TY - JOUR
T1 - A MCC950 analogue inflammasome inhibitor reduces the foreign body reaction against neural implants
AU - Crugeiras, Jose
AU - Bisquoli, Chiara
AU - Rodríguez-Brañas, María
AU - Rodríguez-Meana, Bruno
AU - De Ventura, Tiziano
AU - Hernández, Neus
AU - Jaramillo, Jessica
AU - Honovich, Alice
AU - Delgado-Martínez, Ignacio
AU - Lago, Natalia
AU - Karlsson-Fernberg, Hanna
AU - Asplund, Maria
AU - Carli, Stefano
AU - Trapella, Claudio
AU - Turrin, Giulia
AU - Navarro, Xavier
PY - 2026/8
Y1 - 2026/8
N2 - Devices implanted in the body provoke a foreign body reaction (FBR) that results in tissue encapsulation of the device and hampers its functionality over time. This FBR is particularly relevant regarding long-term implanted neural electrodes. Inflammasome inhibitors may represent a novel treatment to reduce the initial macrophage activation, and thus reduce the FBR and improve the outcome of implanted devices. We have synthetized an inflammasome inhibitor, named TDV19, and tested its capability to reduce macrophage activation in vitro, in comparison with the standard inhibitor MCC950. Then, polyimide thin-film devices were longitudinally implanted in the rat sciatic nerve and tested for 2 months to evaluate the intraneural FBR. Systemic administration of TDV19 and of MCC950 significantly reduced macrophage infiltration in the nerve and thickness of the fibrotic capsule around the device. Thus, systemic administration of inflammasome inhibitors appears as a useful treatment to improve the fate of chronically implanted neural electrodes.
AB - Devices implanted in the body provoke a foreign body reaction (FBR) that results in tissue encapsulation of the device and hampers its functionality over time. This FBR is particularly relevant regarding long-term implanted neural electrodes. Inflammasome inhibitors may represent a novel treatment to reduce the initial macrophage activation, and thus reduce the FBR and improve the outcome of implanted devices. We have synthetized an inflammasome inhibitor, named TDV19, and tested its capability to reduce macrophage activation in vitro, in comparison with the standard inhibitor MCC950. Then, polyimide thin-film devices were longitudinally implanted in the rat sciatic nerve and tested for 2 months to evaluate the intraneural FBR. Systemic administration of TDV19 and of MCC950 significantly reduced macrophage infiltration in the nerve and thickness of the fibrotic capsule around the device. Thus, systemic administration of inflammasome inhibitors appears as a useful treatment to improve the fate of chronically implanted neural electrodes.
KW - Foreign body reaction
KW - Inflammasome
KW - Intraneural electrode
KW - Macrophages
KW - MCC950
KW - Neuroprosthesis
KW - Sulfonamide
KW - Foreign body reaction
KW - Inflammasome
KW - Intraneural electrode
KW - Macrophages
KW - Neuroprosthesis
KW - Sulfonamide
KW - MCC950
KW - Foreign body reaction
KW - Inflammasome
KW - Intraneural electrode
KW - Macrophages
KW - Neuroprosthesis
KW - Sulfonamide
KW - MCC950
UR - https://www.scopus.com/pages/publications/105044334154
UR - https://www.mendeley.com/catalogue/c6f63cb8-0251-33f3-afc1-5e5cf2b5d629/
U2 - 10.1016/j.ejmcr.2026.100357
DO - 10.1016/j.ejmcr.2026.100357
M3 - Article
AN - SCOPUS:105044334154
SN - 2772-4174
VL - 17
JO - European Journal of Medicinal Chemistry Reports
JF - European Journal of Medicinal Chemistry Reports
M1 - 100357
ER -