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Organization of self-advantageous niche by neural stem/progenitor cells during development via autocrine VEGF-A under hypoxia. Inflammation and Regeneration, 2023; 43 (1) DOI: 10.1186/s41232-022 ...
Kashiwagi, T., et al. (2023) Organization of self-advantageous niche by neural stem/progenitor cells during development via autocrine VEGF-A under hypoxia. Inflammation and Regeneration. doi.org ...
The thyroid, a vital endocrine organ in vertebrates, plays a key role in regulating metabolism and supporting growth. The ...
A research team led by Professor Takuya Yamamoto and Assistant Professor Ryusaku Matsumoto (Department of Life Science ...
To mimic neurodegeneration, Marian Hruska-Plochan developed a new cell culture model called "iNets," derived from human induced pluripotent stem cells.
Neural stem cells are early-stage, unspecialized cells that have the ability to differentiate, or develop, into various types of neurons and non-neuronal cells of the central nervous system.
Stem cells differentiated into brain and neural organoids may help scientists understand both brain development and ...
ABOVE: A neurosurgeon injects neural stem cells into the frontal lobe of a child with Pelizaeus-Merzbacher disease who participated in a Phase 1 clinical trial of the transplantation. NALIN GUPTA ...
Human neural progenitor cells with familial Alzheimer's disease mutations are differentiated in a 3D Matrigel matrix, leading to the extracellular aggregation of amyloid-β peptides and ...
Early-onset familial Alzheimer’s disease mutations induce both amyloid-β and tau pathologies in differentiated human neural stem cells in 3D cultures.
Differentiation of serum-free embryoid bodies from human induced pluripotent stem cells into networks. Stem Cell Research, 2013; 10 (3): 454 DOI: 10.1016/j.scr.2013.02.001 ...
A new study that represents a significant first step in exploring the potential of stem cells to treat neurological disease is a “natural outgrowth” of a longstanding culture of interdisciplinary ...
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