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Spinal cord injury (SCI) patients show intestinal flora disorder in the spinal cord injury model, and intestinal biological disorders aggravate the neurological damage.
Spinal cord injury (SCI) patients show intestinal flora disorder in the spinal cord injury model, and intestinal biological disorders aggravate the neurological damage.
FMT can promote the functional recovery of mice with spinal cord injury, promote neuronal axon regeneration, improve animal body weight and metabolic characteristics, and enhance the integrity of the intestinal barrier and gastrointestinal motility.
FMT FMT can promote the functional recovery of mice with spinal cord injury, promote neuronal axon regeneration, improve animal body weight and metabolic characteristics, and enhance the integrity of the intestinal barrier and gastrointestinal motility.
The effect of FMT treatment on neuron survival and synapse regeneration after spinal cord injury
The effect of FMT treatment on neuron survival and synapse regeneration after spinal cord injuryIn summary, the remodeling of intestinal microbes by FMT improved the motor function and gastrointestinal function of SCI mice, which may be achieved by the anti-inflammatory effect of SCFAs .
In summary, the FMT the FMT remodeling intestinal microflora improvement of intestinal microflora remodeling improves the SCI the SCI motor function and gastrointestinal function in mice, possibly by motor function and Gastrointestinal Function of Mice this may be by SCFAs SCFAs achieve anti-inflammatory effects.
Original source: biomedcentral.
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