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List of works by Stanislaw F Wnuk

A Novel Mechanism-based Inhibitor (6′-Bromo-5′,6′-didehydro-6′-deoxy-6′-fluorohomoadenosine) That Covalently Modifies Human Placental S-Adenosylhomocysteine Hydrolase

scientific article published on July 17, 1998

Antiviral and Cytostatic Evaluation of 5-(1-Halo-2-sulfonylvinyl)- and 5-(2-Furyl)uracil Nucleosides.

scientific article published on 17 March 2017

Electron-Mediated Aminyl and Iminyl Radicals from C5 Azido-Modified Pyrimidine Nucleosides Augment Radiation Damage to Cancer Cells

scientific article published on 20 November 2018

Exotic Reaction Dynamics in the Gas-Phase Preparation of Anthracene (C<sub>14</sub>H<sub>10</sub>) via Spiroaromatic Radical Transients in the Indenyl–Cyclopentadienyl Radical–Radical Reaction

scientific article published in 2023

Fluorescent 5-Pyrimidine and 8-Purine Nucleosides Modified with an N-Unsubstituted 1,2,3-Triazol-4-yl Moiety

scientific article published on 06 March 2019

Gas phase synthesis of [4]-helicene

scientific article published on 03 April 2019

Gemcitabine analogues with 4-N-alkyl chain modified with fluoromethyl ketone group

scientific article published on 11 May 2018

How to add a five-membered ring to polycyclic aromatic hydrocarbons (PAHs) - molecular mass growth of the 2-naphthyl radical (C10H7) to benzindenes (C13H10) as a case study

scientific article published on 19 July 2019

Inactivation of S-Adenosyl-l-homocysteine Hydrolase and Antiviral Activity with 5‘,5‘,6‘,6‘-Tetradehydro-6‘-deoxy-6‘-halohomoadenosine Analogues (4‘-Haloacetylene Analogues Derived from Adenosine)

scientific article published on September 24, 1998

Inhibition of LuxS by S-ribosylhomocysteine analogues containing a [4-aza]ribose ring

scientific article published on July 28, 2011

Model Substrate/Inactivation Reactions for MoaA and Ribonucleotide Reductases: Loss of Bromo, Chloro, or Tosylate Groups from C2 of 1,5-Dideoxyhomoribofuranoses upon Generation of an α-Oxy Radical at C3

scientific article published on 29 May 2020

Molecular mass growth through ring expansion in polycyclic aromatic hydrocarbons via radical-radical reactions

scientific article published on 15 August 2019

Nucleic Acid Related Compounds. 105. Synthesis of 2‘,3‘-Didehydro-2‘,3‘-dideoxynucleosides from Ribonucleoside Cyclic 2‘,3‘-(Sulfates or Phosphates) or 2‘,3‘-Dimesylates via Reductive Elimination with Sodium Naphthalenide1

scientific article published on October 16, 1998

Nucleic Acid Related Compounds. 107. Efficient Nitration of Uracil Base and Nucleoside Derivatives1

scientific article published on March 19, 1999

Open-Chain Carbocyclic Analogs of Adenosine with Dihalovinyl Unit as Potential Inhibitors ofS-Adenosyl-L-homocysteine Hydrolase

scientific article published on September 1, 2003

S-Adenosylhomocysteine hydrolase of the protozoan parasite Trichomonas vaginalis: Potent inhibitory activity of 9-(2-deoxy-2-fluoro-β,d-arabinofuranosyl)adenine

scientific article published on April 21, 2012

Semisynthesis of the Organoarsenical Antibiotic Arsinothricin

scientific article published on 24 August 2020

Site of Azido Substitution in the Sugar Moiety of Azidopyrimidine Nucleosides Influences the Reactivity of Aminyl Radicals Formed by Dissociative Electron Attachment

scientific article published on 03 December 2020

Stereocontrolled Synthesis of Diene and Enyne Sugar-Modified Nucleosides and Their Interaction withS-Adenosyl-L-homocysteine Hydrolase

scientific article published on May 1, 2003

Substituted lactam and cyclic azahemiacetals modulate Pseudomonas aeruginosa quorum sensing

scientific article published on July 28, 2011

Synthesis of Homologated Halovinyl Derivatives from Aristeromycin and Their Inhibition of Human Placental S-Adenosyl-L-homocysteine Hydrolase

scientific article published on January 1, 1998

The Mechanism of Inactivation of Human PlacentalS-Adenosylhomocysteine Hydrolase by (E)-4′,5′- Didehydro-5′-Methoxyadenosine and Adenosine 5′-Carboxaldehyde Oxime

scientific article published on 01 July 1997

VUV Photoionization Study of the Formation of the Simplest Polycyclic Aromatic Hydrocarbon: Naphthalene (C10H8)

scientific article published on 07 May 2018