11 citations
,
April 2013 in “Journal of Proteomics” This study identified proteins that are differentially expressed in balding versus non-balding dermal papilla cells, potentially aiding the understanding and treatment of androgenetic alopecia.
10 citations
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January 2016 in “PLOS ONE” This study investigated protein expression changes during mouse hair follicle cycles and suggested their involvement in biological networks, potentially identifying targets for hair disease therapy.
9 citations
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October 2011 in “Journal of proteomics” This study found that taxol induces apoptosis in dermal papilla cells, affecting protein expression related to biological processes and potentially contributing to taxol-induced alopecia.
8 citations
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January 2015 in “Genetics and molecular research” This study identified four proteins that differ between Type III and non-Type III hair in Yangtze River Delta white goats, contributing to understanding the development of high-quality brush hair.
7 citations
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June 2017 in “Omics” This study developed a new proteomic method to identify and assess ancient hair proteins using only small amounts of sample, providing insights into hair protein alteration processes over time.
7 citations
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January 2005 in “Dermatology” This study demonstrates that LES-hair can detect differential protein expression in specific regions of plucked hair follicles, suggesting its potential for research and clinical applications like monitoring treatment effects in alopecia and cancer therapies.
6 citations
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May 2020 in “Scientific reports” In this study, microarray and proteomic analyses indicated that genes involved in immune response, receptor binding, and growth factor activity might influence wool fibre diameter in sheep.
5 citations
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January 2024 in “JID Innovations” In this study, researchers identified significant differences in protein expression patterns in scalps affected by central centrifugal cicatricial alopecia, notably upregulation of immune pathways and fibrosis markers and downregulation of metabolic proteins, suggesting unique disease mechanisms and potential therapeutic targets.
5 citations
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March 2011 in “Journal of proteomics” This study found that exposing dermal papilla cells to sub-lethal doses of colchicine releases histone H4, which inhibits cell growth and decreases alkaline phosphatase activity, potentially explaining colchicine-induced hair loss.
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.
4 citations
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June 2021 in “Frontiers in Pharmacology” This study found that injecting bone marrow-derived mesenchymal stem cells and conditioned medium into mice promoted hair follicle stem cell proliferation and transition to active growth phases, suggesting potential clinical targets for hair loss treatment.
4 citations
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January 2023 in “Proteomes” This review explores the complex, context-dependent roles of tumor-secreted proteins and suggests that some proteins traditionally seen as tumor-promotive may act as tumor-suppressors in different environments, emphasizing the influence of cell fitness and treatment exposure.
4 citations
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July 2020 in “Journal of proteomics” This study found no significant proteomic differences in hair samples across racial or geometric groups in a culturally diverse South African cohort, highlighting the limited value of racial classification in precision medicine.
3 citations
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October 2024 in “Animals” In this proteomic analysis, the researchers found that transitioning from crimped to straight wool in Tan sheep is linked to significant changes in wool protein expression, revealing distinct patterns of keratins and keratin-associated proteins that could influence wool quality and economic value.
3 citations
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October 2023 in “Journal of Pain” In this exploratory study of trigeminal neuralgia patients undergoing microvascular decompression surgery, differential protein expression in plasma and cerebrospinal fluid was observed between responders and non-responders, suggesting potential biomarkers to predict surgical success and providing insights into the mechanisms of pain relief.
3 citations
,
October 2022 in “Frontiers in Surgery” This review discusses the role of proteomics in understanding skin diseases such as cancers and psoriasis, with findings suggesting cell death and metabolism as major areas of focus, but reports no new experimental results.
2 citations
,
February 2025 in “PLoS ONE” This study used TMT-based quantitative proteomics to analyze the development of secondary hair follicles in fetal sheep, revealing increased follicle density and key proteins involved, such as COL1A1 and THBS4, indicating their potential role in wool quality traits.
1 citations
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February 2023 in “All Life” This study identified proteins involved in hair follicle formation in cashmere goat embryos, highlighting potential signaling factors that may drive hair follicle initiation and cashmere growth.
1 citations
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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.
May 2026 in “Zenodo (CERN European Organization for Nuclear Research)” In this research, lipidomic, proteomic, and metabolomic analyses of exosomes from seven Ashwagandha seed batches revealed that Ashwagandha-derived exosome-like nanovesicles can up-regulate VEGF-A production and promote hair growth in human models tested outside the body.
May 2026 in “Zenodo (CERN European Organization for Nuclear Research)” In this study, researchers conducted a comprehensive analysis of seven Ashwagandha seed exosome lots and found that treatment with these exosome-like nanovesicles can up-regulate VEGF-A production and promote human hair growth in an ex vivo model.
June 2026 in “Journal of Investigative Dermatology” This study found that certain proteins linked to immune suppression and melanogenesis are associated with repigmentation in vitiligo patients undergoing standard treatment, suggesting these proteins and their pathways play roles distinct from merely reversing skin lesions.
March 2026 in “Preprints.org” This study investigated the secretome of adipose mesenchymal stem cells and fibroblasts used in skin care products, finding 16 therapeutic pathways involving numerous signaling mechanisms, which may offer skin benefits through anti-inflammatory and regenerative effects.
March 2026 in “Skin Appendage Disorders” This study identified CD28, GZMB, and CD1C as key immune regulators in alopecia areata, highlighting CD28 as a potential therapeutic target with a promising safety profile, using a proteome-anchored multi-omics approach to uncover actionable targets for this autoimmune hair-loss disorder.
December 2025 in “Rapid Communications in Mass Spectrometry” This study found that pepsin digestion was more effective than trypsin at identifying keratin-associated proteins in human hair shafts and confirmed that trypsin introduced a bias in the analysis of protein composition that pepsin can correct.
Results are not reported in this abstract, which notes that while Janus kinase inhibitors like baricitinib show therapeutic benefits for alopecia areata, the mechanisms and reliable predictors of response remain unclear.
July 2025 in “Journal of Investigative Dermatology” Three molecular subtypes of advanced skin T-cell lymphoma were identified, with potential biomarkers for predicting treatment response and disease progression.
June 2025 in “Rapid Communications in Mass Spectrometry” In this study, researchers developed a simplified and reliable method to prepare human hair shaft samples, achieving over 75% protein extraction efficiency and improved keratin sequence coverage, with the approach showing high reproducibility across different labs and operators.
March 2025 in “International Journal of Molecular Sciences” This study analyzed proteomic changes in Jiangnan cashmere goats' secondary hair follicles and found that the PLIN2 gene significantly impacts hair follicle growth cycles by affecting dermal papilla cell proliferation, offering insights into breeding strategies to enhance cashmere yield.
October 2024 in “Archives of Dermatological Research” This study found distinct proteomic differences between male and female androgenetic alopecia, highlighting sex-specific molecular pathways and potential biomarkers for pattern hair loss.