Experimental Mouse Models of Disseminated Candida auris Infection

Hong Xin1, Farhan Mohiuddin2, Jensen Tran2

  • 1LSU Health Sciences Center New Orleans, New Orleans, Louisiana, USA hxin@lsuhsc.edu.

Msphere
|September 6, 2019
PubMed

Insights

A new mouse model using A/J mice effectively mimics disseminated Candida auris infection in humans. C5 deficiency in this model leads to rapid fungal growth and fatal outcomes, offering insights into host defense against this multidrug-resistant pathogen.

Area of Science:

  • Infectious Diseases
  • Mycology
  • Immunology
  • Animal Models

Background:

  • Disseminated candidiasis, a common bloodstream infection in US hospitals, has high mortality despite modern antifungals.
  • Candida auris, a multidrug-resistant fungus, poses a global health threat due to its high mortality and resistance patterns.
  • A reliable animal model is crucial for understanding the host-pathogen interactions in invasive C. auris infections.

Purpose of the Study:

  • To establish an inbred A/J intravenous mouse model for disseminated Candida auris infection.
  • To investigate the role of the complement system component C5 in host response to C. auris.
  • To provide a model for studying C. auris pathogenesis and host defense mechanisms.

Main Methods:

  • Establishment of an inbred A/J intravenous mouse model for systemic C. auris infection.
  • Comparison of C. auris infection outcomes in A/J mice (wild-type and C5-deficient) and C57BL/6J mice.
  • Assessment of survival and fungal burden in target organs following intravenous C. auris challenge.

Main Results:

  • C5-deficient A/J mice exhibited rapid fungal proliferation in organs and a rapidly fatal outcome.
  • Wild-type A/J mice, C57BL/6J mice, and neutrophil elastase-deficient (NE-/-) mice survived high-dose C. auris challenge.
  • The A/J model allows study of systemic C. auris infection without needing immunosuppression like cyclophosphamide (CY).

Conclusions:

  • The inbred A/J mouse model is suitable for studying disseminated C. auris infection.
  • C5 plays a critical role in the host response to invasive C. auris infection.
  • This model facilitates research into C. auris pathogenesis, immune responses, and potential vaccine development.

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