82 citations
,
March 2012 in “Development” This study found that deleting the miRNA processing enzymes Drosha and Dicer from mouse skin epithelial cells disrupted normal hair follicle development and maintenance, leading to follicular degradation and stem cell loss during the growth phase.
40 citations
,
March 2022 in “Small” In an animal model, this study found that PEG hydrogels delivering M2 macrophage-derived exosomes effectively promoted M1 to M2 macrophage transition and enhanced wound healing.
34 citations
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October 2021 in “Scientific Reports” This study found that nobiletin-loaded vesicles effectively restored skin condition in a mouse model of skin cancer, suggesting they are a promising treatment delivery system.
17 citations
,
May 2018 in “BMC genomics” This study found that miR-432 inhibits KRT83 expression, revealing potential molecular mechanisms for the formation of curly fleece in Tan sheep and suggesting implications for understanding curly hair formation in humans.
14 citations
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March 2017 in “Genes and immunity” Certain microRNAs may help treat alopecia areata by targeting immune pathways.
14 citations
,
December 2014 in “PubMed” This study found that melatonin implants in cashmere goats significantly altered the expression pattern and co-expression of miRNAs, suggesting a possible role in inducing a second growth of cashmere.
13 citations
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June 2024 in “BMC Genomics” This study found distinct expression patterns of various transcription types during hair follicle morphogenesis, providing a foundation for understanding hair development mechanisms and aiding selective breeding for desirable wool traits in a specific breed.
12 citations
,
October 2021 in “Cells” This review discusses the potential of miRNA-mediated hair growth treatments for androgenetic alopecia by targeting DKK1 to modulate the Wnt/β-catenin signaling pathway and reports no new clinical findings.
10 citations
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December 2020 in “Experimental and Molecular Pathology” This study found that patients with androgenetic alopecia exhibit specific miRNA expression profiles, suggesting that abnormal miR-133b expression may inhibit the Wnt/β-catenin pathway and affect hair growth.
8 citations
,
July 2017 in “The journal of investigative dermatology/Journal of investigative dermatology” This study identified four circulating microRNAs as highly predictive of frontal fibrosing alopecia status, suggesting potential roles in diagnostics and disease understanding.
6 citations
,
October 2013 in “Yichuan” This review summarizes the role of miRNAs in epidermal and hair follicle development, highlighting their potential impact on understanding gene regulatory networks and applications in disease treatment and molecular breeding.
5 citations
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February 2023 in “Genes” In this study, researchers found that specific miRNAs may regulate cashmere fiber traits in goats by targeting genes related to hair follicle activities, with significant expression differences between breeds.
5 citations
,
October 2022 in “BMC genomics” In this study, researchers identified key miRNAs and target genes involved in hair follicle development in Merino sheep, providing insights that could aid in improving sheep breeding for wool quality.
3 citations
,
October 2023 in “Frontiers in physiology” This study reviewed competing endogenous RNA networks related to skin aging and wound healing, finding mechanisms like UVB-induced senescence and photoaging, as well as potential therapeutic targets for improving skin health and recovery.
3 citations
,
January 2023 in “International journal of molecular sciences” In this study, researchers found that miR-143-3p may play a novel role in cashmere growth by directly repressing the expression of Itga6 in secondary hair follicles of goats.
2 citations
,
July 2025 in “Frontiers in Veterinary Science” This review highlights that microRNAs (miRNAs) play crucial roles in hair follicle development and cycling in cashmere goats, detailing recent advances in understanding their regulatory functions and potential applications in improving cashmere fiber quality and diagnosing hair disorders.
2 citations
,
January 2017 in “International journal of genetics and genomics” This study identified specific miRNAs associated with hair follicle development in chicken embryos, highlighting miR-1623's involvement in regulating WNT4 and contributing to hair follicle cell growth.
1 citations
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October 2023 in “BMC Genomics” This study identified miRNAs within the Dlk1-Gtl2 region on chromosome 18 as potential epigenetic regulators of lamb fur traits, with possible implications for the PI3K-AKT signaling pathway.
1 citations
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December 2022 in “PubMed” This study identified a long noncoding RNA, LOXL1-AS1, with potential diagnostic significance in androgenic alopecia, which may regulate TP53 expression by targeting hsa-miR-5193 within a ceRNA network.
1 citations
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January 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” This study suggests that Dicer, but not Tarbp2, plays a crucial role in regulating the growth phase of hair follicles in bulge stem cells during post-natal development in mice.
1 citations
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January 2020 in “International Journal of Agriculture and Biology” In this study, researchers identified known and novel miRNAs in Liaoning Cashmere goat skin and found differences in miRNA expression linked to cashmere fineness, providing new insights into LCG goat skin biology.
May 2026 in “Zenodo (CERN European Organization for Nuclear Research)” In this research, lipidomic, proteomic, and metabolomic analyses of exosomes from seven Ashwagandha seed batches revealed that Ashwagandha-derived exosome-like nanovesicles can up-regulate VEGF-A production and promote hair growth in human models tested outside the body.
May 2026 in “Zenodo (CERN European Organization for Nuclear Research)” In this study, researchers conducted a comprehensive analysis of seven Ashwagandha seed exosome lots and found that treatment with these exosome-like nanovesicles can up-regulate VEGF-A production and promote human hair growth in an ex vivo model.
April 2026 in “Zenodo (CERN European Organization for Nuclear Research)” This paper provides an auditable companion package for their exploratory re-analysis of miRNA dysregulation and target enrichment in female pattern hair loss cases, focusing on candidate-level results from a public dataset comparison between affected individuals and healthy controls.
April 2026 in “Zenodo (CERN European Organization for Nuclear Research)” This study presented a reproducibility package supporting an exploratory secondary analysis of miRNA dysregulation and aging-related target enrichment in female pattern hair loss, based on a comparison of three scalp samples from affected women to five healthy controls using public dataset GSE106780.
April 2026 in “Zenodo (CERN European Organization for Nuclear Research)” In this study, researchers conducted an exploratory re-analysis of miRNA dysregulation and aging-related target enrichment in female pattern hair loss using data from public GEO dataset GSE106780. The findings are preliminary and should be interpreted as candidate-level results due to the small sample size.
April 2026 in “Zenodo (CERN European Organization for Nuclear Research)” In this study, researchers conducted an exploratory re-analysis of miRNA dysregulation and aging-related target enrichment using publicly available data on female pattern hair loss, comparing 3 FPHL scalp samples to 5 healthy female controls, and emphasized that the findings are preliminary and require further validation.
February 2026 in “Cosmetics” This study found that bovine milk-derived exosomes (MEV-miRNAs) significantly increased hair follicle dermal papilla cell viability and up-regulated key WNT signaling components in human hair follicles, suggesting potential therapeutic benefits for androgenetic alopecia and telogen effluvium through modulation of hair growth pathways.
January 2026 in “Non-coding RNA Research” This study found that low-passage exosomes from dermal papilla cells enhance hair follicle stem cell proliferation and that miR-218-5p may serve as a potential biomarker and therapeutic target for hair growth.
November 2025 in “Pharmacological Research” In this study, researchers found that exosome-like nanoparticles isolated from Polygoni Multiflori Radix can promote hair growth in mice by modulating androgen signaling and gene expression, outperforming Minoxidil in testosterone-induced conditions.