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Gold nanostar-enhanced multimodal photoacoustic microscopy and optical coherence tomography for the visualization of laser-induced choroidal neovascularization in living rabbits

机译:金纳米星增强的多峰光声显微镜和光学相干断层扫描技术,用于可视化活兔体内的激光诱导的脉络膜新生血管形成

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Photoacoustic microscopy (PAM) is a novel and hybrid optical and acoustic technique for imaging. This modality can be used for label-free imaging of the retinal microvasculature with ultrahigh resolution and excellent image contrast. However, it is hard to distinguish newly developed microvasculature from native vessels. An exogenous photoabsorber contrast agent can boost the sensitivity and enhance the PAM image contrast. The focus of this study is to investigate the potential application of gold nanostars (GNS) as a contrast agent for multimodal PAM and OCT. GNS were validated on Rose Bengal laser-induced retinal vein occlusion choroidal neovascularization (CNV) rabbit model. Four New Zealand white rabbits were administrated with Rose Bengal (5 mg/kg) followed by laser illumination at a power of 300 mW. CNV developed at day 28 post laser illumination. The rabbit model before and after treatment was monitored by a multimodal imaging system including OCT, PAM, color fundus photographs, fluorescein angiography, (FA) and indocyanine green angiography (ICGA). At day 28 post laser treatment, the rabbits received an intravenous injection of 400 μL GNS at a concentration of 2.5 mg/mL. Multimodal PAM and OCT monitored the GNS at various time points: 1 h, 2 h, 8 h, 24 h, 48 h, 72 h, day 4, day 7, day 9, day 11 and day 14. The experimental results show that the PA signal was enhanced 24-fold and OCT intensity increased 184% 24 h post injection. Histological analysis and TUNEL assay show no evidence of any change in cell nuclear morphology suggesting no damage or cell death. In addition, the liver function tests showed normal liver and kidney function, indicating that GNS induced no toxicity in the rabbit at the treated concentration. Therefore, GNS may provide a safe and potential contrast agent for the detection of the microvasculature in the eye.
机译:光声显微镜(PAM)是一种新颖的混合光学和声学成像技术。这种方式可用于无标签的视网膜微血管成像,具有超高分辨率和出色的图像对比度。但是,很难将新开发的微血管与天然血管区分开。外源光吸收剂造影剂可以提高灵敏度并增强PAM图像的对比度。这项研究的重点是研究金纳米星(GNS)作为多峰PAM和OCT造影剂的潜在应用。在玫瑰孟加拉激光诱导的视网膜静脉阻塞脉络膜新生血管(CNV)兔模型上验证了GNS。将四只新西兰白兔与玫瑰​​红(5 mg / kg)一起给药,然后以300 mW的功率进行激光照射。激光照射后第28天出现CNV。通过包括OCT,PAM,彩色眼底照片,荧光素血管造影(FA)和吲哚菁绿色血管造影(ICGA)在内的多模式成像系统监测治疗前后的兔模型。激光治疗后第28天,兔子接受浓度为2.5 mg / mL的400μLGNS静脉注射。多峰PAM和OCT在不同时间点监测GNS:1 h,2 h,8 h,24 h,48 h,72 h,第4天,第7天,第9天,第11天和第14天。实验结果表明,注射后24小时,PA信号增强了24倍,OCT强度增加了184%。组织学分析和TUNEL测定法没有显示细胞核形态发生任何变化的迹象,表明没有损伤或细胞死亡。另外,肝功能测试显示肝和肾功能正常,表明GNS在治疗浓度下对兔子没有毒性。因此,GNS可以为检测眼睛中的微血管提供安全和潜在的造影剂。

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