Hecker 2015 Methods Mol Biol: Difference between revisions

From Bioblast
(Created page with "{{Publication |title=Hecker M, Sommer N, Mayer K (2015) Assessment of short- and medium-chain fatty acids on mitochondrial function in severe Infl ammation. Methods Mol Biol 1265...")
ย 
No edit summary
ย 
(3 intermediate revisions by 3 users not shown)
Line 1: Line 1:
{{Publication
{{Publication
|title=Hecker M, Sommer N, Mayer K (2015) Assessment of short- and medium-chain fatty acids on mitochondrial function in severe Infl ammation. Methods Mol Biol 1265:389-96. ย 
|title=Hecker M, Sommer N, Mayer K (2015) Assessment of short- and medium-chain fatty acids on mitochondrial function in severe Inflammation. Methods Mol Biol 1265:389-96.
|info=[http://www.ncbi.nlm.nih.gov/pubmed/25634290 PMID:25634290]
|info=[http://www.ncbi.nlm.nih.gov/pubmed/25634290 PMID:25634290]
|authors=Hecker M, Sommer N, Mayer K
|authors=Hecker M, Sommer N, Mayer K
Line 12: Line 12:
monocytes were pretreated with TNF-ฮฑ to mimic infl ammation followed by incubation with SCFA/MCFA
monocytes were pretreated with TNF-ฮฑ to mimic infl ammation followed by incubation with SCFA/MCFA
and then subjected to high-resolution respirometry. Mitochondrial DNA content was assessed by PCR.
and then subjected to high-resolution respirometry. Mitochondrial DNA content was assessed by PCR.
|keywords=Mitochondria, Respiration, Oxygen consumption, SCFA, MCFA, TNF-ฮฑ
|keywords=Mitochondria, Respiration, Oxygen consumption, SCFA, MCFA, TNF-ฮฑ, HUVEC
|mipnetlab=DE Giessen Weissmann N
}}
}}
{{Labeling
{{Labeling
|area=Respiration, mt-Biogenesis;mt-density, mtDNA;mt-genetics
|area=Respiration, mt-Biogenesis;mt-density, mtDNA;mt-genetics
|diseases=Sepsis
|organism=Human
|organism=Human
|tissues=Endothelial;epithelial;mesothelial cell
|tissues=Endothelial;epithelial;mesothelial cell
|preparations=Intact cells
|preparations=Intact cells
|diseases=Sepsis
|topics=Coupling efficiency;uncoupling, Uncoupler, Fatty acid
|topics=Coupling efficiency;uncoupling, Uncoupler, Fatty acid
|couplingstates=LEAK, ROUTINE, ETS
|couplingstates=LEAK, ROUTINE, ET
|substratestates=CII, ROX
|pathways=ROX
|instruments=Oxygraph-2k
|instruments=Oxygraph-2k
|additional=Labels
}}
}}

Latest revision as of 14:34, 13 November 2017

Publications in the MiPMap
Hecker M, Sommer N, Mayer K (2015) Assessment of short- and medium-chain fatty acids on mitochondrial function in severe Inflammation. Methods Mol Biol 1265:389-96.

ยป PMID:25634290

Hecker M, Sommer N, Mayer K (2015) Methods Mol Biol

Abstract: Mitochondrial dysfunction is regarded as one key factor involved in the pathogenesis of septic disorders, leading to a decline in energy supply. The infl uence of short- and medium-chain fatty acids (SCFA/MCFA) on mitochondrial respiration under infl ammatory conditions has thus far not been investigated. In the following protocol, we describe the assessment of mitochondrial respiration using high-resolution respirometry under infl ammatory and baseline conditions. For this approach, human endothelial cells and monocytes were pretreated with TNF-ฮฑ to mimic infl ammation followed by incubation with SCFA/MCFA and then subjected to high-resolution respirometry. Mitochondrial DNA content was assessed by PCR. โ€ข Keywords: Mitochondria, Respiration, Oxygen consumption, SCFA, MCFA, TNF-ฮฑ, HUVEC

โ€ข O2k-Network Lab: DE Giessen Weissmann N


Labels: MiParea: Respiration, mt-Biogenesis;mt-density, mtDNA;mt-genetics  Pathology: Sepsis 

Organism: Human  Tissue;cell: Endothelial;epithelial;mesothelial cell  Preparation: Intact cells 

Regulation: Coupling efficiency;uncoupling, Uncoupler, Fatty acid  Coupling state: LEAK, ROUTINE, ET  Pathway: ROX  HRR: Oxygraph-2k 


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