Cookies help us deliver our services. By using our services, you agree to our use of cookies. More information

Difference between revisions of "UK Bristol Halestrap AP"

From Bioblast
 
(4 intermediate revisions by 3 users not shown)
Line 1: Line 1:
{{MiPNetLab
{{O2k-Network Lab
|address=Halestrap Andrew P.
|institution=Department of Biochemistry
 
Department of Biochemistry


School of Med. Sciences
School of Med. Sciences


University of Bristol, University Walk
University of Bristol, University Walk
 
|area code=BS8 1TD
Bristol  BS8 1TD, UK
|city=Bristol
|city=Bristol
|country=United Kingdom
|country=United Kingdom
|MiPNetLab=Halestrap A, Pasdois P, Khaliulin I
|Contact=Halestrap Andrew P
|MiPNetLab=Khaliulin Igor, Pasdois Phil, Suleiman MS
|Status=O2k 2008-
|Info=[http://www.oroboros.at/index.php?id=1274 UK_Bristol_HalestrapAP]
|Info=[http://www.oroboros.at/index.php?id=1274 UK_Bristol_HalestrapAP]
}}
}}

Latest revision as of 06:11, 9 March 2016

                



UK Bristol Halestrap AP

Oroboros O2k-Network

O2k-Network
O2k-Network Lab Department of Biochemistry

School of Med. Sciences

University of Bristol, University Walk

Address , BS8 1TD
City Bristol
State/Prov
Country United Kingdom
Weblink
Contact Halestrap Andrew P
Team Khaliulin Igor, Pasdois Phil, Suleiman MS
Team previous
Status O2k 2008-
Oroboros Events
Topics


O2k-Publications

 PublishedReference
Knapp-Wilson 2021 bioRxiv2021Knapp-Wilson A, Pereira GC, Buzzard E, Richardson A, Corey RA, Neal C, Verkade P, Halestrap AP, Gold VAM, Kuwabara P, Collinson I (2021) Maintenance of complex I and respiratory super-complexes by NDUF-11 is essential for respiratory function, mitochondrial structure and health in C. elegans. bioRxiv doi: https://doi.org/10.1101/2021.01.06.425530.
Knapp-Wilson 2021 J Cell Sci2021Knapp-Wilson A, Pereira GC, Buzzard E, Ford HC, Richardson A, Corey RA, Neal C, Verkade P, Halestrap AP, Gold VAM, Kuwabara PE, Collinson I (2021) Maintenance of complex I and its supercomplexes by NDUF-11 is essential for mitochondrial structure, function and health. J Cell Sci 134:jcs258399. doi: 10.1242/jcs.258399
Pereira 2020 PLoS One2020Pereira GC, Lee L, Rawlings N, Ouwendijk J, Parker JE, Andrienko TN, Henley JM, Halestrap AP (2020) Hexokinase II dissociation alone cannot account for changes in heart mitochondrial function, morphology and sensitivity to permeability transition pore opening following ischemia. PLoS One 15:e0234653.
Detaille 2019 PLoS One2019Detaille D, Pasdois P, Sémont A, Dos Santos P, Diolez P (2019) An old medicine as a new drug to prevent mitochondrial complex I from producing oxygen radicals. PLoS One 14:e0216385.
Hansson 2015 Eur J Pharmacol2015Hansson MJ, Llwyd O, Morin D, de Paulis D, Arnoux T, Gouarné C, Koul S, Engblom H, Bordet T, Tissier R, Arheden H, Erlinge D, Halestrap AP, Berdeaux A, Pruss RM, Schaller S (2015) Differences in the profile of protection afforded by TRO40303 and mild hypothermia in models of cardiac ischemia/reperfusion injury. Eur J Pharmacol 760:7-19.
Littlejohns 2014 PLoS One2014Littlejohns B, Pasdois P, Duggan S, Bond AR, Heesom K, Jackson CL, Angelini GD, Halestrap AP, Suleiman MS (2014) Hearts from mice fed a non-obesogenic high-fat diet exhibit changes in their oxidative state, calcium and mitochondria in parallel with increased susceptibility to reperfusion injury. PLoS One 9:e100579.
Pasdois 2012 J Am Heart Assoc2012Pasdois P, Parker JE, Halestrap AP (2012) Extent of mitochondrial hexokinase II dissociation during ischemia correlates with mitochondrial cytochrome c release, reactive oxygen species production, and infarct size on reperfusion. J Am Heart Assoc 2:e005645.
Pasdois 2011 Biochem J2011Pasdois P, Parker JE, Griffiths EJ, Halestrap AP (2011) The role of oxidized cytochrome c in regulating mitochondrial reactive oxygen species production and its perturbation in ischaemia. Biochem J 436:493-505.

O2k-Abstracts

update please