Related Experiment Video
Updated: Nov 23, 2025

In Vitro Generation of Heart Field-specific Cardiac Progenitor Cells
Published on: July 3, 2019
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.
Abstract:
Cardiac explant-derived cells (cEDC), also referred as cardiac progenitors cells (CPC) (Barile et al., Cardiovasc Res 103(4):530-541, 2014; Barile et al., Cardiovasc Res 114(7):992-1005, 2018), represent promising candidates for the development of cell-based therapies, a novel and interesting treatment for cardioprotective strategy in heart failure (Kreke et al., Expert Rev Cardiovasc Ther 10(9):1185-1194, 2012). CPC have been tested in a preclinical setting for direct cell transplantation and tissue engineering or as a source for production of extracellular vesicles (EV) (Oh et al., J Cardiol 68(5):361-367, 2016; Barile et al., Eur Heart J 38(18):1372-1379, 2017; Rosen et al., J Am Coll Cardiol 64(9):922-937, 2014). CPC cultured as cardiospheres derived cells went through favorable Phase 1 and 2 studies demonstrating safety and possible efficacy (Makkar et al., Lancet 379(9819):895-904, 2012; Ishigami et al., Circ Res 120(7):1162-1173, 2017; Ishigami et al., Circ Res 116 (4):653-664, 2015; Tarui et al., J Thorac Cardiovasc Surg 150(5):1198-1207, 1208 e1191-1192, 2015). In this context and in view of clinical applications, cells have to be prepared and released according to Good Manufacturing Practices (GMP) (EudraLex-volume 4-good manufacturing practice (GMP) guidelines-Part I-basic requirements for medicinal products. http://ec.europa.eu/health/documents/eudralex/vol-4 ; EudraLex-volume 4-good manufacturing practice (GMP) guidelines-Part IV-guidelines on good manufacturing practices specific to advanced therapy medicinal products. http://ec.europa.eu/health/documents/eudralex/vol-4 ). This chapter describes GMP-grade methods for production and testing of a CPC Master Cell Bank (MCB), consisting of frozen aliquots of cells that may be used either as a therapeutic product or as source for the manufacturing of Exo for clinical trials.The MCB production method has been designed to isolate and expand CPC from human cardiac tissue in xeno-free conditions (Andriolo et al., Front Physiol 9:1169, 2018). The quality control (QC) methods have been implemented to assess the safety (sterility, endotoxin, mycoplasma, cell senescence, tumorigenicity) and identity/potency/purity (cell count and viability, RT-PCR, immunophenotype) of the cells (Andriolo et al., Front Physiol 9:1169, 2018).
More Related Videos
08:06Generation of Ventricular-Like HiPSC-Derived Cardiomyocytes and High-Quality Cell Preparations for Calcium Handling Characterization
Published on: January 17, 2020
12:21Large-Scale Production of Cardiomyocytes from Human Pluripotent Stem Cells Using a Highly Reproducible Small Molecule-Based Differentiation Protocol
Published on: July 25, 2016