Comparative neuroprotective effects of rasagiline and aminoindan with selegiline on dexamethasone-induced brain cell apoptosis.

Author: JohnsonChandra, JohnsonShakevia, LuDeyin, OuXiao-Ming, StockmeierCraig A, TazikShawna, YoudimMoussa B H

Paper Details 
Original Abstract of the Article :
Stress can affect the brain and lead to depression; however, the molecular pathogenesis is unclear. An association between stress and stress-induced hypersecretion of glucocorticoids occurs during stress. Dexamethasone (a synthetic glucocorticoid steroid) has been reported to induce apoptosis and in...See full text at original site
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引用元:
https://pubmed.ncbi.nlm.nih.gov/19384601

データ提供:米国国立医学図書館(NLM)

Rasagiline: A Potential Protector Against Stress-Induced Brain Cell Death

This research investigates the neuroprotective effects of rasagiline, a drug used to treat Parkinson's disease, against stress-induced brain cell death. The study compared the neuroprotective abilities of rasagiline, its metabolite R-aminoindan, and selegiline, another MAO inhibitor, using human neuroblastoma cells. The results demonstrate that rasagiline exhibited the highest neuroprotective effect, potentially offering a new approach to mitigating stress-induced brain damage.

Rasagiline: A Shield Against the Desert Storm of Stress

This research offers a valuable insight into the potential of rasagiline in mitigating the effects of stress on the brain. It's like finding a powerful shield against a desert storm, protecting brain cells from the damaging effects of stress. The study's findings suggest that rasagiline may play a role in reducing stress-induced brain cell death, potentially contributing to improved cognitive function and overall well-being.

Stress and the Brain: A Journey Through the Desert

This research underscores the importance of understanding and mitigating the effects of stress on the brain. It's like navigating a challenging desert landscape, where the right tools and strategies are crucial for survival. The study's findings suggest that rasagiline may offer a promising avenue for protecting brain cells from the damaging effects of stress, potentially leading to a more resilient and adaptable brain.

Dr. Camel's Conclusion

This research provides a fascinating look into the potential of rasagiline in protecting brain cells from the damaging effects of stress. It's like finding a hidden oasis in the vast desert of stress research, offering a glimmer of hope for those seeking ways to mitigate the detrimental effects of stress on the brain.

Date :
  1. Date Completed 2010-01-08
  2. Date Revised 2021-10-20
Further Info :

Pubmed ID

19384601

DOI: Digital Object Identifier

NIHMS105008

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Languages

English

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