TY - JOUR
T1 - Sensory Innervation of Human Bone
T2 - An Immunohistochemical Study to Further Understand Bone Pain
AU - Steverink, Jasper G
AU - Oostinga, Douwe
AU - van Tol, Floris R
AU - van Rijen, Mattie H P
AU - Mackaaij, Claire
AU - Verlinde-Schellekens, Suzanne A M W
AU - Oosterman, Bas J
AU - Van Wijck, Albert J M
AU - Roeling, Tom A P
AU - Verlaan, Jorrit-Jan
N1 - Funding Information:
We would like to thank prof. dr. Ronald Bleys, Simon Plomp, and Marco Rondhuis from the Department of Anatomy (UMC Utrecht) for their help with tissue collection, designing immunohistochemical protocols, and for using their microscope facility. Peter Zuithoff from the Julius Center (Utrecht) is thanked for valuable input on statistical analysis. The Developmental Studies Hybridoma Bank is gratefully acknowledged for supplying the NF-200 antibody. No financial arrangements that may represent a possible conflict of interest are present. The authors declare that they have no conflict of interest. For the purpose of replicating procedures and reproducing results, data and program codes are available upon request. Requests can be sent to the corresponding author. Funding Sources: This research did not receive any specific grant from funding agencies in the public, commercial, or not-for-profit sectors.
Publisher Copyright:
© 2021 The Authors
PY - 2021/11
Y1 - 2021/11
N2 - Skeletal diseases and their surgical treatment induce severe pain. The innervation density of bone potentially explains the severe pain reported. Animal studies concluded that sensory myelinated A∂-fibers and unmyelinated C-fibers are mainly responsible for conducting bone pain, and that the innervation density of these nerve fibers was highest in periosteum. However, literature regarding sensory innervation of human bone is scarce. This observational study aimed to quantify sensory nerve fiber density in periosteum, cortical bone, and bone marrow of axial and appendicular human bones using immunohistochemistry and confocal microscopy. Multivariate Poisson regression analysis demonstrated that the total number of sensory and sympathetic nerve fibers was highest in periosteum, followed by bone marrow, and cortical bone for all bones studied. Bone from thoracic vertebral bodies contained most sensory nerve fibers, followed by the upper extremity, lower extremity, and parietal neurocranium. The number of nerve fibers declined with age and did not differ between male and female specimens. Sensory nerve fibers were organized as a branched network throughout the periosteum. The current results provide an explanation for the severe pain accompanying skeletal disease, fracture, or surgery. Further, the results could provide more insight into mechanisms that generate and maintain skeletal pain and might aid in developing new treatment strategies. PERSPECTIVE: This article presents the innervation of human bone and assesses the effect of age, gender, bone compartment and type of bone on innervation density. The presented data provide an explanation for the severity of bone pain arising from skeletal diseases and their surgical treatment.
AB - Skeletal diseases and their surgical treatment induce severe pain. The innervation density of bone potentially explains the severe pain reported. Animal studies concluded that sensory myelinated A∂-fibers and unmyelinated C-fibers are mainly responsible for conducting bone pain, and that the innervation density of these nerve fibers was highest in periosteum. However, literature regarding sensory innervation of human bone is scarce. This observational study aimed to quantify sensory nerve fiber density in periosteum, cortical bone, and bone marrow of axial and appendicular human bones using immunohistochemistry and confocal microscopy. Multivariate Poisson regression analysis demonstrated that the total number of sensory and sympathetic nerve fibers was highest in periosteum, followed by bone marrow, and cortical bone for all bones studied. Bone from thoracic vertebral bodies contained most sensory nerve fibers, followed by the upper extremity, lower extremity, and parietal neurocranium. The number of nerve fibers declined with age and did not differ between male and female specimens. Sensory nerve fibers were organized as a branched network throughout the periosteum. The current results provide an explanation for the severe pain accompanying skeletal disease, fracture, or surgery. Further, the results could provide more insight into mechanisms that generate and maintain skeletal pain and might aid in developing new treatment strategies. PERSPECTIVE: This article presents the innervation of human bone and assesses the effect of age, gender, bone compartment and type of bone on innervation density. The presented data provide an explanation for the severity of bone pain arising from skeletal diseases and their surgical treatment.
KW - Bone pain
KW - bone marrow
KW - cortex
KW - innervation density
KW - periosteum
UR - https://www.scopus.com/pages/publications/85107399577
U2 - 10.1016/j.jpain.2021.04.006
DO - 10.1016/j.jpain.2021.04.006
M3 - Article
C2 - 33964414
SN - 1526-5900
VL - 22
SP - 1385
EP - 1395
JO - The Journal of Pain
JF - The Journal of Pain
IS - 11
ER -