MicroRNAs effectively modulate protein expression and cellular response. Unfortunately, the lack of robust nonviral delivery platforms has limited the therapeutic application of microRNAs. Additionally, there is a shortage of drug‐screening platforms that are directly translatable from in vitro to in vivo. Here, a fiber substrate that provides nonviral delivery of microRNAs for in vitro and in vivo microRNA screening is introduced. As a proof of concept, difficult‐to‐transfect primary neurons are targeted and the efficacy of this system is evaluated in a rat spinal cord injury model. With this platform, enhanced gene‐silencing is achieved in neurons as compared to conventional bolus delivery (p < 0.05). Thereafter, four well‐recognized micr...
The use of human induced pluripotent stem cell-derived neural progenitor cells (hiPSC-NPCs) is an at...
MicroRNA-based therapeutics have rapidly emerged in recent years as promising platforms for the trea...
AbstractCells, scaffold, and growth factors are crucially important in regenerative medicine and tis...
MicroRNAs effectively modulate protein expression and cellular response. Unfortunately, the lack of ...
Axons damaged by traumatic injuries are unable to spontaneously regenerate in the adult central nerv...
Current treatment approaches toward spinal cord injuries (SCI) have mainly focused on overcoming the...
Spinal cord injuries (SCI) are followed by a complex series of events that contribute to the failure...
The regeneration of injured neurons over long injury distances remains suboptimal. In order to succe...
The loss of oligodendrocytes (OLs) and subsequently myelin sheaths following injuries or pathologies...
The inherent poor regeneration capacity of nerve tissues, especially in the central nervous system, ...
Jialin Song,1,2 Xueyang Li,3 Yingli Li,4,5 Junyi Che,6 Xiaoming Li,6 Xiaotian Zhao,6 Yinghui Chen,7,...
Spinal cord injuries (SCI) often lead to persistent neurological dysfunction due to failure in axon ...
Biomaterials are being developed as therapeutics for spinal cord injury (SCI) that can stabilize and...
Biomaterial scaffolds provide platforms for biological study and support tissue engineering and rege...
Remyelination in the central nervous system (CNS) is critical in the treatment of many neural pathol...
The use of human induced pluripotent stem cell-derived neural progenitor cells (hiPSC-NPCs) is an at...
MicroRNA-based therapeutics have rapidly emerged in recent years as promising platforms for the trea...
AbstractCells, scaffold, and growth factors are crucially important in regenerative medicine and tis...
MicroRNAs effectively modulate protein expression and cellular response. Unfortunately, the lack of ...
Axons damaged by traumatic injuries are unable to spontaneously regenerate in the adult central nerv...
Current treatment approaches toward spinal cord injuries (SCI) have mainly focused on overcoming the...
Spinal cord injuries (SCI) are followed by a complex series of events that contribute to the failure...
The regeneration of injured neurons over long injury distances remains suboptimal. In order to succe...
The loss of oligodendrocytes (OLs) and subsequently myelin sheaths following injuries or pathologies...
The inherent poor regeneration capacity of nerve tissues, especially in the central nervous system, ...
Jialin Song,1,2 Xueyang Li,3 Yingli Li,4,5 Junyi Che,6 Xiaoming Li,6 Xiaotian Zhao,6 Yinghui Chen,7,...
Spinal cord injuries (SCI) often lead to persistent neurological dysfunction due to failure in axon ...
Biomaterials are being developed as therapeutics for spinal cord injury (SCI) that can stabilize and...
Biomaterial scaffolds provide platforms for biological study and support tissue engineering and rege...
Remyelination in the central nervous system (CNS) is critical in the treatment of many neural pathol...
The use of human induced pluripotent stem cell-derived neural progenitor cells (hiPSC-NPCs) is an at...
MicroRNA-based therapeutics have rapidly emerged in recent years as promising platforms for the trea...
AbstractCells, scaffold, and growth factors are crucially important in regenerative medicine and tis...