Departments of Creative IT Engineering, Electrical Engineering, and Mechanical Engineering, Pohang University of Science and Technology (POSTECH), 77 Cheongam-ro, Pohang 37673, Republic of Korea.
Department of Materials Science and Engineering, College of Engineering, Seoul National University, Seoul 08826, Republic of Korea.
Theranostics. 2020 Jan 22;10(6):2509-2521. doi: 10.7150/thno.39403. eCollection 2020.
Photoacoustic imaging is gaining great attention in the medical world due to its significant potential for clinical translation. Light excitation in the second near-infrared (NIR-II) window (1000-1350 nm) has resolution and penetration depth suitable for several clinical applications. However, the significant challenge exists for clinical translation because of the absence of notable intrinsic chromophores in this clinically significant optical range to generate diagnostic images. : We present newly developed a biocompatible nickel dithiolene-based polymeric nanoparticle (NiPNP), which have a strong and sharp absorption peak at 1064 nm, as a photoacoustic contrast agent to boost specific absorbance in the NIR-II window for deep tissue imaging. : We confirm the enhanced PA signal by NiPNP's strong light absorption in the NIR-II window (287% higher than that of NIR-I) and deep tissue imaging capability (5.1 cm) through experiment. We have successfully acquired diagnostic-quality photoacoustic images in deep tissue (3.4 cm) of sentinel lymph nodes, gastrointestinal tracts, and bladders of live rats by using clinically viable imaging system. : Our results prove that with strong absorption in the NIR-II window and with deeper imaging depth, the clinical translation of photoacoustic imaging with NiPNP is feasible for preclinical studies and thus would facilitate further clinical investigations.
光声成像是一种在医学领域中备受关注的技术,因为它在临床转化方面具有巨大的潜力。在近红外二区(NIR-II,1000-1350nm)中进行光激发具有适合于几种临床应用的分辨率和穿透深度。然而,由于在这个具有临床意义的光学范围内缺乏显著的固有色团来产生诊断图像,因此临床转化仍然存在重大挑战。本文介绍了一种新开发的基于镍二硫烯的生物相容性聚合物纳米颗粒(NiPNP),它在 1064nm 处具有很强的尖锐吸收峰,可用作光声对比剂,以提高 NIR-II 窗口中的特定吸收率,从而实现深层组织成像。通过实验证实了 NiPNP 在 NIR-II 窗口(比 NIR-I 高 287%)中的强光吸收和深层组织成像能力(5.1cm),可增强 PA 信号。我们成功地使用临床可行的成像系统,在活老鼠的前哨淋巴结、胃肠道和膀胱的深层组织(3.4cm)中获得了具有诊断质量的光声图像。我们的结果证明,NiPNP 在 NIR-II 窗口中具有强吸收和更深的成像深度,其光声成像的临床转化对于临床前研究是可行的,从而将促进进一步的临床研究。