Intraepidermal nerves in human skin: PGP 9.5 immunohistochemistry with special reference to the nerve density in skin from different body regions. 1999

O Johansson, and L Wang, and M Hilliges, and Y Liang
Department of Neuroscience, Karolinska Institutet, Stockholm, Sweden.

The intraepidermal nerves of normal adult human skin were demonstrated by employing a powerful marker of neuronal elements, protein gene product (PGP) 9.5. There were two types of epidermal nerves, free nerve endings and nerves in the Merkel cell-neurite complex. The free nerve endings distributed to, and terminated in, all the strata basale, spinosum and granulosum, and they appeared as thin fibers, mostly varicose, branched or single processed, straight or bent. They existed at every site of the human body, including face, trunk and extremities. However, the densities of these nerves varied in different body parts and areas. The number of nerves decreased from the trunk to the distal parts of the limbs, and small denser 'innervation patches' showed up in the epidermis which were identified in confocal microscopy as one morphologic terminal field coming from the same dermal nerve bundle. This study has confirmed the existence of epidermal nerves in normal adult human skin, and presented a more clear picture than earlier. The difference between densities of epidermal nerves at different body areas implies area-specific functions of the intraepidermal nerve terminals. The observed intraepithelial nerve fibers may have a pain-perceiving role, however, also trophic or immunoregulatory roles can not be excluded.

UI MeSH Term Description Entries
D008297 Male Males
D008465 Mechanoreceptors Cells specialized to transduce mechanical stimuli and relay that information centrally in the nervous system. Mechanoreceptor cells include the INNER EAR hair cells, which mediate hearing and balance, and the various somatosensory receptors, often with non-neural accessory structures. Golgi Tendon Organ,Golgi Tendon Organs,Krause's End Bulb,Krause's End Bulbs,Mechanoreceptor,Mechanoreceptor Cell,Meissner's Corpuscle,Neurotendinous Spindle,Neurotendinous Spindles,Receptors, Stretch,Ruffini's Corpuscle,Ruffini's Corpuscles,Stretch Receptor,Stretch Receptors,Mechanoreceptor Cells,Bulb, Krause's End,Bulbs, Krause's End,Cell, Mechanoreceptor,Cells, Mechanoreceptor,Corpuscle, Meissner's,Corpuscle, Ruffini's,Corpuscles, Ruffini's,End Bulb, Krause's,End Bulbs, Krause's,Krause End Bulb,Krause End Bulbs,Krauses End Bulb,Krauses End Bulbs,Meissner Corpuscle,Meissners Corpuscle,Organ, Golgi Tendon,Organs, Golgi Tendon,Receptor, Stretch,Ruffini Corpuscle,Ruffini Corpuscles,Ruffinis Corpuscle,Ruffinis Corpuscles,Spindle, Neurotendinous,Spindles, Neurotendinous,Tendon Organ, Golgi,Tendon Organs, Golgi
D009412 Nerve Fibers Slender processes of NEURONS, including the AXONS and their glial envelopes (MYELIN SHEATH). Nerve fibers conduct nerve impulses to and from the CENTRAL NERVOUS SYSTEM. Cerebellar Mossy Fibers,Mossy Fibers, Cerebellar,Cerebellar Mossy Fiber,Mossy Fiber, Cerebellar,Nerve Fiber
D009419 Nerve Tissue Proteins Proteins, Nerve Tissue,Tissue Proteins, Nerve
D004817 Epidermis The external, nonvascular layer of the skin. It is made up, from within outward, of five layers of EPITHELIUM: (1) basal layer (stratum basale epidermidis); (2) spinous layer (stratum spinosum epidermidis); (3) granular layer (stratum granulosum epidermidis); (4) clear layer (stratum lucidum epidermidis); and (5) horny layer (stratum corneum epidermidis).
D005260 Female Females
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000328 Adult A person having attained full growth or maturity. Adults are of 19 through 44 years of age. For a person between 19 and 24 years of age, YOUNG ADULT is available. Adults
D013869 Thiolester Hydrolases Hydrolases, Thiolester
D043222 Ubiquitin Thiolesterase A thioester hydrolase which acts on esters formed between thiols such as DITHIOTHREITOL or GLUTATHIONE and the C-terminal glycine residue of UBIQUITIN. Neuron Cytoplasmic Protein 9.5,PARK5 Protein,Parkinson Disease 5 Protein,UCHL1 Protein,Ubiquitin C-Terminal Esterase,Ubiquitin C-Terminal Hydrolase,Ubiquitin Carboxy-Terminal Esterase,Ubiquitin Carboxy-Terminal Hydrolase,Ubiquitin Carboxyl-Terminal Hydrolase Isozyme L1,Uch-L1 Protein,C-Terminal Esterase, Ubiquitin,C-Terminal Hydrolase, Ubiquitin,Carboxy-Terminal Esterase, Ubiquitin,Carboxy-Terminal Hydrolase, Ubiquitin,Esterase, Ubiquitin C-Terminal,Esterase, Ubiquitin Carboxy-Terminal,Hydrolase, Ubiquitin C-Terminal,Hydrolase, Ubiquitin Carboxy-Terminal,Thiolesterase, Ubiquitin,Ubiquitin C Terminal Esterase,Ubiquitin C Terminal Hydrolase,Ubiquitin Carboxy Terminal Esterase,Ubiquitin Carboxy Terminal Hydrolase,Ubiquitin Carboxyl Terminal Hydrolase Isozyme L1,Uch L1 Protein

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