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Transcending Dimensions in Apicomplexan Research: from Two-Dimensional to Three-Dimensional In Vitro Cultures

期刊

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/mmbr.00025-22

关键词

apicomplexan parasites; host-parasite interaction; organoids; organ-on-a-chip; 2D culture; 3D cultures

资金

  1. National Institutes of Health [R01AI144016-01]
  2. Morgridge Metabolism Interdisciplinary Fellowship from the Morgridge Institute for Research

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Parasites belonging to the Apicomplexa phylum are highly successful pathogens that can infect a wide range of hosts, evade the immune system, and cause acute and chronic illnesses. The use of three-dimensional (3D) systems has revolutionized the study of these parasites, allowing researchers to explore previously uncharted life stages and mimic host-pathogen interactions.
Parasites belonging to the Apicomplexa phylum are among the most successful pathogens known in nature. They can infect a wide range of hosts, often remain undetected by the immune system, and cause acute and chronic illness. In this phylum, we can find parasites of human and veterinary health relevance, such as Toxoplasma, Plasmodium, Cryptosporidium, and Eimeria. There are still many unknowns about the biology of these pathogens due to the ethical and practical issues of performing research in their natural hosts. Animal models are often difficult or nonexistent, and as a result, there are apicomplexan life cycle stages that have not been studied. One recent alternative has been the use of three-dimensional (3D) systems such as organoids, 3D scaffolds with different matrices, microfluidic devices, organs-on-a-chip, and other tissue culture models. These 3D systems have facilitated and expanded the research of apicomplexans, allowing us to explore life stages that were previously out of reach and experimental procedures that were practically impossible to perform in animal models. Human- and animal-derived 3D systems can be obtained from different organs, allowing us to model host-pathogen interactions for diagnostic methods and vaccine development, drug testing, exploratory biology, and other applications. In this review, we summarize the most recent advances in the use of 3D systems applied to apicomplexans. We show the wide array of strategies that have been successfully used so far and apply them to explore other organisms that have been less studied. Parasites belonging to the Apicomplexa phylum are among the most successful pathogens known in nature. They can infect a wide range of hosts, often remain undetected by the immune system, and cause acute and chronic illness.

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