mitochondria

  1. Sly Saint

    Article: Metallic nanoflowers heal brain cells and extend lifespan in stunning new research

    https://interestingengineering.com/health/brain-healing-nanoflowers-treatment :emoji_rosette:
  2. SNT Gatchaman

    ROS transfer at peroxisome-mitochondria contact regulates mitochondrial redox, 2025, DiGiovanni et al.

    ROS transfer at peroxisome-mitochondria contact regulates mitochondrial redox Laura F. DiGiovanni; Prabhsimran K. Khroud; Ruth E. Carmichael; Tina A. Schrader; Shivneet K. Gill; Kyla Germain; Robert Y. Jomphe; Christoph Wiesinger; Maxime Boutry; Maki Kamoshita; Daniel Snider; Garret Stubbings...
  3. Wyva

    Review Mitochondrial dysfunction in acute and post-acute phases of COVID-19 and risk of non-communicable diseases, 2024, Borland Madsen et al

    Abstract The COVID-19 pandemic, caused by SARS-CoV-2, has resulted in widespread morbidity and mortality, with a significant portion of the affected population experiencing long-term health complications. This review explores the mechanisms of mitochondrial dysfunction in both the acute and...
  4. SNT Gatchaman

    Endothelial TERT drives microvascular phenotype associated with coronary artery disease, 2025, Birch et al.

    Endothelial TERT drives microvascular phenotype associated with coronary artery disease Erin C. Birch; Yoshinori Nishijima; Shelby N. Hader; Andreas M. Beyer Microvascular endothelial dysfunction is a powerful predictor of future atherosclerotic cardiac events. Our previous studies revealed...
  5. John Mac

    Review Redefining Mitochondrial Therapy for ME/CFS: The Case for MOTS-c, 2025, Klimas et al

    https://www.preprints.org/manuscript/202507.0058/v1 Abstract Myalgic Encephalomyelitis/Chronic Fatigue Syndrome (ME/CFS) is a debilitating, multi-system disease characterized by profound fatigue, post-exertional malaise (PEM), and a constellation of immune, neurological, and autonomic symptoms...
  6. jnmaciuch

    Electron-Microscopic Investigation of Muscle Mitochondria in Chronic Fatigue Syndrome, 1995, Plioplys & Plioplys

    Electron-Microscopic Investigation of Muscle Mitochondria in Chronic Fatigue Syndrome Audrius V. Plioplys; Sigita Plioplys Abstract Patients with chronic fatigue syndrome (CFS) suffer from disabling physical and mental fatigue. Abnormalities in mitochondrial function can lead to fatigue and...
  7. jnmaciuch

    IFNγ causes mitochondrial dysfunction and oxidative stress in myositis, 2024, Abad et al.

    IFNγ causes mitochondrial dysfunction and oxidative stress in myositis Catalina Abad, Iago Pinal-Fernandez, Clement Guillou, Gwladys Bourdenet, Laurent Drouot, Pascal Cosette, Margherita Giannini, Lea Debrut, Laetitia Jean, Sophie Bernard, Damien Genty, Rachid Zoubairi, Isabelle Remy-Jouet...
  8. SNT Gatchaman

    Review Mitochondrial innate immune signaling in skeletal muscle adaptation to exercise, 2025, Ma, Hwang et al.

    Mitochondrial innate immune signaling in skeletal muscle adaptation to exercise Jin Ma; Annie Yujin Son; Youlim Son; Ping-yuan Wang; Paul M. Hwang Exercise-induced inflammation is regarded as a response to muscle damage from mechanical stress, but controlled immune signaling can be beneficial...
  9. chillier

    Indistinguishable mitochondrial phenotypes after exposure of healthy myoblasts to myalgic encephalomyelitis or control serum, 2026, Ryback et al

    See post #76 for peer-reviewed version. Indistinguishable mitochondrial phenotypes after exposure of healthy myoblasts to myalgic encephalomyelitis or control serum Audrey A. Ryback, Charles Hillier, Camila M Loureiro, Chris P Ponting, Caroline F Dalton Myalgic Encephalomyelitis (ME)/Chronic...
  10. Dolphin

    Heat vs. Fatigue: Hyperthermia as a Possible Treatment Option for Myalgic Encephalomyelitis/Chronic Fatigue Syndrome (ME/CFS), 2025, Hochecker

    https://www.mdpi.com/1422-0067/26/11/5339# Open Access Article Heat vs. Fatigue: Hyperthermia as a Possible Treatment Option for Myalgic Encephalomyelitis/Chronic Fatigue Syndrome (ME/CFS) by Barbara Hochecker 1,*, Katja Matt 1, Melanie Scherer 1, Alica Meßmer 1, Alexander von Ardenne 2...
  11. SNT Gatchaman

    Preprint The Role of SARS-CoV-2 Nucleocapsid Protein Persistence in Inducing Chronic Type I Interferon and Mitochondrial Dysfunction., 2025, Koenig et al.

    The Role of SARS-CoV-2 Nucleocapsid Protein Persistence in Inducing Chronic Type I Interferon and Mitochondrial Dysfunction. Andreas Koenig; Mohammad Quasem; Benjamin Zink; Doniyorbek Abdulla-Zoda; Priyanka Karunanidhi; Karolina Sienko; Christian Geier; Venkatesh Jayaraman; Rabia Malik; Kanza...
  12. Sly Saint

    Natural polyphenol boosts mitochondrial function and muscle performance during aging

    Natural polyphenol boosts mitochondrial function and muscle performance during aging I recently started taking olive leaf extract for quite different reasons before I found this, so it will be interesting to see if it has any other beneficial effects.
  13. forestglip

    [Transcriptome] in PBMCs of [LC] at a median follow-up of 28 months [...] reveals upregulation of JAK/STAT [...], 2025, Fineschi et al

    Comprehensive transcriptome assessment in PBMCs of post-COVID patients at a median follow-up of 28 months after a mild COVID infection reveals upregulation of JAK/STAT signaling and a prolonged immune response Serena Fineschi, Joakim Klar, Juan Ramon Lopez Egido, Jens Schuster, Jonas Bergquist...
  14. SNT Gatchaman

    Review Regulation of synaptic mitochondria by extracellular vesicles and its implications for neuronal metabolism and synaptic plasticity, 2025,Zeng,Antoniou

    Regulation of synaptic mitochondria by extracellular vesicles and its implications for neuronal metabolism and synaptic plasticity Yuzhou Zeng; Anna Antoniou Mitochondrial metabolism in neurons is necessary for energetically costly processes like synaptic transmission and plasticity. As...
  15. SNT Gatchaman

    Persistent Monocytic Bioenergetic Impairment and Mitochondrial DNA Damage in PASC Patients with Cardiovascular Complications, 2025, Semo+

    Persistent Monocytic Bioenergetic Impairment and Mitochondrial DNA Damage in PASC Patients with Cardiovascular Complications Semo, Dilvin; Shomanova, Zornitsa; Sindermann, Jürgen; Mohr, Michael; Evers, Georg; Motloch, Lukas J.; Reinecke, Holger; Godfrey, Rinesh; Pistulli, Rudin Cardiovascular...
  16. SNT Gatchaman

    A human brain map of mitochondrial respiratory capacity and diversity, 2025, Mosharov et al.

    A human brain map of mitochondrial respiratory capacity and diversity Mosharov, Eugene V.; Rosenberg, Ayelet M.; Monzel, Anna S.; Osto, Corey A.; Stiles, Linsey; Rosoklija, Gorazd B.; Dwork, Andrew J.; Bindra, Snehal; Junker, Alex; Zhang, Ya; Fujita, Masashi; Mariani, Madeline B.; Bakalian...
  17. SNT Gatchaman

    Preprint Systemic Multi-Omics … Reveals Interferon Response Heterogeneity & Links Lipid Metabolism to Immune Alterations in Severe COVID, 2025, Lira-Junior+

    Systemic Multi-Omics Analysis Reveals Interferon Response Heterogeneity and Links Lipid Metabolism to Immune Alterations in Severe COVID-19 Ronaldo Lira-Junior; Anoop Ambikan; Axel Cederholm; Ssefanit Rezene; Flora Mikaeloff; Sara Svensson Akusjarvi; Ahmet Yalcinkaya; Xi Chen; Maike Sperk...
  18. Sly Saint

    POLG diseases: Rare genetic conditions that starve cells of energy

    POLG diseases: Rare genetic conditions that starve cells of energy and afflicted the late Prince of Luxembourg
  19. SNT Gatchaman

    Review Mitochondrial Dysfunction in Myalgic Encephalomyelitis/Chronic Fatigue Syndrome, 2025, Syed, Karius, Wang, Hwang

    Mitochondrial Dysfunction in Myalgic Encephalomyelitis/Chronic Fatigue Syndrome Abu Mohammad Syed; Alexander K. Karius; Jin Ma; Ping-yuan Wang; Paul M. Hwang ME/CFS is a debilitating multisystem disorder of unclear etiology that affects many individuals worldwide. One of its hallmark symptoms...
  20. SNT Gatchaman

    Rhodoquinone carries electrons in the mammalian electron transport chain, 2025, Valeros et al.

    Rhodoquinone carries electrons in the mammalian electron transport chain Jonathan Valeros et 31 al. Ubiquinone (UQ), the only known electron carrier in the mammalian electron transport chain (ETC), preferentially delivers electrons to the terminal electron acceptor oxygen (O2). In hypoxia...
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