1.Detection of Entamoeba histolytica in experimentally induced amoebic liver abscess: comparison of three staining methods.
Tan Zi NING ; Wong Weng KIN ; Shaymoli MUSTAFA ; Arefuddin AHMED ; Rahmah NOORDIN ; Tan Gim CHEONG ; Olivos-Garcia ALFONSO ; Lim Boon HUAT
Asian Pacific Journal of Tropical Biomedicine 2012;2(1):61-65
OBJECTIVETo compare the efficacy of three different tissue stains, namely haematoxylin and eosin (H&E), periodic-acid Schiff (PAS) and immunohistochemical (IHC) stains for detection of Entamoeba histolytica (E. histolytica) trophozoites in abscessed liver tissues of hamster.
METHODSAmoebic liver abscess was experimentally induced in a hamster by injecting 1 × 10(6) of axenically cultured virulent E. histolytica trophozoites (HM1-IMSS strain) into the portal vein. After a week post-inoculation, the hamster was sacrificed and the liver tissue sections were stained with H&E, PAS and IHC stains to detect the amoebic trophozoite.
RESULTSThe three stains revealed tissue necrosis and amoebic trophozoites, but with varying clarity. H&E and PAS stained the trophozoites pink and magenta, respectively, however it was difficult to differentiate the stained trophozoites from the macrophages because of their similarity in size and morphology. On the other hand, IHC stain revealed distinct brown appearance of the trophozoites in the infected liver tissues.
CONCLUSIONSIt can be concluded that out of the three stains, IHC is the best for identification of E. histolytica trophozoites in tissue sections.
Animals ; Disease Models, Animal ; Entamoeba histolytica ; cytology ; isolation & purification ; Histocytochemistry ; methods ; Immunohistochemistry ; methods ; Liver Abscess, Amebic ; diagnosis ; pathology ; Male ; Mesocricetus ; Microscopy ; Parasitology ; methods ; Staining and Labeling ; methods ; Trophozoites ; cytology
2.First Report of Neutrophil Involvement of Exflagellated Plasmodium vivax Microgametes.
Soo In CHOI ; Byung Ryul JEON ; Yong Wha LEE ; Hee Bong SHIN ; You Kyoug LEE
Annals of Laboratory Medicine 2014;34(6):481-483
No abstract available.
Adult
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Anti-Bacterial Agents/therapeutic use
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Antimalarials/therapeutic use
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Clindamycin/therapeutic use
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Female
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Humans
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Malaria, Vivax/*diagnosis/drug therapy/parasitology
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Neutrophils/*parasitology
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Plasmodium vivax/growth & development/*isolation & purification
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Pregnancy
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Quinine/therapeutic use
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Trophozoites/cytology
3.Comparison of specific activity and cytopathic effects of purified 33 kDa serine proteinase from Acanthamoeba strains with different degree of virulence.
Won Tae KIM ; Hyun Hee KONG ; Young Ran HA ; Yeon Chul HONG ; Hae Jin JEONG ; Hak Sun YU ; Dong Il CHUNG
The Korean Journal of Parasitology 2006;44(4):321-330
The pathogenic mechanism of granulomatous amebic encephalitis (GAE) and amebic keratitis (AK) by Acanthamoeba has yet to be clarified. Protease has been recognized to play an important role in the pathogenesis of GAE and AK. In the present study, we have compared specific activity and cytopathic effects (CPE) of purified 33 kDa serine proteinases from Acanthamoeba strains with different degree of virulence (A. healyi OC-3A, A. lugdunensis KA/E2, and A. castellanii Neff). Trophozoites of the 3 strains revealed different degrees of CPE on human corneal epithelial (HCE) cells. The effect was remarkably reduced by adding phenylmethylsulfonylfluoride (PMSF), a serine proteinase inhibitor. This result indicated that PMSF-susceptible proteinase is the main component causing cytopathy to HCE cells by Acanthamoeba. The purified 33 kDa serine proteinase showed strong activity toward HCE cells and extracellular matrix proteins. The purified proteinase from OC-3A, the most virulent strain, demonstrated the highest enzyme activity compared to KA/E2, an ocular isolate, and Neff, a soil isolate. Polyclonal antibodies against the purified 33 kDa serine proteinase inhibit almost completely the proteolytic activity of culture supernatant of Acanthamoeba. In line with these results, the 33 kDa serine proteinase is suggested to play an important role in pathogenesis and to be the main component of virulence factor of Acanthamoeba.
Virulence Factors/isolation & purification/*metabolism
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Virulence
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Trophozoites/physiology
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Substrate Specificity
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Soil/parasitology
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Serine Endopeptidases/isolation & purification/*metabolism
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Humans
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Epithelial Cells/parasitology/*pathology
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Encephalitis
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Cornea/cytology/parasitology/*pathology
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Cells, Cultured
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Animals
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Acanthamoeba castellanii/enzymology/growth & development/pathogenicity
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Acanthamoeba Keratitis/parasitology
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Acanthamoeba/classification/*enzymology/growth & development/*pathogenicity