Fetal Tissues Tested for Microbial Sterility by Culture- and PCR-Based Methods Can be Safely Used in Clinics

Cell Transplantation
|August 10, 2016
PubMed

Insights

Ensuring the safety of human fetal tissues for cell therapy requires rigorous microbiological control. A combination of antibiotic treatment, washing, homogenization, culture, and PCR effectively identifies and removes microbial contamination, crucial for clinical applications.

Area of Science:

  • Microbiology
  • Cell Therapy
  • Clinical Practice

Background:

  • Human fetal tissues are valuable for cell therapy but pose safety concerns due to potential infectious agents.
  • Clinical cell preparations must be free of microbial contamination for patient safety.

Purpose of the Study:

  • To evaluate the efficacy of a multi-step decontamination process for human fetal tissues.
  • To assess the prevalence and types of microbial contamination in fetal samples.
  • To compare culture-based and PCR methods for microbial detection.

Main Methods:

  • Fetal samples treated with antibiotics, washed, and homogenized before cryopreservation.
  • Screening using an automated culture system.
  • Broad-range PCR targeting the bacterial 16S rRNA gene.
  • Bacteriological methods and 16S rRNA sequencing for taxonomic identification.

Main Results:

  • 89.2% of fetal tissue samples were sterile after treatment; 10.8% showed contamination.
  • Liver and chorion exhibited higher contamination rates than brain, kidney, lung, and soft tissues.
  • Culture and PCR methods showed weak concordance, identifying different microbial spectra, including Lactobacillus, vaginal microbiota, and nosocomial microorganisms.
  • Sepsis-causing species were detected by both methods, highlighting their complementary roles.

Conclusions:

  • The described decontamination protocol efficiently reduces microbial load in fetal tissues.
  • Rigorous microbiological control using both culture and PCR is essential for the safe clinical use of fetal tissue-derived cell preparations.
  • Contamination likely originates during sample collection rather than in utero infection.