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Goal 2: Reduce Human Disease

Redox regulation of cardiovascular and lung disease through thiols

Redox imbalance as represented by alterations in oxidative versus reductive stresses are well appreciated to occur during nearly all forms of cardiovascular and lung diseases. However, specific molecular mechanisms responsible for these changes remain largely unknown and poorly organized. Study of redox biology principals has revealed that protein cysteine thiols are a unique target for redox posttranslational modifications... more »

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Goal 2: Reduce Human Disease

Gasotransmitter regulation of cardiovascular and lung health and disease

Gasotransmitters, such as nitric oxide, hydrogen sulfide, carbon monoxide, and hydrogen, have emerged as potent mediators of cardiovascular and lung cellular and molecular pathophysiology. While the physiological importance of these agents is becoming clearer, studies of gasotransmitters continue to suffer from several limitations such as formation, detection, metabolism, and molecular and cellular mechanistic insights.... more »

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