Does transection severity determine the way of spinal cord repair in the spiny mouse?
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The mechanisms of the spinal cord regeneration after complete spinal cord transection were investigated in spiny mice. In some animals, the appearance of quadrupedal overground stepping together with rewiring of the direct propriospinal projections between the cervical and lumbar enlargements was revealed. In others, no stepping recovery was detected, whereas numerous cells labeled by the neuronal proteins NeuN and βIII-tubulin were observed within the injury region. We suggest that depending on trauma severity, different repair mechanisms are elicited: only connectome restoration or both connectome restoration and the activation of neurogenesis. To confirm the high neurogenic potential of spiny mice, a primary culture of bone marrow was established. Unlike in other mammals, bone marrow pluripotent cells in the culture differentiated into neuronal cells without any chemical stimulation. These findings provide strong evidence for the high differentiation potential of spiny mouse stem cells toward neural lineages.
GRAPHICAL ABSTRACT
HIGHLIGHTS
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Two regenerative mechanisms are proposed in spiny mice, depending on the severity the spinal cord transection
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Regular transection evoked the emergence of the direct propriospinal projections
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Severe transection evoked the neurogenesis within the primary injured region
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Primary culture of bone marrow cells from spiny mice exhibits neurogenic differentiation without chemical induction