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Mini Review

Understanding the pathogenicity of Naegleria fowleri in association with N. fowleri antigen-1 (Nfa1)
Jong-Hyun Kim, Hae-Jin Sohn, Ho-Joon Shin, Stacy E. Walz, Suk-Yul Jung
Parasites Hosts Dis 2024;62(4):385-398.
Published online November 22, 2024
DOI: https://doi.org/10.3347/PHD.24025
Naegleria fowleri, a brain-eating amoeba, thrives in lakes and rivers with aquatic vegetation and causes primary amoebic meningoencephalitis (PAM) in humans. Most recently, it has become such a serious problem that N. fowleri was detected in tap water in Houston, USA. Several pathogenic factors are considered very important to destroy target cells in the brain. In particular, the food-cup where N. fowleri antigen-1 (Nfa1) is located, is strongly expressed in pseudopodia involved in the movement of N. fowleri, and is involved in phagocytosis by attaching to target cells. In this article, we reviewed the role of the Nfa1 protein and its associated pathogenicity. The nfa1 gene was cloned by cDNA library immunoscreening using infection serum and immune serum. Nfa1 protein is mainly distributed in pseudopodia important to movement and vacuoles. Moreover, heat shock protein 70, cathepsin-like proteare and Nf-actin are also associated with pseudopodia in which Nfa1 is localized. Interestingly, the amount of the nfa1 gene changed as N. fowleri trophozoites transformed into cysts. Polyclonal antiserum against Nfa1 showed a protective effect against cytotoxicity of approximately 19.7%. Nfa1-specific IgA antibodies prevent N. fowleri trophozoites from adhering to the nasal mucosa, delaying invasion. The nfa1-vaccinated mice showed significantly higher levels of Nfa1-specific antibody. The duration of anti-Nfa1 IgG in the vaccinated mice lasted 12 weeks, strongly suggesting that nfa1 is a significant pathogenic gene and that Nfa1 is a pathogenic protein. Several factors related to pseudopodia and locomotion have been linked to Nfa1. A clearer function of N. fowleri targeting nfa1 with other genes might enable target-based inhibition of N. fowleri pathogenicity.

Citations

Citations to this article as recorded by  Crossref logo
  • Computational exploration of natural inhibitors against toxin-associated proteins in Naegleria fowleri Karachi strain
    Rabia Faizan, Muhammad Naveed, Inmaculada Bellido Estevez, Nimra Hanif, Arooj Arshad, Tariq Aziz, Abdulhakeem S. Alamri, Walaa F. Alsanie, Majid Alhomrani
    Pathology - Research and Practice.2025; 274: 156184.     CrossRef
  • A review of the mechanism, diagnosis, and treatment of Naegleria fowleri infection
    Ling Dai, Xin-Ru Guo, Xu-Rui Chen, Ming-Hao Ma, Zi-Han Liu, Juan Lai, Jun Lu, Ming Feng, Xi-Xia Liu, Sheng-Hui Yang
    Frontiers in Microbiology.2025;[Epub]     CrossRef
  • 5,048 View
  • 325 Download
  • 2 Web of Science
  • Crossref

Brief Communication

Specific Detection of Acanthamoeba species using Polyclonal Peptide Antibody Targeting the Periplasmic Binding Protein of A. castellanii
Min-Jeong Kim, Fu-Shi Quan, Hyun-Hee Kong, Jong-Hyun Kim, Eun-Kyung Moon
Korean J Parasitol 2022;60(2):143-147.
Published online April 20, 2022
DOI: https://doi.org/10.3347/kjp.2022.60.2.143
Acanthamoeba keratitis (AK) is a rare ocular disease, but it is a painful and sight-threatening infectious disease. Early diagnosis and adequate treatment are necessary to prevent serious complications. While AK is frequently diagnosis via several PCR assays or Acanthamoeba-specific antibodies, a more specific and effective diagnostic method is required. This study described the production of a polyclonal peptide antibody against the periplasmic binding protein (PBP) of A. castellanii and investigated its diagnostic potential. Western blot analysis showed that the PBP antibody specifically reacted with the cell lysates of A. castellanii. However, the PBP antibody did not interact with human corneal epithelial (HCE) cells and the other 3 major causative agents of keratitis. Immunocytochemistry (ICC) results revealed the specific detection of A. castellanii trophozoites and cysts by PBP antibodies when A. castellanii were co-cultured with HCE cells. PBP antibody specificity was further confirmed by co-culture of A. castellanii trophozoites with F. solani, S. aureus, and P. aeruginosa via ICC. The PBP antibody specifically reacted with the trophozoites and cysts of A. polyphaga, A. hatchetti, A. culbertsoni, A. royreba, and A. healyi, thus demonstrated its genus-specific nature. These results showed that the PBP polyclonal peptide antibody of A. castellanii could specifically detect several species of Acanthamoeba, contributing to the development of an effective antibody-based AK diagnostics.

Citations

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  • Evaluation of the potential for diagnosis of fungal keratitis using a Fusarium-specific antibody
    Hye-Jeong Jo, Min-Jeong Kim, Hae-Ahm Lee, Fu-Shi Quan, Hyun-Hee Kong, Eun-Kyung Moon
    Scientific Reports.2025;[Epub]     CrossRef
  • Detection of Fusarium solani using cutinase antibody and its application in diagnosing fungal keratitis in an animal model
    Hye-Jeong Jo, Min-Jeong Kim, Hae-Ahm Lee, Fu-Shi Quan, Hyun-Hee Kong, Eun-Kyung Moon, Olaf Kniemeyer
    PLOS One.2025; 20(8): e0330455.     CrossRef
  • A chorismate mutase-targeted, core-shell nanoassembly-activated SERS immunoassay platform for rapid non-invasive detection of Acanthamoeba infection
    Hyerin Lee, Min-Jeong Kim, Junkyu Chung, Wansun Kim, Hye-Jeong Jo, Tae Gi Kim, Jae-Ho Shin, Gi-Ja Lee, Fu-Shi Quan, Hyun-Hee Kong, Sang Woong Moon, Eun-Kyung Moon, Samjin Choi
    Nano Today.2024; 59: 102506.     CrossRef
  • Evaluating the Diagnostic Potential of Chorismate Mutase Poly-Clonal Peptide Antibody for the Acanthamoeba Keratitis in an Animal Model
    Min-Jeong Kim, Hye-Jeong Jo, Hae-Jin Sohn, Ho-Joon Shin, Fu-Shi Quan, Hyun-Hee Kong, Eun-Kyung Moon
    Pathogens.2023; 12(4): 526.     CrossRef
  • Detection of Acanthamoeba from Acanthamoeba Keratitis Mouse Model Using Acanthamoeba-Specific Antibodies
    Min-Jeong Kim, A-Jeong Ham, A-Young Park, Hae-Jin Sohn, Ho-Joon Shin, Fu-Shi Quan, Hyun-Hee Kong, Eun-Kyung Moon
    Microorganisms.2022; 10(9): 1711.     CrossRef
  • 3,771 View
  • 196 Download
  • 5 Web of Science
  • Crossref

Case Report

A Case of Fascioliasis in A Wild Nutria, Myocastor coypus, in Republic of Korea
Hyo-Seok Kim, Joo-Yeon Kong, Jong-Hyun Kim, Seong-Chan Yeon, Il-Hwa Hong
Korean J Parasitol 2018;56(4):375-378.
Published online August 31, 2018
DOI: https://doi.org/10.3347/kjp.2018.56.4.375
A total of 44 adult or juvenile nutrias were necropsied for disease survey. A large nodule was found in the liver of a nutria. The histopathological specimen of the hepatic nodule was microscopically examined, and sectional worms were found in the bile duct. The worms showed a tegument with spines, highly branches of vitelline glands and intestine. Finally, we histopathologically confirmed fascioliasis in a wild nutria. In the present study, a case of fascioliasis in a wild nutria is first confirmed in Korea.

Citations

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  • The use of Glutathione-S-transferase levels as marker of hepatic damage in chronic fasciolosis in cattle
    Al-Hassan Mohammed Mostafa, Gehan Mohammed Sayed, Ali Ali Hassan Al-Ezzi, Alaa Eldin Kamal
    Veterinary Parasitology.2025; 339: 110577.     CrossRef
  • Fasciola hepatica infection in Korean water deer (Hydropotes inermis argyropus)
    Na-Hyeon Kim, Min-Gyeong Seo, Bumseok Kim, Yu Jeong Jeon, In Jung Jung, Il-Hwa Hong
    Parasites, Hosts and Diseases.2025; 63(3): 243.     CrossRef
  • Intestinal parasites of Myocastor coypus (Rodentia, Myocastoridae) on animal farms in Eastern Ukraine
    N. V. Sumakova, A. P. Paliy, O. V. Pavlichenko, R. V. Petrov, B. S. Morozov, V. M. Plys, A. B. Mushynskyi
    Regulatory Mechanisms in Biosystems.2025; 16(3): e25117.     CrossRef
  • Prevalence and hepatic histopathological findings of fascioliasis in sheep slaughtered in Jeddah, Saudi Arabia
    Safinaz J. Ashoor, Majed H. Wakid
    Scientific Reports.2023;[Epub]     CrossRef
  • Climate change induced habitat expansion of nutria (Myocastor coypus) in South Korea
    Pradeep Adhikari, Baek-Jun Kim, Sun-Hee Hong, Do-Hun Lee
    Scientific Reports.2022;[Epub]     CrossRef
  • Genetic diversity and relationships of the liver fluke Fasciola hepatica (Trematoda) with native and introduced definitive and intermediate hosts
    Antonio A. Vázquez, Emeline Sabourin, Pilar Alda, Clémentine Leroy, Carole Leray, Eric Carron, Stephen Mulero, Céline Caty, Sarah Hasfia, Michel Boisseau, Lucas Saugné, Olivier Pineau, Thomas Blanchon, Annia Alba, Dominique Faugère, Marion Vittecoq, Sylvi
    Transboundary and Emerging Diseases.2021; 68(4): 2274.     CrossRef
  • Preputial gland adenoma in a wild nutria (Myocastor coypus): a case report
    Joo-Yeon Kong, Hyo-Seok Kim, Seong-Chan Yeon, Jin-Kyu Park, Kyu-Shik Jeong, Il-Hwa Hong
    Journal of Veterinary Science.2020;[Epub]     CrossRef
  • Preputial gland adenoma in a wild nutria (Myocastor coypus): a case report
    Joo-Yeon Kong, Hyo-Seok Kim, Seong-Chan Yeon, Jin-Kyu Park, Kyu-Shik Jeong, Il-Hwa Hong
    Journal of Veterinary Science.2019;[Epub]     CrossRef
  • 10,023 View
  • 134 Download
  • 8 Web of Science
  • Crossref

Original Article

Efficient Liquid Media for Encystation of Pathogenic Free-Living Amoebae
Hae-Jin Sohn, Heekyoung Kang, Ga-Eun Seo, Jong-Hyun Kim, Suk-Yul Jung, Ho-Joon Shin
Korean J Parasitol 2017;55(3):233-238.
Published online June 30, 2017
DOI: https://doi.org/10.3347/kjp.2017.55.3.233
Pathogenic Naegleria fowleri, Acanthamoeba castellanii, and Acanthamoeba polyphaga, are distributed worldwide. They are causative agents of primary amoebic meningoencephalitis or acanthamoebic keratitis in humans, respectively. Trophozoites encyst in unfavorable environments, such as exhausted food supply and desiccation. Until recently, the method of N. fowleri encystation used solid non-nutrient agar medium supplemented with heat-inactivated Escherichia coli; however, for the amoebic encystment of Acanthamoeba spp., a defined, slightly modified liquid media is used. In this study, in order to generate pure N. fowleri cysts, a liquid encystment medium (buffer 1) modified from Page’s amoeba saline was applied for encystation of N. fowleri. N. fowleri cysts were well induced after 24 hr with the above defined liquid encystment medium (buffer 1). This was confirmed by observation of a high expression of differential mRNA of nfa1 and actin genes in trophozoites. Thus, this liquid medium can replace the earlier non-nutrient agar medium for obtaining pure N. fowleri cysts. In addition, for cyst formation of Acanthamoeba spp., buffer 2 (adjusted to pH 9.0) was the more efficient medium. To summarize, these liquid encystment media may be useful for further studies which require axenic and pure amoebic cysts.

Citations

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  • Development of a novel encystment medium: Enhancing diagnostic potential of Acanthamoeba spp.
    Julalak Chuprom, Suthinee Sangkanu, Watcharapong Mitsuwan, Rachasak Boonhok, Alok K. Paul, Sonia M. Rodrigues Oliveira, Maria L. Pereira, Tajudeen O. Jimoh, Mohammed Rahmatullah, Polrat Wilairatana, Christophe Wiart, Ajoy K. Verma, Veeranoot Nissapatorn
    Veterinary World.2025; : 110.     CrossRef
  • Exploring the potential role of soil protists in predicting banana health
    Xiangyu Ren, Chen Liu, Yang Yue, Shuo Sun, Lang Zhao, Chengyuan Tao, Beibei Wang, Wu Xiong, Zongzhuan Shen, Rong Li, Qirong Shen
    Microbiological Research.2025; 295: 128109.     CrossRef
  • Cloning of nf-profilin and intercellular interaction with nf-actin in Naegleria fowleri cysts
    Hae-Jin Sohn, A-Jeong Ham, A-Young Park, Jeong-Heon Lee, Sun Park, Ho-Joon Shin, Jong-Hyun Kim
    Scientific Reports.2025;[Epub]     CrossRef
  • Ouabain, ATPase inhibitor, potentially enhances the effect of polyhexamethylene biguanide on Acanthamoeba castellanii
    Kuang-Yi Shih, Yao-Tsung Chang, Yu-Jen Wang, Jian-Ming Huang
    International Journal for Parasitology: Drugs and Drug Resistance.2024; 25: 100550.     CrossRef
  • Understanding the pathogenicity of Naegleria fowleri in association with N. fowleri antigen-1 (Nfa1)
    Jong-Hyun Kim, Hae-Jin Sohn, Ho-Joon Shin, Stacy E. Walz, Suk-Yul Jung
    Parasites, Hosts and Diseases.2024; 62(4): 385.     CrossRef
  • De Novo Transcriptome Profiling of Naegleria fowleri Trophozoites and Cysts via RNA Sequencing
    Hae-Jin Sohn, Jong-Hyun Kim, Kyongmin Kim, Sun Park, Ho-Joon Shin
    Pathogens.2023; 12(2): 174.     CrossRef
  • An International External Quality Assessment Scheme to Assess the Diagnostic Performance of Polymerase Chain Reaction Detection of Acanthamoeba Keratitis
    Maarten J. Sarink, Rob Koelewijn, Foekje Stelma, Titia Kortbeek, Lisette van Lieshout, Pieter W. Smit, Aloysius G. M. Tielens, Jaap J. van Hellemond
    Cornea.2023; 42(8): 1027.     CrossRef
  • Development of a Machine Learning-Based Cysticidal Assay and Identification of an Amebicidal and Cysticidal Marine Microbial Metabolite against Acanthamoeba
    Brian Shing, Mina Balen, William Fenical, Anjan Debnath, Wei-Hua Chen
    Microbiology Spectrum.2022;[Epub]     CrossRef
  • Curcumin effect on Acanthamoeba triangularis encystation under nutrient starvation
    Rachasak Boonhok, Suthinee Sangkanu, Suganya Phumjan, Ramita Jongboonjua, Nawarat Sangnopparat, Pattamaporn Kwankaew, Aman Tedasen, Chooi Ling Lim, Maria de Lourdes Pereira, Mohammed Rahmatullah, Polrat Wilairatana, Christophe Wiart, Karma G. Dolma, Alok
    PeerJ.2022; 10: e13657.     CrossRef
  • Novel Antiamoebic Tyrocidine-Derived Peptide against Brain-Eating Amoebae
    Noor Akbar, Wendy E. Kaman, Maarten Sarink, Kamran Nazmi, Floris J. Bikker, Naveed Ahmed Khan, Ruqaiyyah Siddiqui
    ACS Omega.2022; 7(33): 28797.     CrossRef
  • Combinatorial treatment with β-glucanase enzyme and chlorhexidine induces cysticidal effects in Acanthamoeba cyst
    Nurhidayana Mohd Rased, Syed Ahmad Tajudin Tuan Johari, Hazlina Ahamad Zakeri, Nyuk Ling Ma, Siti Aisyah Razali, Fatimah Hashim
    Parasitology Research.2022; 121(11): 3105.     CrossRef
  • The Acanthamoeba SBDS, a cytoskeleton-associated gene, is highly expressed during phagocytosis and encystation
    Yu-Jen Wang, Wei-Chen Lin, Ming-Shan He
    Journal of Microbiology, Immunology and Infection.2021; 54(3): 482.     CrossRef
  • RETRACTED ARTICLE: Establishment of an Acanthamoeba keratitis mouse model confirmed by amoebic DNA amplification
    Heekyoung Kang, Hae-Jin Sohn, A-Young Park, A-Jeong Ham, Jeong-Heon Lee, Young-Hwan Oh, Yong-Joon Chwae, Kyongmin Kim, Sun Park, Hongseok Yang, Suk-Yul Jung, Jong-Hyun Kim, Ho-Joon Shin
    Scientific Reports.2021;[Epub]     CrossRef
  • A Novel Cysteine Protease Inhibitor of Naegleria fowleri That Is Specifically Expressed during Encystation and at Mature Cysts
    Hương Giang Lê, A-Jeong Ham, Jung-Mi Kang, Tuấn Cường Võ, Haung Naw, Hae-Jin Sohn, Ho-Joon Shin, Byoung-Kuk Na
    Pathogens.2021; 10(4): 388.     CrossRef
  • Inhibitory Effect of Host Ocular Microenvironmental Factors on Chlorhexidine Digluconate Activity
    Chun-Hsien Chen, Yu-Jen Wang, Jian-Ming Huang, Fu-Chin Huang, Wei-Chen Lin
    Antimicrobial Agents and Chemotherapy.2021;[Epub]     CrossRef
  • Primary Amoebic Meningoencephalitis by Naegleria fowleri: Pathogenesis and Treatments
    Andrea Güémez, Elisa García
    Biomolecules.2021; 11(9): 1320.     CrossRef
  • Evaluation of Amebicidal and Cysticidal Activities of Antifungal Drug Isavuconazonium Sulfate against Acanthamoeba T4 Strains
    Brian Shing, Mina Balen, Anjan Debnath
    Pharmaceuticals.2021; 14(12): 1294.     CrossRef
  • Characterisation of the β-lactam resistance enzyme in Acanthamoeba castellanii
    Chun-Hsien Chen, Chao-Li Huang, Ming-Shan He, Fu-Chin Huang, Wei-Chen Lin
    International Journal of Antimicrobial Agents.2020; 55(2): 105823.     CrossRef
  • Molecular detection of free-living amoebae from Namhangang (southern Han River) in Korea
    Heekyoung Kang, Hae-Jin Sohn, Ga-Eun Seo, Gi-Sang Seong, A-Jeong Ham, A-Young Park, Suk-Yul Jung, Sang-Eun Lee, Shin-Hyeong Cho, Ho-Joon Shin
    Scientific Reports.2020;[Epub]     CrossRef
  • Fowlerstefin, a cysteine protease inhibitor of Naegleria fowleri, induces inflammatory responses in BV-2 microglial cells in vitro
    Thị Lam Thái, Jung-Mi Kang, Hương Giang Lê, Jinyoung Lee, Won Gi Yoo, Ho-Joon Shin, Woon-Mok Sohn, Byoung-Kuk Na
    Parasites & Vectors.2020;[Epub]     CrossRef
  • The Antifungal Drug Isavuconazole Is both Amebicidal and Cysticidal against Acanthamoeba castellanii
    Brian Shing, Seema Singh, Larissa M. Podust, James H. McKerrow, Anjan Debnath
    Antimicrobial Agents and Chemotherapy.2020;[Epub]     CrossRef
  • Effects of Acanthamoeba castellanii on the dissolved oxygen and the microbial community under the experimental aquatic model
    Chih-Ming Tsai, Jenn-Wei Chen, Wei-Chen Lin
    Experimental Parasitology.2020; 218: 107985.     CrossRef
  • Fate of internalized Campylobacter jejuni and Mycobacterium avium from encysted and excysted Acanthamoeba polyphaga
    Rasha Maal-Bared, Brent Dixon, Diana Axelsson-Olsson
    Experimental Parasitology.2019; 199: 104.     CrossRef
  • Cellular characterization of actin gene concerned with contact‐dependent mechanisms in Naegleria fowleri
    Hae‐Jin Sohn, Kyoung‐Ju Song, Heekyoung Kang, A‐Jeong Ham, Jae‐Ho Lee, Yong‐Joon Chwae, Kyongmin Kim, Sun Park, Jong‐Hyun Kim, Ho‐Joon Shin
    Parasite Immunology.2019;[Epub]     CrossRef
  • Cytopathic Change and Inflammatory Response of Human Corneal Epithelial Cells Induced by Acanthamoeba castellanii Trophozoites and Cysts
    Hae-Jin Sohn, Ga-Eun Seo, Jae-Ho Lee, A-Jeong Ham, Young-Hwan Oh, Heekyoung Kang, Ho-Joon Shin
    The Korean Journal of Parasitology.2019; 57(3): 217.     CrossRef
  • Production and characterization of monoclonal antibodies against cathepsin B and cathepsin B-Like proteins of Naegleria fowleri
    Gi-Sang Seong, Hae-Jin Sohn, Heekyoung Kang, Ga-Eun Seo, Jong-Hyun Kim, Ho-Joon Shin
    Experimental Parasitology.2017; 183: 171.     CrossRef
  • 9,739 View
  • 240 Download
  • 27 Web of Science
  • Crossref

Brief Communication

Naegleria fowleri Lysate Induces Strong Cytopathic Effects and Pro-inflammatory Cytokine Release in Rat Microglial Cells
Yang-Jin Lee, Chang-Eun Park, Jong-Hyun Kim, Hae-Jin Sohn, Jinyoung Lee, Suk-Yul Jung, Ho-Joon Shin
Korean J Parasitol 2011;49(3):285-290.
Published online September 30, 2011
DOI: https://doi.org/10.3347/kjp.2011.49.3.285

Naegleria fowleri, a ubiquitous free-living ameba, causes fatal primary amebic meningoencephalitis in humans. N. fowleri trophozoites are known to induce cytopathic changes upon contact with microglial cells, including necrotic and apoptotic cell death and pro-inflammatory cytokine release. In this study, we treated rat microglial cells with amebic lysate to probe contact-independent mechanisms for cytotoxicity, determining through a combination of light microscopy and scanning and transmission electron microscopy whether N. fowleri lysate could effect on both necrosis and apoptosis on microglia in a time- as well as dose-dependent fashion. A 51Cr release assay demonstrated pronounced lysate induction of cytotoxicity (71.5%) toward microglial cells by 24 hr after its addition to cultures. In an assay of pro-inflammatory cytokine release, microglial cells treated with N. fowleri lysate produced TNF-α, IL-6, and IL-1β, though generation of the former 2 cytokines was reduced with time, and that of the last increased throughout the experimental period. In summary, N. fowleri lysate exerted strong cytopathic effects on microglial cells, and elicited pro-inflammatory cytokine release as a primary immune response.

Citations

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  • Providing an in vitro depiction of microglial cells challenged with immunostimulatory extracellular vesicles of Naegleria fowleri
    Lissette Retana Moreira, Alberto Cornet-Gomez, M. Rosario Sepulveda, Silvia Molina-Castro, Johan Alvarado-Ocampo, Frida Chaves Monge, Mariana Jara Rojas, Antonio Osuna, Elizabeth Abrahams Sandí
    Frontiers in Microbiology.2024;[Epub]     CrossRef
  • Transcriptomic profiling of “brain-eating amoeba” Naegleria fowleri infection in mice: the host and the protozoa perspectives
    Vincent Guerlais, Nina Allouch, E. Ashley Moseman, Alicja W. Wojciechowska, Jakub W. Wojciechowski, Isabel Marcelino
    Frontiers in Cellular and Infection Microbiology.2024;[Epub]     CrossRef
  • Pro-inflammatory cytokine responses to Naegleria fowleri infection
    Ching-wen Chen, E. Ashley Moseman
    Frontiers in Tropical Diseases.2023;[Epub]     CrossRef
  • Naegleria fowleri Extracellular Vesicles Induce Proinflammatory Immune Responses in BV-2 Microglial Cells
    Hương Giang Lê, Jung-Mi Kang, Tuấn Cường Võ, Won Gi Yoo, Byoung-Kuk Na
    International Journal of Molecular Sciences.2023; 24(17): 13623.     CrossRef
  • Three encephalitis-causing amoebae and their distinct interactions with the host
    Maarten J. Sarink, Nadia L. van der Meijs, Kristin Denzer, Leo Koenderman, Aloysius G.M. Tielens, Jaap J. van Hellemond
    Trends in Parasitology.2022; 38(3): 230.     CrossRef
  • Extracellular Vesicles from Naegleria fowleri Induce IL-8 Response in THP-1 Macrophage
    Sakaorat Lertjuthaporn, Jinjuta Somkird, Kittima Lekmanee, Anyapat Atipimonpat, Kasama Sukapirom, Hathai Sawasdipokin, Supathra Tiewcharoen, Kovit Pattanapanyasat, Ladawan Khowawisetsut
    Pathogens.2022; 11(6): 632.     CrossRef
  • Naegleria fowleri Cathepsin B Induces a Pro-Inflammatory Immune Response in BV-2 Microglial Cells via NF-κB and AP-1 Dependent-MAPK Signaling Pathway
    Hương Giang Lê, Jung-Mi Kang, Tuấn Cường Võ, Byoung-Kuk Na
    International Journal of Molecular Sciences.2022; 23(15): 8388.     CrossRef
  • Parasite infections, neuroinflammation, and potential contributions of gut microbiota
    Jérémy Alloo, Ines Leleu, Corinne Grangette, Sylviane Pied
    Frontiers in Immunology.2022;[Epub]     CrossRef
  • Fowlerstefin, a cysteine protease inhibitor of Naegleria fowleri, induces inflammatory responses in BV-2 microglial cells in vitro
    Thị Lam Thái, Jung-Mi Kang, Hương Giang Lê, Jinyoung Lee, Won Gi Yoo, Ho-Joon Shin, Woon-Mok Sohn, Byoung-Kuk Na
    Parasites & Vectors.2020;[Epub]     CrossRef
  • Toll-like receptors participate in Naegleria fowleri recognition
    Moisés Martínez-Castillo, Leopoldo Santos-Argumedo, José Manuel Galván-Moroyoqui, Jesús Serrano-Luna, Mineko Shibayama
    Parasitology Research.2018; 117(1): 75.     CrossRef
  • Morphological and functional changes of microglia cultured under different oxygen concentrations and the analysis of related mechanisms
    Xing Wu, Tengbo Yu, Hongyan Xu, Xiuming Sun, Dewei Kou, Liping Li
    Experimental and Therapeutic Medicine.2017;[Epub]     CrossRef
  • Biology and pathogenesis of Naegleria fowleri
    Ruqaiyyah Siddiqui, Ibne Karim M. Ali, Jennifer R. Cope, Naveed Ahmed Khan
    Acta Tropica.2016; 164: 375.     CrossRef
  • NLRP3 Inflammasome Activation in THP-1 Target Cells Triggered by Pathogenic Naegleria fowleri
    Jong-Hyun Kim, Hae-Jin Sohn, Jong-Kyun Yoo, Heekyoung Kang, Gi-Sang Seong, Yong-Joon Chwae, Kyongmin Kim, Sun Park, Ho-Joon Shin, J. A. Appleton
    Infection and Immunity.2016; 84(9): 2422.     CrossRef
  • Novel cathepsin B and cathepsin B-like cysteine protease of Naegleria fowleri excretory–secretory proteins and their biochemical properties
    Jinyoung Lee, Jong-Hyun Kim, Hae-Jin Sohn, Hee-Jong Yang, Byoung-Kuk Na, Yong-Joon Chwae, Sun Park, Kyongmin Kim, Ho-Joon Shin
    Parasitology Research.2014; 113(8): 2765.     CrossRef
  • 10,819 View
  • 103 Download
  • Crossref
Original Article
Contact-Independent Cell Death of Human Microglial Cells due to Pathogenic Naegleria fowleri Trophozoites
Jong-Hyun Kim, Daesik Kim, Ho-Joon Shin
Korean J Parasitol 2008;46(4):217-221.
Published online December 20, 2008
DOI: https://doi.org/10.3347/kjp.2008.46.4.217

Free-living Naegleria fowleri leads to a fatal infection known as primary amebic meningoencephalitis in humans. Previously, the target cell death could be induced by phagocytic activity of N. fowleri as a contact-dependent mechanism. However, in this study we investigated the target cell death under a non-contact system using a tissue-culture insert. The human microglial cells, U87MG cells, co-cultured with N. fowleri trophozoites for 30 min in a non-contact system showed morphological changes such as the cell membrane destruction and a reduction in the number. By fluorescence-activated cell sorter (FACS) analysis, U87MG cells co-cultured with N. fowleri trophozoites in a non-contact system showed a significant increasse of apoptotic cells (16%) in comparison with that of the control or N. fowleri lysate. When U87MG cells were co-cultured with N. fowleri trophozoites in a non-contact system for 30 min, 2 hr, and 4 hr, the cytotoxicity of amebae against target cells was 40.5, 44.2, and 45.6%, respectively. By contrast, the cytotoxicity of non-pathogenic N. gruberi trophozoites was 10.2, 12.4, and 13.2%, respectively. These results suggest that the molecules released from N. fowleri in a contact-independent manner as well as phagocytosis in a contact-dependent manner may induce the host cell death.

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