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  2. College of Medicine / 醫學院
  3. Anatomy and Cell Biology / 解剖學暨細胞生物學研究所
  4. Skin innervation and its effects on the epidermis
 
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Skin innervation and its effects on the epidermis

Journal
Journal of Biomedical Science
Journal Volume
4
Journal Volume
4
Journal Issue
5
Journal Issue
5
Pages
264-268
Start Page
264
End Page
268
ISSN
1423-0127
Date Issued
1997
Author(s)
SUNG-TSANG HSIEH  
Lin W.-M.
Chiang H.-Y.
Huang I.-T.
Ko M.-H.
Chang Y.-C.
WEN-PIN CHEN  
DOI
10.1007/BF02253428
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0030862213&doi=10.1007%2fBF02253428&partnerID=40&md5=a1360cc62c5f027038c535447db70230
https://scholars.lib.ntu.edu.tw/handle/123456789/467834
Abstract
Sensory innervation of the skin subserves protective sensations for the body to prevent thermal and noxious injuries. Neurophysiologically, they belong to the categories of Adelta and C fibers, usually with caliber less than one micro m in diameter. Morphological demonstration of the terminals of these nerves in the epidermis has been recognized recently by sensitive immunocytochemistry and an axonal marker, the protein gene product 9.5 (PGP). PGP is a ubiquitin C-terminal hydrolase, which is abundantly present in the nervous system, and particularly enriched in the unmyelinated nerves. Sensory nerves positive for PGP arise from the dorsal root ganglion, pass through the dermis, parallel the epidermis-dermis border, penetrate the basement membrane, move vertically and upwards in the epidermis with tortuous course and knobby appearance, and finally terminate at the granular layers of the epidermis. In rodents, denervation of the skin results in degeneration of epidermal nerves within 48 h of nerve transection, and thinning of the epidermis. In humans, application of this technique to evaluate disorders of the peripheral nervous system makes study of the degeneration of sensory nerve terminals possible. Patients with sensory neuropathy had fewer epidermal nerves than normal subjects, consistent with the notion of distal axonopathy. This approach has the potential to evaluate human sensory neuropathy in temporal and spatial domains. In addition, the influences of epidermal denervation open a new field to explore the interactions between sensory nerves and keratinocytes.
Type
journal article

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