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Ficus carica L. (Fig) promotes nerve regeneration in a mouse model of sciatic nerve crush. | LitMetric

AI Article Synopsis

  • * This study examined the effects of fig and cranberry extracts on nerve regeneration in mice with sciatic nerve injuries, finding that fig extract showed positive results, while cranberry extract did not.
  • * Fig extract not only improved muscle weight and nerve function but also promoted tissue repair by increasing macrophage activity, indicating its potential in treating peripheral nerve injuries and warranting further research for clinical applications.

Article Abstract

Peripheral nerve injuries result in significant loss of motor and sensory function, and the slow rate of nerve regeneration can prolong recovery time. Thus, approaches that promote axonal regeneration are critical to improve the outcomes for patients with peripheral nerve injuries. In this study, we investigated the effects of Ficus carica L. (fig) and Vaccinium macrocarpon Ait. (cranberry), which are rich in phytochemicals with demonstrable and diverse medicinal properties, on nerve regeneration in a mouse model of sciatic nerve crush. Our investigation revealed that fig extract, but not cranberry extract, prevented the decline in muscle weight and nerve conduction velocity induced by nerve crush. The fig extract also mitigated motor function impairment, myelin thinning, and axon diameter reduction, indicating its potential to promote nerve regeneration. Furthermore, the fig extract enhanced macrophage infiltration into the nerve tissue, suggesting that it could ameliorate nerve injury by promoting tissue repair via increased macrophage infiltration. The study provides valuable insights into the potential of the fig extract as a novel agent promoting nerve regeneration. Further investigation into the mechanisms underlying the action of fig extracts is needed to translate these findings into clinical applications for patients with peripheral nerve injuries.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11301263PMC
http://dx.doi.org/10.1002/2211-5463.13859DOI Listing

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