February 2024 in “Frontiers in plant science” This study found that Plant Elicitor Peptides enhance root hair growth through a mechanism independent of their known receptors, with PROPEP2 playing a key role in this process by influencing gene expression related to root hair formation.
April 2022 in “Book Publisher International (a part of SCIENCEDOMAIN International)” This manuscript proposes a hypothesis that the enzyme catalase added to processed meats may emit electromagnetic fields and contribute to cancer development.
16 citations
,
September 2022 in “Cold Spring Harbor Perspectives in Biology” This article explores how adult mammals can regenerate hair follicles after wounding and suggests that manipulating cell signals during healing might enhance this process, but provides no new experimental results.
June 2023 in “Zenodo (CERN European Organization for Nuclear Research)” In this abstract, the issue of "microinflammation" in hair follicles, central to androgenetic alopecia, is described as involving an inflammatory process with Langerhans cells and keratinocytes presenting antigens to T lymphocytes, leading to an immune response with macrophages or natural killer cells destroying these antigens.
3 citations
,
May 2024 in “Poultry Science” This study identified key genes involved in feather follicle development in Wannan chickens, finding that genes such as LAMC2, COL6A3, and WNT7A are crucial in the regulation processes, potentially aiding molecular breeding programs for improved carcass appearance traits.
January 2025 in “PLoS ONE” This study identified the transcription factor Elf5 as a novel regulator of keratinocyte proliferation and differentiation in skin, with expression elevated in stem/progenitor cell populations, suggesting its potential role in determining cell fate during skin and hair development.
January 2024 in “bioRxiv (Cold Spring Harbor Laboratory)” In this mouse study, the absence of the Ascl4 gene did not affect the development of hair follicles, teeth, or mammary glands, suggesting it is non-essential for these processes.
April 2018 in “The journal of investigative dermatology/Journal of investigative dermatology” This study identified two distinct fibroblast subsets in mouse skin, revealing that adult skin scarring occurs due to the repair process utilizing only one, lineage-restricted fibroblast type instead of coordinated diverse populations.
19 citations
,
June 2020 in “Animals” This study found that maternal sub-maintenance nutrition reduced the density and branching ratio of secondary wool follicles in Merino sheep fetuses and identified genes potentially involved in these processes.
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.
January 2018 in “Stem cell biology and regenerative medicine” This review discusses the interplay between signaling/transcription factor-mediated and epigenetic mechanisms in skin development and regeneration, highlighting the need for further exploration of epigenome reorganization in these processes.
318 citations
,
October 1998 in “The Journal of Cell Biology” This study found that ectopic expression of the lymphoid-enhancer factor can induce K17 protein in the skin, suggesting a link between skin development and wound repair processes in mice.
This study evaluated machine-learning models to predict PCOS among reproductive-aged women in Bangladesh, finding that the XGBoost model achieved high accuracy (99.63%) and effectiveness, particularly when prioritizing clinical features over psychological ones in the predictive process.
4 citations
,
August 2025 in “Plant Cell & Environment” This study found that the plant-growth-promoting bacteria Azospirillum brasilense enhances root hair development by increasing auxin levels and activating specific transcription factors, highlighting key signaling pathways involved in this process.
4 citations
,
October 2025 in “Molecules” This study concluded that extracts from fermented pumpkin peel and pulp, processed with Lactobacillus strains and kombucha, may serve as multifunctional cosmetic ingredients, offering antioxidant protection, anti-aging, and skin regeneration benefits by demonstrating cytoprotective effects and reducing inflammatory cytokines in cell assays.
27 citations
,
August 2014 in “Wiley interdisciplinary reviews. Developmental biology” This review highlights similarities in the development of thymus and skin epidermis, reporting no new results; the authors emphasize shared molecular mechanisms despite different embryonic origins.
April 2023 in “The journal of investigative dermatology/Journal of investigative dermatology” This study provided a dynamic 4D atlas showing the development process of mouse hair follicles through a telescope-like model, revealing new insights into the origin of hair follicle stem cells.
1 citations
,
December 2023 This study explored the complex developmental processes of human hair, emphasizing the intricate interactions required for hair follicle morphogenesis and its implications for drug incorporation and concentration interpretation, particularly in early childhood.
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.
1 citations
,
April 2023 in “Animals” This study utilized EDAR gene-targeted cashmere goats to identify 732 differentially expressed genes and 140 proteins associated with abnormal hair growth, providing insights into the regulatory mechanisms of cashmere follicle development.
1 citations
,
June 2022 in “Gene reports” This study analyzed gene expression in Pashmina goats and identified key biological processes and molecular functions involved in long-fibre production, suggesting potential pathways for enhancing this trait in other goat breeds.
72 citations
,
April 2008 in “Organogenesis” This review discusses the roles of Wnt signaling in skin organogenesis and related processes but reports no new experimental results, highlighting areas for future research.
37 citations
,
August 2014 in “Journal of experimental botany” This study identified the AtPRPL1 gene in Arabidopsis thaliana as being involved in cell elongation processes, despite unclear changes in cell wall composition from its altered expression.
November 2018 in “Atlas of genetics and cytogenetics in oncology and haematology” The review discusses the diverse roles of WNT10B in mammary gland development, immune function, and its potential implications in cancer and regenerative processes, with no new experimental results.
829 citations
,
May 2007 in “Nature” Hair follicles can regrow in wounded adult mouse skin using a process like embryo development.
November 2021 in “Current Otorhinolaryngology Reports” New treatments for hair loss could involve using stem cells and a process called the Wnt/beta-catenin pathway to stimulate hair growth.
20 citations
,
November 2014 in “Developmental Dynamics” This review explores the similarities between wound healing, palatogenesis, and orofacial clefting, suggesting these processes share common pathways and genetic regulatory mechanisms, but reports no new experimental results.
338 citations
,
April 2001 in “Current Biology” This study found that transient activation of c-Myc in transgenic mice stimulates keratinocyte proliferation and sebocyte differentiation, affecting normal epidermal and hair follicle development.
127 citations
,
December 2007 in “Journal of Investigative Dermatology” This review examines regenerative hair waves and complex hair cycle domains in transgenic mice, highlighting how these dynamic processes contribute to skin regeneration and the physiological regulation of organs, but reports no new experimental results.
29 citations
,
September 2012 in “Birth Defects Research” This review discusses the developmental regulation of wound healing mechanisms in mammals, focusing on the role of the Wnt and TGF‐β signaling pathways, and reports no new clinical findings.