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Stem cell therapy reverses blindness in animals with end-stage retinal degeneration

A stem cell-based transplantation approach that restores vision in blind mice moves closer to being tested in patients with end-stage retinal degeneration, according to a study. The researchers showed that retinal tissue derived from mouse induced pluripotent stem cells (iPSCs) established connections with neighboring cells and responded to light stimulation after transplantation into the host retina, restoring visual function in half of mice with end-stage retinal degeneration.

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Scientists tissue-engineer functional part of human stomach in laboratory

Scientists have used pluripotent stem cells to generate human stomach tissues in a Petri dish that produce acid and digestive enzymes. They grew tissues from the stomach’s corpus/fundus region. The study comes two years after the same team generated the stomach’s hormone-producing region (the antrum). The discovery means investigators now can grow both parts of the human stomach to study disease.

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Therapy response in brain tumor cells is linked to disease prognosis

The brain tumor form glioblastoma is difficult to treat and has very poor prognosis. In a new study, scientists show that a type of stem cell in the tumor is present in different states, with different response to drugs and radiation. The results may open an avenue towards development of new treatment strategies designed to reverse therapy resistant cell states to more sensitive states.

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Scientists discover neuron-producing stem cells in the membranes covering the brain

Unexpected cells have been found in the protective membranes that enclose the brain, the so called meninges. These ‘neural progenitors’ — or stem cells that differentiate into different kinds of neurons — are produced during embryonic development. These findings show that the neural progenitors found in the meninges produce new neurons after birth — highlighting the importance of meningeal tissue as well as these cells’ potential in the development of new therapies for brain damage or neurodegeneration.

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Scientists discover neuron-producing stem cells in the membranes covering the brain

Unexpected cells have been found in the protective membranes that enclose the brain, the so called meninges. These ‘neural progenitors’ — or stem cells that differentiate into different kinds of neurons — are produced during embryonic development. These findings show that the neural progenitors found in the meninges produce new neurons after birth — highlighting the importance of meningeal tissue as well as these cells’ potential in the development of new therapies for brain damage or neurodegeneration.

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Taking miniature organs from lab to clinic

Scientists have developed a gel for growing miniaturized body organs that can be used in clinical diagnostics and drug development. Organoids are miniature organs that can be grown in the lab from a person’s stem cells. They can be used to model diseases, and in the future could be used to test drugs or even replace damaged tissue in patients.

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