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Almond Mushroom, ABM · 2020 · Research Article

Medium relevance

Neurogenic tissue nanotransfection in the management of cutaneous diabetic polyneuropathy.

Agaricus blazei

Cognition & nerves
SpeciesAlmond Mushroom, ABM
JournalNanomedicine: nanotechnology, biology, and medicine
Year2020

Key points

  • This work rests on our recent report on the successful use of tissue nanotransfection (TNT) delivery of Ascl1, Brn2, and Myt1l (TNT ABM ) to directly convert skin fibroblasts into electrophysiologically active induced neuronal cells (iN) in vivo
  • Here we report that in addition to successful neurogenic conversion of cells, TNT ABM caused neurotrophic enrichment of the skin stroma
  • Thus, we asked whether such neurotrophic milieu of the skin can be leveraged to rescue pre-existing nerve fibers under chronic diabetic conditions
  • Topical cutaneous TNT ABM caused elevation of endogenous NGF and other co-regulated neurotrophic factors such as Nt3
  • TNT ABM spared loss of cutaneous PGP9.5 + mature nerve fibers in db/db diabetic mice
  • This is the first study demonstrating that under conditions of in vivo reprogramming, changes in the tissue microenvironment can be leveraged for therapeutic purposes such as the rescue of pre-existing nerve fibers from its predictable path of loss under conditions of diabetes

Metadata-grounded summary

Citation abstract

This work rests on our recent report on the successful use of tissue nanotransfection (TNT) delivery of Ascl1, Brn2, and Myt1l (TNT ABM ) to directly convert skin fibroblasts into electrophysiologically active induced neuronal cells (iN) in vivo. Here we report that in addition to successful neurogenic conversion of cells, TNT ABM caused neurotrophic enrichment of the skin stroma. Thus, we asked whether such neurotrophic milieu of the skin can be leveraged to rescue pre-existing nerve fibers under chronic diabetic conditions. Topical cutaneous TNT ABM caused elevation of endogenous NGF and other co-regulated neurotrophic factors such as Nt3. TNT ABM spared loss of cutaneous PGP9.5 + mature nerve fibers in db/db diabetic mice. This is the first study demonstrating that under conditions of in vivo reprogramming, changes in the tissue microenvironment can be leveraged for therapeutic purposes such as the rescue of pre-existing nerve fibers from its predictable path of loss under conditions of diabetes.

Citation

Roy S, Sen CK, Ghatak S, Higuita-Castro N, Palakurti R, Nalluri N, et al. (2020). Neurogenic tissue nanotransfection in the management of cutaneous diabetic polyneuropathy. Nanomedicine: nanotechnology, biology, and medicine https://doi.org/10.1016/j.nano.2020.102220 PMID: 32422219

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