Paper Details 
Original Abstract of the Article :
The effects of sulfobromophthalein (SBP) and ethacrynic acid (ECA), both inhibitors of glutathione S-transferase (GST), or glyceryl trinitrate (GTN)-induced vasorelaxation were investigated in rabbit aortic strips. The aortic strips were pre-contracted with phenylephrine, followed by relaxation with...See full text at original site
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引用元:
https://doi.org/10.1016/0006-2952(92)90184-k

データ提供:米国国立医学図書館(NLM)

The Mysterious Role of Glutathione S-Transferase in Glyceryl Trinitrate Relaxation

Like a skilled desert guide, researchers are constantly seeking to understand the intricate mechanisms by which our bodies respond to different substances. This study delves into the fascinating world of vasorelaxation, the process by which blood vessels relax, and explores the influence of certain substances on the effectiveness of glyceryl trinitrate (GTN), a commonly used medication for treating angina.

The study aims to investigate how two substances, sulfobromophthalein (SBP) and ethacrynic acid (ECA), both of which inhibit an enzyme called glutathione S-transferase (GST), affect the relaxation of blood vessels induced by GTN. The researchers used rabbit aortic strips, essentially tiny pieces of blood vessel, to observe how GTN worked in the presence and absence of these inhibitors.

ECA's Inhibitory Effect: A Sandstorm in the System

The study found that ECA significantly inhibited the relaxing effect of GTN, reducing its effectiveness by about 32%. The researchers also observed that ECA reduced the amount of GTN's metabolites, GDN, in the tissues. This suggests that ECA may be interfering with the breakdown of GTN, which is necessary for its action. This is like a sandstorm blocking the flow of a caravan across the desert, disrupting its progress and potentially impacting its destination.

The Importance of Glutathione S-Transferase: A Hidden Oasis

The researchers speculate that a specific type of GST enzyme might play a crucial role in activating GTN. They found that ECA, but not SBP, significantly inhibited the breakdown of GTN in a test tube. This finding suggests that certain types of GST enzymes are more susceptible to the effects of ECA, and this may be linked to how ECA affects GTN's effectiveness.

Dr. Camel's Conclusion

This research sheds light on the complex interplay between GTN and certain substances that inhibit GST. It highlights the importance of understanding these interactions, as they can significantly impact the efficacy of drugs like GTN. Future research will be crucial in deciphering the specific role of GST in GTN activation and exploring ways to overcome the inhibitory effects of certain substances.
Date :
  1. Date Completed 1992-07-08
  2. Date Revised 2019-06-23
Further Info :

Pubmed ID

1599510

DOI: Digital Object Identifier

10.1016/0006-2952(92)90184-k

Related Literature

SNS
PICO Info
in preparation
Languages

English

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