Center for Systems Biology, Massachusetts General Hospital, Harvard Medical School, Boston, MA 02114, USA.
Safety Measurement Institute, Korea Research Institute of Standards and Science, Daejeon, 34113, Republic of Korea.
Adv Healthc Mater. 2024 Apr;13(11):e2303713. doi: 10.1002/adhm.202303713. Epub 2024 Jan 22.
ViSiON (visualization materials composed of silicon-based optical nanodisks) is presented, which offers a unique optical combination of near-infrared (NIR) optical properties and biodegradability. Initially, numerical simulations are conducted to calculate the total extinction and scattering effects of ViSiON by the diameter-to-thickness ratio, predicting precise control over its scattering properties in the NIR region. A top-down patterning technique is employed to synthesize ViSiON with accurate diameter and thickness control. ViSiON with a 50 nm thickness exhibits scattering properties over 400 times higher than that of 30 nm, rendering it suitable as a contrast agent for optical coherence tomography (OCT), especially in ophthalmic applications. Furthermore, ViSiON possesses inherent biodegradability in media, with ≈95% degradation occurring after 48 h, and the degradation rate can be finely tuned based on the quantity of protein coating applied to the surface. Subsequently, the OCT imaging capability is validated even within vessels smaller than 300 µm, simulating retinal vasculature using a retinal phantom. Then, using an ex ovo chick embryo model, it is demonstrated that ViSiON enhances the strength of protein membranes by 6.17 times, thereby presenting the potential for ViSiON as an OCT imaging probe capable of diagnosing retinal diseases.
我们提出了一种基于硅的光学纳米盘的可视化材料(ViSiON),它具有独特的近红外(NIR)光学特性和生物降解性。最初,通过直径与厚度比来计算 ViSiON 的总消光和散射效应的数值模拟,预测可以在近红外区域对其散射特性进行精确控制。采用自上而下的图案化技术来合成具有精确直径和厚度控制的 ViSiON。50nm 厚的 ViSiON 的散射性能比 30nm 厚的高出 400 多倍,适合用作光学相干断层扫描(OCT)的造影剂,特别是在眼科应用中。此外,ViSiON 在介质中具有内在的生物降解性,在 48 小时后约有 95%降解,并且可以根据表面涂覆的蛋白质量对降解速率进行精细调节。随后,即使在小于 300μm 的血管内也验证了 OCT 成像能力,使用视网膜模型模拟视网膜血管。然后,使用鸡胚模型证明了 ViSiON 使蛋白质膜的强度增强了 6.17 倍,从而表明 ViSiON 作为一种 OCT 成像探针有潜力用于诊断视网膜疾病。