Related Experiment Video
Updated: Nov 7, 2025

Three-dimensional Imaging of Nociceptive Intraepidermal Nerve Fibers in Human Skin Biopsies
Published on: April 29, 2013
Neuropeptides Profile and Increased Innervation in Becker's Nevus
Ji Seok Kim1, Myeong Jin Park1, Hye Young Kang1
1Department of Dermatology, Dankook University College of Medicine, Cheonan, Korea.
Background:
Melanocytes are derived from neural crest, and various pigmentary disorders may accompany abnormalities in nerve system or develop following dermatome, suggesting that melanocyte and pigmentation may be closely related to neural factors. There are reports of Becker's nevus (BN) showing linear and segmental configuration, suggesting the association of BN with nerve system. However, there are no studies regarding the expression of neuropeptides in BN.
Objective:
We investigated the expression of neuropeptides and innervation in BN.
Methods:
Polymerase chain reaction (PCR) array of 84 genes related to neuronal process was done. Among the genes with 10-fold or more increase in lesional, real-time PCR was performed for neuropeptide Y (NPY), galanin, neurotensin (NTS) and their receptors skin compared to normal skin. IHC stain was done to look for the expression of NPY, galanin, NTS and their receptors and the distribution of protein gene products (PGP) 9.5 immunoreactive nerve fibers.
Results:
PCR array revealed that 16 out of 84 genes related to neuronal process were increased by 10-fold or more in lesional skin. In real-time PCR of NPY, galanin, NTS and their receptors, statistically significant increase of NPY1R (p<0.05) and marginally significant increase of NPY2R, GAL2R, and NTS2R (p<0.1) was verified in lesional skin. In immunohistochemistry, NPY, NPY1R NPY2R, and NTS2R were highly expressed in lesional skin and increased PGP 9.5 immunoreactive linear nerve fibers were found in the epidermis of BN.
Conclusion:
NPY, galanin, NTS and their receptors and increased innervation may play a role in the pathogenesis of BN.
Related Concept Videos
Local Anesthetics: Differential Sensitivity of Nerve Fibers
Neural Regulation
Insensitive Nuclei Enhanced by Polarization Transfer (INEPT)

