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聚(姜黄素 - 聚乙二醇)薄膜在活性氧损伤后提供神经保护作用。

Poly(curcumin--poly(ethylene glycol)) films provide neuroprotection following reactive oxygen species insult.

作者信息

Hamilton Adelle E, Waskiewicz Nikita, Quinones Geraldine B, Capadona Jeffrey R, Bentley Marvin, Palermo Edmund F, Gilbert Ryan J

机构信息

Department of Biomedical Engineering, Rensselaer Polytechnic Institute, Troy, NY, United States of America.

Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, Troy, NY, United States of America.

出版信息

J Neural Eng. 2025 Jan 27;22(1). doi: 10.1088/1741-2552/ada8df.

Abstract

Curcumin is an antioxidant and anti-inflammatory molecule that may provide neuroprotection following central nervous system injury. However, curcumin is hydrophobic, limiting its ability to be loaded and then released from biomaterials for neural applications. We previously developed polymers containing curcumin, and these polymers may be applied to neuronal devices or to neural injury to promote neuroprotection. Thus, our objective was to evaluate two curcumin polymers as potential neuroprotective materials for neural applications.For each curcumin polymer, we created three polymer solutions by varying the weight percentage of curcumin polymer in solvent. These solutions were subsequently coated onto glass coverslips, and the thickness of the polymer was assessed using profilometry. Polymer degradation and dissolution was assessed using brightfield microscopy, scanning electron microscopy, and gel permeation chromatography. The ability of the polymers to protect cortical neurons from free radical insult was assessed using ancortical culture model.The P50 curcumin polymer (containing greater poly(ethylene glycol) content than the P75 polymer), eroded readily in solution, with erosion dependent on the weight percentage of polymer in solvent. Unlike the P50 polymer, the P75 polymer did not undergo erosion. Since the P50 polymer underwent erosion, we expected that the P50 polymer would more readily protect cortical neurons from free radical insult. Unexpectedly, even though P75 films did not erode, P75 polymers protected neurons from free radical insult, suggesting that erosion is not necessary for these polymers to enable neuroprotection.This study is significant as it provides a framework to evaluate polymers for future neural applications. Additionally, we observed that some curcumin polymers do not require dissolution to enable neuroprotection. Future work will assess the ability of these materials to enable neuroprotection withinmodels of neural injury.

摘要

姜黄素是一种抗氧化和抗炎分子,可能在中枢神经系统损伤后提供神经保护作用。然而,姜黄素具有疏水性,限制了其从用于神经应用的生物材料中加载和释放的能力。我们之前开发了含姜黄素的聚合物,这些聚合物可应用于神经元装置或神经损伤以促进神经保护。因此,我们的目标是评估两种姜黄素聚合物作为神经应用潜在的神经保护材料。

对于每种姜黄素聚合物,我们通过改变姜黄素聚合物在溶剂中的重量百分比创建了三种聚合物溶液。随后将这些溶液涂覆在玻璃盖玻片上,并使用轮廓仪评估聚合物的厚度。使用明场显微镜、扫描电子显微镜和凝胶渗透色谱法评估聚合物的降解和溶解情况。使用皮质培养模型评估聚合物保护皮质神经元免受自由基损伤的能力。

P50姜黄素聚合物(比P75聚合物含有更多的聚乙二醇)在溶液中容易侵蚀,侵蚀程度取决于聚合物在溶剂中的重量百分比。与P50聚合物不同,P75聚合物没有发生侵蚀。由于P50聚合物发生了侵蚀,我们预计P50聚合物能更轻易地保护皮质神经元免受自由基损伤。出乎意料的是,尽管P75膜没有侵蚀,但P75聚合物能保护神经元免受自由基损伤,这表明这些聚合物实现神经保护并不需要侵蚀。

这项研究意义重大,因为它提供了一个评估聚合物用于未来神经应用的框架。此外,我们观察到一些姜黄素聚合物实现神经保护不需要溶解。未来的工作将评估这些材料在神经损伤模型中实现神经保护的能力。

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