Vladimir Tyurin
Overview
Explore the profile of Vladimir Tyurin including associated specialties, affiliations and a list of published articles.
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Articles
11
Citations
236
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Recent Articles
1.
Bukreev A, Mikhailov K, Shelaev I, Gostev F, Polevaya Y, Tyurin V, et al.
J Phys Chem A
. 2016 Mar;
120(12):1961-70.
PMID: 26935579
The synthesis of new zinc porphyrin oligomers linked by a triazole bridge was carried out via "click" reaction. A split in the porphyrin oligomer B-band was observed. It was considered...
2.
Shinde A, Berhane H, Rhieu B, Kalash R, Xu K, Goff J, et al.
Radiat Res
. 2016 Jan;
185(2):134-50.
PMID: 26789701
We evaluated normal tissue specific radioprotection of the oral cavity in radiosensitive Fanconi Anemia (FA) Fancd2(-/-) mice with orally established tumors using mitochondrial-targeted GS-nitroxide (JP4-039). Adult (10-12 weeks old) Fancd2(+/+),...
3.
Samhan-Arias A, Ji J, Demidova O, Sparvero L, Feng W, Tyurin V, et al.
Biochim Biophys Acta
. 2012 Apr;
1818(10):2413-23.
PMID: 22464971
Oxidized phospholipid species are important, biologically relevant, lipid signaling molecules that usually exist in low abundance in biological tissues. Along with their inherent stability issues, these oxidized lipids present themselves...
4.
Stoyanovsky D, Huang Z, Jiang J, Belikova N, Tyurin V, Epperly M, et al.
ACS Med Chem Lett
. 2012 Jan;
2(11):814-817.
PMID: 22247787
Ionizing radiation triggers mitochondrial overproduction of H(2)O(2) with concomitant induction of intrinsic apoptosis, whereby clearance of H(2)O(2) upon overexpression of mitochondrial catalase increases radioresistance in vitro and in vivo. As...
5.
Beletskaya I, Tyurin V
Molecules
. 2010 Jul;
15(7):4792-814.
PMID: 20657394
Modern chemical synthesis makes heavy use of different types of catalytic systems: homogeneous, heterogeneous and nano-sized. The latter--nano-sized catalysts--have given rise in the 21st century to a rapidly developing area...
6.
Belikova N, Tyurina Y, Borisenko G, Tyurin V, Samhan Arias A, Yanamala N, et al.
J Am Chem Soc
. 2009 Jul;
131(32):11288-9.
PMID: 19627079
Cytochrome c (cyt c), a mitochondrial intermembrane electron shuttle between complexes III and IV, can, upon binding with an anionic phospholipid, cardiolipin (CL), act as a peroxidase that catalyzes cardiolipin...
7.
Stoyanovsky D, Vlasova I, Belikova N, Kapralov A, Tyurin V, Greenberger J, et al.
FEBS Lett
. 2008 Feb;
582(5):725-8.
PMID: 18258194
In mitochondrial apoptosis, the formation of cytochrome c-cardiolipin complex ([CL-cyt c]) with peroxidase properties is an early event in the cascade of reactions that leads to cell death. Herein, we...
8.
Zhang L, St Croix C, Cao R, Wasserloos K, Watkins S, Stevens T, et al.
Exp Biol Med (Maywood)
. 2006 Oct;
231(9):1507-15.
PMID: 17018873
S-nitrosation of the metal binding protein, metallothionein (MT) appears to be a critical link in affecting endothelial nitric oxide synthase (eNOS) and inducible nitric oxide synthase (iNOS)-derived nitric oxide (NO)-induced...
9.
Hermet J, Porter D, Dearden M, Harrison J, Koplin T, OBrien P, et al.
Org Biomol Chem
. 2003 Dec;
1(22):3977-88.
PMID: 14664387
Three chiral diamines were synthesised and evaluated as sparteine surrogates in the lithiation-substitution of N-(tert-butoxycarbonyl)pyrrolidine. The synthesis and attempted resolution of sparteine-like diamines [(1S*,2R*,8R*)-10-methyl-6,10-diazatricyclo[6.3.1.0(2,6)]dodecane and (1S*,2R*,9R*)-11-methyl-7,11-diazatricyclo[7.3.1.0(2,7)]tridecane] (via inclusion complex formation)...
10.
Bello R, Kagan V, Tyurin V, Navarro F, Alcain F, Villalba J
Protoplasma
. 2003 May;
221(1-2):129-35.
PMID: 12768350
The aim of this work was to study the activity of NAD(P)H:(quinone acceptor) oxidoreductase 1 (EC 1.6.99.2) in the regeneration of lipophilic antioxidants, alpha-tocopherol, and reduced-coenzyme Q analogs. First, we...