Characterization of Changes in Penile Microbiome Following Pediatric Circumcision

Kirtishri Mishra1, Ilaha Isali2, Mohit Sindhani3

  • 1Department of Urology, New York University, Langone Medical Center, New York, NY, USA; Department of Urology, University Hospitals, Cleveland Medical Center, Cleveland, OH, USA.

European Urology Focus
|December 24, 2022
PubMed

Insights

Circumcision significantly reduces penile bacteria and fungi, particularly anaerobic bacteria linked to inflammation and cancer. This study reveals early microbiome shifts in infants that may influence adult health outcomes.

Area of Science:

  • Microbiology
  • Human Health
  • Pediatric Medicine

Background:

  • Host and microbiome interactions are crucial in disease pathogenesis.
  • The impact of pediatric circumcision on the penile microbiome remains largely uncharacterized.

Purpose of the Study:

  • To analyze taxonomic profiles and metabolic pathways of the penile microbiome before and after circumcision.
  • To investigate the functional implications of circumcision-induced microbiome alterations.

Main Methods:

  • Paired periurethral samples were collected from 11 infants before and after circumcision.
  • Microbiome and mycobiome profiling utilized 16S rRNA and ITS sequencing.
  • Predictive functional analysis was performed using Silva-Tax4Fun and PICRUSt.

Main Results:

  • Circumcision led to significant decreases in specific bacterial (Clostridiales, Bacteroidales, Campylobacterales) and fungal (Saccharomycetales, Pleosporales) taxa.
  • Functional pathways related to amino acid and glucose metabolism were reduced post-circumcision.
  • Pathways involved in genetic information processing and transcription were enriched pre-circumcision, while chemotaxis and immunogenic protein pathways showed altered abundance.

Conclusions:

  • Circumcision significantly alters the penile microbiome composition and function.
  • Reduced anaerobic bacteria post-circumcision may impact inflammation and oncogenesis risk.
  • These findings provide foundational insights into host-microbiota dynamics following circumcision.
Abstract