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Biochemistry
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March 13, 1984
Mechanism-based inactivation of mitochondrial monoamine oxidase by N-(1-methylcyclopropyl)benzylamine
R B Silverman, R B Yamasaki
Bioorganic & Medicinal Chemistry
|
January 1, 1995
Inactivation of gamma-aminobutyric acid aminotransferase by L-3-chloroalanine hydroxamate
R B Silverman, G T Olson
Journal of Enzyme Inhibition
|
January 1, 1995
SAR studies of fluorine-substituted benzylamines and substituted 2-phenylethylamines as substrates and inactivators of monoamine oxidase B
R B Silverman, W P Hawe
Biochemical and Biophysical Research Communications
|
August 31, 1981
N-(1-Methyl)cyclopropylbenzylamine: a novel inactivator of mitochondrial monoamine oxidase
R B Silverman, S J Hoffman
Current Opinion in Hematology
|
June 12, 2003
Newly diagnosed childhood acute lymphoblastic leukemia: update on prognostic factors and treatment
Lewis B Silverman, Stephen E Sallan
Journal of Medicinal Chemistry
|
March 1, 1990
Selective inhibition of gamma-aminobutyric acid aminotransferase by (3R,4R),(3S,4S)- and (3R,4S),(3S,4R)-4-amino-5-fluoro-3-phenylpentanoic acids
R B Silverman, S M Nanavati
The Laryngoscope
|
September 2, 2008
A novel approach for dilation of neopharyngeal stricture following total laryngectomy using the tracheoesophageal puncture site
Joshua B Silverman, Daniel G Deschler
Biochemistry
|
April 23, 1985
Mechanism of inactivation of monoamine oxidase by 1-phenylcyclopropylamine
R B Silverman, P A Zieske
Current Hematologic Malignancy Reports
|
August 10, 2016
Treatment of Childhood Acute Lymphoblastic Leukemia: Prognostic Factors and Clinical Advances
Lynda M Vrooman, Lewis B Silverman
Journal of Psychoactive Drugs
|
October 1, 1988
COPYIR--the Ocean City experience
H B Silverman, W T Rusinko
Page
of 82
Search research articles
Search
Showing results (111-120 of 815) with videos related to
Sort By:
Page
of 82
Biochemistry
|
March 13, 1984
Mechanism-based inactivation of mitochondrial monoamine oxidase by N-(1-methylcyclopropyl)benzylamine
R B Silverman, R B Yamasaki
Bioorganic & Medicinal Chemistry
|
January 1, 1995
Inactivation of gamma-aminobutyric acid aminotransferase by L-3-chloroalanine hydroxamate
R B Silverman, G T Olson
Journal of Enzyme Inhibition
|
January 1, 1995
SAR studies of fluorine-substituted benzylamines and substituted 2-phenylethylamines as substrates and inactivators of monoamine oxidase B
R B Silverman, W P Hawe
Biochemical and Biophysical Research Communications
|
August 31, 1981
N-(1-Methyl)cyclopropylbenzylamine: a novel inactivator of mitochondrial monoamine oxidase
R B Silverman, S J Hoffman
Current Opinion in Hematology
|
June 12, 2003
Newly diagnosed childhood acute lymphoblastic leukemia: update on prognostic factors and treatment
Lewis B Silverman, Stephen E Sallan
Journal of Medicinal Chemistry
|
March 1, 1990
Selective inhibition of gamma-aminobutyric acid aminotransferase by (3R,4R),(3S,4S)- and (3R,4S),(3S,4R)-4-amino-5-fluoro-3-phenylpentanoic acids
R B Silverman, S M Nanavati
The Laryngoscope
|
September 2, 2008
A novel approach for dilation of neopharyngeal stricture following total laryngectomy using the tracheoesophageal puncture site
Joshua B Silverman, Daniel G Deschler
Biochemistry
|
April 23, 1985
Mechanism of inactivation of monoamine oxidase by 1-phenylcyclopropylamine
R B Silverman, P A Zieske
Current Hematologic Malignancy Reports
|
August 10, 2016
Treatment of Childhood Acute Lymphoblastic Leukemia: Prognostic Factors and Clinical Advances
Lynda M Vrooman, Lewis B Silverman
Journal of Psychoactive Drugs
|
October 1, 1988
COPYIR--the Ocean City experience
H B Silverman, W T Rusinko
Page
of 82