Analytical chemistry of nitric oxide

EM Hetrick, MH Schoenfisch - Annual review of analytical …, 2009 - annualreviews.org
EM Hetrick, MH Schoenfisch
Annual review of analytical chemistry, 2009annualreviews.org
Nitric oxide (NO) is the focus of intense research primarily because of its wide-ranging
biological and physiological actions. To understand its origin, activity, and regulation,
accurate and precise measurement techniques are needed. Unfortunately, analytical assays
for monitoring NO are challenged by NO's unique chemical and physical properties,
including its reactivity, rapid diffusion, and short half-life. Moreover, NO concentrations may
span the picomolar-to-micromolar range in physiological milieus, requiring techniques with …
Nitric oxide (NO) is the focus of intense research primarily because of its wide-ranging biological and physiological actions. To understand its origin, activity, and regulation, accurate and precise measurement techniques are needed. Unfortunately, analytical assays for monitoring NO are challenged by NO's unique chemical and physical properties, including its reactivity, rapid diffusion, and short half-life. Moreover, NO concentrations may span the picomolar-to-micromolar range in physiological milieus, requiring techniques with wide dynamic response ranges. Despite such challenges, many analytical techniques have emerged for the detection of NO. Herein, we review the most common spectroscopic and electrochemical methods, with a focus on the underlying mechanism of each technique and on approaches that have been coupled with modern analytical measurement tools to create novel NO sensors.
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