» Articles » PMID: 23670092

Journey to the Skin: Somatosensory Peripheral Axon Guidance and Morphogenesis

Overview
Journal Cell Adh Migr
Specialty Cell Biology
Date 2013 May 15
PMID 23670092
Citations 15
Authors
Affiliations
Soon will be listed here.
Abstract

The peripheral axons of vertebrate tactile somatosensory neurons travel long distances from ganglia just outside the central nervous system to the skin. Once in the skin these axons form elaborate terminals whose organization must be regionally patterned to detect and accurately localize different kinds of touch stimuli. This review describes key studies that identified choice points for somatosensory axon growth cones and the extrinsic molecular cues that function at each of those steps. While much has been learned in the past 20 years about the guidance of these axons, there is still much to be learned about how the peripheral axons of different kinds of somatosensory neurons adopt different trajectories and form specific terminal structures.

Citing Articles

Caliber of zebrafish touch-sensory axons is dynamic in vivo.

Ching K, Sagasti A bioRxiv. 2024; .

PMID: 39713467 PMC: 11661087. DOI: 10.1101/2024.12.04.626901.


"Out of Touch"-Recovering Sensibility after Burn Injury: A Review of the Literature.

Tsolakidis S, Alharbi Z, Rennekampff H, Schmidhammer M, Schmidhammer R, Rosenauer R Eur Burn J. 2024; 3(2):370-376.

PMID: 39600007 PMC: 11575383. DOI: 10.3390/ebj3020032.


Molecular regulation of axon termination in mechanosensory neurons.

Desbois M, Grill B Development. 2024; 151(17).

PMID: 39268828 PMC: 11698068. DOI: 10.1242/dev.202945.


Biomimetic Approaches for Separated Regeneration of Sensory and Motor Fibers in Amputee People: Necessary Conditions for Functional Integration of Sensory-Motor Prostheses With the Peripheral Nerves.

Guedan-Duran A, Jemni-Damer N, Orueta-Zenarruzabeitia I, Guinea G, Perez-Rigueiro J, Gonzalez-Nieto D Front Bioeng Biotechnol. 2020; 8:584823.

PMID: 33224936 PMC: 7670549. DOI: 10.3389/fbioe.2020.584823.


Beyond being innervated: the epidermis actively shapes sensory dendritic patterning.

Yang W, Chien C Open Biol. 2019; 9(3):180257.

PMID: 30914004 PMC: 6451362. DOI: 10.1098/rsob.180257.


References
1.
Hasegawa H, Wang F . Visualizing mechanosensory endings of TrkC-expressing neurons in HS3ST-2-hPLAP mice. J Comp Neurol. 2008; 511(4):543-56. PMC: 2577232. DOI: 10.1002/cne.21862. View

2.
Huang J, Dorey K, Ishibashi S, Amaya E . BDNF promotes target innervation of Xenopus mandibular trigeminal axons in vivo. BMC Dev Biol. 2007; 7:59. PMC: 1899173. DOI: 10.1186/1471-213X-7-59. View

3.
Ernsberger U . The role of GDNF family ligand signalling in the differentiation of sympathetic and dorsal root ganglion neurons. Cell Tissue Res. 2008; 333(3):353-71. PMC: 2516536. DOI: 10.1007/s00441-008-0634-4. View

4.
Davis B, Fundin B, Albers K, Goodness T, Cronk K, Rice F . Overexpression of nerve growth factor in skin causes preferential increases among innervation to specific sensory targets. J Comp Neurol. 1997; 387(4):489-506. DOI: 10.1002/(sici)1096-9861(19971103)387:4<489::aid-cne2>3.0.co;2-z. View

5.
Tonge D, Zhu N, Lynham S, Leclere P, Snape A, Brewer A . Axonal growth towards Xenopus skin in vitro is mediated by matrix metalloproteinase activity. Eur J Neurosci. 2012; 37(4):519-31. DOI: 10.1111/ejn.12075. View