| Literature DB >> 30854523 |
Hillary W Bedell1,2, Jeffrey R Capadona1,2.
Abstract
Intracortical microelectrodes are used both in basic research to increase our understanding of the nervous system and for rehabilitation purposes through brain-computer interfaces. Yet, challenges exist preventing the widespread clinical use of this technology. A prime challenge is with the neuroinflammatory response to intracortical microelectrodes. This mini-review details immunomodulatory strategies employed to decrease the inflammatory response to these devices. Over time, broad-spectrum anti-inflammatory approaches, such as dexamethasone and minocycline, evolved into more targeted treatments since the underlying biology of the neuroinflammation was elucidated. This review also presents studies which examine novel prospective targets for future immunomodulatory targeting.Entities:
Keywords: Anti-Inflammatory; Brain; Brain-Machine Interface; Glial Response; Intracortical Microelectrode; Neuroinflammation
Year: 2018 PMID: 30854523 PMCID: PMC6404754 DOI: 10.29245/2578-3009/2018/4.1157
Source DB: PubMed Journal: J Immunol Sci
Summary of strategies to mitigate the neuroinflammatory response to intracortical microelectrodes.
| Strategy | Approaches | Suggested next steps/remarks |
|---|---|---|
| Steroids | Peripheral injections | Development of continuous local delivery platform, determine effect on neural recording |
| Probe coatings | ||
| Electrode site coatings | ||
| Local delivery via microfludics in probe | ||
| Antibiotics | Add to drinking water | Determine effect local delivery has on neural recording. Other strategies might be less risky. |
| Incorporate in thin film coatings | ||
| Local delivery via microfludics in probe | ||
| Single local dose via cannula | ||
| Glial Response | Alpha-MSH probe coating | Determine effect on neural recording |
| Single dose of flavopiridol | Did not result in improvement in neural recording performance | |
| IL-IRa probe coating | Determine effect on neural recording | |
| Inflammasome | Caspase knock-out model | Determine effect small molecule or other clinically relevant therapy has or neural recording |
| Blood-de rived cells | MCP-1 knock out model | Determine effect on neural recording |
| Pharmacological inhibition of MCP-1 | ||
| Pattern recognition receptors | CD14 knock out model | Determine dosing regimens of small molecule or other clinically relevant therapy |
| Pharmacological inhibition of CD14 | ||