Template:SUIT text D009: Difference between revisions

From Bioblast
(Created page with "CCP-ce (SUIT-003 O2 ce D009) is designed to study coupling control of living cells. Respiratory capacities are tested in a sequence of coupling sta...")
 
No edit summary
 
(5 intermediate revisions by 2 users not shown)
Line 1: Line 1:
CCP-ce (SUIT-003 O2 ce D009) is designed to study [[coupling control state |coupling control]] of living cells. Respiratory capacities are tested in a sequence of coupling states: [[ROUTINE]], [[LEAK]] and [[ET]]. To study [[LEAK-respiration]], the [[phosphorylation system]] is inhibited by [[oligomycin]]. The final concentration of [[oligomycin]] has to be carefully optimized for various cell types, to minimize the inhibitory effect on the [[Electron transfer-pathway|electron transfer system]] which would lead to an underestimation of [[ET-capacity]].
The SUIT-003 O2 ce D009 (CCP-ce) is designed to study [[coupling control state |coupling control]] of living cells. Respiratory capacities are tested in a sequence of coupling states: [[ROUTINE]], [[LEAK respiration]] and [[Electron transfer pathway]]. To study [[LEAK respiration]], the [[phosphorylation system]] is inhibited by [[oligomycin]]. The final concentration of [[oligomycin]] has to be carefully optimized for various cell types, to minimize the inhibitory effect on the [[Electron transfer pathway|electron transfer system]] which would lead to an underestimation of [[ET capacity]].

Latest revision as of 12:42, 25 November 2020

The SUIT-003 O2 ce D009 (CCP-ce) is designed to study coupling control of living cells. Respiratory capacities are tested in a sequence of coupling states: ROUTINE, LEAK respiration and Electron transfer pathway. To study LEAK respiration, the phosphorylation system is inhibited by oligomycin. The final concentration of oligomycin has to be carefully optimized for various cell types, to minimize the inhibitory effect on the electron transfer system which would lead to an underestimation of ET capacity.

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