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Published on: June 29, 2013
Inorganic nitrite and chronic tissue ischaemia: a novel therapeutic modality for peripheral vascular diseases
Christopher B Pattillo1, Shyamal Bir, Venkat Rajaram
1Department of Pathology and Cardiology, LSU Health Sciences Center-Shreveport, 1501 Kings Hwy, Shreveport, LA 71130, USA.
Insights
Nitrite anion, a precursor to nitric oxide (NO), offers a novel therapeutic approach for ischaemic tissue damage. This selective NO donor shows promise for treating cardiovascular diseases and peripheral vascular disease.
Area of Science:
- Cardiovascular pathophysiology
- Nitric oxide (NO) biology and metabolism
- Vascular medicine
Background:
- Ischaemic tissue damage from cardiovascular disease is a global health crisis.
- Nitric oxide (NO) protects against ischaemia-reperfusion injury but faces clinical translation challenges.
- Nitrite anion (sodium nitrite) is explored as a prodrug for targeted NO delivery.
Purpose of the Study:
- To review the potential of nitrite anion as a selective nitric oxide (NO) donor for ischaemic conditions.
- To discuss the therapeutic utility of nitrite for peripheral vascular disease.
- To address concerns regarding nitrite's effect on carcinogenesis.
Main Methods:
- Review of existing research on nitrite anion and nitric oxide (NO) in cardiovascular health.
- Analysis of nitrite's mechanism as a selective NO prodrug in ischaemic tissues.
- Evaluation of therapeutic potential for peripheral vascular disease.
Main Results:
- Nitrite anion selectively generates NO in ischaemic tissues, sparing normal tissue.
- This approach offers a promising alternative to direct NO therapy.
- Nitrite's role in NO bioavailability and cardiovascular protection is highlighted.
Conclusions:
- Nitrite anion emerges as a selective NO prodrug for ischaemic disorders.
- Potential therapeutic applications for peripheral vascular disease warrant further investigation.
- Understanding NO biology is crucial for optimizing nitrite-based therapies.
Abstract:
Ischaemic tissue damage represents the ultimate form of tissue pathophysiology due to cardiovascular disease, which is the leading cause of morbidity and mortality across the globe. A significant amount of basic research and clinical investigation has been focused on identifying cellular and molecular pathways to alleviate tissue damage and dysfunction due to ischaemia and subsequent reperfusion. Over many years, the gaseous molecule nitric oxide (NO) has emerged as an important regulator of cardiovascular health as well as protector against tissue ischaemia and reperfusion injury. However, clinical translation of NO therapy for these pathophysiological conditions has not been realized for various reasons. Work from our laboratory and several others suggests that a new form of NO-associated therapy may be possible through the use of nitrite anion (sodium nitrite), a prodrug which can be reduced to NO in ischaemic tissues. In this manner, nitrite anion serves as a highly selective NO donor in ischaemic tissues without substantially altering otherwise normal tissue. This surprising and novel discovery has reinvigorated hopes for effectively restoring NO bioavailability in vulnerable tissues while continuing to reveal the complexity of NO biology and metabolism within the cardiovascular system. However, some concerns may exist regarding the effect of nitrite on carcinogenesis. This review highlights the emergence of nitrite anion as a selective NO prodrug for ischaemic tissue disorders and discusses the potential therapeutic utility of this agent for peripheral vascular disease.
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