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Difference between revisions of "MiR06Cr"

From Bioblast
m (moved MiR07 to MiR06Cr)
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{{MitoPedia
{{MitoPedia
|abbr=MiR07
|abbr=MiR07
|description=Mitochondrial respiration medium, '''MiR07''', developed for oxygraph incubations of mitochondrial preparations - ''[[permeabilized muscle fibre]]s''. ย 
|description=Mitochondrial respiration medium, '''MiR06Cr''', developed for oxygraph incubations of mitochondrial preparations - ''[[permeabilized muscle fibre]]s''. ย 


MiR07 = [[MiR06]] + 20 mM [[Creatine|creatine]].
MiR06Cr = [[MiR06]] + 20 mM [[Creatine|creatine]].
|info=[[MiPNet14.13]]
|info=[[MiPNet14.13]]
}}
}}
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|mitopedia topic=Medium
|mitopedia topic=Medium
}}
}}
The '''oxygen solubility factor''' of MiR06Cr is the same as for [[MiR05]] and [[MiR05Cr]] = '''0.92'''.




ย 
'''Rationale:''' as for [[MiR06]] (the presence of catalase is protective, allows for reoxygenations with H2O2 injections, but prevents simultaneous measurement of H2O2 production), and less ADP needed in permeabilized muscle fibres. Thisย  is of advantage when using the TPP electrode, because ADP has a high chemical side effect.
The '''oxygen solubility factor''' of MiR07 is the same as for [[MiR05|MiR05]] and [[MiR06|MiR06]] = '''0.92'''.
ย 
ย 
'''Rationale:''' less ADP needed in permeabilized muscle fibres. Thisย  is of advantage when using the TPP electrode, because ADP has a high chemical effect.

Revision as of 07:30, 18 July 2012


high-resolution terminology - matching measurements at high-resolution


MiR06Cr

Description

Mitochondrial respiration medium, MiR06Cr, developed for oxygraph incubations of mitochondrial preparations - permeabilized muscle fibres.

MiR06Cr = MiR06 + 20 mM creatine.

Abbreviation: MiR07

Reference: MiPNet14.13


MitoPedia methods: Respirometry 


MitoPedia topics: Media for respirometry 

The oxygen solubility factor of MiR06Cr is the same as for MiR05 and MiR05Cr = 0.92.


Rationale: as for MiR06 (the presence of catalase is protective, allows for reoxygenations with H2O2 injections, but prevents simultaneous measurement of H2O2 production), and less ADP needed in permeabilized muscle fibres. This is of advantage when using the TPP electrode, because ADP has a high chemical side effect.