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

Property:Has title

From Bioblast

This is a property of type Text.

Showing 50 pages using this property.
A
[[File:ASMRM LOGO.JPG|200px|right]] '''Busan, KR''', 2018 Nov 07-08. 15th Conference of the Asian Society of Mitochondrial Research and Medicine.  +
[[File:ASMRM LOGO.JPG|120px|right]] '''Singapore, SG''', 2021. ASMRM 2020.  +
'''Hall in Tirol, AT''', 2023 Apr 13-15. ATSPB 2023: Plants in the context of food security, biodiversity and climate change  +
Is there a systemic mitochondrial biogenic response to aerobic training? Mitochondrial respiration in platelets from athletes forced to rest following a knee injury.  +
[[File:Eleonor A Frostner.jpg|left|90px|Åsander Frostner Eleonor]] Cell-permeable succinate and malonate as research tools. [[Media:Aasander_Frostner_Poster_MiP2017.pdf|Aasander Frostner_Poster]]  +
[[File:Eleonor A Frostner.jpg|left|90px|Eleonor Aasander Frostner]] No abstract, Co-autor of [[Avram 2019 MiP2019]] and [[Betiu 2019 MiP2019]].  +
8.1. '''«10+5»''' [[File:Eleonor A Frostner.jpg|left|100px|Åsander Frostner Eleonor]] <u>Åsander Frostner Eleonor</u>, SimĂłn Serrano S, Chamkha I, Donnelly E, ElmĂ©r E, Hansson MJ (2022) Towards a treatment for mitochondrial disease: current compounds in clinical development. '''Bioblast 2022: BEC Inaugural Conference.''' In: https://doi.org/10.26124/bec:2022-0001 <br>[[Aasander Frostner 2022 BEC|»''Bioenergetics Communications''«]] [[File:WatchThePresentationYoutube_icon.jpg|200px|link=https://www.youtube.com/watch?v=2--Bt1T7Zu0&t=0s|»''Watch the presentation''«]]  +
<big>Åsander Frostner E, SimĂłn Serrano S, Chamkha I, Donnelly E, ElmĂ©r E, Hansson MJ (2022) Towards a treatment for mitochondrial disease: current compounds in clinical development. Bioenerg Commun 2022.4. https://doi.org/10.26124/bec:2022-0004</big>  +
Åsander Frostner E, SimĂłn Serrano S, Chamkha I, Donnelly E, ElmĂ©r E, Hansson MJ (2022) Towards a treatment for mitochondrial disease: current compounds in clinical development. https://doi.org/10.26124/mitofit:2022-0014 — ''2022-06-28 published in [https://www.bioenergetics-communications.org/index.php/bec/article/view/aasander_frostner_2022 '''Bioenerg Commun 2022.4.''']''  +
MSc Communications Officer & Lab Manager [http://orcid.org/0000-0001-8426-4836 ORCID ID]  +
[[File:MITOEAGLE-representation.jpg|left|60px|link=http://www.mitoglobal.org/index.php/MITOEAGLE|COST Action MITOEAGLE]] Mitochondrial function in the diabetic heart – effect of an acute fat-load.  +
Prof., PhD.  +
Dr.  +
Abbasi K (2018) A giant step for science: JRSM welcomes preprints in medical science. J R Soc Med 111:263.  +
'''Cambridge, UK''', 2018 Jun 25-27. Cancer and Metabolism conference.  +
'''London UK''', 2014 Feb 26. Abcam Mitochondria Meeting 2014: Mitochondria, Energy Metabolism and Cancer [http://www.abcam.com/index.html?pageconfig=resource&rid=16185&viapagetrap=mitochondriafeb Abcam Mitochondria Meeting 2014]  +
Assessment of NADPH-dependent oxygen consumption and hydrogen peroxide production by high-resolution respirometry and EPR spectroscopy.  +
Abdel-Rahman EA, Mokhtar A, Aaliya A, Radwan Y, Yasseen B, Al-Okda A, Atwa A, Elhanafy E, Habashy M, Ali SS (2016) Resolving contributions of oxygen-consuming and ROS-generating enzymes at the synapse. Oxid Med Cell Longev p19.  +
[[Image:MiPsocietyLOGO.JPG|left|90px|Mitochondrial Physiology Society|MiPsociety]]Mitochondrial respiration in platelets of children with autism spectrum disorder.  +
[[Image:MiPsocietyLOGO.JPG|left|90px|Mitochondrial Physiology Society|MiPsociety]] Diurnal changes in calcium dynamics, respiratory function, and ROS production in cardiac mitochondria.  +
[[Image:MiPsocietyLOGO.JPG|left|90px|Mitochondrial Physiology Society|MiPsociety]]  +
Abdel-Rahman EA, Zaky EA, Aboulsaoud M, Elhossiny RM, Youssef WY, Mahmoud AM, Ali SS (2021) Autism spectrum disorder (ASD)-associated mitochondrial deficits are revealed in children's platelets but unimproved by hyperbaric oxygen therapy. Free Radic Res 55:26-40.  +
Abdel-Rahman EA, Hosseiny S, Aaliya A, Adel M, Yasseen B, Al-Okda A, Radwan Y, Saber SH, Elkholy N, Elhanafy E, Walker EE, Zuniga-Hertz JP, Patel HH, Griffiths HR, Ali SS (2021) Sleep/wake calcium dynamics, respiratory function, and ROS production in cardiac mitochondria. https://doi.org/10.1016/j.jare.2021.01.006  +
Abdelwahab EMM, Pal S, Kvell K, Sarosi V, Bai P, Rue R, Krymskaya V, McPhail D, Porter A, Pongracz JE (2018) Mitochondrial dysfunction is a key determinant of the rare disease lymphangioleiomyomatosis and provides a novel therapeutic target. Oncogene 38:3093-3101.  +
Abdill RJ, Blekhman R (2019) Tracking the popularity and outcomes of all bioRxiv preprints. bioRxiv https://doi.org/10.1101/515643.  +
Abdurrachim D, Ciapaite J, Wessels B, Nabben M, Luiken JJ, Nicolay K, Prompers JJ (2014) Cardiac diastolic dysfunction in high-fat diet fed mice is associated with lipotoxicity without impairment of cardiac energetics ''in vivo''. Biochim Biophys Acta 1842:1525-37.  +
Abdurrachim D, Nabben M, Hoerr V, Kuhlmann MT, Bovenkamp P, Ciapaite J, Geraets IME, Coumans W, Luiken JJFP, Glatz JFC, SchĂ€fers M, Nicolay K, Faber C, Hermann S, Prompers JJ (2017) Diabetic db/db mice do not develop heart failure upon pressure overload: a longitudinal ''in vivo'' PET, MRI, and MRS study on cardiac metabolic, structural, and functional adaptations. Cardiovasc Res 113:1148-60.  +
<big>Abed Rabbo M, Stiban J (2022) NUBPL: a mitochondrial Complex I deficiency disorder. Bioenerg Commun 2022.3. https://doi.org/10.26124/bec:2022-0003</big>  +
Abed Rabbo M, Stiban J (2022) NUBPL: a mitochondrial Complex I deficiency disorder. https://doi.org/10.26124/mitofit:2022-0005 — ''2022-06-28 published in [https://www.bioenergetics-communications.org/index.php/bec/article/view/abed_rabbo_2022 '''Bioenerg Commun 2022.3.''']''  +
Abegg VF, Panajatovic MV, Mancuso RV, Allard JA, Duthaler U, Odermatt A, KrĂ€henbĂŒhl S, Bouitbir J (2024) Mechanisms of hepatocellular toxicity associated with the components of St. John's Wort extract hypericin and hyperforin in HepG2 and HepaRG cells. https://doi.org/10.1016/j.toxlet.2024.01.008  +
[[File:Abel ED.jpg|right|150px]] MD, PhD Chair/Department Executive Officer, Department of Internal Medicine Director Professor of Internal Medicine - Endocrinology and Metabolism Professor of Biochemistry Professor of Biomedical Engineering (BME)  +
Abella P, Valez V, Vaamonde L, Blasina F, Rodriguez-Rey M (2023) Severe acute neonatal hypoxia: mitochondrial dysfunction at an animal model and the role of nitric oxide. Mitochondr Physiol Network 28.01.  +
Aberg F, Appelkvist EL, Dallner G, Ernster L (1992) Distribution and redox state of ubiquinones in rat and human tissues. Arch Biochem Biophys 295:230-4.  +
Abid H, Hart C, Lanza I (2019) Effects of local interleukin-6 on mitochondrial physiology in skeletal muscle. J Clin Transl Sci.  +
Abid H, Ryan ZC, Delmotte P, Sieck GC, Lanza IR (2020) Extramyocellular interleukin-6 influences skeletal muscle mitochondrial physiology through canonical JAK/STAT signaling pathways. FASEB J 34:14458-72.  +
MSc  +
Abou-Hamdan A, Guedouari-Bounihi H, Lenoir V, Andriamihaja M, Blachier F, Bouillaud F (2015) Oxidation of H2S in mammalian cells and mitochondria. Methods Enzymol 554:201-28.  +
Abu Bakar MH, Shariff KA, Tan JS, Lee LK (2020) Celastrol attenuates inflammatory responses in adipose tissues and improves skeletal muscle mitochondrial functions in high fat diet-induced obese rats via upregulation of AMPK/SIRT1 signaling pathways. Eur J Pharmacol 883:173371.  +
Dr.  +
Dr.  +
[[File:IMS_LOGO.png|120px|right|International Mountain Summit]] '''Brixen Dolomites IT''', 2017 Oct 13. Acclimatization and High Altitude Illness - Facts and Myths  +
[https://www.springer.com/journal/769 Accreditation and Quality Assurance]  +
Achreja A, Yu T, Mittal A, Choppara S, Animasahun O, Nenwani M, Wuchu F, Meurs N, Mohan A, Jeon JH, Sarangi I, Jayaraman A, Owen S, Kulkarni R, Cusato M, Weinberg F, Kweon HK, Subramanian C, Wicha MS, Merajver SD, Nagrath S, Cho KR, DiFeo A, Lu X, Nagrath D (2022) Metabolic collateral lethal target identification reveals MTHFD2 paralogue dependency in ovarian cancer. Nat Metab 4:1119-37. https://doi.org/10.1038/s42255-022-00636-3  +
AcĂ­n-PĂ©rez R, FernĂĄndez-Silva P, Peleato ML, PĂ©rez-Martos A, Enriquez JA (2008) Respiratory active mitochondrial supercomplexes. Mol Cell 32:529-39. doi: 10.1016/j.molcel.2008.10.021.  +
Acin-Perez R, BenincĂĄ C, Shabane B, Shirihai OS, Stiles L (2021) Utilization of human samples for assessment of mitochondrial bioenergetics: gold standards, limitations, and future perspectives. Life (Basel) 11:949. doi: 10.3390/life11090949  +
Acker T, Fandrey J, Acker H (2006) The good, the bad and the ugly in oxygen-sensing: ROS, cytochromes and prolyl-hydroxylases. Cardiovasc Res 71:195-207.  +