| Literature DB >> 31964423 |
Yasser S Basmaeil1, Dana Algudiri1, Reem Alenzi1, Abdullah Al Subayyil1, Ayodele Alaiya2, Tanvir Khatlani3.
Abstract
BACKGROUND: Preeclampsia is a common obstetric syndrome affecting women in their first pregnancy and characterized by hypertension and proteinuria, which appears after 20 weeks of gestation. It is characterized by high blood pressure and occasional damage to another organ system most often the liver and kidneys. Currently, the etiology and pathogenesis of this syndrome are not fully understood. Since mesenchymal stem cells/stromal cells (MSCs) are intimately associated with endothelial cells that line vessel walls in the decidua they may play some role in the pathogenesis of this syndrome. In this study, we have partly, unveiled the mechanism of preeclampsia pathogenesis at the stem cells level.Entities:
Keywords: Decidua basalis mesenchymal stem cells; HMOX1; Preconditioning; Preeclampsia; Tin protoporphyrin; xCELLigence
Mesh:
Substances:
Year: 2020 PMID: 31964423 PMCID: PMC6975087 DOI: 10.1186/s13287-020-1557-6
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
Fig. 1Photomicrographs showing representative examples of PE-DBMSCs at passage 3 (a), differentiation of PE-DBMSCs isolated from passage 3 into adipocytes as demonstrated by HCS LipidTOX green neutral lipid staining after 21 days, and (b) chondrocytes shown by Alcian Blue staining of a cross-section of a chondrogenic pellet after 21 days
Differential gene expression in PE-DBMSCs as compared to normal DBMSCs
| Decreased levels in PE-DBMSCs | Increased levels in PE-DBMSCs | ||
|---|---|---|---|
| Pro-inflammatory cytokines | Pro-inflammatory chemokines | Anti-inflammatory cytokines | Adhesion molecules |
| IL1A | CCL3 | IL10 | ITAG 1 |
| IL1B | CCL17 | IL19 | ITAGA2B |
| IL6 | CCL18 | IL20 | ITGB2 |
| IL18 | CCL24 | IL22 | ITGAX |
| 1 L21 | CCL27 | IL10RA | PECAM |
| IL31 | CXCL11 | IL20RA | |
| IL33 | |||
Abbreviations: DBMSCs decidua basalis mesenchymal stem cells, PE-DBMSCs preeclampsia decidua basalis mesenchymal stem/stromal cells, IL1A interleukin 1A, IL1B interleukin 1B, IL16 interleukin 16, IL18 interleukin 18, IL21 interleukin 21, IL21 interleukin 21, IL31 interleukin 31, IL33 interleukin 33, CCL3 chemokine (C-C motif) ligand 3, CCL17 chemokine (C-C motif) ligand 17, CCL18 chemokine (C-C motif) ligand 18, CCL24 chemokine (C-C motif) ligand 24, CCL27 chemokine (C-C motif) ligand 27, CXCL11 chemokine (C-X-C motif) ligand 11, IL10 interleukin 10, IL19 interleukin 19, IL20 interleukin 20, IL22 interleukin 22, IL10 RA interleukin 10 receptor alpha, IL20RA interleukin 20 receptor alpha, ITAG 1 integrin 1, ITAGA2B integrin alpha 2b, ITGB2 integrin beta 2, ITGAX integrin alpha X, PECAM platelet endothelial cell adhesion molecule
Fig. 2Comparison of functional outcome between PE-DBMSCs and DBMSCs. a Proliferation by MTS assay. b Adhesion measured after 2 h of the start of the experiment, using the xCELLigence real-time cell analyzer. c Migration assay measured using the xCELLigence real-time cell analyzer after 24 h of the start of the experiment. d Colony formation assay of DBMSCs and PE-DBMSCs after 14 days in culture. Photomicrographs showing representative examples of a colony-forming units. Experiments were carried out in triplicate using cells at passage #3 prepared from five individual placentae. Bars represent standard errors, p ≤ 0.05
Fig. 3Comparison of functional outcome between PE-DBMSCs and DBMSCs after H2O2 preconditioning. a Proliferation by MTS assay after cells were treated with 50 μM and 100 μM H2O2, for 72 h for pre-treatment (Pre) and in-treatment (In) (while performing the assays) testing conditions. b Adhesion measured after 2 h of the start of the experiment with pre- and in-treatment conditions using the xCELLigence real-time cell analyzer. c Migration assay measured after 24 h of the start of the experiments, while cells were preconditioned with H2O2 (pre- and in-treatment) using the xCELLigence real-time cell analyzer. d RT-PCR analysis of the adhesion molecules, IL-6, CXCR4, ICAM, and CXCL4, after preconditioning with H2O2. Data is represented as ΔΔ−2 (relative fold change) as compared with untreated control. Experiments were performed in triplicate using cells at passage #3 prepared from five individual placentae. Bars represent standard errors, *p ≤ 0.05
Differential protein expression in DBMSCs as compared to PE-DBMSCs assessed by mass spectrometry
| Name of protein | Total number of runs | Frequency | Frequency (%) |
|---|---|---|---|
| ALBU | 16 | 16 | 100 |
| HSP7C | 16 | 12 | 75 |
| HMOX1 | 16 | 11 | 68.75 |
| ANX-A6 | 16 | 10 | 62.5 |
| TKT | 16 | 3 | 18.75 |
| RPNI | 16 | 2 | 12.5 |
| XRCC | 16 | 2 | 12.5 |
| KRT1 | 16 | 1 | 6.25 |
| CALD1 | 16 | 1 | 2.25 |
Abbreviations: ALBU albumin, HSP7C heat shock protein 7C, HMOX1 heme oxygenase 1, ANX-A6 annexin A6, TKT transketolase, RPNI proteasome regulatory particle subunit, XRCC X-ray repair cross-complementing protein, KRT1 keratin 1, CALD1 caldesmon
Fig. 4Frequency of the expression of differentially expressed proteins in DBMSCs as compared to PE-DBMSCs. Out of 16 runs in total, the frequency percentage shows the expression levels of different proteins in descending order of expression
Fig. 5Validation of the mass spectrometry results. a Immunoblotting for the major proteins, HSP71, HMOX1, and ANX-A6 in a representative PE-DBMSCs (placenta numbers 43 and 62) as compared to the normal DBMSCs (placenta numbers 37 and 58), respectively. Beta actin is the loading control. b RT-PCR analysis of HMOX1 in a subset of PE-DBMSCs as compared to the normal PE-DBMSCs (numbers represent the placenta number tested). Data is represented as ΔcT (absolute expression) as compared with control. Experiments were conducted in triplicate using cells prepared from five placentae. Bars represent standard errors
Fig. 6Effect of HMOX1 inhibition by SnPP on functional outcome of DBMSCs. Cells were treated with 5 μM and 10 μM of SnPP for 24 h priors to the start of assays. Cells were tested for a proliferation by using the xCELLigence real-time cell analyzer after 72 h of the assay, b adhesion assay by xCELLigence real-time cell analyzer measured after 2 h of the start of the experiment, and c migration assay measured after 24 h of the start of the experiments, by using the xCELLigence real-time cell analyzer. d Flow cytometry analysis of the adhesion molecules, VCAM, and ICAM1, after treating the cells with 5 μM and 10 μM of SnPP for 24 h. Experiments were performed in triplicate using cells at passage #3 prepared from five individual placentae. Bars represent standard errors. * represent the significance of the results, *p ≤ 0.05
Fig. 7H2O2 preconditioning enhances the expression of HMOX1 in PE-DBMSCs. a RT-PCR analysis of HMOX1 in DBMSCs and PE-DBMSCs preconditioned with 50 μM and 100 μM H2O2 for 72 h. b Immunoblotting for HMOX1 in DBMSCs and PE-DBMSCs preconditioned with 50 μM and 100 μM H2O2 for 72 h. Beta actin is the loading control. Experiments were performed in triplicate using cells at passage #3 prepared from five individual placentae. Bars represent standard errors. * represent the significance of the results, p ≤ 0.05