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Isolating, Sequencing and Analyzing Extracellular MicroRNAs from Human Mesenchymal Stem Cells
Published on: March 8, 2019
Comprehensive bulk and single-cell RNA sequencing uncovers senescence-associated biomarkers in therapeutic
Emese Pekker1,2, Erda Qorri1,3, Márton Zs Enyedi4,5
1HCEMM-HUN-REN BRC Mutagenesis and Carcinogenesis Research Group, Institute of Genetics, HUN-REN Biological Research Centre, Szeged, Hungary.
Abstract:
Mesenchymal stem cells (MSCs) hold great promise in cell therapy, but their effectiveness declines with repeated cell divisions due to senescence. Canines, sharing aging characteristics with humans, serve as a valuable model to study this process in a translational context. In the present study, we performed an in-depth characterization of senescence in canine MSCs using a combination of morphological, molecular, and transcriptomic analyses. Early (P2) and late-passage (P6) canine MSCs were characterized using a combination of senescence-associated β-galactosidase staining, cell cycle profiling, and both bulk and single-cell RNA sequencing to capture global transcriptional changes. By employing a passage-based in vitro approach, the present study demonstrates that late-passage cells (P6) compared to early-passage cells (P2) exhibit hallmark features of senescence, including morphological alterations, elevated SA-β-galactosidase activity, and considerable transcriptional changes. These changes were represented by significant upregulation of established senescence marker genes, alongside potential novel candidates and downregulation of genes associated with cell cycle progression and proliferation. Moreover, single-cell RNA sequencing uncovered heterogeneous distribution of senescent subpopulations, upregulation of SASP-related genes and reduced proliferation markers. Our findings demonstrate that combining classical markers with bulk and single-cell RNA sequencing facilitates senescent cell identification while improving quality control for clinical MSC samples.
Insights
Canine mesenchymal stem cells (MSCs) undergo senescence, a process of aging that reduces their therapeutic potential. This study characterized senescence in canine MSCs, revealing key molecular and transcriptional changes.
Area of Science:
- Cell Biology
- Stem Cell Research
- Gerontology
Background:
- Mesenchymal stem cells (MSCs) are crucial for cell therapy but lose efficacy with repeated divisions due to senescence.
- Canine models offer translational insights into aging processes relevant to human health.
Purpose of the Study:
- To comprehensively characterize senescence in canine mesenchymal stem cells (MSCs).
- To identify molecular and transcriptional signatures associated with canine MSC senescence.
Main Methods:
- Comparative analysis of early (P2) and late-passage (P6) canine MSCs.
- Utilized senescence-associated β-galactosidase (SA-β-gal) staining and cell cycle profiling.
- Employed bulk and single-cell RNA sequencing for transcriptomic analysis.
Main Results:
- Late-passage canine MSCs exhibited morphological changes and increased SA-β-gal activity, indicative of senescence.
- Transcriptomic analysis revealed significant upregulation of senescence markers and downregulation of proliferation genes.
- Single-cell RNA sequencing identified heterogeneous senescent subpopulations and highlighted senescence-associated secretory phenotype (SASP) gene upregulation.
Conclusions:
- Passage number significantly influences canine MSC characteristics, inducing senescence-like phenotypes.
- Integrated multi-omics approaches, including single-cell RNA sequencing, enhance the identification and quality control of MSCs for clinical applications.
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