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"Yun Soo Jang"

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"Yun Soo Jang"

Original Article

Ampicillin treated German cockroach extract leads to reduced inflammation in human lung cells and a mouse model of Asthma
Seogwon Lee, Myung-Hee Yi, Yun Soo Jang, Jun Ho Choi, Myungjun Kim, Soo Lim Kim, Tai-Soon Yong, Ju Yeong Kim
Parasites Hosts Dis 2023;61(1):60-71.
Published online February 22, 2023
DOI: https://doi.org/10.3347/PHD.22147
Cockroaches can cause allergic sensitization in humans via contact with their feces or frass. Antibiotics can affect concentration of major allergen and total bacteria production in German cockroaches (Blattella germanica). This study examined the ability of antibiotic-treated German cockroaches to induce allergic airway inflammation and the effect of antibiotics on their lipopolysaccharide and Bla g1, 2, and 5 expression levels. Specifically, we measured the ability of German cockroach extract (with or without prior antibiotic exposure) to induce allergic inflammation in human bronchial epithelial cells and a mouse model of asthma. Bacterial 16S rRNA and lipopolysaccharide levels were lower in ampicillin-treated cockroaches than in the control group. The Bla g1, Bla g2, and Bla g5 expression in ampicillin-treated cockroaches decreased at both the protein and RNA levels. In human bronchial epithelial cell lines BEAS-2B exposed to the ampicillin-treated extract, expression levels of interleukin-6 and interleukin-8 were lower than that in the control group. The total cell count and eosinophil count in bronchoalveolar lavage fluid was also lower in mice exposed to the ampicillin-treated extract than in those exposed to normal cockroach extract. Mouse lung histopathology showed reduced immune cell infiltration and mucus production in the ampicillin group. Our results showed that ampicillin treatment reduced the symbiont bacterial population and major allergen levels in German cockroaches, leading to reduced airway inflammation in mice. These results can facilitate the preparation of protein extracts for immunotherapy or diagnostics applications.

Citations

Citations to this article as recorded by  Crossref logo
  • Asthma research in mice: An overview of current models and their methodological variability
    Yan-Jiao Chen, Cai-Tao Chen, Gabriel Shimizu Bassi, Yong-Qing Yang
    International Reviews of Immunology.2025; 44(3): 127.     CrossRef
  • Invasive indoor pests under the microbiological lens: bacterial and viral diversity from local to global scales in bed bugs and cockroaches
    Jose E Pietri, Maureen Laroche
    Current Opinion in Insect Science.2025; 69: 101344.     CrossRef
  • Multi-omics of cockroaches infected with Salmonella Typhimurium identifies molecular signatures of vector colonization
    Diing DM Agany, Eduardo A. Callegari, Maria D. Paez, Jose E. Pietri
    BMC Genomics.2025;[Epub]     CrossRef
  • Microbiome of laboratory‐reared and environmentally collected cockroaches
    Sohyeon Yun, Jun Ho Choi, Singeun Oh, Myungjun Kim, Myung‐hee Yi, Dongjun Kang, Yun Soo Jang, In‐Yong Lee, Tai‐Soon Yong, Juan Kim, Heung Chul Kim, Jae Rok Lee, Ju Yeong Kim
    Entomological Research.2024;[Epub]     CrossRef
  • 4,250 View
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  • 3 Web of Science
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Brief Communication
Calpains are Involved in Entamoeba histolytica-Induced Death of HT-29 Colonic Epithelial Cells
Yun Soo Jang, Kyoung-Ju Song, Ju Young Kim, Young Ah Lee, Kyeong Ah Kim, Sang Kyou Lee, Myeong Heon Shin
Korean J Parasitol 2011;49(2):177-180.
Published online June 14, 2011
DOI: https://doi.org/10.3347/kjp.2011.49.2.177

Entamoeba histolytica is an enteric tissue-invading protozoan parasite that can cause amebic colitis and liver abscess in humans. E. histolytica has the capability to kill colon epithelial cells in vitro; however, information regarding the role of calpain in colon cell death induced by ameba is limited. In this study, we investigated whether calpains are involved in the E. histolytica-induced cell death of HT-29 colonic epithelial cells. When HT-29 cells were co-incubated with E. histolytica, the propidium iodide stained dead cells markedly increased compared to that in HT-29 cells incubated with medium alone. This pro-death effect induced by ameba was effectively blocked by pretreatment of HT-29 cells with the calpain inhibitor, calpeptin. Moreover, knockdown of m- and ?-calpain by siRNA significantly reduced E. histolytica-induced HT-29 cell death. These results suggest that m- and ?-calpain may be involved in colon epithelial cell death induced by E. histolytica.

Citations

Citations to this article as recorded by  Crossref logo
  • Involvement of NOX2-derived ROS in human hepatoma HepG2 cell death induced by Entamoeba histolytica
    Young Ah Lee, Myeong Heon Shin
    Parasites, Hosts and Diseases.2023; 61(4): 388.     CrossRef
  • Signaling Role of NADPH Oxidases in ROS-Dependent Host Cell Death Induced by Pathogenic Entamoeba histolytica
    Young Ah Lee, Seobo Sim, Kyeong Ah Kim, Myeong Heon Shin
    The Korean Journal of Parasitology.2022; 60(3): 155.     CrossRef
  • Infection Strategies of Intestinal Parasite Pathogens and Host Cell Responses
    Bruno M. Di Genova, Renata R. Tonelli
    Frontiers in Microbiology.2016;[Epub]     CrossRef
  • Degradation of the Transcription Factors NF-κB, STAT3, and STAT5 Is Involved in Entamoeba histolytica-Induced Cell Death in Caco-2 Colonic Epithelial Cells
    Kyeong Ah Kim, Arim Min, Young Ah Lee, Myeong Heon Shin
    The Korean Journal of Parasitology.2014; 52(5): 459.     CrossRef
  • Entamoeba histolytica Induces Cell Death of HT29 Colonic Epithelial Cells via NOX1-Derived ROS
    Kyeong Ah Kim, Ju Young Kim, Young Ah Lee, Arim Min, Young Yil Bahk, Myeong Heon Shin
    The Korean Journal of Parasitology.2013; 51(1): 61.     CrossRef
  • Mechanisms of Adherence, Cytotoxicity and Phagocytosis Modulate the Pathogenesis of Entamoeba Histolytica
    Nathaniel CV Christy, William A Petri
    Future Microbiology.2011; 6(12): 1501.     CrossRef
  • 7,629 View
  • 57 Download
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