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Mass spectrometry comparison of nerve allograft decellularization processes. | LitMetric

AI Article Synopsis

  • The study explores the use of mass spectrometry to analyze acellular nerve grafts, which are important for repairing peripheral nerves, contrasting traditional methods used in nerve research like histology.
  • It assesses three different processing methods for preparing these grafts and identifies at least 543 proteins, including both known and novel proteins, showcasing the unique benefits of mass spectrometry in this context.
  • The findings suggest that newer mass spectrometry techniques enhance understanding of nerve repair, highlighting differences among graft treatments and providing insights into protein compositions relevant to nerve regeneration.

Article Abstract

Peripheral nerve repair using nerve grafts has been investigated for several decades using traditional techniques such as histology, immunohistochemistry, and electron microscopy. Recent advances in mass spectrometry techniques have made it possible to study the proteomes of complex tissues, including extracellular matrix rich tissues similar to peripheral nerves. The present study comparatively assessed three previously described processing methods for generating acellular nerve grafts by mass spectrometry. Acellular nerve grafts were additionally examined by F-actin staining and nuclear staining for debris clearance. Application of newer techniques allowed us to detect and highlight differences among the 3 treatments. Isolated proteins were separated by mass on polyacrylamide gels serving 2 purposes. This further illustrated that these treatments differ from one another and it allowed for selective protein extractions within specific bands/molecular weights. This approach resulted in small pools of proteins that could then be analyzed by mass spectrometry for content. In total, 543 proteins were identified, many of which corroborate previous findings for these processing methods. The remaining proteins are novel discoveries that expand the field. With this pilot study, we have proven that mass spectrometry techniques complement and add value to peripheral nerve repair studies.

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Source
http://dx.doi.org/10.1007/s10856-016-5834-yDOI Listing

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