GDNF-chitosan blended nerve guides: a functional study.
نویسندگان
چکیده
Nerve guides are currently being fabricated by blending a variety of biomaterials with different proteins. Adding proteins, which can support nerve repair and regeneration, optimizes the biological properties of a nerve guide. In our study we have blended glial cell line-derived nerve growth factor (GDNF) and laminin with chitosan to fabricate GDNF-laminin blended chitosan (GLC) nerve guides. As GDNF is known to provide trophic support to motor neurons, the main objective of this study was assess the functional restoration of an injured sciatic nerve treated with GLC. Functional nerve recovery was evaluated using a video gait-analysis technique. Gastrocnemius muscle weight measurements and sensitivity testing were correlated to functional nerve recovery. Our results indicate an increase in the functional recovery of the GLC group when compared to the unblended chitosan nerve guides. At the end of 12 weeks, GLC nerve guides had comparable functional values to the Laminin-I blended chitosan nerve guides (LC) and autograft groups, which were both significantly higher at the terminal stance phase angle as compared to the unblended chitosan nerve guides. Muscle weights for the GLC group indicated decreased atrophy and restoration of functional strength, compared to the unblended chitosan groups. In addition, behavioural testing demonstrated that the GLC group regained sensation while the control groups displayed no restoration. Thus, the addition of GDNF and laminin to the chitosan nerve guides enhanced both functional and sensory recovery.
منابع مشابه
GDNF blended chitosan nerve guides: an in vivo study.
Chitosan nerve guides are currently being utilized to repair damaged or injured peripheral nerves. To enhance the nerve regeneration process, instead of using the material alone, researchers are focusing on blending different proteins or molecules with chitosan to facilitate nerve repair and regeneration. In our study, we have blended chitosan with glial cell-line derived neurotrophic factor an...
متن کاملVideo-gait analysis of functional recovery of nerve repaired with chitosan nerve guides.
Quantitative analysis of peripheral nerve regeneration using nerve guides is commonly evaluated through histomorphometry and walking track analysis. We conducted a unique assessment of functional sciatic nerve recovery treated with chitosan nerve guides. We used video-gait analysis to evaluate the extent of functional nerve recovery by measuring the ankle angle at different gait cycle phases. W...
متن کاملCollagen-chitosan nerve guides for peripheral nerve repair: a histomorphometric study.
Currently a wide variety of polymer materials are being applied to fabricate nerve guide tubes to repair injured peripheral nerves. In this study we have examined whether collagen-chitosan nerve guides promotes nerve repair compared to chitosan nerve guides using histological analysis. Results indicates that the enclosed structure of the nerve guide both promotes and supports axonal sprouting. ...
متن کاملTubulization with chitosan guides for the repair of long gap peripheral nerve injury in the rat.
Biosynthetic guides can be an alternative to nerve grafts for reconstructing severely injured peripheral nerves. The aim of this study was to evaluate the regenerative capability of chitosan tubes to bridge critical nerve gaps (15 mm long) in the rat sciatic nerve compared with silicone (SIL) tubes and nerve autografts (AGs). A total of 28 Wistar Hannover rats were randomly distributed into fou...
متن کاملChallenges for Nerve Repair Using Chitosan-Siloxane Hybrid Porous Scaffolds
The treatment of peripheral nerve injuries remains one of the greatest challenges of neurosurgery, as functional recover is rarely satisfactory in these patients. Recently, biodegradable nerve guides have shown great potential for enhancing nerve regeneration. A major advantage of these nerve guides is that no foreign material remains after the device has fulfilled its task, which spares a seco...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Journal of tissue engineering and regenerative medicine
دوره 1 5 شماره
صفحات -
تاریخ انتشار 2007