Open Access. Powered by Scholars. Published by Universities.®
Systems and Integrative Physiology Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Cell and Developmental Biology (2)
- Medicine and Health Sciences (2)
- Anatomy (1)
- Biochemistry, Biophysics, and Structural Biology (1)
- Body Regions (1)
-
- Cell Biology (1)
- Cellular and Molecular Physiology (1)
- Developmental Neuroscience (1)
- Diseases (1)
- Medical Education (1)
- Medical Neurobiology (1)
- Medical Sciences (1)
- Medical Specialties (1)
- Molecular and Cellular Neuroscience (1)
- Nervous System (1)
- Nervous System Diseases (1)
- Neurology (1)
- Neuroscience and Neurobiology (1)
- Neurosciences (1)
- Other Biochemistry, Biophysics, and Structural Biology (1)
- Other Life Sciences (1)
- Other Neuroscience and Neurobiology (1)
- Other Pharmacology, Toxicology and Environmental Health (1)
- Other Physiology (1)
- Other Public Health (1)
- Pharmacology, Toxicology and Environmental Health (1)
- Public Health (1)
- Keyword
Articles 1 - 3 of 3
Full-Text Articles in Systems and Integrative Physiology
Impact Of Liver-Secreted Small Extracellular Vesicles On Myotube Funcation, Tatiana Barrantes, Ioannis Tsialtas, Qing Zhang, Kevin Koronowski
Impact Of Liver-Secreted Small Extracellular Vesicles On Myotube Funcation, Tatiana Barrantes, Ioannis Tsialtas, Qing Zhang, Kevin Koronowski
Posters - 2026
Extracellular vesicles (EVs) mediate intercellular communication by transferring molecular signals between tissues. Liver-derived EVs contribute to metabolic regulation and have been implicated in tissue cross-talk during health and disease. Skeletal muscle is a highly metabolic tissue that depends on mitochondrial respiration for energy production. However, whether liver-secreted EVs influence myotube mitochondrial function remains unclear. Here, we investigate the impact of liver-derived EVs on myotube mitochondrial respiration.
Principles Of Biomedical Research, Faina Linkov, Matthew C. Kostek
Principles Of Biomedical Research, Faina Linkov, Matthew C. Kostek
Open Education Materials
HLT 430/530
CC BY-NC-SA
Open Neuroscience Initiative, Austin Lim
Open Neuroscience Initiative, Austin Lim
College of Science and Health Full Text Publications
The Open Neuroscience Initiative is a free-to-use textbook
This project began as a means to overcoming the financial burden that face undergraduate neuroscience students when buying textbooks. By compiling and writing a completely free-to-access textbook that covers the foundations of a typical college introduction to neuroscience course, students would have one less obstacle to overcome in their educational career, allowing them to focus their valuable time and attention on learning rather than finances. To make this project a reality, I began with a humble tweet in May 2019 that managed to gain a tiny bit of traction among the neuroscience …