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Updated: May 4, 2026

Single Myofiber Culture Assay for the Assessment of Adult Muscle Stem Cell Functionality Ex Vivo
Published on: February 15, 2021
Notch signaling in mesenchymal stem cells harvested from geriatric mice
Patricia L Mutyaba1, Nicole S Belkin, Luke Lopas
1*Department of Orthopaedic Surgery, Perelman School of Medicine, and †Department of Clinical Studies, New Bolton Center, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, PA.
Objectives:
Morbidity associated with geriatric fractures may be attributed, in part, to compromised mesenchymal stem cell (MSC) function within the fracture callus. The Notch signaling pathway is important for the healing of nonskeletal tissues in an age-dependent manner, but the effect of Notch on age-dependent fracture healing and MSC dysfunction has not been substantiated. The objective of this study was to examine Notch signaling in MSCs obtained from young and geriatric mice.
Methods:
Marrow-derived MSCs were harvested from the femora of 5- and 25-month-old C57BL/6 mice. We assessed in vivo MSC number using CFU-F, proliferation using an Alamar Blue assay, osteoblast differentiation by Alizarin Red S staining, and adipogenic differentiation using Oil Red O staining. Notch receptor and ligand expression was assessed using quantitative PCR, and Notch signaling was assessed by evaluating Notch target gene expression (Hey and HES) under basal conditions and when cells were plated to Jagged-1 ligand.
Results:
MSC from geriatric mice exhibit reduced MSC number (CFU-F), proliferation, adipogenesis, and inconsistent osteogenesis. The highest expressed Notch receptor is Notch 2, and the highest expressed ligand is Jagged-1, but there were no differences in ligand and receptor gene expression between young and old MSCs. Interestingly, geriatric MSCs show decreased basal Notch signaling activity but are fully responsive to Jagged-1 stimulation.
Conclusions:
These data suggest that therapeutic targeting of Notch signaling should be explored in clinical therapies to improve geriatric fracture healing.
Insights
Geriatric mesenchymal stem cells (MSCs) show reduced function and basal Notch signaling. However, they remain responsive to Jagged-1, suggesting Notch pathway targeting could improve fracture healing in older adults.
Area of Science:
- Gerontology
- Stem Cell Biology
- Biochemistry
Background:
- Geriatric fractures are linked to impaired mesenchymal stem cell (MSC) function.
- The Notch signaling pathway influences age-dependent tissue healing, but its role in age-related fracture healing and MSC dysfunction is unclear.
Purpose of the Study:
- To investigate Notch signaling in MSCs from young and geriatric mice.
- To understand the impact of aging on MSC function and Notch pathway activity.
Main Methods:
- Harvested MSCs from young (5-month) and old (25-month) C57BL/6 mice.
- Assessed MSC number (CFU-F), proliferation, osteogenesis, and adipogenesis.
- Quantified Notch receptor/ligand expression and Notch target gene activity.
Main Results:
- Geriatric MSCs exhibited reduced number, proliferation, and adipogenesis, with inconsistent osteogenesis.
- No differences in Notch receptor (Notch 2) or ligand (Jagged-1) gene expression were found between age groups.
- Geriatric MSCs showed decreased basal Notch signaling but retained responsiveness to Jagged-1 stimulation.
Conclusions:
- Aging impairs MSC function and basal Notch signaling.
- Geriatric MSCs' responsiveness to Jagged-1 suggests potential for therapeutic intervention.
- Targeting the Notch signaling pathway may offer a strategy to enhance fracture healing in the elderly.
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