BACKGROUND AIMS: Bone marrow (BM) mesenchymal stromal/stem cells (MSC) are therapeutic tools in regenerative medicine and oncology. MSC isolation is often performed starting from a separation step based on research-grade 1.077 g/mL density gradient media (DGM). However, MSC clinical application should require the introduction of good manufacturing practice (GMP) reagents. We took advantage of two novel GMP DGM with densities of 1.077 and 1.073 g/mL (Ficoll-Paque PREMIUM and Ficoll-Paque PREMIUM 1.073, respectively) to test whether these reagents could isolate MSC efficiently while simultaneously comparing their performance.METHODS: BM samples were processed using either 1.077 or 1.073 g/mL GMP DGM. BM mononucleated cell (MNC) fractions were analyzed for viability, immunophenotype, clonogenic potential, ex vivo expansion and differentiation potential.RESULTS: No differences were noticed in cell recovery and viability between the groups. Fluorescence-activated cell-sorting (FACS) analyzes on freshly isolated cells indicated that the 1.073 g/mL GMP DGM more efficiently depleted the CD45(+) fraction in comparison with 1.077 GMP DGM. Moreover, in the 1.073 group, fibroblastic colony-forming units (CFU-F) were 1.5 times higher and the final MSC yield 1.8 times increased after four passages. Both reagents isolated MSC with the expected phenotype; however, 1.073-isolated MSC showed a higher expression of CD90, CD146 and GD2. Additionally, MSC from both groups were capable of fully differentiating into bone, adipose cells and cartilage.CONCLUSIONS: Both GMP DGM enriched MSC from BM samples, suggesting that these reagents would be suitable for clinical-grade expansions. In addition, the density of 1.073 g/mL provides a significant advantage over 1.077 g/mL GMP DGM, impacting the quantity of MSC obtained and reducing the ex vivo expansion time for optimized cell-based clinical applications.

GMP-manufactured density gradient media for optimized mesenchymal stromal/stem cell isolation and expansion / Grisendi, Giulia; Annerén, C; Sternieri, R; Veronesi, Elena; Cervo, Gl; Luminari, Stefano; Maur, M; Frassoldati, A; Palazzi, G; Otsuru, S; Bambi, F; Paolucci, Paolo; Conte, Pierfranco; Horwitz, E; Dominici, Massimo; Cafarelli, Luigi. - In: CYTOTHERAPY. - ISSN 1465-3249. - STAMPA. - 12:(2010), pp. 466-477. [10.3109/14653241003649510]

GMP-manufactured density gradient media for optimized mesenchymal stromal/stem cell isolation and expansion.

GRISENDI, Giulia;VERONESI, Elena;Cervo GL;LUMINARI, Stefano;Maur M;PAOLUCCI, Paolo;CONTE, Pierfranco;DOMINICI, Massimo;CAFARELLI, Luigi
2010

Abstract

BACKGROUND AIMS: Bone marrow (BM) mesenchymal stromal/stem cells (MSC) are therapeutic tools in regenerative medicine and oncology. MSC isolation is often performed starting from a separation step based on research-grade 1.077 g/mL density gradient media (DGM). However, MSC clinical application should require the introduction of good manufacturing practice (GMP) reagents. We took advantage of two novel GMP DGM with densities of 1.077 and 1.073 g/mL (Ficoll-Paque PREMIUM and Ficoll-Paque PREMIUM 1.073, respectively) to test whether these reagents could isolate MSC efficiently while simultaneously comparing their performance.METHODS: BM samples were processed using either 1.077 or 1.073 g/mL GMP DGM. BM mononucleated cell (MNC) fractions were analyzed for viability, immunophenotype, clonogenic potential, ex vivo expansion and differentiation potential.RESULTS: No differences were noticed in cell recovery and viability between the groups. Fluorescence-activated cell-sorting (FACS) analyzes on freshly isolated cells indicated that the 1.073 g/mL GMP DGM more efficiently depleted the CD45(+) fraction in comparison with 1.077 GMP DGM. Moreover, in the 1.073 group, fibroblastic colony-forming units (CFU-F) were 1.5 times higher and the final MSC yield 1.8 times increased after four passages. Both reagents isolated MSC with the expected phenotype; however, 1.073-isolated MSC showed a higher expression of CD90, CD146 and GD2. Additionally, MSC from both groups were capable of fully differentiating into bone, adipose cells and cartilage.CONCLUSIONS: Both GMP DGM enriched MSC from BM samples, suggesting that these reagents would be suitable for clinical-grade expansions. In addition, the density of 1.073 g/mL provides a significant advantage over 1.077 g/mL GMP DGM, impacting the quantity of MSC obtained and reducing the ex vivo expansion time for optimized cell-based clinical applications.
2010
12
466
477
GMP-manufactured density gradient media for optimized mesenchymal stromal/stem cell isolation and expansion / Grisendi, Giulia; Annerén, C; Sternieri, R; Veronesi, Elena; Cervo, Gl; Luminari, Stefano; Maur, M; Frassoldati, A; Palazzi, G; Otsuru, S; Bambi, F; Paolucci, Paolo; Conte, Pierfranco; Horwitz, E; Dominici, Massimo; Cafarelli, Luigi. - In: CYTOTHERAPY. - ISSN 1465-3249. - STAMPA. - 12:(2010), pp. 466-477. [10.3109/14653241003649510]
Grisendi, Giulia; Annerén, C; Sternieri, R; Veronesi, Elena; Cervo, Gl; Luminari, Stefano; Maur, M; Frassoldati, A; Palazzi, G; Otsuru, S; Bambi, F; Paolucci, Paolo; Conte, Pierfranco; Horwitz, E; Dominici, Massimo; Cafarelli, Luigi
File in questo prodotto:
File Dimensione Formato  
Grisendi G et al. Cytotherapy 2010.pdf

Solo gestori archivio

Tipologia: Versione pubblicata dall'editore
Dimensione 984.58 kB
Formato Adobe PDF
984.58 kB Adobe PDF   Visualizza/Apri   Richiedi una copia
Pubblicazioni consigliate

Licenza Creative Commons
I metadati presenti in IRIS UNIMORE sono rilasciati con licenza Creative Commons CC0 1.0 Universal, mentre i file delle pubblicazioni sono rilasciati con licenza Attribuzione 4.0 Internazionale (CC BY 4.0), salvo diversa indicazione.
In caso di violazione di copyright, contattare Supporto Iris

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/740911
Citazioni
  • ???jsp.display-item.citation.pmc??? 32
  • Scopus 57
  • ???jsp.display-item.citation.isi??? 48
social impact