umbilical cord matrix
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2021 ◽  
Author(s):  
Reyhaneh Abolghasemi ◽  
Somayeh Ebrahimi-barough ◽  
Jafar Ai

Abstract Background: Tumor growth and metastasis eventuate from an interaction between cancer cells and the surrounding extracellular matrix. Recent studies demonstrated inhibitory effects of mesenchymal stem cells on breast tumors. Likewise, the emerging interest in statins as anticancer agents is based on their pleiotropic effects. In the present study, we investigated whether atorvastatin and umbilical cord matrix derived mesenchymal stem cells-conditioned medium alone and combined with each other affect the MCF7 cancer cells viability and interactions.Methods: We measured the viability, apoptosis, and necrosis of MCF7 by MTT assay, Annexin-V/PI staining by flow cytometry, and quantitative real-time PCR. Two-dimensional culture and hanging drop aggregation assay illustrated the morphological changes in single cancer cells and spheroid configuration respectively. We traced the MCF7 migration via scratch-wound healing and trans-well assays. Results: The results showed inhibition of cancer cell viability in all treated groups compared with the control group, but the effect of atorvastatin and conditioned medium combination was further than each one alone. Cancer cells shrinkage and chromatin condensation in the inverted light microscopy and fluorescent staining microscopy indicated apoptosis in treated cells. The annexin V/PI analysis especially in the combination-treated group displayed decreasing in DNA synthesis and cell cycle arrest. The mRNA expressions of caspases 3, 8, 9, and Bcl-2 genes were along with extrinsic and intrinsic apoptosis pathways. Conditioned medium disrupts the connections between cancer cells in the three-dimensional spheroids configuration. The migration of treated cells across the wound area and trans-well diminished, particularly in the combination-treated group. Conclusions: For the first time, the synergistic anti-proliferative and anti-motility effect of atorvastatin along with human umbilical cord mesenchymal stem cells-derived conditioned medium on MCF7 breast cancer cells have been proved. These findings point to some new therapeutic strategies with a focus on the crosstalk between breast cancer cells and microenvironment.


PLoS ONE ◽  
2021 ◽  
Vol 16 (3) ◽  
pp. e0247567
Author(s):  
Romina Marcoccia ◽  
Salvatore Nesci ◽  
Barbara Merlo ◽  
Giulia Ballotta ◽  
Cristina Algieri ◽  
...  

Despite the increasing demand of cellular therapies for dogs, little is known on the differences between adult and fetal adnexa canine mesenchymal stem cells (MSCs), and data on their metabolic features are lacking. The present study aimed at comparing the characteristics of canine adipose tissue (AT) and umbilical cord matrix (UC) MSCs. Moreover, for the first time in the dog, the cellular bioenergetics were investigated by evaluating the two main metabolic pathways (oxidative phosphorylation and glycolysis) of ATP production. Frozen-thawed samples were used for this study. No differences in mean cell proliferation were found (P>0.05). However, while AT-MSCs showed a progressive increase in doubling time over passages, UC-MSCs showed an initial post freezing-thawing latency. No differences in migration, spheroid formation ability, and differentiation potential were found (P>0.05). RT-PCR analysis confirmed the expression of CD90 and CD44, the lack of CD14 and weak expression of CD34, mostly by AT-MSCs. DLA-DRA1 and DLA-DQA1 were weakly expressed only at passage 0 by UC-MSCs, while they were expressed at different passages for AT-MSCs. There was no difference (P>0.05) in total ATP production between cell cultures, but the ratio between the “mitochondrial ATP Production Rate” and the “glycolytic ATP Production Rate” was higher (P<0.05) in AT- than in UC-MSCs. However, in both MSCs types the mitochondrial respiration was the main pathway of ATP production. Mitochondrial respiration and ATP turnover in UC-MSCs were higher (P<0.05) than in AT-MSCs, but both had a 100% coupling efficiency. These features and the possibility of increasing the oxygen consumption by a spare respiratory capacity of four (AT-MSCSs) and two (UC-MSCs) order of magnitude greater than basal respiration, can be taken as indicative of the cell propensity to differentiate. The findings may efficiently contribute to select the most appropriate MSCs, culture and experimental conditions for transplantation experiments in mesenchymal stem cell therapy for companion animals.


Author(s):  
Tiago L. Laundos ◽  
Francisco Vasques-Nóvoa ◽  
Rita N. Gomes ◽  
Vasco Sampaio-Pinto ◽  
Pedro Cruz ◽  
...  

Human mesenchymal stem cells gather special interest as a universal and feasible add-on therapy for myocardial infarction (MI). In particular, human umbilical cord matrix-derived mesenchymal stromal cells (UCM-MSC) are advantageous since can be easily obtained and display high expansion potential. Using isolation protocols compliant with cell therapy, we previously showed UCM-MSC preserved cardiac function and attenuated remodeling 2 weeks after MI. In this study, UCM-MSC from two umbilical cords, UC-A and UC-B, were transplanted in a murine MI model to investigate consistency and durability of the therapeutic benefits. Both cellular products improved cardiac function and limited adverse cardiac remodeling 12 weeks post-ischemic injury, supporting sustained and long-term beneficial therapeutic effect. Donor associated variability was found in the modulation of cardiac remodeling and activation of the Akt-mTOR-GSK3β survival pathway. In vitro, the two cell products displayed similar ability to induce the formation of vessel-like structures and comparable transcriptome in normoxia and hypoxia, apart from UCM-MSCs proliferation and expression differences in a small subset of genes associated with MHC Class I. These findings support that UCM-MSC are strong candidates to assist the treatment of MI whilst calling for the discussion on methodologies to characterize and select best performing UCM-MSC before clinical application.


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