GMP-Grade Methods for Cardiac Progenitor Cells: Cell Bank Production and Quality Control

Gabriella Andriolo1, Elena Provasi1, Andrea Brambilla1

  • 1Lugano Cell Factory, Fondazione Cardiocentro Ticino, Lugano, Switzerland.

Insights

Cardiac progenitor cells (CPC) offer a promising cell-based therapy for heart failure. This study details Good Manufacturing Practices (GMP) methods for producing a Master Cell Bank (MCB) of CPC for clinical trials.

Area of Science:

  • Regenerative Medicine
  • Cardiovascular Biology
  • Cell Therapy Manufacturing

Background:

  • Cardiac progenitor cells (CPC), derived from cardiac explants, are promising for heart failure therapies.
  • Preclinical studies and early clinical trials show potential for CPC in direct transplantation, tissue engineering, and extracellular vesicle production.
  • Clinical translation necessitates adherence to Good Manufacturing Practices (GMP) for cell preparation and release.

Purpose of the Study:

  • To describe GMP-grade methods for producing and testing a Master Cell Bank (MCB) of CPC.
  • To establish a reliable source of CPC for therapeutic applications and extracellular vesicle manufacturing in clinical trials.
  • To ensure the safety and quality of CPC for advanced therapy medicinal products.

Main Methods:

  • Development of xeno-free methods for isolating and expanding CPC from human cardiac tissue.
  • Implementation of comprehensive quality control (QC) assays for safety (sterility, endotoxin, mycoplasma, senescence, tumorigenicity).
  • Application of QC methods to assess identity, potency, and purity (cell count, viability, RT-PCR, immunophenotype).

Main Results:

  • Establishment of GMP-grade methods for CPC production and cryopreservation in an MCB.
  • Validation of QC procedures to ensure the safety and quality of the CPC MCB.
  • Demonstration of a robust process for generating clinical-grade CPC.

Conclusions:

  • The described GMP-grade methods enable the production of a CPC Master Cell Bank suitable for clinical applications.
  • This approach supports the development of cell-based therapies and extracellular vesicle production for heart failure treatment.
  • Standardized production and rigorous QC are crucial for the successful clinical translation of CPC therapies.

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