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Difference between revisions of "O2k-PublicationAlert2020 Archive"

From Bioblast
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* '''May-12 Tu'''  
* '''May-12 Tu'''  
{|
{|
| width="100" align="center" | [[Image:O2k-Publications.jpg|60px|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]]
|''' Mitochondria - a driving force in adipocyte differentiation''' <br>
|''' Mitochondria - a driving force in adipocyte differentiation''' <br>
- from the O2k-Network »[[CZ Pilsen Kuncova J]]«<br>
: from the O2k-Network »[[CZ Pilsen Kuncova J]]«<br>
Kladnická I, Čedíková M, Kripnerová M, Dvořáková J, Kohoutová M, Tůma Z, Müllerová D, Kuncová J (2019) Mitochondrial respiration of adipocytes differentiating from human mesenchymal stem cells derived from adipose tissue. Physiol Res 68:287-96.  [[Kladnicka 2019 Physiol Res|»Bioblast link«]]
* Kladnická I, Čedíková M, Kripnerová M, Dvořáková J, Kohoutová M, Tůma Z, Müllerová D, Kuncová J (2019) Mitochondrial respiration of adipocytes differentiating from human mesenchymal stem cells derived from adipose tissue. Physiol Res 68:287-96.  [[Kladnicka 2019 Physiol Res|»Bioblast link«]]
|}
|}
<br>
<br>
* '''May-12 Tu'''
::::[[Image:O2k-Publications.jpg|60px|link=http://wiki.oroboros.at/index.php/O2k-Publications:_Topics |O2k-Publications in the MiPMap]]''' Mitochondria - a driving force in adipocyte differentiation'''
::::::: - from the O2k-Network »[[CZ Pilsen Kuncova J]]«
::::::* Kladnická I, Čedíková M, Kripnerová M, Dvořáková J, Kohoutová M, Tůma Z, Müllerová D, Kuncová J (2019) Mitochondrial respiration of adipocytes differentiating from human mesenchymal stem cells derived from adipose tissue. Physiol Res 68:287-96. [[Kladnicka 2019 Physiol Res|»Bioblast link«]]
* '''May-05 Tu'''  
* '''May-05 Tu'''  
 
{|
::::[[Image:O2k-Publications.jpg|60px|link=http://wiki.oroboros.at/index.php/O2k-Publications:_Topics |O2k-Publications in the MiPMap]]''' Expression of alternative oxidase prevents reverse electron transfer formation in heart mitochondria isolated from mouse'''
| width="100" align="center" | [[Image:O2k-Publications.jpg|70px|link=http://wiki.oroboros.at/index.php/O2k-Publications:_Topics |O2k-Publications in the MiPMap]]
 
|''' Expression of alternative oxidase prevents reverse electron transfer formation in heart mitochondria isolated from mouse''' <br>
::::::: - from the O2k-Network »[[FI Helsinki Jacobs HT]]«  »[[DE Magdeburg Gellerich FN]]« »[[FI Tampere Dufour E]]« »[[DE Magdeburg Debska-Vielhaber G]]« »[[DE Frankfurt Wittig I]]« and »[[UK Brighton Moore AL]]«
: from the O2k-Network »[[FI Helsinki Jacobs HT]]«  »[[DE Magdeburg Gellerich FN]]« »[[FI Tampere Dufour E]]« »[[DE Magdeburg Debska-Vielhaber G]]« »[[DE Frankfurt Wittig I]]« and »[[UK Brighton Moore AL]]«<br>
::::::* Szibor Marten, Gainutdinov Timur, Fernandez-Vizarra Erika, Dufour Eric, Gizatullina Zemfira, Debska-Vielhaber Grazyna, Heidler Juliana, Wittig Ilka, Viscomi Carlo, Gellerich Frank Norbert, Moore Anthony L (2019) Bioenergetic consequences from xenotopic expression of a tunicate AOX in mouse mitochondria: switch from RET and ROS to FET. Biochim Biophys Acta Bioenerg 1861:148137. [[Szibor 2019 Biochim Biophys Acta Bioenerg|»Bioblast link«]]
* Szibor Marten, Gainutdinov Timur, Fernandez-Vizarra Erika, Dufour Eric, Gizatullina Zemfira, Debska-Vielhaber Grazyna, Heidler Juliana, Wittig Ilka, Viscomi Carlo, Gellerich Frank Norbert, Moore Anthony L (2019) Bioenergetic consequences from xenotopic expression of a tunicate AOX in mouse mitochondria: switch from RET and ROS to FET. Biochim Biophys Acta Bioenerg 1861:148137. [[Szibor 2019 Biochim Biophys Acta Bioenerg|»Bioblast link«]]
|}
<br>


== Apr 2020 ==
== Apr 2020 ==

Revision as of 08:31, 5 May 2020

» Listed in Oroboros Ecosystem Agenda 2020

May 2020

  • May-12 Tu
O2k-Publications in the MiPMap Mitochondria - a driving force in adipocyte differentiation
from the O2k-Network »CZ Pilsen Kuncova J«
  • Kladnická I, Čedíková M, Kripnerová M, Dvořáková J, Kohoutová M, Tůma Z, Müllerová D, Kuncová J (2019) Mitochondrial respiration of adipocytes differentiating from human mesenchymal stem cells derived from adipose tissue. Physiol Res 68:287-96. »Bioblast link«


  • May-05 Tu
O2k-Publications in the MiPMap Expression of alternative oxidase prevents reverse electron transfer formation in heart mitochondria isolated from mouse
from the O2k-Network »FI Helsinki Jacobs HT«  »DE Magdeburg Gellerich FN« »FI Tampere Dufour E« »DE Magdeburg Debska-Vielhaber G« »DE Frankfurt Wittig I« and »UK Brighton Moore AL«
  • Szibor Marten, Gainutdinov Timur, Fernandez-Vizarra Erika, Dufour Eric, Gizatullina Zemfira, Debska-Vielhaber Grazyna, Heidler Juliana, Wittig Ilka, Viscomi Carlo, Gellerich Frank Norbert, Moore Anthony L (2019) Bioenergetic consequences from xenotopic expression of a tunicate AOX in mouse mitochondria: switch from RET and ROS to FET. Biochim Biophys Acta Bioenerg 1861:148137. »Bioblast link«


Apr 2020

  • Apr-24 Fr
Electron transport chain
MitoPedia ETC - the electron transport chain - is the most frequently applied misnomer in bioenergetics. Y Hatefi in the team of DE Green clarified this 58 years ago, introducing the concept of the electron transfer system.

- »Hatefi 1962 J Biol Chem-XLII«


  • Apr-21 Tu
Citrate synthase
MitoPedia Citrate synthase activity is commonly applied as a mitochondrial marker - and erroneous applications are common in the literature.

- »MiPNet17.04 CitrateSynthase«


  • Apr-13 Mo
MitoPedia: SUIT Is your mitochondrial preparation contaminated with other membranous organelles containing ATPases?

DatLab 7.4 provides a step-by-step guide through the SUIT-024 as a quality control protocol of the mitochondrial preparation
- »SUIT-024«


  • Apr-08 We
MitoPedia: SUIT The optimum effective digitonin concentration for complete plasma membrane permeabilization without mitochondrial outer membrane damage.

DatLab 7.4 provides a step-by-step guide through the SUIT-010 protocol to test the optimum digitonin concentration.
- »SUIT-010«


  • Apr-02 Th
MitoPedia: SUIT Do you want to search the best SUIT protocol for your research questions?

- Use the SUITbrowser: »SUITbrowser«


Mar 2020

  • Mar-16 Mo
MitoPedia: SUIT The standardized coupling control protocol to explore the bioenergetics of living cells

DatLab 7.4 provides a step-by-step guide through the SUIT-003 protocol and its extensions.
- »SUIT-003«



  • Mar-11 We
MitoPedia Does blebbistatin reduce oxygen dependence of respiration of permeabilized muscle fibers? This is one of the questions addressed in the COST Action CA15203 MitoEAGLE WG2.

- »Blebbistatin«



  • Mar-06 Fr
MitoPedia: SUIT Explore metabolic profiles and specific modulations of mitochondrial pathways in health and disease with SUIT reference protocols.

- »RP1« and »RP2«



  • Mar-03 Tu
MitoPedia Rapamycin - more differences or more in common with other mitObesity drugs?

- »Rapamycin«


Feb 2020

  • Feb-26 We
MitoPedia It is essential to titrate uncouplers in multiple steps for respirometric measurement of electron transfer capacity.

- »Noncoupled respiration«



  • Feb-24 Mo
MitoPedia More research is needed on the impact of viral infection on mitochondrial function.

- »Viruses and mitochondrial medicine«



  • Feb-19 We
MitoPedia Spermidine and other calorie restriction mimetics control autophagy and mitochondrial function.

- »Spermidine«



  • Feb-18 Tu
MitoPedia Why do we fight gas bubbles?

- Dive deep into »Oxygen solubility«



  • Feb-12 We
MitoPedia What do metformin, melatonin and other bioactive mitObesity compounds have in common?

- »MitObesity drugs«


Jan 2020

  • Jan-16 Th
MitoPedia Oxygen flux

- which SI units should be used?


MitoPedia Did you ever think that units for body mass could be an issue?

- »Body mass«



  • Jan-08 We
MitoPedia Force and Energy: this we all need in the New Year - and MitoPedia may help to clarify the difference.