Recent Advances in Polymeric Drug Delivery Systems for Peripheral Nerve Regeneration

被引:10
|
作者
Bianchini, Marta [1 ]
Micera, Silvestro [1 ,2 ,3 ]
Riva, Eugenio Redolfi [1 ]
机构
[1] Scuola Super Sant Anna, BioRobot Inst, Dept Excellence Robot & AI, I-56127 Pisa, Italy
[2] Ecole Polytech Fed Lausanne EPFL, Ctr Neuroprosthet, Sch Engn, Translat Neuroengn, CH-1000 Lausanne, Switzerland
[3] Ecole Polytech Fed Lausanne EPFL, Inst Bioengn, Sch Engn, CH-1000 Lausanne, Switzerland
基金
欧盟地平线“2020”;
关键词
peripheral nerve regeneration; polymeric drug delivery systems; microparticles; nanoparticles; nanofibers; GROWTH-FACTOR DELIVERY; CONTROLLED-RELEASE; GUIDANCE CONDUIT; NEUROTROPHIC FACTORS; AXONAL REGENERATION; SUSTAINED-RELEASE; MICROSPHERES; MICROPARTICLES; MECHANISMS; NGF;
D O I
10.3390/pharmaceutics15020640
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
When a traumatic event causes complete denervation, muscle functional recovery is highly compromised. A possible solution to this issue is the implantation of a biodegradable polymeric tubular scaffold, providing a biomimetic environment to support the nerve regeneration process. However, in the case of consistent peripheral nerve damage, the regeneration capabilities are poor. Hence, a crucial challenge in this field is the development of biodegradable micro- nanostructured polymeric carriers for controlled and sustained release of molecules to enhance nerve regeneration. The aim of these systems is to favor the cellular processes that support nerve regeneration to increase the functional recovery outcome. Drug delivery systems (DDSs) are interesting solutions in the nerve regeneration framework, due to the possibility of specifically targeting the active principle within the site of interest, maximizing its therapeutical efficacy. The scope of this review is to highlight the recent advances regarding the study of biodegradable polymeric DDS for nerve regeneration and to discuss their potential to enhance regenerative performance in those clinical scenarios characterized by severe nerve damage.
引用
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页数:25
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