Zobrazeno 1 - 10
of 35
pro vyhledávání: '"TRXR, thioredoxin reductase"'
Publikováno v:
Translational Oncology, Vol 17, Iss, Pp 101341-(2022)
Translational Oncology
Translational Oncology
Highlights • Thioredoxin reductase (TrxR), a seleno enzyme, regulates cellular redox. • Several human cancers are known to overexpress TrxR. • Inhibitors of TrxR have enhanced radiation induced cytotoxicity in multiple cancers. • TrxR could b
Publikováno v:
Redox Biology, Vol 32, Iss, Pp-(2020)
Redox Biology
Redox Biology
Hepatocellular carcinoma (HCC) accounts for most of primary liver cancer, of which five-year survival rate remains low and chemoprevention has become a strategy to reduce disease burden of HCC. We aim to explore the in vivo chemopreventive effect of
Autor:
Kaori Okinaka, Goshi Shiota, Hiroyuki Oka, Tsuyoshi Yokobata, Shizuma Okazaki, Ikuya Noda, Minoru Morimoto, Noriko Itaba, Yohei Kono
Publikováno v:
Regenerative Therapy, Vol 9, Iss, Pp 45-57 (2018)
Regenerative Therapy
Regenerative Therapy
Introduction We previously reported that transplantation of hepatic cell sheets from human bone marrow-derived mesenchymal stem cells (BM-MSCs) with hexachlorophene, a Wnt/β-catenin signaling inhibitor, ameliorated acute liver injury. In a further p
Autor:
Gene J. Pirelli, Gerd Bobe, William R. Vorachek, Jean A. Hall, K. Denise Apperson, Brian P. Dolan
Publikováno v:
Journal of Trace Elements in Medicine and Biology
Intestinal absorption of immunoglobulins is critical for health and survival of newborn calves because there is no transfer of immunoglobulins in utero. The objective of this study was to determine if feeding beef cows Se-enriched alfalfa hay during
Publikováno v:
Redox Biology
Redox Biology, Vol 20, Iss, Pp 130-145 (2019)
Redox Biology, Vol 20, Iss, Pp 130-145 (2019)
Low molecular weight (LMW) thiols play an important role as thiol-cofactors for many enzymes and are crucial to maintain the reduced state of the cytoplasm. Most Gram-negative bacteria utilize glutathione (GSH) as major LMW thiol. However, in Gram-po
Autor:
Shanlin Fu, Luke Carroll, Clare L. Hawkins, David I. Pattison, Michael J. Davies, Carl H. Schiesser
Publikováno v:
Redox Biology, Vol 12, Iss, Pp 872-882 (2017)
Carroll, L, Pattison, D I, Fu, S, Schiesser, C H, Davies, M J & Hawkins, C L 2017, ' Catalytic oxidant scavenging by selenium-containing compounds : Reduction of selenoxides and N-chloramines by thiols and redox enzymes ', Redox Biology, vol. 12, pp. 872-882 . https://doi.org/10.1016/j.redox.2017.04.023
Redox Biology
Carroll, L, Pattison, D I, Fu, S, Schiesser, C H, Davies, M J & Hawkins, C L 2017, ' Catalytic oxidant scavenging by selenium-containing compounds : Reduction of selenoxides and N-chloramines by thiols and redox enzymes ', Redox Biology, vol. 12, pp. 872-882 . https://doi.org/10.1016/j.redox.2017.04.023
Redox Biology
Myeloperoxidase produces strong oxidants during the immune response to destroy invading pathogens. However, these oxidants can also cause tissue damage, which contributes to the development of numerous inflammatory diseases. Selenium containing compo
Autor:
Michael Ristow, Katrin Erler, Vanessa Stein, Dimitrios Tsitsipatis, Katrin Kreuzer, Nadine Urban, Lars-Oliver Klotz, Holger Steinbrenner, Franziska Hausig
Publikováno v:
Redox Biology, Vol 11, Iss, Pp 502-515 (2017)
Redox Biology, 11
Redox Biology
Redox Biology, 11
Redox Biology
The redox environment in cells and organisms is set by low-molecular mass and protein-bound thiols, with glutathione (GSH) representing a major intracellular redox buffer. Subtle thiol oxidation elicits signal transduction processes and adaptive resp
Publikováno v:
Redox Biology, Vol 11, Iss, Pp 254-262 (2017)
Redox Biology
REDOX BIOLOGY(11)
Redox Biology
REDOX BIOLOGY(11)
Artesunate, an anti-malarial drug, has been repurposed as an anticancer drug due to its induction of cell death via reactive oxygen species (ROS) production. However, the molecular mechanisms regulating cancer cell death and the resistance of cells t
Publikováno v:
Shu, N, Cheng, Q, Arner, E S J & Davies, M J 2020, ' Inhibition and crosslinking of the selenoprotein thioredoxin reductase-1 by p-benzoquinone ', Redox Biology, vol. 28, 101335 . https://doi.org/10.1016/j.redox.2019.101335
Redox Biology
Redox Biology, Vol 28, Iss, Pp-(2020)
Redox Biology
Redox Biology, Vol 28, Iss, Pp-(2020)
Quinones are common in nature, and often cytotoxic. Their proposed toxicity mechanisms involve redox cycling with radical generation, and/or reactions with nucleophiles, such as protein cysteine (Cys) residues, forming adducts via Michael addition re
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::deff0ff237c1dbe23349174a540bc470
https://curis.ku.dk/portal/da/publications/inhibition-and-crosslinking-of-the-selenoprotein-thioredoxin-reductase1-by-pbenzoquinone(eca1d1e1-ad99-41d7-8ae2-ef2076fe9b7e).html
https://curis.ku.dk/portal/da/publications/inhibition-and-crosslinking-of-the-selenoprotein-thioredoxin-reductase1-by-pbenzoquinone(eca1d1e1-ad99-41d7-8ae2-ef2076fe9b7e).html
Autor:
Chuan Han Jonathan Foo, Shazib Pervaiz
Publikováno v:
Redox Biology, Vol 25, Iss, Pp-(2019)
Redox Biology
Redox Biology
RAS proteins are critical regulators of signaling networks controlling diverse cellular functions such as cell proliferation and survival and its mutation are among the most powerful oncogenic drivers in human cancers. Despite intense efforts, direct