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Influence of Probe Flexibility and Gelatin Embedding on Neuronal Density and Glial Responses to Brain Implants

机译:探针的柔韧性和明胶包埋对神经元密度和对脑植入物的神经胶质反应的影响

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摘要

To develop long-term high quality communication between brain and computer, a key issue is how to reduce the adverse foreign body responses. Here, the impact of probe flexibility and gelatine embedding on long-term (6w) tissue responses, was analyzed. Probes of same polymer material, size and shape, flexible mainly in one direction, were implanted in rat cerebral cortex (nimplants = 3 x 8) in two orientations with respect to the major movement direction of the brain relative to the skull: parallel to (flex mode) or transverse to (rigid mode). Flex mode implants were either embedded in gelatin or non-embedded. Neurons, activated microglia and astrocytes were visualized using immunohistochemistry. The astrocytic reactivity, but not microglial response, was significantly lower to probes implanted in flex mode as compared to rigid mode. The microglial response, but not astrocytic reactivity, was significantly smaller to gelatin embedded probes (flex mode) than non-embedded. Interestingly, the neuronal density was preserved in the inner zone surrounding gelatin embedded probes. This contrasts to the common reports of reduced neuronal density close to implanted probes. In conclusion, sheer stress appears to be an important factor for astrocytic reactivity to implanted probes. Moreover, gelatin embedding can improve the neuronal density and reduce the microglial response close to the probe.
机译:为了发展大脑与计算机之间的长期高质量通信,关键问题是如何减少不良的异物反应。在这里,分析了探针柔韧性和明胶包埋对长期(6w)组织反应的影响。将相同聚合物材料,大小和形状,主要在一个方向上具有柔性的探针以相对于大脑相对于头骨的主要运动方向的两个方向植入大鼠大脑皮层(放大倍数= 3 x 8):平行于(弹性模式)或横向于(刚性模式)。 Flex模式植入物可以嵌入明胶中,也可以不嵌入。使用免疫组织化学观察神经元,活化的小胶质细胞和星形胶质细胞。与刚性模式相比,以弯曲模式植入的探针的星形胶质细胞反应性(而非小胶质细胞反应)显着降低。对于明胶嵌入的探针(flex模式),小胶质细胞的反应(而非星形胶质细胞反应性)明显小于未嵌入的探针。有趣的是,神经元密度被保留在明胶包埋的探针周围的内部区域中。这与通常的报道接近植入探针的神经元密度降低相反。总之,纯粹的应力似乎是对植入探针进行星形胶质反应的重要因素。而且,明胶包埋可以改善神经元密度并减少靠近探针的小胶质细胞反应。

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