AI Article Synopsis

  • - Regenerative Peripheral Nerve Interfaces (RPNIs) utilize nerve grafts to enhance electrical signaling in peripheral nerves, and this study reviewed existing research on RPNIs using animal models from 1970 to 2023.
  • - A total of 104 articles on RPNIs were analyzed, with 35 specifically focusing on animal studies, predominantly using mice (91%) and a smaller number using macaques (9%).
  • - Key findings showed significant axonal regeneration and improved blood vessel formation, with RPNIs effectively able to detect and amplify nerve signals, indicating promising long-term performance that can guide future research.

Article Abstract

Regenerative Peripheral Nerve Interfaces (RPNIs) encompass neurotized muscle grafts employed for the purpose of amplifying peripheral nerve electrical signaling. The aim of this investigation was to undertake an analysis of the extant literature concerning animal models utilized in the context of RPNIs. A systematic review of the literature of RPNI techniques in animal models was performed in line with the PRISMA statement using the MEDLINE/PubMed and Embase databases from January 1970 to September 2023. Within the compilation of one hundred and four articles employing the RPNI technique, a subset of thirty-five were conducted using animal models across six distinct institutions. The majority (91%) of these studies were performed on murine models, while the remaining (9%) were conducted employing macaque models. The most frequently employed anatomical components in the construction of the RPNIs were the common peroneal nerve and the extensor digitorum longus (EDL) muscle. Through various histological techniques, robust neoangiogenesis and axonal regeneration were evidenced. Functionally, the RPNIs demonstrated the capability to discern, record, and amplify action potentials, a competence that exhibited commendable long-term stability. Different RPNI animal models have been replicated across different studies. Histological, neurophysiological, and functional analyses are summarized to be used in future studies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10816042PMC
http://dx.doi.org/10.3390/ijms25021141DOI Listing

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