Template:Current week ecosystem agenda: Difference between revisions

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Β  2020 Week 36
Β  2020 Week 35
Β 
* '''Aug-31 Mo'''


* '''Aug-24 Mo'''
:{|
| width="110" align="center" | [[File:MitoPedia.jpg|left|80px|MitoPedia|link=MitoPedia]]
|'''Can NADH be used as an externally added substrate to obtain the [[NADH electron transfer-pathway state]] in [[Mitochondrial_respiration |mitochondrial respiration]]? '''<br>
No, in most types of intact mitochondria NADH cannot pass the [[mitochondrial inner membrane]] (mtIM). Yeast mitochondria are an exception. <br>
- Β»[[Nicotinamide_adenine_dinucleotide|Nicotinamide adenine dinucleotide]]Β« and Β»[[MitoPedia:_Substrates_and_metabolites|Substrates and metabolites]]Β«
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* '''Aug-25 Tu'''
* '''Sep-01 Tu'''
Β 
:{|
:{|
| width="100" align="center" |[[Image:O2k-Publications.jpg|70px|link=http://wiki.oroboros.at/index.php/O2k-Publications:_Topics |O2k-Publications in the MiPMap]]
| width="100" align="center" |[[Image:O2k-Publications.jpg|70px|link=http://wiki.oroboros.at/index.php/O2k-Publications:_Topics |O2k-Publications in the MiPMap]]
|'''Low-intensity exercise increases fat oxidation in mitochondria of blood mononuclear cells from sedentary adults'''<br>
|'''A cell-permeable succinate prodrug can alleviate N-methyl carbamate-induced Complex I dysfunction'''<br>
:from the O2k-Network Β»[[LV Riga Makrecka-Kuka M]]Β«
:from the O2k-Network Β»[[US PA Philadelphia Kilbaugh T]]Β«, Β»[[US PA Philadelphia Jang DH]]Β« and Β»[[SE Lund Elmer E]]Β«
*Liepinsh E, Makarova E, Plakane L, Konrade I, Liepins K, Videja M, Sevostjanovs E, Grinberga S, Makrecka-Kuka M, Dambrova M (2020) Low-intensity exercise stimulates bioenergetics and increases fat oxidation in mitochondria of blood mononuclear cells from sedentary adults. Physiol Rep 8:e14489. β€” [[Liepinsh 2020 Physiol Rep|Β»Bioblast linkΒ«]]
*Janowska JI, Piel S, Saliba N, Kim CD, Jang DH, Karlsson M, Kilbaugh TJ, Ehinger JK (2020) Mitochondrial respiratory chain Complex I dysfunction induced by N-methyl carbamate ex vivo can be alleviated with a cell-permeable succinate prodrug carbamate toxicity and treatment. Toxicol In Vitro 65:104794. [[Janowska 2020 Toxicol In Vitro|Β»Bioblast linkΒ«]]
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* '''Aug-26 We''' Β 
* '''Sep-02 We'''


:{|
| width="110" align="center" | [[File:MitoPedia.jpg|left|80px|MitoPedia|link=MitoPedia]]
| '''Non-mitochondrial respiration or [[residual oxygen consumption]] (''Rox'')? β€” Concept-driven constructive terminology frames our perception.'''
After inhibition of electron-transfer (ET) pathways or in the absence of fuel substrates, both ''mitochondrial'' non-ET reactions and ''non-mitochondrial'' reactions contribute to ''residual oxygen consumption'' in mt-preparations and living cells.Β  <br>
- Β»'''[https://www.bioenergetics-communications.org/index.php/BEC_2020.1_doi10.26124bec2020-0001.v1 BEC: Mitochondrial physiology]'''Β« β€” Table 1: ''Rox'' induced by non-ET pathway oxidation reactions
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* '''Aug-27 Th''' Β 
* '''Sep-03 Th'''
Β 
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* '''Sep-04 Fr'''
Β 
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* '''Sep-05 Sa'''
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* '''Aug-28 Fr'''
* '''Sep-06 So''' Β 
::::* Abstract submission deadline - Β»[[ESSR 2020 Innsbruck AT]]Β«

Revision as of 08:15, 31 August 2020

2020 Week 36
  • Aug-31 Mo

  • Sep-01 Tu
O2k-Publications in the MiPMap A cell-permeable succinate prodrug can alleviate N-methyl carbamate-induced Complex I dysfunction
from the O2k-Network Β»US PA Philadelphia Kilbaugh TΒ«, Β»US PA Philadelphia Jang DHΒ« and Β»SE Lund Elmer EΒ«
  • Janowska JI, Piel S, Saliba N, Kim CD, Jang DH, Karlsson M, Kilbaugh TJ, Ehinger JK (2020) Mitochondrial respiratory chain Complex I dysfunction induced by N-methyl carbamate ex vivo can be alleviated with a cell-permeable succinate prodrug carbamate toxicity and treatment. Toxicol In Vitro 65:104794. Β»Bioblast linkΒ«

  • Sep-02 We



  • Sep-03 Th

  • Sep-04 Fr

  • Sep-05 Sa

  • Sep-06 So
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