combining wall surface treatments, fluorescence imaging, EM, and measurements of its mechanical characteristics by using atomic force microscopy. Elasticity and indentation measurements indicated that the oocyst wall resembles common plastic materials, based on the Young moduli, E, evaluated by atomic force microscopy. Our study demonstrates that the inner layer is as robust as the bilayered wall itself. Besides wall mechanics, our results suggest important differences regarding the nonspecific adhesive properties of each layer. All together, these findings suggest a key biological role for the oocyst wall mechanics in maintaining the integrity of the T. gondii oocysts in the environment or after exposure to disinfectants, and therefore their potential infectivity to humans and animals.
spellingShingle Dumètre, A
Dubey, J
Ferguson, D
Bongrand, P
Azas, N
Puech, P
Mechanics of the Toxoplasma gondii oocyst wall.
title Mechanics of the Toxoplasma gondii oocyst wall.
title_full Mechanics of the Toxoplasma gondii oocyst wall.
title_fullStr Mechanics of the Toxoplasma gondii oocyst wall.
title_full_unstemmed Mechanics of the Toxoplasma gondii oocyst wall.
title_short Mechanics of the Toxoplasma gondii oocyst wall.
title_sort mechanics of the toxoplasma gondii oocyst wall
work_keys_str_mv AT dumetrea mechanicsofthetoxoplasmagondiioocystwall
AT dubeyj mechanicsofthetoxoplasmagondiioocystwall
AT fergusond mechanicsofthetoxoplasmagondiioocystwall
AT bongrandp mechanicsofthetoxoplasmagondiioocystwall
AT azasn mechanicsofthetoxoplasmagondiioocystwall
AT puechp mechanicsofthetoxoplasmagondiioocystwall