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Molecular and Cellular Correlates of Human Nerve Regeneration: ADCYAP1/PACAP Enhance Nerve Outgrowth

Overview
Journal Brain
Specialty Neurology
Date 2020 Jul 12
PMID 32651949
Citations 33
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Abstract

We only have a rudimentary understanding of the molecular and cellular determinants of nerve regeneration and neuropathic pain in humans. This cohort study uses the most common entrapment neuropathy (carpal tunnel syndrome) as a human model system to prospectively evaluate the cellular and molecular correlates of neural regeneration and its relationship with clinical recovery. In 60 patients undergoing carpal tunnel surgery [36 female, mean age 62.5 (standard deviation 12.2) years], we used quantitative sensory testing and nerve conduction studies to evaluate the function of large and small fibres before and 6 months after surgery. Clinical recovery was assessed with the global rating of change scale and Boston Carpal Tunnel Questionnaire. Twenty healthy participants provided normative data [14 female, mean age 58.0 (standard deviation 12.9) years]. At 6 months post-surgery, we noted significant recovery of median nerve neurophysiological parameters (P < 0.0001) and improvements in quantitative sensory testing measures of both small and large nerve fibre function (P < 0.002). Serial biopsies revealed a partial recovery of intraepidermal nerve fibre density [fibres/mm epidermis pre: 4.20 (2.83), post: 5.35 (3.34), P = 0.001], whose extent correlated with symptom improvement (r = 0.389, P = 0.001). In myelinated afferents, nodal length increased postoperatively [pre: 2.03 (0.82), post: 3.03 (1.23), P < 0.0001] suggesting that this is an adaptive phenomenon. Transcriptional profiling of the skin revealed 31 differentially expressed genes following decompression, with ADCYAP1 (encoding pituitary adenylate cyclase activating peptide, PACAP) being the most strongly upregulated (log2 fold-change 1.87, P = 0.0001) and its expression was associated with recovery of intraepidermal nerve fibres. We found that human induced pluripotent stem cell-derived sensory neurons expressed the receptor for PACAP and that this peptide could significantly enhance axon outgrowth in a dose-dependent manner in vitro [neurite length PACAP 1065.0 µm (285.5), vehicle 570.9 μm (181.8), P = 0.003]. In conclusion, carpal tunnel release is associated with significant cutaneous reinnervation, which correlates with the degree of functional improvement and is associated with a transcriptional programme relating to morphogenesis and inflammatory processes. The most highly dysregulated gene ADCYAP1 (encoding PACAP) was associated with reinnervation and, given that this peptide signals through G-protein coupled receptors, this signalling pathway provides an interesting therapeutic target for human sensory nerve regeneration.

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References
1.
Polydefkis M, Hauer P, Sheth S, Sirdofsky M, Griffin J, McArthur J . The time course of epidermal nerve fibre regeneration: studies in normal controls and in people with diabetes, with and without neuropathy. Brain. 2004; 127(Pt 7):1606-15. DOI: 10.1093/brain/awh175. View

2.
Rishal I, Golani O, Rajman M, Costa B, Ben-Yaakov K, Schoenmann Z . WIS-NeuroMath enables versatile high throughput analyses of neuronal processes. Dev Neurobiol. 2012; 73(3):247-56. DOI: 10.1002/dneu.22061. View

3.
Zhang Q, Shi T, Ji R, Zhang Y, Sundler F, Hannibal J . Expression of pituitary adenylate cyclase-activating polypeptide in dorsal root ganglia following axotomy: time course and coexistence. Brain Res. 1995; 705(1-2):149-58. DOI: 10.1016/0006-8993(95)01150-1. View

4.
Moller K, Zhang Y, Hakanson R, Luts A, Sjolund B, Uddman R . Pituitary adenylate cyclase activating peptide is a sensory neuropeptide: immunocytochemical and immunochemical evidence. Neuroscience. 1993; 57(3):725-32. DOI: 10.1016/0306-4522(93)90018-b. View

5.
Dolenc V, Janko M . Nerve regeneration following primary repair. Acta Neurochir (Wien). 1976; 34(1-4):223-34. DOI: 10.1007/BF01405877. View