Axon regeneration, fundamental to nerve repair, and functional recovery, relies on rapid changes in gene expression attributable to microRNA (miRNA) regulation. MiR-133b has been proved to play an important role in different organ regeneration in zebrafish, but its role in regulating axon regeneration in vivo is still controversial. Here, combining single-cell electroporation with a vector-based miRNA-expression system, we have modulated the expression of miR-133b in Mauthner-cells (M-cells) at the single-cell level in zebrafish. Through in vivo imaging, we show that overexpression of miR-133b inhibits axon regeneration, whereas down-regulation of miR-133b, promotes axon outgrowth. We further show that miR-133b regulates axon regeneration b...
The neurodevelopmentally regulated microRNA miR-137 was strongly implicated as risk locus for schizo...
The mammalian central nervous system (CNS) is incapable of regenerating damaged axons; as a result, ...
MicroRNAs are an important class of gene expression regulators that are involved in many biological ...
Appendage regeneration is defined by rapid changes in gene expression that achieve dramatic developm...
During embryonic development, axons extend over long distances to establish functional connections. ...
AbstractZebrafish regenerate cardiac muscle after severe injuries through the activation and prolife...
Following injury to the central nervous system (CNS), adult mammals are largely unable to regenerate...
<p>The development and function of the nervous system relies on complex regulation of gene expressio...
Although it is known for long time that the peripheral nervous system has the capacity for self-rege...
Connectivity and function of neuronal circuitry require the correct specification and growth of axon...
The peripheral nervous system is unique in its ability to regenerate axons after injury. Our lab pr...
Zebrafish could be an interesting translational model to understand and improve the post-infarction ...
BACKGROUND: Among the vertebrates, teleost and urodele amphibians are capable of regenerating their ...
AbstractUnlike mammals, teleost fish are able to mount an efficient and robust regenerative response...
The neurodevelopmentally regulated microRNA miR-137 was strongly implicated as risk locus for schizo...
The neurodevelopmentally regulated microRNA miR-137 was strongly implicated as risk locus for schizo...
The mammalian central nervous system (CNS) is incapable of regenerating damaged axons; as a result, ...
MicroRNAs are an important class of gene expression regulators that are involved in many biological ...
Appendage regeneration is defined by rapid changes in gene expression that achieve dramatic developm...
During embryonic development, axons extend over long distances to establish functional connections. ...
AbstractZebrafish regenerate cardiac muscle after severe injuries through the activation and prolife...
Following injury to the central nervous system (CNS), adult mammals are largely unable to regenerate...
<p>The development and function of the nervous system relies on complex regulation of gene expressio...
Although it is known for long time that the peripheral nervous system has the capacity for self-rege...
Connectivity and function of neuronal circuitry require the correct specification and growth of axon...
The peripheral nervous system is unique in its ability to regenerate axons after injury. Our lab pr...
Zebrafish could be an interesting translational model to understand and improve the post-infarction ...
BACKGROUND: Among the vertebrates, teleost and urodele amphibians are capable of regenerating their ...
AbstractUnlike mammals, teleost fish are able to mount an efficient and robust regenerative response...
The neurodevelopmentally regulated microRNA miR-137 was strongly implicated as risk locus for schizo...
The neurodevelopmentally regulated microRNA miR-137 was strongly implicated as risk locus for schizo...
The mammalian central nervous system (CNS) is incapable of regenerating damaged axons; as a result, ...
MicroRNAs are an important class of gene expression regulators that are involved in many biological ...