Curriculum Vitaes

CHRISTIAN XEDZRO

  (XEDZRO CHRISTIAN)

Profile Information

Affiliation
Center for Infectious Disease Research, Division of Anti-Infective Drug Discovery, Fujita Health University

Researcher number
01003334
ORCID ID
 https://orcid.org/0000-0002-6631-8578
J-GLOBAL ID
202401017612669401
researchmap Member ID
R000067426

Papers

 11
  • Christian Xedzro, Toshi Shimamoto, Ashraf M Ahmed, Liansheng Yu, Yo Sugawara, Motoyuki Sugai, Tadashi Shimamoto
    Journal of Applied Microbiology, 136(9), Sep 1, 2025  Peer-reviewed
    Abstract Aims This study aims to investigate the genomic profile of a multidrug-resistant Escherichia coli strain, 160-11H1, co-carrying an extended-spectrum β-lactamase (ESBL) and the plasmid-mediated mobile colistin resistance gene, mcr-5. Methods and results The entire genome of the strain was sequenced using Illumina MiSeq and Oxford Nanopore platforms, and de novo assembly was performed using Unicycler. The genome size was 5 031 330 bp and comprised 5140 coding sequences. mcr-5 and an ESBL-encoding gene, blaSHV-12, providing resistance to clinically important antimicrobials, including colistin (minimum inhibitory concentration [MIC]: 8 µg ml−1) and extended-spectrum cephalosporins (MIC: >32 µg ml−1) were detected. mcr-5 was carried on a Tn3-type transposase, being in an operon with a ChrB-domain protein and an uncharacterized major facilitator superfamily-type transporter on a conjugative plasmid of the IncFII backbone. The blaSHV-12 gene was inserted into tniA putative transposase gene in the IncFIA/FIB/FIC multireplicon plasmid. The strain belonged to sequence type (ST) 10, CH-type fumC11/fimH54, serotype O4:H12, and phylogroup A, and carried several virulence genes associated with heat survival, colonization, fitness, and conjugation. Conclusions This study presents the first identification of polymyxin-resistant E. coli co-carrying mcr-5 and ESBL genes in meat from Japan, highlighting the critical need for routine investigations of these genes within food ecosystems.
  • Adedeji Adetunji, Henrietta Owusu, Esiosa Adewale, Precious Adesina, Christian Xedzro, Tolulope Saliu, Shahidul Islam, Zhendong Zhu, Olanrewaju Morenikeji
    Life, 15(7) 1109-1109, Jul 16, 2025  Peer-reviewed
    DNA methylation is a well-studied epigenetic modification that regulates gene expression, maintains genome integrity, and influences cell fate. It is strictly regulated by a group of enzymes known as DNA methyltransferases (DNMTs). Most DNA methylation occurs at cytosines within symmetrical CpG dinucleotide base pairs, often located at gene promoters or other regulatory elements. Thus, methylation of a promoter CpG island leads to stable transcriptional repression of the associated gene. Nonetheless, abnormal gene expression caused by alterations in DNA methylation has been linked to infertility in both males and females, as well as to reproductive potential and improper post-fertilization embryo development. Recent epigenetic advancements have highlighted the significant association between epigenetic modification and reproductive health outcomes, garnering considerable attention. In this review, we explore significant advancements in understanding DNA methylation, emphasizing its establishment, maintenance, and functions in male and female reproductive sex cells. We also shed light on the recent discoveries on the influence of environmental exposures, nutrition, infection, stress, and lifestyle choices on DNA methylation. Finally, we discuss the latest insights and future directions concerning the diverse functions of DNA methylation in reproductive outcomes.
  • Adedeji O. Adetunji, Jacqueline Price, Henrietta Owusu, Esiosa F. Adewale, Precious Adedayo Adesina, Tolulope Peter Saliu, Zhendong Zhu, Christian Xedzro, Emmanuel Asiamah, Shahidul Islam
    Frontiers in Veterinary Science, 12, Apr 16, 2025  Peer-reviewed
    Reproductive health is a critical determinant of livestock productivity and economic sustainability. However, it is often compromised by infectious diseases, environmental stressors, and nutritional deficits. Phytogenic extracts—bioactive compounds derived from medicinal plants—have emerged as sustainable alternatives to synthetic antibiotics and hormones, exhibiting antimicrobial, antioxidant, and immunomodulatory properties. These extracts influence key reproductive processes such as follicular development, oocyte maturation, and endometrial health while mitigating the detrimental effects of oxidative stress and pathogenic infections. Recent findings suggest that phytogenic extract can enhance reproductive performance, improve oocyte quality, and support pregnancy outcomes. Despite the growing body of evidence, optimal application strategies and the full breadth of their biological effects remain insufficiently explored. This review focuses on the molecular mechanisms modulated by phytogenic extracts, particularly in the context of hormone regulation, immune modulation, and oxidative stress mitigation. We also identify critical knowledge gaps and propose future research directions to optimize the use of phytogenic extracts as a sustainable approach to enhancing livestock reproductive health.
  • Christian Xedzro, Toshi Shimamoto, Liansheng Yu, Yo Sugawara, Motoyuki Sugai, Tadashi Shimamoto
    Current Microbiology, 82(5), Mar 14, 2025  Peer-reviewedLead author
    Abstract mcr-10 is among the growing families of newly identified plasmid-mediated mobile colistin-resistance genes. In this study, we identified an mcr-10 gene in a seafood-borne extended-spectrum β-lactamase (ESBL)-producing Enterobacter xiangfangensis. E. xiangfangensis strain, B12-S77, was subjected to whole genome sequencing using Illumina MiSeq and Oxford Nanopore Technologies. Bioinformatic analysis was performed using tools from the Center for Genomic Epidemiology. The minimum inhibitory concentration (MIC) of 19 antibiotics was determined by the broth microdilution method. Transferability of mcr-10-carrying plasmid was investigated by the conjugation experiment. The strain exhibited a multidrug-resistant (MDR) phenotype against more than three classes of antibiotics but remained susceptible to colistin and polymyxin B. mcr-10 was identified on a fused conjugative plasmid of the IncFIB (K):FII (Yp) backbone adjacent to the XerC-type tyrosine recombinase-gene. At least one insertion sequence (IS) was identified in both the downstream and upstream regions of the xerC-mcr-10 conserved region, indicating that this region may contribute to mcr-10 mobilization or integration into the bacterial genome. The strain belonged to sequence type (ST) 143 and carried the nlpI and mrkA virulence genes, which promote fimbrial adhesion or biofilm formation in enteric bacteria. This report provides novel insights into the emergence of mcr-10 in seafood-borne bacteria, and highlights the importance of surveillance in the seafood supply chain.
  • Christian Xedzro, Toshi Shimamoto, Tadashi Shimamoto
    Journal of Agriculture and Food Research, 18 101449-101449, Dec, 2024  Peer-reviewedLead author
  • Christian Xedzro, Toshi Shimamoto, Liansheng Yu, Hui Zuo, Yo Sugawara, Motoyuki Sugai, Tadashi Shimamoto
    Microbiology Spectrum, Dec 12, 2023  Peer-reviewed
  • Christian Xedzro, Toshi Shimamoto, Tadashi Shimamoto
    Dec, 2023  Peer-reviewedLead author
  • Christian Xedzro, Tomomi Kimura, Toshi Shimamoto, Ashraf M. Ahmed, Tadashi Shimamoto
    International Journal of Food Microbiology, 391-393 110146-110146, Apr, 2023  Peer-reviewedLead author
  • Jant Cres Caigoy, Christian Xedzro, Waraporn Kusalaruk, Hiroyuki Nakano
    FEMS Microbiology Letters, 369(1), Nov 11, 2022  Peer-reviewed
    <jats:title>Abstract</jats:title> <jats:p>Vibrio cholerae is an etiological cause of cholera and has been implicated in several epidemics. Exploration of the antimicrobial signatures of culinary spices has become an important industrial tool to suppress the growth of foodborne bacterial pathogens including Vibrio spp. The antibiofilm and antimotility activities of some selected natural antimicrobial agents were then evaluated. All the extracts showed vibriostatic activities with minimum inhibitory concentration (MIC) ranging from 0.1% to 0.4%. Cinnamon and black pepper demonstrated significant biofilm inhibition activity from 94.77% to 99.77% when administered at 100% MIC. Black pepper extract also demonstrated the highest biofilm inhibition activity against the established biofilms of V. cholerae O1 and O139. Cinnamon, calabash nutmeg, and black pepper significantly inhibited swimming and swarming motility by 85.51% to 94.87%. Sub-MICs (50% and 75%) of some extracts were also effective as an antibiofilm and antimotility agent against the tested strains. The findings of our study suggest the potential application of natural antimicrobial agents such as spices in food to inhibit biofilm formation and motility, which consequently mitigate the virulence and persistence of the pathogen in the food supply chain.</jats:p>
  • Christian Xedzro, Kwaku Tano-Debrah, Hiroyuki Nakano
    Microbiological Research, 258 126980-126980, May, 2022  Peer-reviewedLead author

Major Presentations

 16

Research Projects

 1