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"Peng Song"

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"Peng Song"

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The protective effects of BMSA1 and BMSA5-1-1 proteins against Babesia microti infection
Yu Chun Cai, Chun Li Yang, Peng Song, Muxin Chen, Jia Xu Chen
Parasites Hosts Dis 2024;62(1):53-63.
Published online February 23, 2024
DOI: https://doi.org/10.3347/PHD.23077
The intracellular parasite Babesia microti is among the most significant species causing human babesiosis and is an emerging threat to human health worldwide. Unravelling the pathogenic molecular mechanisms of babesiosis is crucial in developing new diagnostic and preventive methods. This study assessed how priming with B. microti surface antigen 1 (BHSA 1) and seroreactive antigen 5-1-1 (BHSA 5-1-1) mediate protection against B. microti infection. The results showed that 500 µg/ml rBMSA1 and rBMSA5-1-1 partially inhibited the invasion of B. microti in vitro by 42.0 ± 3.0%, and 48.0 ± 2.1%, respectively. Blood smears revealed that peak infection at 7 days post-infection (dpi) was 19.6%, 24.7%, and 46.7% in the rBMSA1, rBmSA5-1-1, compared to the control groups (healthy mice infected with B. microti only), respectively. Routine blood tests showed higher white blood cell, red blood cell counts, and haemoglobin levels in the 2 groups (BMSA1 and BMSA5 5-1-1) than in the infection control group at 0–28 dpi. Moreover, the 2 groups had higher serum interferon-γ, tumor necrosis factor-α and Interleukin-17A levels, and lower IL-10 levels than the infection control group throughout the study. These 2 potential vaccine candidate proteins partially inhibit in vitro and in vivo B. microti infection and enhance host immunological response against B. microti infection.
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Proteomic and Immunological Identification of Diagnostic Antigens from Spirometra erinaceieuropaei Plerocercoid
Yan Lu, Jia-Hui Sun, Li-Li Lu, Jia-Xu Chen, Peng Song, Lin Ai, Yu-Chun Cai, Lan-Hua Li, Shao-Hong Chen
Korean J Parasitol 2021;59(6):615-623.
Published online December 22, 2021
DOI: https://doi.org/10.3347/kjp.2021.59.6.615
Human sparganosis is a food-borne parasitic disease caused by the plerocercoids of Spirometra species. Clinical diagnosis of sparganosis is crucial for effective treatment, thus it is important to identify sensitive and specific antigens of plerocercoids. The aim of the current study was to identify and characterize the immunogenic proteins of Spirometra erinaceieuropaei plerocercoids that were recognized by patient sera. Crude soluble extract of the plerocercoids were separated using 2-dimensional gel electrophoresis coupled with immunoblot and mass spectrometry analysis. Based on immunoblotting patterns and mass spectrometry results, 8 antigenic proteins were identified from the plerocercoid. Among the proteins, cysteine protease protein might be developed as an antigen for diagnosis of sparganosis.

Citations

Citations to this article as recorded by  Crossref logo
  • Lysine acetylation in the spargana of Spirometra mansoni: Insights into glycolysis and EF-hand domain proteins
    Yuke Zeng, Asmaa M.I. Abuzeid, Qin Meng, Shuyu Chen, Xiaoruo Tan, Cuiqin Huang, Shiquan Lu, Teng Zhong, Yuanpeng Hu, Yisong Liu, Wei Liu
    Acta Tropica.2025; : 107932.     CrossRef
  • Establishment of Animal Infection Model of Spirometra Mansoni and Identification of Spirometra Mansoni by Enzyme-Linked Immunosorbent Assay
    Anqi Luo, Shuyu Chen, Mingye He, Xiaoruo Tan, Zhikang Li, Wei Liu, Yisong Liu
    Vector-Borne and Zoonotic Diseases.2024;[Epub]     CrossRef
  • Immunoproteomics: Approach to Diagnostic and Vaccine Development
    Virendra Supaji Gomase, Suchita Prabhakar Dhamane, Kiran Ramesh Kemkar, Pavan Ganpat Kakade, Abhay Dewappa Sakhare
    Protein & Peptide Letters.2024; 31(10): 773.     CrossRef
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