16 citations
,
January 2015 in “Genetics and Molecular Research” This study conducted de novo transcriptome sequencing in sheep skin, identifying and annotating numerous unigenes, which may aid in improving wool quality and understanding hair follicle development.
3 citations
,
February 1992 in “Journal of veterinary medicine. Series A” This study found that an adult female farm-raised blue fox exhibited an abnormal hair growth cycle and seasonal estradiol variation, with a delayed winter coat cycle resulting in spring shedding.
9 citations
,
April 2018 in “Canadian Journal of Animal Science” This study found that LEF-1 expression influences dermal papilla cells' proliferation through Wnt signaling, impacting the potential for cashmere yield improvement.
39 citations
,
January 2020 in “Scientific Reports” This study identified four circRNAs with significantly different expression levels in Liaoning cashmere goats, suggesting a potential role in regulating cashmere fineness.
January 2013 in “Wool textile journal” January 2020 in “International journal of agriculture & biology/International journal of agriculture and biology” This review examines the development and molecular mechanisms of hair follicle and wool traits in sheep, but reports no new results, aiming to support breeding and selection strategies.
January 2012 in “Heilongjiang xumu shouyi” This study found that EGF and KGF were expressed at different levels in the skin of Gansu alpine Merino sheep, suggesting these factors influence wool fineness.
This research explores the use of serial block-face scanning electron microscopy to model the complex architecture of sheep wool fibres, focusing on the role and distribution of para- and ortho-cortical cells in determining wool curliness, though the mechanism remains unclear.
1 citations
,
May 2024 in “Animal Biotechnology” In cashmere goats, this study found that reducing miR-361-5p levels activates secondary hair follicle stem cells by upregulating the FOXM1 gene, which in turn stimulates the Wnt/β-catenin pathway, crucial for cashmere fiber morphogenesis.
5 citations
,
May 2021 in “Small ruminant research” This study of Liaoning cashmere goats identified nine keratin proteins as markers of the secondary hair follicle cycle, providing insights that may enhance cashmere quality and production.
January 2011 in “Leather Science and Engineering” This study found that rabbit skin histology revealed changes in collagen and elastic fibers after soaking, dehairing, and tanning processes, impacting fiber tightness and fur removal.
12 citations
,
February 2022 in “Gene” In this study, researchers found that the FOS gene may play a significant role in promoting hair follicle development in Tan sheep between birth and the Er-mao period.
19 citations
,
February 2022 in “Journal of Investigative Dermatology” Mechanical stretching can improve or hinder skin regeneration depending on duration.
January 2023 in “Theranostics” This study demonstrated that a mechanical-chemical cascade involving dermal cell contraction and the activation of Piezo1 in epidermal cells is crucial for initiating interactions necessary for hair follicle regeneration in skin organoids.
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.
November 2024 in “Comparative Biochemistry and Physiology Part D Genomics and Proteomics” In this study, epithelial cell-derived exosomes promoted fibroblast migration and inhibited their proliferation, suggesting a role in dermal condensate formation and hair follicle morphogenesis in cashmere goats.
36 citations
,
June 1988 in “Australian Journal of Biological Sciences” This study found that twice-daily intradermal injections of mouse epidermal growth factor in Merino sheep resulted in dose-dependent changes in wool follicles and fibres, including induction of catagen and subsequent regeneration.
March 2026 in “Scientific Data” This study mapped the genome-wide epigenetic landscape in secondary hair follicle stem cells of goats, revealing distinct histone modification signatures associated with cashmere fiber cycling during different stages of hair growth.
October 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” This study found that treating secondary hair follicle stem cells from Arbas cashmere goats with quercetin at 10 μg/mL for 48 hours significantly enhanced cell proliferation and reduced apoptosis, suggesting potential strategies to improve cashmere production through various signaling pathways.
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 chapter reviews fungal skin diseases in cattle and reports no new findings; the authors discuss conditions like sterile eosinophilic folliculitis and anagen defluxion, noting their patterns and effects.
January 2005 in “Jukuri (Natural Resources Institute Finland (Luke))” This study found that lower dietary protein with supplemented methionine allowed blue foxes to grow normally and produce high-quality pelts while reducing feed costs and environmental phosphorus and nitrogen loads.
January 2024 in “Collagen and leather” This study observed that using an environmentally friendly bovine milk permeate effectively and cleanly removes wool from sheepskins without harming the skin, and results in smoother leather compared to traditional chemical methods.
23 citations
,
March 2019 in “Gene” In this study, researchers found that the evolutionary and structural features of the oFGF5 gene in sheep may influence hair follicle development and hair growth regulation.
14 citations
,
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.
In this study, FGF5-knockout Dorper sheep generated using CRISPR/Cas9 showed increased fine-wool and active hair-follicle density, suggesting potential therapeutic applications for androgen alopecia.
17 citations
,
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.
6 citations
,
August 2023 in “BMC genomics” This study found that Tibetan cashmere goats have genetic adaptations that contribute to their finer cashmere, possibly enhancing their ability to withstand the cold climate of the Tibetan plateau, while identifying specific genes related to hair growth, pigmentation, and heart development.
2 citations
,
January 2006 in “Indian Journal of Veterinary Pathology” In this study of sheep across various breeds and ages, researchers found that Trichophyton mentagrophytes caused severe dermatophytosis, especially affecting young Shahbadi sheep during winter, leading to notable anemia and skin lesions.
1 citations
,
July 2025 in “Frontiers in Veterinary Science” This study examined genetic adaptations in Tibetan sheep through whole-genome resequencing, identifying key genes related to hypoxia tolerance, wool color, and body size. These findings provide a foundation for future molecular breeding strategies to enhance wool quality and adaptive traits in these high-altitude environments.