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Method Article
Endothelial colony forming progenitor cells (ECFCs) are a promising tool to study vascular homeostasis and repair.1,2 This paper introduces a novel animal-serum free method for isolation and expansion of ECFC from heparinised adult human peripheral blood with pooled human platelet lysate (pHPL) diminishing the risk of anti-bovine immunisation.
This paper introduces a novel recovery strategy for endothelial colony forming progenitor cells (ECFCs) from heparinized but otherwise unmanipulated adult human peripheral blood within a mean of 12 days. After large scale expansion >1x108 ECFCs can be obtained for further tests. Advantageously by using pHPL the contact of human cells with bovine serum antigens can be excluded. By flow cytometry and immunohistochemistry the isolated cells can be characterized as ECFC and their in vitro functionality to form vascular like structures can be tested in a matrigel assay. Further these cells can be subcutaneously injected in a mouse model to form functional, perfused vessels in vivo. After long term expansion and cryopreservation proliferation, function and genomic stability appear to be preserved. 3,4
This animal-protein free isolation and expansion method is easily applicable to generate a large quantity of ECFCs.
A.) ECFC ISOLATON
DAY 1:
DAY 2:
DAY 5:
DAY 14-28:
B.) ECFC HARVEST
C.) ECFC EXPANSION
REPRESENTATIVE RESULTS
Using this isolation method we observed a primary colony formation at day 12. In a previous study were able to recover a mean of 4.0 ± 0,8 ECFC-colonies derived from each ml of peripheral blood.4 ECFCs showed a typical cobble stone appearance. After large scale expansion, with a seeding density of 100 cells/cm2, we obtained > 1 x 108 cells in a total of approximately 30 days from 3 male and 1 female volunteers (age between 26 and 50 years).
ECFC cultured under these conditions were shown to be proliferative, functional and genomically stable.4 Furthermore cells can be stored (in 10 % DMSO) in liquid nitrogen for further use. 3,4
This novel isolation and expansion method is a simple and efficient process that is more efficient and less time consuming by avoiding any cell separation (no density gradient needed) and less expensive than conventional techniques. By using pHPL contact to bovine antigens and putative subsequent xenoimmunization is excluded. During the culture period small clots can form, caused by the pHPL. Based on our experience these clots do not effect colony formation and cell proliferation or function.
The Authors thank Dr. Katharina Schallmoser for providing pHPL and Margaretha Frühwirth and Daniela Thaler for excellent technical assistance.
Name | Company | Catalog Number | Comments |
Endothelial basal Medium-2 | Lonza Inc. | 500ml | |
EGM-2 SingleQuots | Lonza Inc. | EGF, hFGF-B, VEGF, IGF-1, Hydrocortisone, ascorbic acid | |
preservative-free Heparin | Biochrom AG | 10U/ml per EGM-2 | |
L-Glutamine | Sigma-Aldrich | 2mM per EGM-2 | |
Penicillin and Streptomycin | Sigma-Aldrich | 100U/mL Penicillin and 100μg/mL Streptomycin per EGM-2 | |
Trypsin/1mM EDTA | Invitrogen | 7ml for T75 flask 70ml for CF-4 | |
PBS | |||
Four-layered cell factory (CF-4) | Corning | ||
Sterile Funnel | Corning | ||
T75cm2 culture flask (with vented cap) | Corning | ||
6 mL vacutainer tubes (preservative-free sodium heparin) | BD Biosciences | preloaded with 108 IU/6ml of preservative-free sodium heparin | |
50ml Falcon tubes | Falcon BD | ||
5ml Stripetts | Costar | ||
25ml Stripetts | Costar | ||
Squeezer | Costar | ||
0,2 pore size sterile filter | EMD Millipore | 2x 500ml per EGM-2 |
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