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PMID: 3959014 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

A comparison of endogenous development of three isolates of Cryptosporidium in suckling mice.

The Journal of protozoology ·Vol. 33 ·No. 1 ·1986-02-00 ·Pages 98-108

Current WL, Reese NC

Abstract

Suckling mice were used as a model host to compare the endogenous development of three different isolates of Cryptosporidium: one from a naturally infected calf, one from an immunocompetent human with a short-term diarrheal illness, and one from a patient with acquired immune deficiency syndrome (AIDS) and persistent, life-threatening, gastrointestinal cryptosporidiosis. After oral inoculation of mice with oocysts, no differences were noted among developmental stages of the three isolates in their sites of infection, times of appearance, and duration, morphology, and fine structure. Sporozoites excysted within the lumen of the duodenum and ileum, penetrated into the microvillous region of villous enterocytes, and developed into type I meronts with six or eight merozoites. Type I merozoites penetrated enterocytes and underwent cyclic development as type I meronts or they became type II meronts with four merozoites. Type II merozoites did not exhibit cyclic development but developed directly into sexual forms. Microgamonts produced approximately 16 small, bullet-shaped microgametes, which were observed attaching to and penetrating macrogametes. Approximately 80% of the oocysts observed in enterocytes had a thick, two-layered wall. After sporulating within the parasitophorous vacuole, these thick-walled oocysts passed through the gut unaltered and were the resistant forms that transmitted the infection to a new host. Approximately 20% of the oocysts in enterocytes consisted of four sporozoites and a residuum surrounded only by a single oocyst membrane that ruptured soon after the parasite was released from the host cell. The presence of thin-walled, autoinfective oocysts and recycling of type I meronts may explain why a small oral inoculum can produce an overwhelming infection in a suitable host and why immune deficient persons can have persistent, life-threatening cryptosporidiosis in the absence of repeated oral exposure to thick-walled oocysts.

MeSH Terms
Animals Animals, Suckling Cattle Coccidia/isolation & purification Cryptosporidiosis/pathology Cryptosporidium/cytology,isolation & purification,ultrastructure Humans Intestinal Mucosa/pathology Intestine, Small/pathology Mice Microscopy, Electron Species Specificity
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Current W L
Reese N C
Article Info
Journal
The Journal of protozoology
Abbr.
J Protozool
ISSN
0022-3921
Published
1986-02-00
Pages
98-108
Language
English
Region
United States
NLM ID
2985197R
Subset
IM
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