Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), 335 Science Road, Yuseong-gu, Daejeon, 305-701, Republic of Korea.
Adv Healthc Mater. 2017 Apr;6(8). doi: 10.1002/adhm.201601133. Epub 2017 Feb 14.
A visible light-active, hematite-based photoelectrode platform for suppressing β-amyloid (Aβ) self-assembly in vitro is reported. Upon illumination of a light-emitting diode with an anodic bias, the hematite photoanode generates reactive radical species, such as superoxide ions and hydroxyl radicals, via photoelectrocatalytic process. According to our analyses, the hematite photoanode exhibited a strong inhibitory effect on Aβ aggregation under visible light illumination and anodic bias. We found that hole-derived radicals played a significant role of oxidizing Aβ peptides, which effectively blocked further aggregation. The efficacy of photoelectrocatalytic inhibition on Aβ aggregation was enhanced by introducing cobalt phosphate (Co-Pi) as a co-catalyst on the hematite photoanode, which facilitated the separation of electron-hole pairs. We verified that both bare and Co-Pi@hematite photoanodes are biocompatible and effective in reducing Aβ aggregation-induced cytotoxicity.
可见光激活的基于赤铁矿的光电化学电极平台用于抑制体外β-淀粉样蛋白(Aβ)自组装。在施加阳极偏压的发光二极管照射下,赤铁矿光阳极通过光电催化过程产生活性自由基物种,如超氧离子和羟基自由基。根据我们的分析,赤铁矿光阳极在可见光照射和阳极偏压下对 Aβ聚集表现出很强的抑制作用。我们发现空穴衍生的自由基在氧化 Aβ肽中起着重要作用,有效地阻止了进一步的聚集。通过在赤铁矿光阳极上引入磷酸钴(Co-Pi)作为共催化剂,光电催化抑制 Aβ聚集的效果得到增强,这促进了电子-空穴对的分离。我们验证了裸赤铁矿和 Co-Pi@赤铁矿光阳极都是生物相容的,并且可以有效减少 Aβ聚集诱导的细胞毒性。