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.
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.
This study identified various non-coding RNAs (ncRNAs) and mRNAs differentially expressed in skin tissues of two coat types of Jinlan Cashmere Goats, suggesting potential regulatory networks that could inform precision breeding strategies to improve cashmere quality and yield.
7 citations
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October 2023 in “BMC Genomics” In this study, researchers used transcriptome sequencing to identify various noncoding RNAs in the skin tissues of Jiangnan cashmere goats and found that certain long noncoding RNAs may play a role in regulating cashmere fiber fineness, offering new insights for breeding programs.
2 citations
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September 2022 in “Frontiers in veterinary science” In this study, researchers used high-throughput sequencing to explore lncRNA interactions in cashmere goat hair follicles during embryonic development, finding lncRNAs potentially regulate genes in the Wnt and PI3K-Akt pathways related to hair follicle growth.
1 citations
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May 2025 in “Scientific Reports” In this study, researchers analyzed skin tissues from two types of Jinlan Cashmere Goats and identified crucial non-coding RNA mechanisms potentially impacting cashmere yield, revealing significant DE lncRNAs, mRNA expressions, and pathways relevant to cashmere quality improvement.
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.
January 2025 in “BMC Genomics” In this study, researchers identified thousands of mRNA, lncRNA, circRNA, and miRNA transcripts involved in different hair follicle stages of Rex rabbits and highlighted significant gene expression changes and pathway enrichments, providing insights into the regulatory mechanisms of hair development in these animals.
Among Super Merino and Small-Tailed Han sheep, this study identified differentially expressed long non-coding RNAs and mRNAs linked to hair follicle growth and fiber traits, suggesting their potential roles in regulating these important wool characteristics through RNA sequencing and gene enrichment analyses.
32 citations
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May 2018 in “Cell Cycle” This study found that melatonin exposure promoted hair follicle fiber growth in Cashmere goat cultures, potentially influencing pathways related to the microvascular system and extracellular matrix.
This study identified specific lncRNAs and mRNAs differentially expressed in miniaturized follicles compared to normal follicles in patients with androgenetic alopecia, with AL136131.3 potentially inhibiting hair growth and accelerating follicle transition to catagen through effects on glycolysis-related genes.
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.
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.
24 citations
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May 2022 in “BMC Veterinary Research” This study identified key mRNAs and lncRNAs, along with related pathways, that play potentially important roles in hair follicle development and cycling in cashmere goats.
July 2023 in “Frontiers in veterinary science” In this study, researchers analyzed skin samples from Dorper sheep to identify 395 differentially expressed long non-coding RNAs (lncRNAs) linked to hair follicle growth phases, suggesting these lncRNAs may play a role in the regulation of hair shedding through pathways like estrogen and PI3K-Akt signaling.
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.
2 citations
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January 2002 in “Hormone Research in Paediatrics” This review discusses molecular testing for endocrine diseases, highlighting its diagnostic benefits and potential for prevention, particularly in conditions like multiple endocrine neoplasia type 2 and adrenogenital syndrome, but reports no new clinical results.
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.
January 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” This study found that DNA methylation regulates hair follicle differentiation in cashmere goats by suppressing gene expression during induction and enhancing it during differentiation, with potential involvement of specific lncRNAs.
January 2020 in “Columbia Academic Commons (Columbia University)” This study utilized targeted genomic sequencing and whole exome sequencing to identify novel common and rare genetic variants in Alopecia Areata, revealing potential mechanisms contributing to disease susceptibility.
46 citations
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August 2022 in “Animals” This study identified key genes and miRNAs involved in feather morphogenesis in Zhedong White geese, highlighting a negative correlation between FOXO3 and miR-144-y.
January 2024 in “Journal of camel practice and research/Journal of Camel Practice and Research” This study analyzed the KRTAP7 gene in four Indian camel breeds and found that the gene sequences were identical across breeds, with no observed SNPs in coding or non-coding regions.
15 citations
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April 2017 in “Hormones” This review discusses the roles of glucocorticoids and glucocorticoid receptors, and it explores potential genetic and non-genetic causes of glucocorticoid resistance or hypersensitivity syndromes, reporting no new clinical results.
11 citations
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July 2010 in “European Journal of Dermatology” In this study, researchers confirmed linkage of a form of hair-nail ectodermal dysplasia to chromosome 12 in a Pakistani family, suggesting a possible non-coding mutation in KRTHB5 or a mutation in an unknown gene.
June 2024 in “Computational and Structural Biotechnology Journal” This review discusses the integration of omics analyses in androgenetic alopecia research, reporting no new clinical results but suggesting that collaborative multi-omics studies may enhance understanding of AGA's pathomechanisms.
8 citations
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December 2017 in “Small Ruminant Research” This study reports that variation in the ovine TCHH gene may influence wool fibre curvature, with specific gene variants affecting the mean fibre curvature in sheep.
June 2022 in “Authorea (Authorea)” This review discusses various methods for delivering CRISPR/Cas9 for gene editing in vitro and in vivo, highlighting delivery as a major challenge but reports no new experimental results.
3 citations
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May 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” In this study, researchers identified loss of function variants in the HR gene as likely causes of the distinct roaning hair coat seen in lykoi cats.
5 citations
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May 2024 in “BMC Genomics” This study analyzed the transcriptome of the Tianzhu white yak, identifying differential transcripts that shed light on the molecular mechanisms influencing hair length growth variation in this species.
336 citations
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August 2015 in “European Journal of Epidemiology” This article reviews the design and objectives of the Rotterdam Study, as well as summarizes major findings, without reporting new results.