Nanotechnology-based techniques for hair follicle regeneration
The hair follicle (HF) is a multicellular complex structure of the skin that contains a reservoir of multipotent stem cells. Traditional hair repair methods such as drug therapies, hair transplantation, and stem cell therapy have limitations. Advances in nanotechnology offer new approaches for HF re...
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Veröffentlicht in: | Biomaterials 2023-11, Vol.302, p.122348-122348, Article 122348 |
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Sprache: | eng |
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Zusammenfassung: | The hair follicle (HF) is a multicellular complex structure of the skin that contains a reservoir of multipotent stem cells. Traditional hair repair methods such as drug therapies, hair transplantation, and stem cell therapy have limitations. Advances in nanotechnology offer new approaches for HF regeneration, including controlled drug release and HF-specific targeting. Until recently, embryogenesis was thought to be the only mechanism for forming hair follicles. However, in recent years, the phenomenon of wound-induced hair neogenesis (WIHN) or de novo HF regeneration has gained attention as it can occur under certain conditions in wound beds. This review covers HF-specific targeting strategies, with particular emphasis on currently used nanotechnology-based strategies for both hair loss-related diseases and HF regeneration. HF regeneration is discussed in several modalities: modulation of the hair cycle, stimulation of progenitor cells and signaling pathways, tissue engineering, WIHN, and gene therapy. The HF has been identified as an ideal target for nanotechnology-based strategies for hair regeneration. However, some regulatory challenges may delay the development of HF regeneration nanotechnology based-strategies, which will be lastly discussed.
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•Microneedles, nanoparticles and exogenous stimulation enable hair follicle targeting•Current hair loss treatments have limitations and lead to poor results•Techniques based on nanotechnology provide advantages for hair follicle regeneration•Tissue engineering and wound-induced hair neogenesis are optimized with nanotechnology•There is a lack of regulatory guidance for nanotechnology-based techniques |
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ISSN: | 0142-9612 1878-5905 |
DOI: | 10.1016/j.biomaterials.2023.122348 |