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Bioelectric Analyses of an Osseointegrated Intelligent Implant Design System for Amputees
Published on: July 15, 2009
Engineering technology of implantable galvanic cells for silencing the bone-neural axis in gouty arthritis therapy
Jie Cao1, Nailin Yang1, Fei Gong2
1Institute of Functional Nano & Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Soochow University, Suzhou, China.
Abstract:
Gouty arthritis faces multiple challenges, such as recalcitrance to cure and recurrent flares, owing to its intricate pathophysiological microenvironment. Recent studies have focused on urate reduction, pain relief, or anti-inflammation effects alone, which often fail to provide satisfactory results. To address these challenges, an implantable manganese platinum microscale galvanic cell (Mn@Pt micro-GC) is developed. This system utilizes the urate oxidase-like activity of platinum to degrade deposited monosodium urate crystals, while the Mn2+ and hydrogen gas work synergistically to effectively reversing the pro-inflammatory environment. In addition to decreasing the production of pain signals associated with gout, Mn@Pt micro-GC effectively inhibits pain signal transmission along the CXCL5-neuronal CXCR2-TRPA1 axis through continuous electrical stimulation. This multimodal treatment approach emphasizes the strong relationship between bone and nerve in gout, taking into account the importance of reducing uric acid, anti-inflammation, and pain relief in gout therapy, which has led to improved treatment results.

