Development and validation of a PMA-qPCR method for accurate quantification of viable Lacticaseibacillus paracasei in

Lizheng Guo1, Xiaolei Ze2, Yingxin Jiao1

  • 1China Center of Industrial Culture Collection, China National Research Institute of Food and Fermentation Industries Co., LTD., Beijing, China.

PubMed

Insights

A new propidium monoazide-quantitative polymerase chain reaction (PMA-qPCR) method accurately quantifies viable Lacticaseibacillus paracasei in probiotic products. This ensures probiotic quality and consumer safety by precisely measuring live bacterial counts.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Food Science

Background:

  • Probiotic effectiveness relies on viable bacterial quantification.
  • Accurate enumeration of probiotic strains like Lacticaseibacillus paracasei is essential for product quality.
  • Existing methods may not reliably distinguish between viable and non-viable cells.

Purpose of the Study:

  • To develop and validate a precise propidium monoazide combined with quantitative polymerase chain reaction (PMA-qPCR) method.
  • To accurately quantify viable Lacticaseibacillus paracasei in various probiotic formulations.
  • To ensure reliable probiotic product quality assurance and consumer safety.

Main Methods:

  • Designed and validated species-specific primers for L. paracasei based on whole-genome sequences.
  • Optimized propidium monoazide (PMA) treatment to inhibit dead cell DNA amplification.
  • Validated the PMA-qPCR method using pure cultures and probiotic products, assessing linearity, efficiency, accuracy, and bias.

Main Results:

  • The PMA-qPCR method demonstrated a strong linear relationship (R² = 0.994) across a wide cell range (10³–10⁸ CFU/mL).
  • Achieved high amplification efficiency (104.48%) and a low quantification limit (7.30 × 10³ CFU/mL).
  • Showed excellent accuracy (bias within ±0.5 Log₁₀) and minimal mean bias (0.058 Log₁₀) via Bland-Altman analysis.

Conclusions:

  • The validated PMA-qPCR method accurately quantifies viable L. paracasei in diverse probiotic matrices.
  • This method enhances probiotic product quality control, ensuring regulatory compliance and consumer trust.
  • Provides a robust tool for reliable enumeration of viable probiotics in food ingredients and finished products.