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October 17, 2025Microorganisms7 citationsOpen Access

History and Evolution of the Hypervirulent Clostridioides difficile Ribotype 027 Lineage

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ITIsabella A. TicklerRGRichard V. GoeringFTFred C. Tenover

Key Points

  • The emergence of the hypervirulent C. difficile ribotype 027 strain intensified cd infections worldwide, and its unique toxins contribute to this increase.
  • C. difficile ribotype 027 exhibits distinct genetic differences in resistance to fluoroquinolones, complicating treatment options in affected patients.
  • Using genomic data, this analysis reveals how ribotype 027 diverged and how new related ribotypes have emerged, providing insights into pathogenic trends.
  • Understanding the evolution of C. difficile RT027 may inform infection control strategies and treatment approaches in healthcare settings.

Abstract

Clostridioides difficile was first identified in 1935 and subsequently emerged over the next several decades as the predominant bacterial cause of healthcare-associated gastrointestinal infections, placing a significant burden on healthcare systems worldwide. A major driver of the rapid rise in the incidence of C. difficile infection (CDI) was the emergence and spread of a hypervirulent strain, which became known as PCR ribotype 027 (RT027). The C. difficile RT027 strain produced not just the typical toxin A and toxin B virulence factors but also expressed a third toxin called binary toxin that enhanced pathogenicity. Interestingly, the C. difficile RT027 strain apparently emerged at least twice in geographically distinct areas. The two lineages can be differentiated by their resistance or susceptibility to fluoroquinolones. Other ribotypes of C. difficile that also express binary toxin have emerged recently, some of which are highly related genetically to RT027. The aim of this study is to integrate genomic data and published literature to clarify the emergence, divergence, and apparent decline of C. difficile RT027.

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Cite This Study

Tickler et al. (2025) studied this question.

synapsesocial.com/papers/68f19f1ade32064e504ddaf9https://doi.org/10.3390/microorganisms13102376
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