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  1.  17
    Human epithelial hair follicle stem cells and their progeny: Current state of knowledge, the widening gap in translational research and future challenges.Talveen S. Purba, Iain S. Haslam, Enrique Poblet, Francisco Jiménez, Alberto Gandarillas, Ander Izeta & Ralf Paus - 2014 - Bioessays 36 (5):513-525.
    Epithelial hair follicle stem cells (eHFSCs) are required to generate, maintain and renew the continuously cycling hair follicle (HF), supply cells that produce the keratinized hair shaft and aid in the reepithelialization of injured skin. Therefore, their study is biologically and clinically important, from alopecia to carcinogenesis and regenerative medicine. However, human eHFSCs remain ill defined compared to their murine counterparts, and it is unclear which murine eHFSC markers really apply to the human HF. We address this by reviewing current (...)
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  2.  8
    The Hair Follicle as an Interdisciplinary Model for Biomedical Research: An Eclectic Literature Synthesis.Iain S. Haslam & Ralf Paus - 2020 - Bioessays 42 (11):2000053.
    Skin is a comparatively accessible organ possessing many conserved regulatory and signaling pathways, drawing researchers from varied fields toward its study. Hair follicle (HF) biology in particular has expanded rapidly over the preceding decade, helping to shape and develop scientific knowledge across diverse areas of biomedical research, beyond the skin. The hope in compiling this review is to inspire more researchers to utilize the HF as an instructive biological model, bringing with them fresh perspectives and experience from differing fields of (...)
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  3.  9
    Oxidative stress management in the hair follicle: Could targeting NRF2 counter age-related hair disorders and beyond?Laura Jadkauskaite, Pierre A. Coulombe, Matthias Schäfer, Albena T. Dinkova-Kostova, Ralf Paus & Iain S. Haslam - 2017 - Bioessays 39 (8):1700029.
    Widespread expression of the transcription factor, nuclear factor (erythroid‐derived 2)‐like 2 (NRF2), which maintains redox homeostasis, has recently been identified in the hair follicle (HF). Small molecule activators of NRF2 may therefore be useful in the management of HF pathologies associated with redox imbalance, ranging from HF greying and HF ageing via androgenetic alopecia and alopecia areata to chemotherapy‐induced hair loss. Indeed, NRF2 activation has been shown to prevent peroxide‐induced hair growth inhibition. Multiple parameters can increase the levels of reactive (...)
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