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"antimicrobial peptide"

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"antimicrobial peptide"

Original Article

Expression of Chicken NK-Lysin and Its Role in Chicken Coccidiosis Induced by Eimeria necatrix
Woo Hyun Kim, Wongi Min, Kwang Il Park, Hyun S. Lillehoj, Cherry P. Fernandez-Colorado, Rochelle A. Flores, Paula Leona T. Cammayo, Binh Thanh Nguyen
Korean J Parasitol 2021;59(5):439-445.
Published online October 22, 2021
DOI: https://doi.org/10.3347/kjp.2021.59.5.439
Coccidiosis in chickens is an intestinal parasitic disease caused by protozoan parasites named Eimeria spp. In some Eimeria infections, intestinal lymphocytes are known to highly express chicken NK-lysin (cNK-lysin), an antimicrobial peptide with anticoccidial activity. Therefore, this study aims to investigate the expression of cNK-lysin in E. necatrix-infected chickens and its role in E. necatrix infection. The expression of cNK-lysin transcript was significantly increased in E. necatrix sporozoites-treated lymphocytes. In E. necatrix infection, cNK-lysin transcript was induced in intestinal lymphocytes but not in the spleen. The recombinant cNK-lysin exhibited anticoccidial activity against E. necatrix sporozoites as well as immunomodulatory activity on macrophages by inducing proinflammatory cytokines. These results indicated that E. necatrix infection induces high local expression of cNK-lysin and the secreted cNK-lysin helps protect coccidiosis.

Citations

Citations to this article as recorded by  Crossref logo
  • Characterization of NK-lysin A, a potent antimicrobial peptide from the zebrafish Danio rerio
    Marius Ortjohann, Matthias Leippe
    Developmental & Comparative Immunology.2025; 162: 105266.     CrossRef
  • Exploring the interplay between Eimeria spp. infection and the host: understanding the dynamics of gut barrier function
    Pan Chen, Mujeeb Ur Rehman, Yanfeng He, Aoyun Li, Fuchun Jian, Longxian Zhang, Shucheng Huang
    Veterinary Quarterly.2025; 45(1): 1.     CrossRef
  • Development and immunological insights into recombinant/subunit vaccines against avian coccidiosis
    Shagufta Iqbal, Syed Tanveer, Idrees Mehraj Allaie, Yasmeena Jan, Shahana Tramboo, Nazima Maqbool
    Journal of Microbiological Methods.2025; 238: 107255.     CrossRef
  • Orally delivered Bacillus subtilis expressing chicken NK-2 peptide stabilizes gut microbiota and enhances intestinal health and local immunity in coccidiosis-infected broiler chickens
    Samiru S. Wickramasuriya, Inkyung Park, Youngsub Lee, Luciana M. Richer, Chris Przybyszewski, Cyril G. Gay, Jolieke G. van Oosterwijk, Hyun S. Lillehoj
    Poultry Science.2023; 102(5): 102590.     CrossRef
  • Research progress of the avian coccidiosis vaccine
    Haiming Cai, Nanshan Qi, Juan Li, Minna Lv, Xuhui Lin, Junjing Hu, Jianfei Zhang, Shenquan Liao, Mingfei Sun
    Veterinary Vaccine.2022; 1(1): 100002.     CrossRef
  • 5,020 View
  • 157 Download
  • 4 Web of Science
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Brief Communication
A Novel Anti-Microbial Peptide from Pseudomonas, REDLK Induced Growth Inhibition of Leishmania tarentolae Promastigote In Vitro
Yanhui Yu, Panpan Zhao, Lili Cao, Pengtao Gong, Shuxian Yuan, Xinhua Yao, Yanbing Guo, Hang Dong, Weina Jiang
Korean J Parasitol 2020;58(2):173-179.
Published online April 30, 2020
DOI: https://doi.org/10.3347/kjp.2020.58.2.173
Leishmaniasis is a prevalent cause of death and animal morbidity in underdeveloped countries of endemic area. However, there is few vaccine and effective drugs. Antimicrobial peptides are involved in the innate immune response in many organisms and are being developed as novel drugs against parasitic infections. In the present study, we synthesized a 5-amino acid peptide REDLK, which mutated the C-terminus of Pseudomonas exotoxin, to identify its effect on the Leishmania tarentolae. Promastigotes were incubated with different concentration of REDLK peptide, and the viability of parasite was assessed using MTT and Trypan blue dye. Morphologic damage of Leishmania was analyzed by light and electron microscopy. Cellular apoptosis was observed using the annexin V-FITC/PI apoptosis detection kit, mitochondrial membrane potential assay kit and flow cytometry. Our results showed that Leishmania tarentolae was susceptible to REDLK in a dose-dependent manner, disrupt the surface membrane integrity and caused parasite apoptosis. In our study, we demonstrated the leishmanicidal activity of an antimicrobial peptide REDLK from Pseudomonas aeruginosa against Leishmania tarentolae in vitro and present a foundation for further research of anti-leishmanial drugs.

Citations

Citations to this article as recorded by  Crossref logo
  • Pseudomonas bambusae sp.nov., an Aniline Blue-Decolorizing Bacterium Isolated from Decaying Round Bamboo Culms
    Xiao-Long He, Jia-Yan Wang, Jin-Jia Liang, Cheng-Jing Ren, Xin-Yi Guo, Wen-Jie Ke, Min Wu, Hong-Zheng Liu, Min Jin, Fang-Li Sun, Shuai-Bo Han
    Current Microbiology.2025;[Epub]     CrossRef
  • Therapeutic potential of antimicrobial peptides against pathogenic protozoa
    Corina Lobato Hagemann, Alexandre José Macedo, Tiana Tasca
    Parasitology Research.2024;[Epub]     CrossRef
  • Targeting Leishmania Promastigotes and Amastigotes Forms through Amino Acids and Peptides: A Promising Therapeutic Strategy
    Charmante Registre, Luciana Miranda Silva, Farah Registre, Rodrigo Dian de Oliveira Aguiar Soares, Karina Taciana Santos Rubio, Simone Pinto Carneiro, Orlando David Henrique dos Santos
    ACS Infectious Diseases.2024; 10(8): 2467.     CrossRef
  • Neglected Zoonotic Diseases: Advances in the Development of Cell-Penetrating and Antimicrobial Peptides against Leishmaniosis and Chagas Disease
    Sara M. Robledo, Silvia Pérez-Silanes, Celia Fernández-Rubio, Ana Poveda, Lianet Monzote, Víctor M. González, Paloma Alonso-Collado, Javier Carrión
    Pathogens.2023; 12(7): 939.     CrossRef
  • 6,516 View
  • 105 Download
  • 4 Web of Science
  • Crossref