November 2022 in “Annals of Translational Medicine” This study identified four hub genes that are closely linked to the causative factors of androgenetic alopecia, suggesting potential diagnostic and therapeutic targets.
14 citations
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June 2020 in “BMC genomics” This study observed that the growth cycle of cashmere in Inner Mongolian cashmere goats consists of three phases, with genes KAP3–1, KRTAP 8–1, and KRTAP 24–1 closely correlating with this cycle.
2 citations
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September 2023 This study found that among Inner Mongolian cashmere goats, body weight gain during the non-growing period positively correlated with increases in cashmere yield, staple length, and secondary hair follicle activity, suggesting that nutritional interventions may enhance cashmere production.
February 2026 in “Pakistan Veterinary Journal” In this study of White cashmere goat ewes and their offspring in Tibet, selenium and vitamin E supplementation improved antioxidant capacity and serum biochemical indices and enhanced secondary hair follicle development in lambs, but did not significantly alter fecal microbiota composition.
December 2020 in “Research Square (Research Square)” This study identifies a strong association between a 505-bp indel mutation in the FGF5 gene and cashmere growth in goats, suggesting potential use as a genetic marker in breeding programs.
February 2020 in “Research Square (Research Square)” In this study, the researchers identified key genes, including KAP and KRTAP, that correlate with the secondary hair follicle growth cycle in Inner Mongolian cashmere goats, emphasizing March as the significant transition month.
12 citations
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April 2009 in “Agricultural sciences in China/Agricultural Sciences in China” This study found that during hair follicle morphogenesis in embryos, the expression pattern of the Hoxc13 gene and skin thickness show similar trends, suggesting possible regulatory mechanisms within Hoxc13 intron regions.
11 citations
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January 1987 in “Australian Journal of Experimental Agriculture” In this study, Australian cashmere goats receiving protein supplements maintained their weight and showed increased fleece growth, though cashmere growth was largely unaffected.
3 citations
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December 2008 in “Frontiers of Agriculture in China” This study identified and sequenced a goat hair keratin cDNA that matches closely with its sheep counterpart, showing strong expression in hair follicle cortex.
2 citations
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February 2022 in “Genomics” This study used cashmere goats to map the differentiation of dermal papilla stem cells and identified key intermediate cell states involved in hair follicle regeneration.
May 2025 in “BMC Genomics” This study found that circ 0020938 suppresses hair follicle stem cell proliferation by interacting with the miR-142-5p/DSG4 axis, which aids in the hair follicle cycle's proper progression.
April 2023 in “Research Square (Research Square)” This study found that melatonin-mediated lncRNA018392 accelerated cell proliferation and inhibited apoptosis in cashmere goat skin fibroblasts by upregulating the expression of the nearby gene CSF1R.
January 2012 in “Zhongguo nongye Kexue” This study concluded that transgenic somatic cell nuclear transfer technology can produce cashmere goat blastocysts carrying the K2.9 gene using specific fibroblast cells and activation methods.
January 2008 in “农业科学与技术(英文版)” In this study, estradiol at higher concentrations inhibited the growth of cashmere goat hair follicles, suggesting a dose-dependent effect on follicle morphology and growth.
56 citations
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August 1994 in “PubMed” This study found that prolactin and melatonin both stimulated hair shaft elongation in Cashmere goat hair follicles, with maximum growth observed at specific concentrations, although melatonin reduced follicle viability after 96 hours.
33 citations
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December 2017 in “Saudi Journal of Biological Sciences” In this study, researchers found that microRNAs in the oar-let-7 and oar-miR-200 families were significantly up-regulated during critical fetal periods of cashmere goat hair follicle development, suggesting their role in this process.
26 citations
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July 1995 in “Small ruminant research” This study found that melatonin implants at specific times of the year may increase cashmere production in young Australian cashmere goats by altering their growth cycles.
14 citations
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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.
11 citations
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December 2020 in “G3 Genes Genomes Genetics” This study confirmed that chi-miR-130b-3p regulates the proliferation of epithelial cells and dermal fibroblasts by targeting the WNT10A gene, which may help maintain hair follicle structure.
7 citations
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January 2023 in “Journal of Animal Science” This study found that the miRNA chi-miR-877-3p affects hair follicle cycles in Jiangnan cashmere goats by regulating IGFBP5 gene expression and cell proliferation.
2 citations
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March 2018 in “Biotechnology Letters” In this study, researchers established three specific cell lines from Cashmere goat hair follicles and found that cytokeratin 13 might be a novel biomarker for identifying dermal sheath cells.
1 citations
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January 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” This study provided a detailed molecular profile of Cashmere goat hair follicle development using single-cell RNA sequencing, revealing unique cell populations and conserved developmental programs compared to mouse models.
1 citations
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July 2019 in “Small ruminant research” This study suggests that the NGF/TrkA/CREB system plays a crucial role in promoting outer root sheath cell proliferation in cashmere goats, which may aid in marker-assisted breeding.
This study found that VDAC2 promotes apoptosis in secondary hair follicle stem cells of Albas cashmere goats by activating the P53 signaling pathway, with knockdown of VDAC2 reducing apoptosis and a P53 inhibitor partially rescuing VDAC2-induced apoptosis.
May 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” This study identified 4,942 differentially expressed genes and key candidate genes involved in the hair follicle development and cashmere quality differences between Jiangnan and Changthangi goats, highlighting potential molecular targets for genetic improvement of cashmere goats.
May 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” In this study, researchers analyzed the skin transcriptomes of Jiangnan cashmere goats and Changthangi pashmina goats, identifying 4,942 differentially expressed genes involved in pathways affecting cashmere quality, which could inform future genetic improvements in cashmere goat breeding.
May 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” This study examined the skin transcriptomic differences between Jiangnan and Changthangi cashmere goats, identifying 4,942 differentially expressed genes that may contribute to variations in cashmere quality, with notable enrichment in various signaling pathways and structural components of hair follicles.
May 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” This study identified 4,942 differentially expressed genes between Jiangnan cashmere goats and Changthangi pashmina goats, mainly involving the PI3K-Akt pathway, with 24 key genes potentially affecting cashmere quality, offering insights for future genetic improvements.
This study found that melatonin promotes the growth of secondary hair follicles in Inner Mongolian cashmere goats by enhancing the activity and proliferation of dermal papilla cells through involving the Wnt10b gene, though the detailed mechanisms remain undetermined.
September 2020 in “Research Square (Research Square)” This study observed that specific genes in cashmere goat skin exhibit a seasonal rhythm, potentially adapting to environmental light changes, which may affect downstream gene expression and physiological processes.