The inherent poor regeneration capacity of nerve tissues, especially in the central nervous system, poses a grand challenge for neural tissue engineering. After injuries, the local microenvironment often contains potent inhibitory molecules and glial scars, which do not actively support axonal regrowth. MicroRNAs can direct fate of neural cells and are tightly controlled during nerve development. Thus, RNA interference using microRNAs is a promising method to enhance nerve regeneration. Although the physiological roles of microRNA expression levels in various cellular activities or disease conditions have been extensively investigated, the translational use of these understanding for neural tissue engineering remains limited. This review ai...
Publisher's PDF.Injury to axons in the peripheral nervous system induces rapid and local regenerativ...
Drivers of RNA interference are potent for manipulating gene and protein levels, which enable the re...
In adult mammals, neural stem cells (NSCs) are found in two niches of the brain; the subventricular ...
MicroRNAs are small non-coding RNAs that suppress gene expression through target mRNA degradation or...
microRNAs are small non-coding RNAs that suppress gene expression through target mRNA degradation or...
Neurogenesis in the nervous system is regulated by both protein coding genes and non-coding RNA mole...
MicroRNA-based therapeutics have rapidly emerged in recent years as promising platforms for the trea...
microRNAs (miRNAs) are small (21-23 nucleotides) single-stranded RNAs that play important roles in p...
In the past few years, the understanding of microRNA (miRNA) biogenesis, the molecular mechanisms by...
The peripheral nervous system is unique in its ability to regenerate axons after injury. Our lab pr...
A growing body of studies indicate that small noncoding RNAs, especially microRNAs (miRNA), play a c...
Unlike the central nervous system, peripheral nerves can regenerate when damaged. MicroRNA (miRNA) i...
Schwann cells (SCs) contribute to nerve repair following injury; however, the underlying molecular m...
MicroRNAs effectively modulate protein expression and cellular response. Unfortunately, the lack of ...
The loss of neurons due to injury and disease results in a wide spectrum of highly disabling neurolo...
Publisher's PDF.Injury to axons in the peripheral nervous system induces rapid and local regenerativ...
Drivers of RNA interference are potent for manipulating gene and protein levels, which enable the re...
In adult mammals, neural stem cells (NSCs) are found in two niches of the brain; the subventricular ...
MicroRNAs are small non-coding RNAs that suppress gene expression through target mRNA degradation or...
microRNAs are small non-coding RNAs that suppress gene expression through target mRNA degradation or...
Neurogenesis in the nervous system is regulated by both protein coding genes and non-coding RNA mole...
MicroRNA-based therapeutics have rapidly emerged in recent years as promising platforms for the trea...
microRNAs (miRNAs) are small (21-23 nucleotides) single-stranded RNAs that play important roles in p...
In the past few years, the understanding of microRNA (miRNA) biogenesis, the molecular mechanisms by...
The peripheral nervous system is unique in its ability to regenerate axons after injury. Our lab pr...
A growing body of studies indicate that small noncoding RNAs, especially microRNAs (miRNA), play a c...
Unlike the central nervous system, peripheral nerves can regenerate when damaged. MicroRNA (miRNA) i...
Schwann cells (SCs) contribute to nerve repair following injury; however, the underlying molecular m...
MicroRNAs effectively modulate protein expression and cellular response. Unfortunately, the lack of ...
The loss of neurons due to injury and disease results in a wide spectrum of highly disabling neurolo...
Publisher's PDF.Injury to axons in the peripheral nervous system induces rapid and local regenerativ...
Drivers of RNA interference are potent for manipulating gene and protein levels, which enable the re...
In adult mammals, neural stem cells (NSCs) are found in two niches of the brain; the subventricular ...