Touch Receptors Undergo Rapid Remodeling in Healthy Skin.
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Gregory J. Gerling | Yoshichika Baba | Rachel L. Orlowsky | Ellen A. Lumpkin | G. J. Gerling | Kara L. Marshall | Y. Baba | E. Lumpkin | Rachel C. Clary | K. Marshall | R. Orlowsky
[1] Nicole L. Neubarth,et al. Genetic Identification of an Expansive Mechanoreceptor Sensitive to Skin Stroking , 2015, Cell.
[2] E. Fuchs,et al. Loss of a quiescent niche but not follicle stem cells in the absence of bone morphogenetic protein signaling , 2007, Proceedings of the National Academy of Sciences.
[3] Wenqin Luo,et al. The Functional Organization of Cutaneous Low-Threshold Mechanosensory Neurons , 2011, Cell.
[4] Vandana Singh,et al. Dynamic Plasticity of Axons within a Cutaneous Milieu , 2010, The Journal of Neuroscience.
[5] Seung-Hyun Woo,et al. The touch dome defines an epidermal niche specialized for mechanosensory signaling. , 2013, Cell reports.
[6] D. Pleasure,et al. Axon‐Schwann cell interactions regulate the expression of fibroblast growth factor‐5 (FGF‐5) , 2001, Journal of neuroscience research.
[7] Liquan Huang,et al. Taste bud homeostasis in health, disease, and aging. , 2014, Chemical senses.
[8] E. Fuchs. The Tortoise and the Hair: Slow-Cycling Cells in the Stem Cell Race , 2009, Cell.
[9] R Paus,et al. Merkel cells in mouse skin: intermediate filament pattern, localization, and hair cycle-dependent density. , 1996, The Journal of investigative dermatology.
[10] C. Stucky,et al. Postnatal loss of Merkel cells, but not of slowly adapting mechanoreceptors in mice lacking the neurotrophin receptor p75 , 1999, The European journal of neuroscience.
[11] H. Staecker,et al. Bone Morphogenetic Protein 4 Mediates Estrogen-Regulated Sensory Axon Plasticity in the Adult Female Reproductive Tract , 2013, The Journal of Neuroscience.
[12] D. K. Kim,et al. The appearance, density, and distribution of Merkel cells in human embryonic and fetal skin: their relation to sweat gland and hair follicle development. , 1995, The Journal of investigative dermatology.
[13] E. Fuchs,et al. The hair cycle , 2006, Journal of Cell Science.
[14] K. Takamori,et al. Evaluation of epidermal nerve density and opioid receptor levels in psoriatic itch , 2011, The British journal of dermatology.
[15] Y. Narisawa,et al. Changes in the number of Merkel cells with the hair cycle in hair discs on rat back skin , 2006, The British journal of dermatology.
[16] H. Aldskogius,et al. Degeneration and regeneration of cutaneous sensory nerve formations , 1996, Microscopy research and technique.
[17] Justin C McArthur,et al. Epidermal reinnervation after intracutaneous axotomy in man , 2003, The Journal of comparative neurology.
[18] Michel Boulouard,et al. The adhesive removal test: a sensitive method to assess sensorimotor deficits in mice , 2009, Nature Protocols.
[19] O. Klein,et al. Induction of ectopic taste buds by SHH reveals the competency and plasticity of adult lingual epithelium , 2014, Development.
[20] Ying Xiao,et al. Neural Hedgehog signaling maintains stem cell renewal in the sensory touch dome epithelium , 2015, Proceedings of the National Academy of Sciences.
[21] P. Lledo,et al. Turnover of Newborn Olfactory Bulb Neurons Optimizes Olfaction , 2009, The Journal of Neuroscience.
[22] S. Eichmüller,et al. Hair cycle‐dependent plasticity of skin and hair follicle innervation in normal murine skin , 1997, The Journal of comparative neurology.
[23] Limei Ma,et al. A Developmental Switch of Axon Targeting in the Continuously Regenerating Mouse Olfactory System , 2014, Science.
[24] C. Nurse,et al. The neural dependency of Merkel cell development in the rat: the touch domes and foot pads contrasted. , 1989, Developmental biology.
[25] C. Stucky,et al. TRPC1 contributes to light-touch sensation and mechanical responses in low-threshold cutaneous sensory neurons. , 2012, Journal of neurophysiology.
[26] C. Bandtlow,et al. Peripheral Nerve Regeneration and NGF-Dependent Neurite Outgrowth of Adult Sensory Neurons Converge on STAT3 Phosphorylation Downstream of Neuropoietic Cytokine Receptor gp130 , 2014, The Journal of Neuroscience.
[27] C. Nurse,et al. Reinnervation of the rat touch dome restores the Merkel cell population reduced after denervation , 1984, Neuroscience.
[28] A. Harding. The stem cell race Cynthia Fox Cell of Cells: the Global Race to Capture and Control the Stem Cell , 2007, The Lancet.
[29] Yoshichika Baba,et al. Epidermal Merkel Cells are Mechanosensory Cells that Tune Mammalian Touch Receptors , 2014, Nature.
[30] Yoshichika Baba,et al. Computation identifies structural features that govern neuronal firing properties in slowly adapting touch receptors , 2014, eLife.
[31] T. Imamura,et al. Dual-mode regulation of hair growth cycle by two Fgf-5 gene products. , 2000, The Journal of investigative dermatology.
[32] G. Martin,et al. FGF5 as a regulator of the hair growth cycle: Evidence from targeted and spontaneous mutations , 1994, Cell.
[33] R Paus,et al. A comprehensive guide for the accurate classification of murine hair follicles in distinct hair cycle stages. , 2001, The Journal of investigative dermatology.
[34] Ralf Paus,et al. The Hair Follicle as a Dynamic Miniorgan , 2009, Current Biology.
[35] M. Koltzenburg,et al. Increase in NGF content and nerve fiber sprouting in human allergic contact eczema , 2000, Cell and Tissue Research.
[36] H. Koerber,et al. Neurotrophic Factors and Nociceptor Sensitization , 2010 .
[37] Ruth E. Baker,et al. Cyclic dermal BMP signalling regulates stem cell activation during hair regeneration , 2008, Nature.
[38] H. Koerber,et al. Merkel Cell-Driven BDNF Signaling Specifies SAI Neuron Molecular and Electrophysiological Phenotypes , 2016, The Journal of Neuroscience.
[39] C. Woolf,et al. Nerve growth factor levels in developing rat skin: upregulation following skin wounding. , 1994, Neuroreport.
[40] Sarah E Ross,et al. Keratinocytes can modulate and directly initiate nociceptive responses , 2015, eLife.
[41] P. Khalsa,et al. Encoding of compressive stress during indentation by slowly adapting type I mechanoreceptors in rat hairy skin. , 2002, Journal of neurophysiology.
[42] K. Higgins,et al. Hair cycle regulation of Hedgehog signal reception. , 2003, Developmental biology.
[43] A. Patapoutian,et al. Piezo2 is required for Merkel cell mechanotransduction , 2014, Nature.
[44] D. Tobin,et al. Hair-cycle-associated remodeling of the peptidergic innervation of murine skin, and hair growth modulation by neuropeptides. , 2001, The Journal of investigative dermatology.
[45] A. Christiano,et al. Niche Crosstalk: Intercellular Signals at the Hair Follicle , 2011, Cell.
[46] Matthew C Kiernan,et al. Axonal damage in central and peripheral nervous system inflammatory demyelinating diseases: common and divergent pathways of tissue damage. , 2016, Current opinion in neurology.
[47] M. Hoshino,et al. Unipotent, Atoh1+ progenitors maintain the Merkel cell population in embryonic and adult mice , 2015, The Journal of cell biology.
[48] G. J. Gerling,et al. The regularity of sustained firing reveals two populations of slowly adapting touch receptors in mouse hairy skin. , 2010, Journal of neurophysiology.
[49] Jonathon Howard,et al. Molecular profiling reveals synaptic release machinery in Merkel cells. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[50] A. R. Muir,et al. The structure and function of a slowly adapting touch corpuscle in hairy skin , 1969, The Journal of physiology.
[51] G. Barnea,et al. A Critical Period Defined by Axon-Targeting Mechanisms in the Murine Olfactory Bulb , 2014, Science.
[52] S. Strickland,et al. Peripheral regeneration. , 2007, Annual review of neuroscience.
[53] Cheng-Ming Chuong,et al. Complex hair cycle domain patterns and regenerative hair waves in living rodents. , 2008, The Journal of investigative dermatology.
[54] F. Rice,et al. Similarities and differences in the innervation of mystacial vibrissal follicle–sinus complexes in the rat and cat: A confocal microscopic study , 2002, The Journal of comparative neurology.
[55] J. Milbrandt,et al. SARM1 activation triggers axon degeneration locally via NAD+ destruction , 2015, Science.
[56] Whei-Min Lin,et al. Pathology of Nerve Terminal Degeneration in the Skin , 2000, Journal of neuropathology and experimental neurology.
[57] A. Höke,et al. Mechanisms of distal axonal degeneration in peripheral neuropathies , 2015, Neuroscience Letters.
[58] Valérie Bégay,et al. Piezo2 is the major transducer of mechanical forces for touch sensation in mice , 2014, Nature.
[59] Yoshichika Baba,et al. Neurophysiology of Tactile Perception : A Tribute to Steven Hsiao Computational modeling indicates that surface pressure can be reliably conveyed to tactile receptors even amidst changes in skin mechanics , 2016 .
[60] Gregory J. Gerling,et al. Merkel Cells Are Essential for Light-Touch Responses , 2009, Science.
[61] Kenneth O. Johnson,et al. Tactile Functions of Mechanoreceptive Afferents Innervating the Hand , 2000, Journal of clinical neurophysiology : official publication of the American Electroencephalographic Society.