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Biomedical subjects

S Goldstein

Publications and source records attributed to S Goldstein.

At least 73 records · Page 4Linked to original sources

Chemical and pharmacological aspects of heteroaryl-nitrones.

Radical induced oxidative damage is extremely harmful to tissues and organs due to molecular modifications brought to polyunsaturated membrane lipids, proteins and nucleic acids. Oxidative stress is believed to be one of the pathophysiological mechanisms that operate in neurodegenerative disorders such as cerebral ischemias, amyotrophic lateral sclerosis, Parkinson s and Alzheimer s diseases. Nitrones oppose oxidative challenges by virtue of their ability to trap very rapidly oxygen or carbon centered radicals thus generating nitroxide radical species which are more stable and biochemically less harmful than the original radical. However the operational mechanism of nitrones might also go beyond direct scavenging of radicals. The chemical and pharmacological properties of nitrones depend strongly on the connectivity as well as on the type and position of the substituents in the compound's architecture. Heteroaryl-nitrones are known, but except for a few cases (for example pyridyl-nitrones) no particular attention has been given to this class of molecules. The following review is a survey of the literature reports on this subject from 1980 to 1999. The structures were classified according to the heterocyclic substituent on the nitrone double bond, and documented pharmaceutical features were emphasized. Whenever possible heteroaromatic and related aromatic nitrones were compared.

Nitrogen Oxides↗

The impact of beta-blockade on mortality rates in patients with congestive heart failure.

The beneficial effects of beta-adrenergic blockade on mortality rates in patients after a myocardial infarction have been clear for decades. The efficacy data are now just as apparent for patients with heart failure. Although there are many subgroups of patients in whom the mortality effects of beta-blockers are not proven, knowledge about these specific populations continues to increase. Nevertheless, more information is needed so that we can properly tailor our therapy for individual patients.

Adrenergic beta-Antagonists↗