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双硒纳米片用于 1064nm 增强光声成像。

BiSe nanoplates for contrast-enhanced photoacoustic imaging at 1064 nm.

机构信息

Departments of Creative IT Engineering and Electrical Engineering, Pohang University of Science and Technology (POSTECH), 77 Cheongam-Ro, Nam-Gu, Pohang, Gyeongbuk 37673, Republic of Korea.

出版信息

Nanoscale. 2018 Nov 15;10(44):20548-20558. doi: 10.1039/c8nr05672b.

Abstract

Photoacoustic (PA) imaging is a high-resolution biomedical imaging modality, which can be used to visualize biological tissues located beyond the limited penetration depth of existing optical imaging techniques. An optical wavelength of 1064 nm is of great interest in PA imaging due to low intrinsic absorption at this wavelength. Reduced absorption implies an increased depth of imaging, which enables several new clinical applications such as bladder imaging, gastrointestinal (GI) imaging, and sentinel lymph node (SLN) imaging. In addition, a 1064 nm Nd:YAG laser system enables a high power, cost-effective, and compact laser-based PA imaging system. However, at this wavelength, due to low intrinsic contrast, high absorption exogenous PA contrast agents are necessary for imaging. To this end, we present new Bi2Se3 nanoplates as PA contrast agents at 1064 nm wavelength for PA imaging. We successfully synthesized Bi2Se3 nanoplates and they exhibited relatively strong PA signals at 1064 nm. We confirmed the increased imaging depth of penetration by imaging the Bi2Se3-containing tube located 4.6 cm deep in biological tissues. We present in vivo PA imaging of the bladder, GI tract, and SLN in mice using a Bi2Se3 contrast agent establishing the clinical feasibility of these agents with a clinical photoacoustic/ultrasound imaging system. Our results confirm that Bi2Se3 nanoplates are promising PA contrast agents at 1064 nm that offer a high optical absorbance in the second NIR region providing a high contrast imaging and increased depth of penetration.

摘要

光声(PA)成像是一种高分辨率的生物医学成像模式,可用于可视化位于现有光学成像技术穿透深度限制之外的生物组织。由于在该波长处固有吸收低,因此 1064nm 的光波长在 PA 成像中非常有吸引力。吸收减少意味着成像深度增加,这使得一些新的临床应用成为可能,如膀胱成像、胃肠道(GI)成像和前哨淋巴结(SLN)成像。此外,1064nmNd:YAG 激光系统可实现高功率、具有成本效益且紧凑的基于激光的 PA 成像系统。然而,在该波长下,由于固有对比度低,需要高吸收的外源 PA 对比剂进行成像。为此,我们提出了在 1064nm 波长下用作 PA 成像的新型 Bi2Se3 纳米板。我们成功合成了 Bi2Se3 纳米板,它们在 1064nm 处表现出相对较强的 PA 信号。我们通过对位于生物组织 4.6cm 深处的含 Bi2Se3 管进行成像,证实了穿透深度的增加。我们使用 Bi2Se3 对比剂对小鼠的膀胱、GI 道和 SLN 进行了体内 PA 成像,从而在临床光声/超声成像系统中确立了这些对比剂的临床可行性。我们的结果证实,Bi2Se3 纳米板是在 1064nm 处有前途的 PA 对比剂,在第二个近红外区域提供高光学吸收率,从而提供高对比度成像和增加穿透深度。

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