Related Experiment Video
Updated: Sep 12, 2025

Isolation and Enrichment of Human Adipose-derived Stromal Cells for Enhanced Osteogenesis
Published on: January 12, 2015
Aging Adipose-Derived Mesenchymal Stem Cells, Cultured on a Native Young Extracellular Matrix, Are Protected From
Aaron O Gonzalez1,2, Parveez A Abdul Azees1,3, Jerry P Chen1,3
1Department of Comprehensive Dentistry, UT Health San Antonio, School of Dentistry, San Antonio, Texas, USA.
Abstract:
Older adults are the primary population for cell-based therapies for age-related diseases, but the efficacy of administering autologous mesenchymal stem cells (MSCs) is impaired due to biological aging. In the present study, we cultured aging adipose (AD)-derived MSCs from > 65-year-old donors on extracellular matrix (ECM) synthesized by human amniotic fluid-derived pluripotent stem cells (ECM Plus) versus tissue culture plastic (TCP) and hypothesized that ECM Plus provided an ideal "young" microenvironment for reactivating and preserving early-stage progenitor cells within aging AD-MSCs. To test our hypothesis, we serially sub-cultured aging AD-MSCs on ECM Plus or TCP and characterized the cells both phenotypically and functionally, and then analyzed the cells at the single-cell transcriptomic level for the mechanisms that control cell fate. The results showed that the maintenance of aging AD-MSCs on ECM Plus significantly restored their quantity and quality. The mechanisms responsible for these effects were associated with a remarkable up-regulation of intracellular CD74 when cells were maintained on ECM Plus compared to TCP, which triggered activation of the phosphoinositide-3-kinase (PI3K) pathway as a key modulator of cell survival (anti-apoptosis) and suppression of cellular senescence. Moreover, AD-MSCs maintained on ECM Plus increased their expression of HLA-DR and stimulated T cell activity. These findings challenge the "immune privilege" of allogeneic MSCs as a universal source for MSC-based therapies. The present study leads to a new paradigm for treating age-related diseases: serial administration of rejuvenated autologous MSCs, which may not only replace aged MSCs but also gradually reverse the aged microenvironment.
Insights
Culturing aging mesenchymal stem cells (MSCs) on a special extracellular matrix (ECM Plus) rejuvenated them, restoring cell quality and quantity. This approach offers a new strategy for treating age-related diseases with autologous MSCs.
Area of Science:
- Regenerative Medicine
- Cell Biology
- Gerontology
Background:
- Cell-based therapies for age-related diseases often use autologous mesenchymal stem cells (MSCs).
- Biological aging impairs the efficacy of these MSCs in older adults.
- A "young" microenvironment is needed to maintain MSC progenitor cell function.
Purpose of the Study:
- To investigate if extracellular matrix (ECM) from pluripotent stem cells (ECM Plus) can rejuvenate aging adipose-derived MSCs (AD-MSCs).
- To understand the mechanisms by which ECM Plus preserves AD-MSC quantity and quality.
- To explore the potential of rejuvenated autologous MSCs for treating age-related conditions.
Main Methods:
- Aging AD-MSCs from donors over 65 were cultured on ECM Plus or tissue culture plastic (TCP).
- Cells were serially sub-cultured and characterized phenotypically and functionally.
- Single-cell transcriptomics were used to analyze cell fate mechanisms.
Main Results:
- ECM Plus significantly restored the quantity and quality of aging AD-MSCs compared to TCP.
- Maintenance on ECM Plus upregulated intracellular CD74, activating the phosphoinositide-3-kinase (PI3K) pathway.
- This activation promoted cell survival, suppressed senescence, and enhanced T cell activity via increased HLA-DR expression.
Conclusions:
- ECM Plus provides a rejuvenating microenvironment for aging AD-MSCs.
- Upregulation of CD74 and PI3K activation are key mechanisms in AD-MSC rejuvenation.
- Serial administration of rejuvenated autologous MSCs presents a novel paradigm for treating age-related diseases and reversing the aged microenvironment.
More Related Videos
10:50Author Spotlight: Isolation and Identification of Mesenchymal Stem Cells Derived from Adipose Tissue of Sprague Dawley Rats
Published on: April 7, 2023
05:57Technique for Obtaining Mesenchymal Stem Cell from Adipose Tissue and Stromal Vascular Fraction Characterization in Long-Term Cryopreservation
Published on: December 30, 2021