Pea-size clusters of human cells called brain organoids inspire both hope and fear. Experts are debating how scientists can ...
Researchers developed a way to directly reprogram human glial cells into PV interneurons without passing through a stem‑cell stage.
By editing thousands of genes in mouse stem cells, the scientists identified a list of over 300 that are crucial for neural differentiation.
This study in neonatal rats revealed that the common inhaled pediatric anesthetic, sevoflurane, impairs neurogenesis and ...
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Human fat creates organoids for bone marrow, neural tissue, and insulin secretion
The study shows that fat tissue, when processed and cultured in a specific way, can self-organize into structures resembling ...
Stanford Medicine investigators have replicated, in a lab dish, one of humans' most prominent nervous pathways for sensing pain. This nerve circuit transmits sensations from the body's skin to the ...
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Understanding sevoflurane-induced neurogenesis inhibition and cognitive dysfunction in children
Every year, millions of infants and children undergo surgery under general anesthesia in the world. Sevoflurane is a commonly ...
The mystery of early embryonic communication is starting to be unraveled thanks to a new stem cell-based model.
A phase I clinical trial led by researchers at University of California San Diego School of Medicine has demonstrated the long-term safety and feasibility of neural stem cell transplantation for ...
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Novel method can generate functional organoids from human adult adipose tissue
A recent study published in Engineering has unveiled a novel approach to generating functional organoids from human adult adipose tissue.
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