| Literature DB >> 26754424 |
Teresa L Ramos1,2,3,4, Luis Ignacio Sánchez-Abarca5,6,7,8, Sandra Muntión9,10,11,12, Silvia Preciado13,14,15,16, Noemí Puig17,18,19,20, Guillermo López-Ruano21,22, Ángel Hernández-Hernández23,24, Alba Redondo25,26,27,28, Rebeca Ortega29, Concepción Rodríguez30,31,32,33, Fermín Sánchez-Guijo34,35,36,37, Consuelo del Cañizo38,39,40,41.
Abstract
BACKGROUND: Human mesenchymal stromal cells (hMSC) are multipotent cells with both regenerative and immunomodulatory activities making them an attractive tool for cellular therapy. In the last few years it has been shown that the beneficial effects of hMSC may be due to paracrine effects and, at least in part, mediated by extracellular vesicles (EV). EV have emerged as important mediators of cell-to-cell communication. Flow cytometry (FCM) is a routine technology used in most clinical laboratories and could be used as a methodology for hMSC-EV characterization. Although several reports have characterized EV by FCM, a specific panel and protocol for hMSC-derived EV is lacking. The main objective of our study was the characterization of hMSC-EV using a standard flow cytometer.Entities:
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Year: 2016 PMID: 26754424 PMCID: PMC4709865 DOI: 10.1186/s12964-015-0124-8
Source DB: PubMed Journal: Cell Commun Signal ISSN: 1478-811X Impact factor: 5.712
Fig. 1Representative FCM dotplot showing acquired PBS 0.22 μm doubled filtered (a) and PBS doubled filtered with beads (0.5, 0.9, 3, 6–6.4 μm) (b). All samples used in this work were acquired when positive events were not present in the different fluorescence channels in the acquired PBS (double filtered)
Fig. 2Characterization of human MSC. a Representative dot-plots of stained hMSC. b In vitro differentiation of hMSC to adipocytes (a, d), osteoblast (b, e) and chondrocytes (c, f) with differentiation medium (d, e, f) compared to control (a, b, c)
Fig. 3Multiparametric analysis of EV-hMSC. a Representative FCM dotplots showing the gate protocol for hMSC-EV. The gate of EV was defined by use of microbeads. Standard microbeads with a diameter of 0.9 μm were used to set the upper size limit for the EV and were used to gate the hMSC-EV. hMSC-EV stained with hematopoietic markers (CD34 and CD45) were negative and were positive for hMSC markers (CD90, CD44, CD73) and for EV markers (CD81 and CD63). In gray represents the control (unstained EV) and in black the EV stained with the different antibodies. b Representative dotplot of EV from hMSC-GFP+, in these case we first gate the particles that were positive in fluorescence 2 (GFP) and were also smaller than the upper size (0.9 μm). Then we confirmed with these gate that the EV from hMSC-GFP+ were positive for mesenchymal markers, negative for hematopoietic markers and positive for CD63 and CD81 (EV markers)
Fig. 4EV analysis of the different mesenchymal cell lines (hTERT and HS-5) and leukemia cell line (K562) the data is represented in dotplots. EV stained with hematopoietic markers (CD34 and CD45), positive markers for hMSC (CD90, CD44, CD73) and for EV markers (CD81 and CD63). a EV-hTERT cells. b EV- HS-5. c EV-K562
Fig. 5Representative images for validation of EV using TEM (a) and Western Blot (b). a I-EV-K562 cells. II-EV- BM-hMSC. III-EV-HS-5 and IV-EV-hTERT mesenchymal cell lines. Scale bar 500 nm. Original magnification: ×8000. b WB analysis of human mesenchymal protein CD75 (I) and human exosomal CD63 and CD81 proteins (II and III, respectively)
Mean size and concentration of EV from HS.5, hTERT, K562 and hMSC culture measured by NTA
| EV | Concentration (particles/mL) | Size (nm) |
|---|---|---|
| HS.5 | 3,29 × 1011 ± 2,4 × 1010 | Mean – 125.6 |
| SD – 49.8 | ||
| hTERT | 7,64 × 1011 ± 4,62 × 1010 | Mean – 159,7 |
| SD – 130,4 | ||
| K562 | 3,36 × 1011 ± 5,05 × 1010 | Mean – 122 |
| SD – 65,9 | ||
| hMSC | 6,40 × 1011 ± 1 × 1010 | Mean – 136,6 |
| SD – 86,8 |
SD standard deviation calculated by NTA software. Numbers represent average values ± standard deviation (n = 3 measurement)
Fig. 6EV quantification using Nanosight nanoparticle tracking analysis. hMSC cells produced EV in cell culture with a mean size of 136 ± 86,8 nm, with a homogenous EV population. Cell lines hTERT and HS.5 (mesenchymal lines) and K562 cells (Leukemia cell line) also produce EV with size similar to EV–hMSC a - EV-K562; b - EV-BM-hMSC; c - EV-HS-5; d - EV-hTERT