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Updated: Feb 11, 2026

Enumeration of Neural Stem Cells Using Clonal Assays
Published on: October 4, 2016
Adenosine decreases oxidative stress and protects H2O2-treated neural stem cells against apoptosis through decreasing
Masoumeh Gholinejad1, Iraj Jafari Anarkooli2, Amirhossein Taromchi1
1Department of Medical Biotechnology and Nanotechnology, Faculty of Medicine, Zanjan University of Medical Sciences, Zanjan 45139-56184, Iran.
Abstract:
Overproduction of free radicals during oxidative stress induces damage to key biomolecules and activates programed cell death pathways. Neuronal cell death in the nervous system leads to a number of neurodegenerative diseases. The aim of the present study was to evaluate the neuroprotective effect of adenosine on inhibition of apoptosis induced by hydrogen peroxide (H2O2) in bone marrow-derived neural stem cells (B-dNSCs), with focus on its regulatory effect on the expression of mammalian sterile 20-like kinase 1 (Mst1), as a novel proapoptotic kinase. B-dNSCs were exposed to adenosine at different doses (2, 4, 6, 8 and 10 µM) for 48 h followed by 125 µM H2O2 for 30 min. Using MTT, terminal deoxynucleotidyl transferase dUTP nick-end labeling and real-time reverse transcription polymerase chain reaction assays, the effects of adenosine on cell survival, apoptosis and Mst1, nuclear factor (erythroid-derived 2)-like 2 and B-cell lymphoma 2 and adenosine A1 receptor expression were evaluated in pretreated B-dNSCs compared with controls (cells treated with H2O2 only). Firstly, results of the MTT assay indicated 6 µM adenosine to be the most protective dose in terms of promotion of cell viability. Subsequent assays using this dosage indicated that apoptosis rate and Mst1 expression in B-dNSCs pretreated with 6 µM adenosine were significantly decreased compared with the control group. These findings suggest that adenosine protects B-dNSCs against oxidative stress-induced cell death, and therefore, that it may be used to promote the survival rate of B-dNSCs and as a candidate for the treatment of oxidative stress-mediated neurological diseases.
Insights
Adenosine protects neural stem cells from oxidative stress by reducing apoptosis and lowering the expression of the proapoptotic kinase Mst1. This suggests adenosine
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Oxidative stress and free radical overproduction damage biomolecules, triggering programmed cell death.
- Neuronal cell death is implicated in various neurodegenerative diseases.
- Mammalian sterile 20-like kinase 1 (Mst1) is a novel proapoptotic kinase.
Purpose of the Study:
- To evaluate the neuroprotective effect of adenosine against hydrogen peroxide (H2O2)-induced apoptosis in bone marrow-derived neural stem cells (B-dNSCs).
- To investigate adenosine's regulatory effect on Mst1 expression in B-dNSCs under oxidative stress.
Main Methods:
- B-dNSCs were pretreated with varying doses of adenosine (2-10 µM) followed by H2O2 exposure.
- Cell viability was assessed using MTT assay.
- Apoptosis rate and gene expression (Mst1, Nrf2, Bcl-2, adenosine A1 receptor) were evaluated using TUNEL and RT-qPCR assays.
Main Results:
- 6 µM adenosine demonstrated the highest cell viability promotion.
- Adenosine pretreatment significantly decreased apoptosis rate and Mst1 expression in B-dNSCs.
- Adenosine also affected the expression of Nrf2, Bcl-2, and the adenosine A1 receptor.
Conclusions:
- Adenosine exhibits neuroprotective effects against oxidative stress-induced apoptosis in B-dNSCs.
- Adenosine may promote B-dNSC survival and serve as a therapeutic candidate for neurological diseases linked to oxidative stress.
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