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ISX9 loaded thermoresponsive nanoparticles for hair follicle regrowth

There is a high demand for an optimal drug delivery system to treat androgenetic alopecia. Topical application of ISX9, which is a neurogenesis inducer, has been found to stimulate hair follicle (HF) regrowth by upregulating the Wnt/β-catenin signaling pathway, an essential pathway involved in initi...

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Autores principales: Sayed, Sapna, Shekh, Mehdihasan, Song, Jiaxing, Sun, Qi, Dai, Han, Xue, Vivian Weiwen, Liu, Shanshan, Du, Bing, Zhou, Guangqian, Stadler, Florian J., Zhu, Guangming, Lu, Desheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10682119/
https://www.ncbi.nlm.nih.gov/pubmed/38033366
http://dx.doi.org/10.1016/j.mtbio.2023.100849
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author Sayed, Sapna
Shekh, Mehdihasan
Song, Jiaxing
Sun, Qi
Dai, Han
Xue, Vivian Weiwen
Liu, Shanshan
Du, Bing
Zhou, Guangqian
Stadler, Florian J.
Zhu, Guangming
Lu, Desheng
author_facet Sayed, Sapna
Shekh, Mehdihasan
Song, Jiaxing
Sun, Qi
Dai, Han
Xue, Vivian Weiwen
Liu, Shanshan
Du, Bing
Zhou, Guangqian
Stadler, Florian J.
Zhu, Guangming
Lu, Desheng
author_sort Sayed, Sapna
collection PubMed
description There is a high demand for an optimal drug delivery system to treat androgenetic alopecia. Topical application of ISX9, which is a neurogenesis inducer, has been found to stimulate hair follicle (HF) regrowth by upregulating the Wnt/β-catenin signaling pathway, an essential pathway involved in initiating HF growth and development. In the present study, a temperature-sensitive, biopolymer-based, biocompatible, and eco-friendly drug-delivery system was synthesized. This system comprised chitosan-grafted poly(glycidyl methacrylate-co-N-isopropyl acrylamide) (Poly(GMA-co-NIPAAm)@CS-PGNCS) as the shell component and PF127 as the core polymer. The hydrophobic nature of the PF127 block copolymer efficiently dissolved the partially water-soluble drug, ISX9, and the thermos-responsive shell polymer effectively released the drug at a definite skin temperature. The optimized spherical nanoparticles demonstrated the lowest critical solution temperature (LCST) at 32 ± 2 °C with a diameter of 100–250 nm, which delivered encapsulated ISX9 with greater precision than topical ISX9. In a series of in vivo experiments, we demonstrated that ISX9-coated TBNPs upregulated the expression of β-catenin, active β-catenin, Wnt target genes, stemness marker genes, proliferating cell nuclear antigen, HF stem cell markers, and HF markers including VEGF, TGF, and IGF-1 more effectively than topical ISX9. These results suggest that TBNPs could be employed as a platform for effective transdermal delivery of various hydrophobic drugs.
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spelling pubmed-106821192023-11-30 ISX9 loaded thermoresponsive nanoparticles for hair follicle regrowth Sayed, Sapna Shekh, Mehdihasan Song, Jiaxing Sun, Qi Dai, Han Xue, Vivian Weiwen Liu, Shanshan Du, Bing Zhou, Guangqian Stadler, Florian J. Zhu, Guangming Lu, Desheng Mater Today Bio Full Length Article There is a high demand for an optimal drug delivery system to treat androgenetic alopecia. Topical application of ISX9, which is a neurogenesis inducer, has been found to stimulate hair follicle (HF) regrowth by upregulating the Wnt/β-catenin signaling pathway, an essential pathway involved in initiating HF growth and development. In the present study, a temperature-sensitive, biopolymer-based, biocompatible, and eco-friendly drug-delivery system was synthesized. This system comprised chitosan-grafted poly(glycidyl methacrylate-co-N-isopropyl acrylamide) (Poly(GMA-co-NIPAAm)@CS-PGNCS) as the shell component and PF127 as the core polymer. The hydrophobic nature of the PF127 block copolymer efficiently dissolved the partially water-soluble drug, ISX9, and the thermos-responsive shell polymer effectively released the drug at a definite skin temperature. The optimized spherical nanoparticles demonstrated the lowest critical solution temperature (LCST) at 32 ± 2 °C with a diameter of 100–250 nm, which delivered encapsulated ISX9 with greater precision than topical ISX9. In a series of in vivo experiments, we demonstrated that ISX9-coated TBNPs upregulated the expression of β-catenin, active β-catenin, Wnt target genes, stemness marker genes, proliferating cell nuclear antigen, HF stem cell markers, and HF markers including VEGF, TGF, and IGF-1 more effectively than topical ISX9. These results suggest that TBNPs could be employed as a platform for effective transdermal delivery of various hydrophobic drugs. Elsevier 2023-11-03 /pmc/articles/PMC10682119/ /pubmed/38033366 http://dx.doi.org/10.1016/j.mtbio.2023.100849 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Full Length Article
Sayed, Sapna
Shekh, Mehdihasan
Song, Jiaxing
Sun, Qi
Dai, Han
Xue, Vivian Weiwen
Liu, Shanshan
Du, Bing
Zhou, Guangqian
Stadler, Florian J.
Zhu, Guangming
Lu, Desheng
ISX9 loaded thermoresponsive nanoparticles for hair follicle regrowth
title ISX9 loaded thermoresponsive nanoparticles for hair follicle regrowth
title_full ISX9 loaded thermoresponsive nanoparticles for hair follicle regrowth
title_fullStr ISX9 loaded thermoresponsive nanoparticles for hair follicle regrowth
title_full_unstemmed ISX9 loaded thermoresponsive nanoparticles for hair follicle regrowth
title_short ISX9 loaded thermoresponsive nanoparticles for hair follicle regrowth
title_sort isx9 loaded thermoresponsive nanoparticles for hair follicle regrowth
topic Full Length Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10682119/
https://www.ncbi.nlm.nih.gov/pubmed/38033366
http://dx.doi.org/10.1016/j.mtbio.2023.100849
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