1.Animal Models for Echinostoma malayanum Infection: Worm Recovery and Some Pathology.
Jiraporn SONGSRI ; Ratchadawan AUKKANIMART ; Thidarut BOONMARS ; Panaratana RATANASUWAN ; Porntip LAUMMAUNWAI ; Pranee SRIRAJ ; Panupan SRIPAN
The Korean Journal of Parasitology 2016;54(1):47-53
Echinostomes are intestinal trematodes that infect a wide range of vertebrate hosts, including humans, in their adult stage and also parasitize numerous invertebrate and cold-blooded vertebrate hosts in their larval stages. The purpose of this study was to compare Echinostoma malayanum parasite growth, including worm recovery, body size of adult worms, eggs per worm, eggs per gram of feces, and pathological changes in the small intestine of experimental animals. In this study, 6-8-week-old male hamsters, rats, mice, and gerbils were infected with echinostome metacercariae and then sacrificed at day 60 post-infection. The small intestine and feces of each infected animal were collected and then processed for analysis. The results showed that worm recovery, eggs per worm, and eggs per gram of feces from all infected hamsters were higher compared with infected rats and mice. However, in infected gerbils, no parasites were observed in the small intestine, and there were no parasite eggs in the feces. The volume of eggs per gram of feces and eggs per worm were related to parasite size. The results of histopathological changes in the small intestine of infected groups showed abnormal villi and goblet cells, as evidenced by short villi and an increase in the number and size of goblet cells compared with the normal control group.
Animals
;
Body Size
;
*Disease Models, Animal
;
Echinostoma/growth & development/isolation & purification/*physiology
;
Echinostomiasis/*parasitology/*pathology
;
Feces/parasitology
;
Intestine, Small/parasitology/pathology
;
Parasite Egg Count
2.STAT6 Expression and IL-13 Production in Association with Goblet Cell Hyperplasia and Worm Expulsion of Gymnophalloides seoi from C57BL/6 Mice.
Jin Joo LEE ; Donghee KIM ; Kyoung Ho PYO ; Min Ki KIM ; Hyo Jin KIM ; Jong Yil CHAI ; Eun Hee SHIN
The Korean Journal of Parasitology 2013;51(5):589-594
In intestinal helminth infections, Th2 immune respones are generally associated with mucin secretion for worm expulsion from the host intestine. In particular, IL-4 and IL-13 are the important cytokines related with intestinal mucus production via STAT6 signalling in nematode infections. However, this perspective has never been studied in Gymnophalloides seoi infection. The present study aimed to observe the STAT6 signalling and cytokine responses in C57BL/6 mice, a mouse strain resistant to infection with this trematode. The results showed that worm expulsion occurred actively during days 1-2 post-infection (PI), when goblet cells began to proliferate in the small intestine. The STAT6 gene expression in the mouse spleen became remarkable from day 2 PI. Moreover, G. seoi infection induced a significant increase of IL-13 from day 4 PI in the spleen of infected mice. Our results suggested that goblet cell hyperplasia and worm expulsion in G. seoi-infected mice should be induced by STAT6 signalling, in which IL-13 may be involved as a dominant triggering cytokine.
Animals
;
Crassostrea
;
Female
;
Goblet Cells/*pathology
;
Hyperplasia/pathology
;
Interleukin-13/*metabolism
;
Interleukin-4/*metabolism
;
Intestine, Small/immunology
;
Metacercariae
;
Mice
;
Mice, Inbred C57BL
;
STAT6 Transcription Factor/*metabolism
;
Signal Transduction
;
Specific Pathogen-Free Organisms
;
Spleen/immunology
;
Trematoda/*immunology
;
Trichinellosis/*immunology/parasitology
3.Mucosal Immune Responses of Mice Experimentally Infected with Pygidiopsis summa (Trematoda: Heterophyidae).
Jong Yil CHAI ; Young Jin PARK ; Jae Hwan PARK ; Bong Kwang JUNG ; Eun Hee SHIN
The Korean Journal of Parasitology 2014;52(1):27-33
Mucosal immune responses against Pygidiopsis summa (Trematoda: Heterophyidae) infection were studied in ICR mice. Experimental groups consisted of group 1 (uninfected controls), group 2 (infection with 200 metacercariae), and group 3 (immunosuppression with Depo-Medrol and infection with 200 metacercariae). Worms were recovered in the small intestine at days 1, 3, 5, and 7 post-infection (PI). Intestinal intraepithelial lymphocytes (IEL), mast cells, and goblet cells were counted in intestinal tissue sections stained with Giemsa, astra-blue, and periodic acid-Schiff, respectively. Mucosal IgA levels were measured by ELISA. Expulsion of P. summa from the mouse intestine began to occur from days 3-5 PI which sustained until day 7 PI. The worm expulsion was positively correlated with proliferation of IEL, mast cells, goblet cells, and increase of IgA, although in the case of mast cells significant increase was seen only at day 7 PI. Immunosuppression suppressed all these immune effectors and inhibited worm reduction in the intestine until day 7 PI. The results suggested that various immune effectors which include IEL, goblet cells, mast cells, and IgA play roles in regulating the intestinal mucosal immunity of ICR mice against P. summa infection.
Animals
;
Disease Models, Animal
;
Enzyme-Linked Immunosorbent Assay
;
Goblet Cells/immunology
;
Heterophyidae/*immunology
;
*Immunity, Mucosal
;
Immunoglobulin A/analysis
;
Intestine, Small/parasitology/pathology
;
Leukocyte Count
;
Lymphocytes/immunology
;
Male
;
Mast Cells/immunology
;
Mice
;
Mice, Inbred ICR
;
Parasite Load
;
Time Factors
;
Trematode Infections/*immunology/parasitology