Biology
The foundational science behind the research — cell biology, neuroscience, and cancer biology.
Foundations of Cell Biology (Autophagy, Macrophages, etc.)
Learn the cell-biology foundations behind extracellular vesicles and tissue regeneration, including autophagy, macrophages, monocytes, mitochondria, and metabolism.
- The Mitochondria Were Broken, Yet ATP Went Up — What Was Happening in the Spinal Cord of a Frog That Cannot Regenerate
- What Is Autophagy?
- What Is Microautophagy
- The Difference Between the Endosomal Recycling Pathway and Autophagy
- What Is Fibronectin?
- NAC: A Multifaceted Regulator of Nascent Polypeptide Chains That Senses the Ribosomal Tunnel and Controls Chaperone Function
- A paper showing that microglia influence neuronal autophagy
- Pathways Related to Autophagy in Microglia
- Non-classical monocytes have the support of the whole vascular tree
- A Newcomer Macrophage Hiding in Exocrine Glands, the "Adenophage": How ILC2s and GM-CSF Weave the Secret of Maintaining Tissue Function
- Chemotherapy Remodels Cardiac Macrophages: A New Path to Cardioprotection
- [Research Note] Network Analysis of 5 Key miRNAs Controlling Macrophages and Their "Converging Target Proteins"
- Stop the Cell's "Rusting Death"! How Ferroptosis Inhibitors Open a New Frontier in Treating Intractable Diseases
Brain, Neuroscience, and Extracellular Vesicles
Covers brain and nervous-system science and the role of extracellular vesicles (EVs) in neurodegeneration and neural repair.
- The 'Neurotrophic Factors' Linking Stroke, Traumatic Brain Injury, and Neurodegeneration — Why Drugs That Should Work Can't Reach the Brain
- Taking on Parkinson's Disease and the "Runaway Immune System of the Brain"—How an lncRNA Carried by Deep-Nasal Stem-Cell Exosomes Rewires Microglial Glucose Metabolism
- The primary motor cortex does not govern movement alone!?
- Cutting-Edge Neuroscience: Dissecting the Mouse Prefrontal Cortex
- The Role of Extracellular Matrix Degradation in Supporting Synaptic Plasticity During Brain Development
- Microglial TGFβ signaling in the spinal dorsal column maintains resilience to age-associated myelin degeneration
- New Hope for Alzheimer's Disease: Exploring the VCAM1–ApoE Pathway and Advanced Protein Interaction Tools
- GLP-1 Receptor Agonists: A New Hope for Alzheimer's Disease Treatment? Mechanisms and Clinical Significance from Multiple Perspectives
- A Future Drug to Protect the Brain: How iPSC-Derived Extracellular Vesicles Prevent the Overwork Death of Neurons
- The Secret of Steering the Brain's Regeneration Factory: How L-Myc and the Cell's Courier Service (EVs) Unlock the Diversity of Neural Stem Cells
- Astrocyte-Derived Exosome-Mediated Transport of Rps6 Promotes Local Translation and Synaptic Function in Alzheimer's Disease Model Neurons
- [Articles] Collateral-based selection for endovascular treatment of acute ischaemic stroke in the late window (MR CLEAN-LATE): 2-year follow-up of a phase 3, multicentre, open-label, randomised controlled trial in the Netherlands
Cancer and Extracellular Vesicles
Explains how extracellular vesicles (EVs), stem cells, and immunity are involved in cancer progression, metastasis, and therapy.
- Hope for Liver Cancer Treatment? The Remarkable Power of Umbilical Cord Stem Cells
- Lipid-associated macrophages for osimertinib resistance and leptomeningeal metastases in NSCLC
- The Future of Testicular Cancer Treatment: A New Strategy in Which Immune Cells and Stem Cells Break Through Refractory Cancer
- Bispecific Exosome Therapy: An Innovative Approach to Immune Checkpoint Inhibitor-Resistant Melanoma Metastasis
- The Vicious Cycle of Prostate Cancer Bone Metastasis: Molecular Mechanisms by Which Cancerized Osteoclast-Derived Exosomes Drive Inflammatory Osteolysis and Tumor Progression