45 citations
,
October 2015 in “BMC Genomics” This study identified morphotype-specific gene expression patterns in feathers, enhancing understanding of the molecular and cellular processes involved in feather development and diversification.
25 citations
,
October 2018 in “PloS one” This study explored hair follicle gene expression in Inner Mongolia Cashmere goats and identified potential regulators of the transition between growth phases, including IL17RB and ZNF genes.
24 citations
,
November 2021 in “PLoS ONE” In this study, fractional laser treatment was observed to reverse age-related gene expression changes in skin and enhance dermal remodeling, further improved by multiple treatments.
7 citations
,
October 2018 in “BMC genomics” This study reveals that β-catenin and retinoic acid are key regulators in the gene networks controlling the fate of skin appendages, such as scales and feathers.
4 citations
,
July 2025 in “Frontiers in Immunology” This study explored peripheral blood immune dysregulation in alopecia areata through single-cell analyses, identifying systemic changes linked to disease severity and key signaling roles for monocytes, NK cells, and memory T cells, suggesting potential therapeutic targets.
2 citations
,
December 2024 in “BMC Genomics” In this study, researchers used transcriptome sequencing and bioinformatics analysis to identify important genes and pathways involved in the transition between hair growth phases, offering new insights into hair follicle cycle regulation and development.
1 citations
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July 2021 in “bioRxiv (Cold Spring Harbor Laboratory)” This study found that ablative fractional laser treatment significantly alters gene expression related to skin rejuvenation, enhancing wound healing and tissue regeneration processes, and suggests multiple treatments may maximize these effects.
December 2025 in “Frontiers in Veterinary Science” This study found that PT-LCG extends hair follicle activity and promotes continuous cashmere growth by enhancing lipid synthesis, remodeling the extracellular matrix, and modulating inflammatory signaling, offering insights into improving cashmere yield and quality through molecular breeding.
February 2025 in “BMC Genomics” This study found that in cashmere goats, melatonin treatments enhanced cashmere growth by stimulating secondary hair follicles, increasing follicle density, and improving yield and quality, highlighting key genes and metabolic pathways involved in this process.
July 2026 in “Veterinary Sciences” This study explored the decline in cashmere production in Inner Mongolian cashmere goats through RNA-seq analysis, finding that AKT1 expression and related signaling pathways are age-dependent, with peak AKT1 upregulation at 12 months aligning with peak cashmere production.
January 2026 in “Veterinary Sciences” In this study, researchers found that significant transcriptomic changes occur in the skin of Dezhou donkey foals as they age from newborns to one year old, involving gene expression shifts that may enhance skin barrier function and hair follicle development, while reducing collagen synthesis.
In a controlled study, researchers observed that lambs exposed to colder temperatures had increased wool growth, thicker skin, altered physiological traits, and activated specific molecular pathways, highlighting potential targets for enhancing cold tolerance, welfare, and productivity in sheep breeds.
This study explored the molecular communication between hair matrix cells and dermal papilla cells in cashmere goats, revealing key ligand-receptor pairs and signaling pathways that facilitate intercellular crosstalk and potentially influence hair growth mechanisms.
September 2026 in “Animals” This study found that Rex rabbits had significantly shorter fibre length and thinner fur compared to New Zealand White rabbits, and identified a gene-metabolite network that may influence fur quality and development.
October 2022 in “British Journal of Dermatology” March 2024 in “International journal of molecular sciences” In this study on Angora rabbits, researchers identified genetic factors influencing wool fiber diameter by analyzing hair follicle proteins, highlighting keratin family members and other proteins as key contributors to fiber differences between coarse and fine wool.
16 citations
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May 2020 in “Plant Growth Regulation”
7 citations
,
June 2024 in “Communications Medicine” In this study, researchers analyzed spaceflight data from various sources and found that skin issues during spaceflight are linked to DNA damage, mitochondrial dysregulation, and gene alterations, while also highlighting the skin's adaptability post-flight.
1 citations
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December 2024 in “BMC Genomics” This study used transcriptome analysis to explore the genetic mechanisms behind the development and seasonal variation of nuptial pads in R. chensinensis, identifying key genes and processes that suggest the pads' development involves complex regulatory pathways, particularly those related to cell cycle and hormone synthesis.
1 citations
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July 2023 in “Journal of Animal Science and Biotechnology” This study discovered that lambs with coarse, ancestral-like wool in a population of modern fine wool sheep exhibited overexpression of the SOSTDC1 gene, linked to epigenetic changes, which helps understand the development and diversification of wool types in sheep breeding.
October 2025 in “Animal Bioscience” This study identified important lncRNAs and genes associated with cashmere shedding in goats and explored their regulatory interactions, providing insights into the molecular mechanisms that may underlie this phenomenon.
This study found that spaceflight may induce skin health risks in astronauts by causing DNA damage and mitochondrial dysregulation, while also identifying gene expression changes that help re-adaptation after returning to Earth.
31 citations
,
October 2016 in “PLoS ONE” This study suggests that UMPP activation is a key signaling pathway in differentiating primary and secondary hair follicles in cashmere goats.
10 citations
,
May 2016 in “bioRxiv (Cold Spring Harbor Laboratory)” This study observed that differences in the expression of genes related to lipid metabolism may play a major role in determining wool fiber diameter in sheep.
5 citations
,
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.
5 citations
,
September 2021 in “Frontiers in Cell and Developmental Biology” This study found that 3D-cultured dermal papilla cells more accurately mimic in vivo conditions compared to 2D cultures, enhancing our understanding of molecular mechanisms in androgen-induced alopecia.
5 citations
,
June 2017 in “in Vivo” This study found that vitamin C deficiency in SMP-30/GNL-KO mice affected gene expression related to hair growth and cell growth, resulting in delayed hair growth compared to those with adequate vitamin C.
4 citations
,
January 2019 in “International journal of molecular sciences” This study suggests that β-catenin plays an important role in wool follicle development in transgenic sheep by enhancing the expression of keratin protein genes.
2 citations
,
December 2023 in “Biointerface Research in Applied Chemistry” In this study, the authors explore and compare advanced high-performance methods for transcriptome analysis, emphasizing the significant role of next-generation sequencing in understanding gene expression and revealing new RNA species.
2 citations
,
August 2020 in “Scientific reports” This study identified genes potentially involved in the development and differentiation of skin appendages in Atelerix albiventris, noting significant enrichment of immune-related genes in hair-type tissues.