1.Eosinophil-Mediated Tissue Inflammatory Responses in Helminth Infection.
Myeong Heon SHIN ; Young Ah LEE ; Duk Young MIN
The Korean Journal of Parasitology 2009;47(Suppl):S125-S131
Eosinophilic leukocytes function in host protection against parasitic worms. In turn, helminthic parasites harbor specific molecules to evade or paralyze eosinophil-associated host immune responses; these molecules facilitate the migration and survival of parasitic helminths in vivo. This competition between eosinophil and worm leads to stable equilibria between them. An understanding of such dynamic host-eosinophil interactions will help us to uncover mechanisms of cross talk between host and parasite in helminth infection. In this review, we examine recent findings regarding the innate immune responses of eosinophils to helminthic parasites, and discuss the implications of these findings in terms of eosinophil-mediated tissue inflammation in helminth infection.
Animals
;
Eosinophils/*immunology/parasitology
;
Helminthiasis/*immunology/*parasitology
;
Helminths/*immunology
;
Host-Parasite Interactions
;
Humans
2.A 24 kDa Excretory-Secretory Protein of Anisakis simplex Larvae Could Elicit Allergic Airway Inflammation in Mice.
Hye Kyung PARK ; Min Kyoung CHO ; Mi Kyung PARK ; Shin Ae KANG ; Yun Seong KIM ; Ki Uk KIM ; Min Ki LEE ; Mee Sun OCK ; Hee Jae CHA ; Hak Sun YU
The Korean Journal of Parasitology 2011;49(4):373-380
We have reported that a 24 kDa protein (22U homologous; As22U) of Anisakis simplex larvae could elicit several Th2-related chemokine gene expressions in the intestinal epithelial cell line which means that As22U may play a role as an allergen. In order to determine the contribution of As22U to allergic reactions, we treated mice with 6 times intra-nasal application of recombinant As22U (rAs22U). In the group challenged with rAs22U and ovalbumin (OVA), the number of eosinophils in the bronchial alveolar lavage fluid (BALF) was significantly increased, as compared to the group receiving only OVA. In addition, mice treated with rAs22U and OVA showed significantly increased airway hyperresponsiveness. Thus, severe inflammation around the airway and immune cell recruitment was observed in mice treated with rAs22U plus OVA. The levels of IL-4, IL-5, and IL-13 cytokines in the BALF increased significantly after treatment with rAs22U and OVA. Similarly, the levels of anti-OVA specific IgE and IgG1 increased in mice treated with rAs22U and OVA, compared to those treated only with OVA. The Gro-alpha (CXCL1) gene expression in mouse lung epithelial cells increased instantly after treatment with rAs22U, and allergy-specific chemokines eotaxin (CCL11) and thymus-and-activation-regulated-chemokine (CCL17) gene expressions significantly increased at 6 hr after treatment. In conclusion, rAs22U may induce airway allergic inflammation, as the result of enhanced Th2 and Th17 responses.
Administration, Intranasal
;
Animals
;
Anisakiasis/*immunology/parasitology
;
Anisakis/*immunology/metabolism
;
Bronchoalveolar Lavage Fluid
;
Chemokines/metabolism
;
Cytokines/analysis/*metabolism
;
Eosinophils/metabolism
;
Female
;
Gene Expression Regulation/*immunology
;
Helminth Proteins/*immunology
;
Hypersensitivity/*immunology/parasitology
;
Immunoglobulin E/immunology
;
Immunoglobulin G/immunology
;
Larva/immunology/metabolism
;
Lung/metabolism
;
Mice
;
Mice, Inbred C57BL
;
Recombinant Proteins/immunology
;
Th17 Cells/metabolism
;
Th2 Cells/metabolism
3.A 27 kDa Cysteine Protease Secreted by Newly Excysted Paragonimus westermani Metacercariae Induces Superoxide Anion Production and Degranulation of Human Eosinophils.
Young Bae CHUNG ; Hirohito KITA ; Myeong Heon SHIN
The Korean Journal of Parasitology 2008;46(2):95-99
Eosinophil degranulation plays a crucial role in tissue inflammatory reactions associated with helminth parasitic nfections and allergic diseases. Paragonimus westermani, a lung fluke causing human paragonimiasis, secretes a large amount of cysteine proteases, which are involved in nutrient uptake, tissue invasion, and modulation of hos's immune responses. There is, however, limited information about the response of eosinophils to direct stimulation by cysteine proteases (CP) secreted by P. westermani. In the present study, we tested whether degranulation and superoxide production from human eosinophils can be induced by stimulation of the 2 CP (27 kDa and 28 kDa) purified from excretory-secretory products (ESP) of P. westermani newly excysted metacercariae (PwNEM). A large quantity of eosinophil-derived neurotoxin (EDN) was detected in the culture supernatant when human eosinophils isolated from the peripheral blood were incubated with the purified 27 kDa CP. Furthermore, the 27 kDa CP induced superoxide anion production by eosinophils in time- and dose-dependent manners. In contrast, the purified 28 kDa CP did not induce superoxide production and degranulation. These findings suggest that the 27 kDa CP secreted by PwNEM induces superoxide production and degranulation of human eosinophils, which may be involved in eosinophil-mediated tissue inflammatory responses during the larval migration in human paragonimiasis.
Animals
;
Astacoidea/parasitology
;
*Cell Degranulation
;
Cysteine Endopeptidases/*immunology/isolation & purification
;
Eosinophils/*immunology/metabolism
;
Helminth Proteins/*immunology/isolation & purification
;
Humans
;
Paragonimiasis/*immunology/metabolism
;
Paragonimus westermani/*enzymology/isolation & purification
;
Superoxides/*immunology
4.Enhanced Resolution of Eosinophilic Liver Abscess Associated with Toxocariasis by Albendazole Treatment.
Eun Young JANG ; Moon Seok CHOI ; Geum Youn GWAK ; Kwang Cheol KOH ; Seung Woon PAIK ; Joon Hyeok LEE ; Yong Han PAIK ; Byung Chul YOO
The Korean Journal of Gastroenterology 2015;65(4):222-228
BACKGROUND/AIMS: Visceral larva migrans, caused by Toxocara canis and Toxocara cati, has emerged as a significant cause of eosinophilic liver abscess (ELA). Differentiation of ELA associated with toxocariasis (ELA-T) from metastasis or primary liver malignancy is sometimes difficult. However, the role of albendazole treatment remains uncertain in this condition. The aim of this study was to evaluate whether albendazole can enhance the radiologic resolution of ELA-T. METHODS: We retrospectively reviewed the medical records of the patients diagnosed with ELA-T at our institution between January 2008 and December 2011. ELA-T was diagnosed based on the imaging findings on computed tomography or magnetic resonance imaging and the presence of positive serum IgG antibody for Toxocara canis. Among a total of 163 patients, 32 patients received albendazole (albendazole group) and 131 did not (control group). Baseline characteristics and fate of liver nodules were compared between the two groups. RESULTS: Baseline characteristics (age, sex, number and maximal size of lesions, eosinophil count) were similar between the two groups. Median duration for achieving radiologic resolution in the albendazole group was significantly shorter than in the control group (207 days [range 186-228] vs. 302 days [range 224-380], p=0.023). In Cox regression analysis of the cumulative rates of radiologic resolution, the hazard ratio for albendazole treatment was 1.99 (95% confidence interval, 1.22-3.23). CONCLUSIONS: Radiologic resolution of ELA-T can be accelerated with albendazole treatment. Hence, inconvenience associated with long-term follow-up and unnecessary worries among patients can be eliminated with albendazole treatment.
Adult
;
Aged
;
Aged, 80 and over
;
Albendazole/*therapeutic use
;
Animals
;
Antiprotozoal Agents/*therapeutic use
;
Eosinophils/*immunology
;
Female
;
Humans
;
Immunoglobulin G/blood
;
Larva Migrans, Visceral/*drug therapy/parasitology
;
Liver/enzymology/metabolism
;
Liver Abscess/*etiology
;
Magnetic Resonance Imaging
;
Male
;
Middle Aged
;
Proportional Hazards Models
;
Retrospective Studies
;
Tomography, X-Ray Computed
;
Toxocara canis/immunology/isolation & purification