112 citations
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September 2021 in “BMC Biology” This study found that specific gene expressions during different stages of hair follicle development in Merino sheep are linked to wool-related traits, and may also be relevant to human skin, metabolic, and immune traits.
12 citations
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June 2017 in “Cell Cycle” This study observed that 5% minoxidil topical foam alters gene expression and signaling pathways in the scalp, providing insights into its mechanism of action in men with androgenetic alopecia.
3 citations
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June 2025 in “Drug Design Development and Therapy” This review highlights the role of disrupted glycolysis in exacerbating reproductive and metabolic abnormalities in PCOS and suggests that agents like metformin and resveratrol may help restore glycolytic balance and improve ovarian function.
1 citations
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April 2025 in “Frontiers in Medicine” This editorial synthesizes research on UV-induced skin damage, highlighting potential therapeutic strategies by mapping cellular changes, identifying molecular mechanisms, demonstrating melanocyte protection, and proving combination therapy effectiveness in conditions like vitiligo.
August 2026 in “International Journal of Research in Medical Sciences” This article reviews how epigenetic modifications, particularly DNA methylation, histone modification, and non-coding RNA pathways, affect the development of skin diseases, suggesting potential for personalized treatments that target these changes.
March 2025 in “International Journal of Molecular Sciences” This review explores melatonin's role in hair follicle cycles and its molecular mechanisms that enhance antioxidant capacity and modulate gene expression, offering potential strategies to improve cashmere production and treating human alopecia, according to the authors.
May 2023 in “Research Square (Research Square)” This study found that botulinum toxin type A may reduce apoptosis in dermal papillary cells induced by dihydrotestosterone through the circ_0135062/miR-506-3p/Bax axis.
November 2022 in “Scientific Data” This study identified downstream genes regulated by androgen receptor signaling in dermal papilla cells and suggests potential molecular targets for treating androgenetic alopecia and prostate cancer.
January 2025 in “Repository of Digital Objects for Teaching Research and Culture (University of Valencia)” This research highlights the potential of non-coding RNAs as biomarkers and therapeutic targets in dermatology, while experimental studies on a unique GVM case suggest CCM2L may modulate disease severity, advancing understanding of genetic mechanisms in rare skin disorders.
January 2014 in “eScholarship (California Digital Library)” In this study, researchers observed that TLR3 and scavenger receptors play key roles in skin barrier repair following UVB damage, contributing to our understanding of cellular responses to skin injury.
147 citations
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November 2020 in “International Journal of Molecular Sciences” This review discusses the immune roles of keratinocytes in wound healing and chronic wound inflammation, emphasizing their potential impact on chronic wound pathology and highlighting areas for future research.
26 citations
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April 2019 in “Genes” In this study, researchers identified novel long non-coding RNAs related to cashmere fineness in goats, highlighting a potential regulatory network involving lncRNA XLOC_008679 and its target gene KRT35.
25 citations
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August 2017 in “Animal Biotechnology” This study identified and characterized several long noncoding RNAs in Cashmere goats, revealing complex regulatory roles in hair follicle development and growth, particularly within the Wnt signaling pathway.
17 citations
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June 2019 in “BMC genomics” This study cataloged several long non-coding RNAs and microRNAs in cashmere goat dermal papilla cells, suggesting these non-coding RNAs may play a role in hair follicle stem cell activation and hair growth.
9 citations
,
March 2015 in “The journal of investigative dermatology/Journal of investigative dermatology” This symposium reviewed various advances in understanding and potentially reversing skin aging, with no new experimental results reported.
1 citations
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May 2025 in “BMC Genomics” In this study, researchers identified key lncRNAs and target genes potentially involved in the transformation of the hair follicle cycle, which could advance understanding of lncRNAs' roles in hair follicle development.
March 2024 in “Cytologia” In this study, researchers observed that melatonin-mediated LncRNA MTC in Liaoning cashmere goat skin fibroblasts enhances cell proliferation by interacting with the GSTM1 protein, affecting its complex formation with ASK1 and thereby inhibiting apoptosis, which may be relevant for improving cashmere growth.
May 2022 in “Frontiers in Cell and Developmental Biology” This study identified that in pig embryos, the miR-29a-5p/EDAR/lncRNA627.1 ceRNA complex plays a critical role in inhibiting hair placode precursor cells proliferation and regulating hair placode formation through the suppression of EDAR expression, which may provide insights into similar mechanisms affecting human hair conditions.
August 2019 in “Research Square (Research Square)” This study explored how long non-coding RNA mediates the effects of FGF5 on the hair follicle development and villus growth of Liaoning cashmere goats.
21 citations
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January 2020 in “Brazilian Journal of Medical and Biological Research” This study found that lncRNA H19 may regulate CTGF expression in KGN cells by acting as a "sponge" for miR-19b, potentially influencing polycystic ovary syndrome development.
2 citations
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November 2024 in “PeerJ” This study identified a wide range of differentially expressed lncRNAs and mRNAs in the hair follicles of Hetian sheep, which may be useful for further research on improving carpet wool quality.
27 citations
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February 2023 in “Frontiers in Cell and Developmental Biology” This review discusses the expanded understanding of WNT10B's role in various tissues and diseases over the past decade, emphasizing its genetic correlations and potential therapeutic implications, but reports no new clinical results.
27 citations
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April 2017 in “Journal of Investigative Dermatology” The researchers reported that noncoding double-stranded RNA promotes wound-induced hair neogenesis in mice by modulating prostaglandin and Wnt levels.
17 citations
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June 2020 in “Animals” This study identified differentially expressed mRNAs and lncRNAs in Hu sheep hair follicles, suggesting certain genes and pathways are involved in the development of wool curvature patterns.
7 citations
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August 2020 in “Animal biotechnology” This study found that lncRNA-599547 positively regulates the expression of the Wnt10b gene by interacting with miR-15b-5p, enhancing the inductive property of dermal papilla cells in cashmere goats.
2 citations
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August 2013 in “Journal of Investigative Dermatology” This review discusses the dynamic changes in chromatin organization and nuclear morphology during cellular processes like differentiation and disease, highlighting recent advances in understanding these epigenetic mechanisms without presenting new experimental findings.
1 citations
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November 2025 in “Clinical and Experimental Medicine” This review highlights the emerging role of long non-coding RNAs (lncRNAs) in dermatology, suggesting that lncRNAs significantly impact signaling pathways involved in normal skin functions and skin diseases, offering potential as biomarkers and therapeutic targets.
September 2024 in “PubMed” This study found that patients with alopecia areata have distinct mRNA and lncRNA expression profiles between normal and bald scalp areas, identifying differentially expressed genes and revealing potential biomarkers for diagnosis, with keratin family genes possibly playing a key role in the disease's pathogenesis.
July 2023 in “Indian Journal of Animal Health” This study found that fibroblast growth factor 5 may enhance Cashmere goat hair growth by altering the expression of specific genes related to keratin and keratin-associated proteins.
4 citations
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October 2024 in “Experimental Dermatology” In this study, researchers identified 173 differentially expressed genes in alopecia areata patients linked to immune and hair follicle pathways, constructed a regulatory network involving mRNA, miRNA, and lncRNA, and highlighted CD8A and FOXD2-AS1 as potential diagnostic markers and therapeutic targets.