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Melatonin Decreases Acute Inflammatory Response to Neural Probe Insertion

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Date 2022 Aug 26
PMID 36009346
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Abstract

Neural electrode insertion trauma impedes the recording and stimulation capabilities of numerous diagnostic and treatment avenues. Implantation leads to the activation of inflammatory markers and cell types, which is detrimental to neural tissue health and recording capabilities. Oxidative stress and inflammation at the implant site have been shown to decrease with chronic administration of antioxidant melatonin at week 16, but its effects on the acute landscape have not been studied. To assess the effect of melatonin administration in the acute phase, specifically the first week post-implantation, we utilized histological and q-PCR methods to quantify cellular and molecular indicators of inflammation and oxidative stress in the tissue surrounding implanted probes in C57BL/6 mice as well as two-photon microscopy to track the microglial responses to the probes in real-time in transgenic mice expressing GFP with CX3CR1 promotor. Histological results indicate that melatonin effectively maintained neuron density surrounding the electrode, inhibited accumulation and activation of microglia and astrocytes, and reduced oxidative tissue damage. The expression of the pro-inflammatory cytokines, TNF-α and IL-6, were significantly reduced in melatonin-treated animals. Additionally, microglial encapsulation of the implant surface was inhibited by melatonin as compared to control animals following implantation. Our results combined with previous research suggest that melatonin is a particularly suitable drug for modulating inflammatory activity around neural electrode implants both acutely and chronically, translating to more stable and reliable interfaces.

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References
1.
Chen F, Jiang G, Liu H, Li Z, Pei Y, Wang H . Melatonin alleviates intervertebral disc degeneration by disrupting the IL-1β/NF-κB-NLRP3 inflammasome positive feedback loop. Bone Res. 2020; 8:10. PMC: 7028926. DOI: 10.1038/s41413-020-0087-2. View

2.
Kozai T, Vazquez A, Weaver C, Kim S, Cui X . In vivo two-photon microscopy reveals immediate microglial reaction to implantation of microelectrode through extension of processes. J Neural Eng. 2012; 9(6):066001. PMC: 3511663. DOI: 10.1088/1741-2560/9/6/066001. View

3.
Golabchi A, Wu B, Li X, Carlisle D, Kozai T, Friedlander R . Melatonin improves quality and longevity of chronic neural recording. Biomaterials. 2018; 180:225-239. PMC: 6179369. DOI: 10.1016/j.biomaterials.2018.07.026. View

4.
Kozai T, Jaquins-Gerstl A, Vazquez A, Michael A, Cui X . Brain tissue responses to neural implants impact signal sensitivity and intervention strategies. ACS Chem Neurosci. 2014; 6(1):48-67. PMC: 4304489. DOI: 10.1021/cn500256e. View

5.
Lin C, Chao H, Li Z, Xu X, Liu Y, Hou L . Melatonin attenuates traumatic brain injury-induced inflammation: a possible role for mitophagy. J Pineal Res. 2016; 61(2):177-86. DOI: 10.1111/jpi.12337. View