Song Chao, Che Xiangchen, Que Long
Opt Express. 2017 Aug 7;25(16):19391-19397. doi: 10.1364/OE.25.019391.
In this paper, a drug loading and release device fabricated using nanopore thin film and layer-by-layer (LbL) nanoassembly is reported. The nanopore thin film is a layer of anodic aluminum oxide (AAO), consisting of honeycomb-shape nanopores. Using the LbL nanoassembly process, the drug, using gentamicin sulfate (GS) as the model, can be loaded into the nanopores and the stacked layers on the nanopore thin film surface. The drug release from the device is achieved by immersing it into flowing DI water. Both the loading and release processes can be monitored optically. The effect of the nanopore size/volume on drug loading and release has also been evaluated. Further, the neuron cells have been cultured and can grow normally on the nanopore thin film, verifying its bio-compatibility. The successful fabrication of nanopore thin film device on silicon membrane render it as a potential implantable controlled drug release device.
本文报道了一种使用纳米孔薄膜和层层(LbL)纳米组装技术制造的药物负载与释放装置。纳米孔薄膜是一层阳极氧化铝(AAO),由蜂窝状纳米孔组成。利用层层纳米组装工艺,以硫酸庆大霉素(GS)为模型药物,可将其负载到纳米孔以及纳米孔薄膜表面的堆叠层中。通过将该装置浸入流动的去离子水中实现药物释放。负载和释放过程均可通过光学手段进行监测。还评估了纳米孔尺寸/体积对药物负载和释放的影响。此外,已培养出神经元细胞,且其能在纳米孔薄膜上正常生长,证实了该薄膜的生物相容性。在硅膜上成功制造出纳米孔薄膜装置,使其成为一种潜在的可植入式控释药物装置。