| Literature DB >> 31541300 |
Barbara Leopold1, Jasmin Strutz1, Elisa Weiß1, Juergen Gindlhuber2,3, Ruth Birner-Gruenberger2,3,4, Hubert Hackl5, Hannah M Appel1, Silvija Cvitic1, Ursula Hiden6.
Abstract
Function and dysfunction of endothelial cells are regulated by a multitude of factors. Endothelial cell research often requires in vitro cell culture experiments. Hence, various culture media specifically designed to promote endothelial cell growth are available. These strikingly differ in their composition: complex media contain endothelial cell growth supplement (ECGS), an extract produced of bovine brain with undefined amounts of biologically active compounds, whilst defined media contain selected growth factors in defined concentrations. We here compared the effect of seven purchasable endothelial cell culture media on colony outgrowth, proliferation, viability, in vitro angiogenesis and phenotype of mature primary human endothelial cells using feto-placental endothelial cells isolated from chorionic arteries (fpEC). The effect of media on colony outgrowth was additionally tested on umbilical cord blood-derived endothelial progenitor cells (ECFCs). Outgrowth, purity, proliferation and viability differed between media. Outgrowth of fpEC and ECFCs was best in a defined medium containing EGF, FGF2 and VEGF. By contrast, established fpEC isolations proliferated best in complex media containing ECGS, heparin and ascorbic acid. Also viability of cells was higher in complex media. In vitro angiogenesis was most intense in a defined medium containing the highest number of individual growth factors. FACS analysis of surface markers for endothelial cell subtypes revealed that endothelial phenotype of fpEC was unaffected by media composition. Our data demonstrate the fundamental effect of endothelial cell culture media on primary cell isolation success and behaviour. Whether the composition of supplements is suitable also for individual experiments needs to be tested specifically.Entities:
Keywords: Angiogenesis; Culture media; Outgrowth; Primary endothelial cells; Proliferation; Viability
Year: 2019 PMID: 31541300 PMCID: PMC6842357 DOI: 10.1007/s00418-019-01815-2
Source DB: PubMed Journal: Histochem Cell Biol ISSN: 0948-6143 Impact factor: 4.304
Company, specific media and supplements tested in this study
| Company | Basal medium | Supplement | Medium identifier |
|---|---|---|---|
| ATCC | Vascular Cell Basal M. | Microvascular EC Growth Kit-BBE | ATCC |
| LifeLine Celltech | VascuLife Basal M. | VascuLife EnGS-Mv LifeFactors Kit | VascuLife |
| Lonza | EC Basal M. | EGM-MV Bullet Kit | EGM-MV |
| PromoCell | EC M. MV | EC Growth M. MV Suppl. Pack | PromoCell |
| Cell Applications | Human Microvasc. EC Basal M. | Human Microvascular EC Growth Suppl. | Cell Appl. |
| PAN-Biotech | Endopan MV Microvasc. EC Basal M. | Endopan MV Kit | Endopan |
| Gibco | MCDB 131 M. | Microvasc. Growth Suppl. | MCDB 131 |
The medium identifier is the term used for the respective medium throughout this study
M. Medium, EC endothelial cell, Suppl. Supplement
Composition of endothelial cell media tested in this study
| Compound | Complex media | Defined media | |||||
|---|---|---|---|---|---|---|---|
| ATCC | VascuLife | EGM-MV | PromoCell | Cell Appl. | Endopan | MCDB 131 | |
| ECGS | 0.2% (BBE) | 0.2% (n. s.) | 0.4% (BBE) | 0.4% (BHE) | |||
| EGF | 5 ng/ml | 5 ng/ml | + | 10 ng/ml | + | + | 1 ng/ml |
| FGF2 | + | + | 3 ng/ml | ||||
| VEGF | + | + | |||||
| IGF1 | + | ||||||
| Hydrocortisone | 1 µg/ml | 1 µg/ml | + | 1 µg/ml | + | 1 µg/ml | |
| 10 mM | 10 mM | ||||||
| Heparin | 0.75 U/ml | 0.75 U/ml | 90 µg/ml | 10 µg/ml | |||
| Ascorbic acid | 50 µg/ml | 50 µg/ml | + | ||||
| FBS | 5% | 5% | 5% | 5% | 5% | 6% | 4.9% |
| Dibutyryl cyclic AMP | 0.08 mM | ||||||
| Antibiotics | Optional | Optional | + | Optional | Optional | + | Optional |
n.s. not stated, ECGS endothelial cell growth supplement such as bovine brain extract (BBE), bovine pituitary extract (BPE) and bovine hypothalamic extract (BHE). FBS fetal bovine serum. + indicates the presence of the respective supplement, but without concentration stated by the manufacturer
Antibodies and isotype controls used for immunocytochemistry
| Antibody | Clone | Manufacturer/order no. | Isotype | Dilution |
|---|---|---|---|---|
| CD31 | EN4 | Monosan/MON6002-1 | Mouse IgG1 | 1:300 |
| vWF | Polyclonal | Dako/A0082 | Polyclonal rabbit | 1:3000 |
| SMA | 1A4 | Dako/M0851 | Mouse IgG2a | 1:200 |
| CD90 | AS02 | Dianova/DIA100 | Mouse IgG1 | 1:100 |
Antibodies and isotype controls used for FACS analysis
| Marker | Label | Manufacturer/order no. | Isotype | Volume (µl) |
|---|---|---|---|---|
| Antibody combination a | ||||
| CD14 | FITC | Miltenyi Biotec/130-080-701 | Mouse IgG2a | 2 |
| CD45 | PE | BD Pharmingen/555483 | Mouse IgG1k | 5 |
| CD133 | APC | Miltenyi Biotec/130-098-829 | Mouse IgG1k | 10 |
| CD34 | PE-Cy7 | Beckman Coulter/A21691 | Mouse IgG1 | 4 |
| Antibody combination b | ||||
| CD31 | FITC | BD Pharmingen/560984 | Mouse IgG1k | 5 |
| CD146 | PE | BD Pharmingen/561013 | Mouse IgG1k | 7 |
| CD90 | APC | BD Pharmingen/561971 | Mouse IgG1k | 0.1 |
| CD309 | PE-Cy7 | Biolegend/359912 | Mouse IgG1k | 5 |
| CD144 | Horizon V421 | BD Pharmingen/565670 | Mouse IgG1k | 3 |
| Isotype controls | ||||
| FITC | BD Pharmingen/555748 | Mouse IgG1k | ||
| PE | BD Pharmingen/554680 | Mouse IgG1k | ||
| APC | BD Pharmingen/555751 | Mouse IgG1k | ||
| PE-Cy7 | Beckman Coulter/737662 | Mouse IgG1 | ||
| Horizon V421 | Biolegend/562438 | Mouse IgG1k | ||
Fig. 1Effect of different endothelial culture media on colony outgrowth of fpEC. a Colony outgrowth after isolation procedure. Images were taken on day 5 (upper images), 10 (middle images) and 20 (lower images) after isolation using an Olympus CKX41 microscope (× 40 magnification). Scale bar: 200 µm. b Number of days until observation of first colonies after isolation. c Number of colonies at the first day of their observation. Data are given as mean ± SD of five (ATCC; VascuLife; Endopan; MCDB 131) or ten (EGM-MV; PromoCell; Cell Applications) fpEC isolations
Fig. 2Effect of different endothelial culture media on quality of fpEC isolations. Immunocytochemistry for quality control of fpEC isolated in different culture media. Cells were seeded in chamber slides after expansion of first colonies. a fpEC were positive for the endothelial cell markers CD31 and VWF, with highest staining when cells attached very close to each other. b Contaminations with fibroblasts and smooth muscle cells were identified by positive staining for CD90 and SMA, respectively. For negative controls unspecific antibodies of the same isotype were used. Scale bar: 100 µm. c Overview of isolation success, i.e., % isolations without any colony outgrowth, % of outgrowth with contaminations, % of endothelial cell isolations that discontinued to proliferate and % of successful fpEC isolations, as revealed after expansion of the colonies and quality control by immunocytochemical characterisation. Contingency test (Chi square) of successful vs unsuccessful isolations revealed an overall effect of the media with a significance of 0.028. Data are given as % of total numbers of five (ATCC; VascuLife; Endopan; MCDB 131) or ten (EGM-MV; PromoCell; Cell Applications) fpEC isolations
Fig. 3Effect of different endothelial culture media on proliferation and viability of fpEC. DNA synthesis was determined 20 h after seeding of cells in two different cell densities (30,000 vs 60,000 cells/cm2) using a BrdU ELISA (a). Cell number (b) and viability (c) were analysed 24 and 48 h after seeding using a Casy-TT instrument. Prior to counting, cells were photographed using an Olympus CKX41 microscope (× 40 magnification) (d). BrdU ELISA was performed with six independent cell isolations in quadruplicates. Casy analysis was performed with four independent cell isolations in triplicates. Data are given as mean ± SD. a significant vs respective condition in ATCC, b significant vs respective condition in VascuLife, ***significant vs all other media. Scale bar: 500 µm
Fig. 4Effect of different endothelial culture media on tube formation of fpEC into a fibrin matrix. a Tubes formed after 24 h in the various media supplemented with 10% NBCS and 5% human serum, either without stimulation or after stimulation with T (10 ng/ml TNFα) and TFV (10 ng/ml TNFα; 10 ng/ml FGF2; 25 ng/ml VEGF). Cells were imaged using Nikon TiE-2 microscope with Andor Zyla 4.2 sCMOS camera and Nikon Plan Apoλ 4× objective. Scale bar: 500 µm. Arrowheads show the small round tubes formed by fpEC after stimulation with TNFα alone. b Quantification of tube formation (µm/mm2). c Normalisation of all treatments per medium to the mean tube length (µm/mm2) of M199 medium illustrates the similarity of data. Data are given as mean ± SD of four different fpEC isolations, each performed in triplicates. a significant vs respective condition in Endopan medium, NBCS newborn calf serum
Fig. 5Effect of different endothelial culture media on colony outgrowth of ECFC isolated from umbilical cord blood. a Colony outgrowth on day 7 and day 13 after isolation. Scale bar: 200 µm. b Number of days until observation of first colonies after isolation. c Number of colonies per ml cord blood observed on day 7 and 13 after isolation. d Immunocytochemistry for quality control of ECFC isolations. Isolations were pure and without contaminations and thus, always positive for the endothelial cell markers CD31 and VWF and negative for the fibroblast marker CD90 and SMA. For negative controls unspecific antibodies of the same isotype were used. Scale bar: 100 µm. Data are given as mean ± SD of 5 (VascuLife; Endopan; MCDB 131) or 6 (ATCC; EGM-MV; PromoCell; Cell Applications) ECFC isolations. a significant vs Cell Application medium