Researchers at University of Tsukuba have discovered a novel mechanism involved in brain development. They found that small fragments called micronuclei produced by neuronal nuclei are released into ...
Besides molecular and pathological benefit, the study also shows targeting Msh3 can ameliorate locomotor and gait deficits, improve neuronal synaptic protein levels, and reduce glial cell ...
Medical Xpress on MSN9d
UCLA study reveals key role of mismatch repair genes in Huntington’s diseaseA new UCLA Health study has discovered in mouse models that genes associated with repairing mismatched DNA are critical in eliciting damages to neurons that are most vulnerable in Huntington's disease ...
As in ALS, the neuronal deficits are selective for motor neurons—sensory neurons and neurons in other brainstem nuclei do not ... of neurons or surrounding glial cells to produce the VEGF ...
Besides molecular and pathological benefit, the study also shows targeting Msh3 can ameliorate locomotor and gait deficits, improve neuronal synaptic protein levels, and reduce glial cell ...
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News Medical on MSNExploring how 25-hydroxycholesterol triggers ferroptosis in glial cellsOxysterols are a class of molecules derived from cholesterol via oxidation or as byproducts of cholesterol synthesis.
Atomic nuclei exhibit multiple energy scales simultaneously—ranging from hundreds down to fractions of a megaelectronvolt. A new study demonstrates that these drastically different scales can be ...
However, the study provides limited new insights into the relationship between retinal lamination defects and overall retinal function. Neural lamination is a common feature of the central nervous ...
Sleep's role to down-scale glutamate, excitatory, frontal cortical synapses is extended to include an up-scaling of metaplastic LTP potential, in recovery from prolonged waking induced saturation of ...
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