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Enhancing Structural Plasticity of PC12 Neurons During Differentiation and Neurite Regeneration with a Catalytically Inactive Mutant Version of the zRICH Protein

2022-09-14

Abstract excerpt

<h4>Background: </h4> Adult humans, as warm-blooded vertebrates, do not regenerate axons in their central nervous system (CNS) spontaneously. Conversely, cold-blooded vertebrates demonstrate remarkable abilities for nerve regeneration in their CNS. Studies of the molecular mechanisms of nerve regeneration have led to the discovery of several proteins that are induced during successful nerve regeneration. RICH prot...

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Literature Corpus work
68aa119c-1b31-5a11-938a-9f7637b58bdd
DOI
10.21203/rs.3.rs-1954427/v1
Open publication

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Enhancing Structural Plasticity of PC12 Neurons During Differentiation and Neurite Regeneration with a Catalytically Inactive Mutant Version of the zRICH ProteinDOI 10.21203/rs.3.rs-1954427/v1
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