Title (en)
In vitro cultivation methods for coccidian parasite research
Language
English
Description (en)
The subclass Coccidia comprises a large group of protozoan parasites, including important pathogens of humans and animals such as Toxoplasma gondii, Neospora caninum, Eimeria spp., and Cystoisospora spp. Their life cycle includes a switch from asexual to sexual stages and is often restricted to a single host species. Current research on coccidian parasites focuses on cell biology and the underlying mechanisms of protein expression and trafficking in different life stages, host cell invasion and host-parasite interactions. Furthermore, novel anticoccidial drug targets are evaluated. Given the variety of research questions and the requirement to reduce and replace animal experimentation, in vitro cultivation of Coccidia needs to be further developed and refined to meet these requirements. For these purposes, established culture systems are constantly improved. In addition, new in vitro culture systems lately gained considerable importance in research on Coccidia. Well established and optimized in vitro cultures of monolayer cells can support the viability and development of parasite stages and even allow completion of the life cycle in vitro, as shown for Cystoisospora suis and Eimeria tenella. Furthermore, new three-dimensional cell culture models are used for propagation of Cryptosporidium spp. (close relatives of the coccidians), and the infection of three-dimensional organoids with T. gondii also gained popularity as the interaction between the parasite and host tissue can be studied in more detail. The latest advances in three-dimensional culture systems are organ-on-a-chip models, that to date have only been tested for T. gondii but promise to accelerate research in other coccidians. Lastly, the completion of the life cycle of C. suis and Cryptosporidium parvum was reported to continue in a host cell-free environment following the first occurrence of asexual stages. Such axenic cultures are becoming increasingly available and open new avenues for research on parasite life cycle stages and novel intervention strategies.
Keywords (en)
Sarcocystis-Neurona Merozoites; Molecule Gene-Transcription; Bumped Kinase Inhibitors; Bovine Endothelial-Cells; Oocyst Wall Formation; Toxoplasma-Gondii; Eimeria-Tenella; Cryptosporidium-Parvum; Isospora-Suis; Life-Cycle
DOI
10.1016/j.ijpara.2022.10.002
Author of the digital object
Anna Sophia Feix  (University of Veterinary Medicine Vienna)
Anja Joachim  (University of Veterinary Medicine Vienna)
Bärbel Ruttkowski  (University of Veterinary Medicine Vienna)
Teresa Cruz-Bustos  (University of Veterinary Medicine Vienna)
Format
application/pdf
Size
873.3 kB
Licence Selected
Type of publication
Article
Name of Publication (en)
International Journal of Parasitology
Pages or Volume
13
Volume
53
Number
9
From Page
477
To Page
489
Publisher
Elsevier
Publication Date
2022