Isolation and prolonged expansion of oral mesenchymal stem cells under clinical-grade, GMP-compliant conditions differentially affects “stemness” properties
Abstract Background Development of clinical-grade cell preparations is central to meeting the regulatory requirements for cellular therapies under good manufacturing practice-compliant (cGMP) conditions. Since addition of animal serum in culture media may compromise safe and efficient expansion of m...
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2017-11-01
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Online Access: | http://link.springer.com/article/10.1186/s13287-017-0705-0 |
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Article |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Athina Bakopoulou Danae Apatzidou Eleni Aggelidou Evangelia Gousopoulou Gabriele Leyhausen Joachim Volk Aristeidis Kritis Petros Koidis Werner Geurtsen |
spellingShingle |
Athina Bakopoulou Danae Apatzidou Eleni Aggelidou Evangelia Gousopoulou Gabriele Leyhausen Joachim Volk Aristeidis Kritis Petros Koidis Werner Geurtsen Isolation and prolonged expansion of oral mesenchymal stem cells under clinical-grade, GMP-compliant conditions differentially affects “stemness” properties Stem Cell Research & Therapy Oral mesenchymal stem cells Alveolar bone marrow mesenchymal stem cells Dental pulp stem cells Clinical-grade expansion Good manufacturing practice-compliant cell preparation Prolonged expansion |
author_facet |
Athina Bakopoulou Danae Apatzidou Eleni Aggelidou Evangelia Gousopoulou Gabriele Leyhausen Joachim Volk Aristeidis Kritis Petros Koidis Werner Geurtsen |
author_sort |
Athina Bakopoulou |
title |
Isolation and prolonged expansion of oral mesenchymal stem cells under clinical-grade, GMP-compliant conditions differentially affects “stemness” properties |
title_short |
Isolation and prolonged expansion of oral mesenchymal stem cells under clinical-grade, GMP-compliant conditions differentially affects “stemness” properties |
title_full |
Isolation and prolonged expansion of oral mesenchymal stem cells under clinical-grade, GMP-compliant conditions differentially affects “stemness” properties |
title_fullStr |
Isolation and prolonged expansion of oral mesenchymal stem cells under clinical-grade, GMP-compliant conditions differentially affects “stemness” properties |
title_full_unstemmed |
Isolation and prolonged expansion of oral mesenchymal stem cells under clinical-grade, GMP-compliant conditions differentially affects “stemness” properties |
title_sort |
isolation and prolonged expansion of oral mesenchymal stem cells under clinical-grade, gmp-compliant conditions differentially affects “stemness” properties |
publisher |
BMC |
series |
Stem Cell Research & Therapy |
issn |
1757-6512 |
publishDate |
2017-11-01 |
description |
Abstract Background Development of clinical-grade cell preparations is central to meeting the regulatory requirements for cellular therapies under good manufacturing practice-compliant (cGMP) conditions. Since addition of animal serum in culture media may compromise safe and efficient expansion of mesenchymal stem cells (MSCs) for clinical use, this study aimed to investigate the potential of two serum/xeno-free, cGMP culture systems to maintain long-term “stemness” of oral MSCs (dental pulp stem cells (DPSCs) and alveolar bone marrow MSCs (aBMMSCs)), compared to conventional serum-based expansion. Methods DPSC and aBMMSC cultures (n = 6/cell type) were established from pulp and alveolar osseous biopsies respectively. Three culture systems were used: StemPro_MSC/SFM_XenoFree (Life Technologies); StemMacs_MSC/XF (Miltenyi Biotek); and α-MEM (Life Technologies) with 15% fetal bovine serum. Growth (population doublings (PDs)), immunophenotypic (flow cytometric analysis of MSC markers) and senescence (β-galactosidase (SA-β-gal) activity; telomere length) characteristics were determined during prolonged expansion. Gene expression patterns of osteogenic (ALP, BMP-2), adipogenic (LPL, PPAR-γ) and chondrogenic (ACAN, SOX-9) markers and maintenance of multilineage differentiation potential were determined by real-time PCR. Results Similar isolation efficiency and stable growth dynamics up to passage 10 were observed for DPSCs under all expansion conditions. aBMMSCs showed lower cumulative PDs compared to DPSCs, and when StemMacs was used substantial delays in cell proliferation were noted after passages 6–7. Serum/xeno-free expansion produced cultures with homogeneous spindle-shaped phenotypes, while serum-based expansion preserved differential heterogeneous characteristics of each MSC population. Prolonged expansion of both MSC types but in particular the serum/xeno-free-expanded aBMMSCs was associated with downregulation of CD146, CD105, Stro-1, SSEA-1 and SSEA-4, but not CD90, CD73 and CD49f, in parallel with an increase of SA-gal-positive cells, cell size and granularity and a decrease in telomere length. Expansion under both serum-free systems resulted in “osteogenic pre-disposition”, evidenced by upregulation of osteogenic markers and elimination of chondrogenic and adipogenic markers, while serum-based expansion produced only minor changes. DPSCs retained a diminishing (CCM, StemPro) or increasing (StemMacs) mineralization potential with passaging, while aBMMSCs lost this potential after passages 6–7 under all expansion conditions. Conclusions These findings indicate there is still a vacant role for development of qualified protocols for clinical-grade expansion of oral MSCs; a key milestone achievement for translation of research from the bench to clinics. |
topic |
Oral mesenchymal stem cells Alveolar bone marrow mesenchymal stem cells Dental pulp stem cells Clinical-grade expansion Good manufacturing practice-compliant cell preparation Prolonged expansion |
url |
http://link.springer.com/article/10.1186/s13287-017-0705-0 |
work_keys_str_mv |
AT athinabakopoulou isolationandprolongedexpansionoforalmesenchymalstemcellsunderclinicalgradegmpcompliantconditionsdifferentiallyaffectsstemnessproperties AT danaeapatzidou isolationandprolongedexpansionoforalmesenchymalstemcellsunderclinicalgradegmpcompliantconditionsdifferentiallyaffectsstemnessproperties AT eleniaggelidou isolationandprolongedexpansionoforalmesenchymalstemcellsunderclinicalgradegmpcompliantconditionsdifferentiallyaffectsstemnessproperties AT evangeliagousopoulou isolationandprolongedexpansionoforalmesenchymalstemcellsunderclinicalgradegmpcompliantconditionsdifferentiallyaffectsstemnessproperties AT gabrieleleyhausen isolationandprolongedexpansionoforalmesenchymalstemcellsunderclinicalgradegmpcompliantconditionsdifferentiallyaffectsstemnessproperties AT joachimvolk isolationandprolongedexpansionoforalmesenchymalstemcellsunderclinicalgradegmpcompliantconditionsdifferentiallyaffectsstemnessproperties AT aristeidiskritis isolationandprolongedexpansionoforalmesenchymalstemcellsunderclinicalgradegmpcompliantconditionsdifferentiallyaffectsstemnessproperties AT petroskoidis isolationandprolongedexpansionoforalmesenchymalstemcellsunderclinicalgradegmpcompliantconditionsdifferentiallyaffectsstemnessproperties AT wernergeurtsen isolationandprolongedexpansionoforalmesenchymalstemcellsunderclinicalgradegmpcompliantconditionsdifferentiallyaffectsstemnessproperties |
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doaj-9a41832b4be542b697a792226bf526ae2020-11-25T00:01:35ZengBMCStem Cell Research & Therapy1757-65122017-11-018112110.1186/s13287-017-0705-0Isolation and prolonged expansion of oral mesenchymal stem cells under clinical-grade, GMP-compliant conditions differentially affects “stemness” propertiesAthina Bakopoulou0Danae Apatzidou1Eleni Aggelidou2Evangelia Gousopoulou3Gabriele Leyhausen4Joachim Volk5Aristeidis Kritis6Petros Koidis7Werner Geurtsen8Department of Prosthodontics, School of Dentistry, Faculty of Health Sciences, Aristotle University of Thessaloniki (A.U.Th)Department of Preventive Dentistry, Periodontology and Implant Biology, School of Dentistry, Faculty of Health Sciences, Aristotle University of Thessaloniki (A.U.Th)Department of Physiology and Pharmacology, School of Medicine, Faculty of Health Sciences, Aristotle University of Thessaloniki (A.U.Th)Department of Preventive Dentistry, Periodontology and Implant Biology, School of Dentistry, Faculty of Health Sciences, Aristotle University of Thessaloniki (A.U.Th)Department of Conservative Dentistry, Periodontology and Preventive Dentistry, Hannover Medical School (MHH)Department of Conservative Dentistry, Periodontology and Preventive Dentistry, Hannover Medical School (MHH)Department of Physiology and Pharmacology, School of Medicine, Faculty of Health Sciences, Aristotle University of Thessaloniki (A.U.Th)Department of Prosthodontics, School of Dentistry, Faculty of Health Sciences, Aristotle University of Thessaloniki (A.U.Th)Department of Conservative Dentistry, Periodontology and Preventive Dentistry, Hannover Medical School (MHH)Abstract Background Development of clinical-grade cell preparations is central to meeting the regulatory requirements for cellular therapies under good manufacturing practice-compliant (cGMP) conditions. Since addition of animal serum in culture media may compromise safe and efficient expansion of mesenchymal stem cells (MSCs) for clinical use, this study aimed to investigate the potential of two serum/xeno-free, cGMP culture systems to maintain long-term “stemness” of oral MSCs (dental pulp stem cells (DPSCs) and alveolar bone marrow MSCs (aBMMSCs)), compared to conventional serum-based expansion. Methods DPSC and aBMMSC cultures (n = 6/cell type) were established from pulp and alveolar osseous biopsies respectively. Three culture systems were used: StemPro_MSC/SFM_XenoFree (Life Technologies); StemMacs_MSC/XF (Miltenyi Biotek); and α-MEM (Life Technologies) with 15% fetal bovine serum. Growth (population doublings (PDs)), immunophenotypic (flow cytometric analysis of MSC markers) and senescence (β-galactosidase (SA-β-gal) activity; telomere length) characteristics were determined during prolonged expansion. Gene expression patterns of osteogenic (ALP, BMP-2), adipogenic (LPL, PPAR-γ) and chondrogenic (ACAN, SOX-9) markers and maintenance of multilineage differentiation potential were determined by real-time PCR. Results Similar isolation efficiency and stable growth dynamics up to passage 10 were observed for DPSCs under all expansion conditions. aBMMSCs showed lower cumulative PDs compared to DPSCs, and when StemMacs was used substantial delays in cell proliferation were noted after passages 6–7. Serum/xeno-free expansion produced cultures with homogeneous spindle-shaped phenotypes, while serum-based expansion preserved differential heterogeneous characteristics of each MSC population. Prolonged expansion of both MSC types but in particular the serum/xeno-free-expanded aBMMSCs was associated with downregulation of CD146, CD105, Stro-1, SSEA-1 and SSEA-4, but not CD90, CD73 and CD49f, in parallel with an increase of SA-gal-positive cells, cell size and granularity and a decrease in telomere length. Expansion under both serum-free systems resulted in “osteogenic pre-disposition”, evidenced by upregulation of osteogenic markers and elimination of chondrogenic and adipogenic markers, while serum-based expansion produced only minor changes. DPSCs retained a diminishing (CCM, StemPro) or increasing (StemMacs) mineralization potential with passaging, while aBMMSCs lost this potential after passages 6–7 under all expansion conditions. Conclusions These findings indicate there is still a vacant role for development of qualified protocols for clinical-grade expansion of oral MSCs; a key milestone achievement for translation of research from the bench to clinics.http://link.springer.com/article/10.1186/s13287-017-0705-0Oral mesenchymal stem cellsAlveolar bone marrow mesenchymal stem cellsDental pulp stem cellsClinical-grade expansionGood manufacturing practice-compliant cell preparationProlonged expansion |