Kunuku Srinivasu, Lin Bo-Rong, Chen Chien-Hsu, Chang Chun-Hsiang, Chen Tzung-Yuang, Hsiao Tung-Yuan, Yu Hung-Kai, Chang Yu-Jen, Liao Li-Chuan, Chen Fang-Hsin, Bogdanowicz Robert, Niu Huan
Department of Metrology and Optoelectronics, Faculty of Electronics, Telecommunications and Informatics, Gdańsk University of Technology, Gdańsk 80233, Poland.
Accelerator Laboratory, Nuclear Science and Technology Development Center, National Tsing Hua University, Hsinchu 300044, Taiwan.
ACS Omega. 2023 Jan 22;8(4):4398-4409. doi: 10.1021/acsomega.2c08043. eCollection 2023 Jan 31.
Nanodiamonds (NDs) are emerging with great potential in biomedical applications like biomarking through fluorescence and magnetic resonance imaging (MRI), targeted drug delivery, and cancer therapy. The magnetic and optical properties of NDs could be tuned by selective doping. Therefore, we report multifunctional manganese-incorporated NDs (Mn-NDs) fabricated by Mn ion implantation. The fluorescent properties of Mn-NDs were tuned by inducing the defects by ion implantation and enhancing the residual nitrogen vacancy density achieved by a two-step annealing process. The cytotoxicity of Mn-NDs was investigated using NCTC clone 929 cells, and the results revealed no cytotoxicity effect. Mn-NDs have demonstrated dual mode contrast enhancement for both - and -weighted in vitro MR imaging. Furthermore, Mn-NDs have illustrated a significant increase in longitudinal relaxivity (fivefold) and transversal relaxivity (17-fold) compared to the as-received NDs. Mn-NDs are employed to investigate their ability for in vivo MR imaging by intraperitoneal (ip) injection of Mn-NDs into mice with liver tumors. After 2.5 h of ip injection, the enhancement of contrast in - and -weighted images has been observed via the accumulation of Mn-NDs in liver tumors of mice. Therefore, Mn-NDs have great potential for in vivo imaging by MR imaging in cancer therapy.
纳米金刚石(NDs)在生物医学应用中展现出巨大潜力,如通过荧光和磁共振成像(MRI)进行生物标记、靶向给药和癌症治疗。NDs的磁性和光学性质可通过选择性掺杂进行调控。因此,我们报道了通过锰离子注入制备的多功能掺锰纳米金刚石(Mn-NDs)。通过离子注入诱导缺陷并通过两步退火工艺提高残余氮空位密度来调控Mn-NDs的荧光性质。使用NCTC克隆929细胞研究了Mn-NDs的细胞毒性,结果显示无细胞毒性作用。Mn-NDs在体外磁共振成像中对T1加权和T2加权均表现出双模对比增强。此外,与原样的NDs相比,Mn-NDs的纵向弛豫率显著增加(五倍),横向弛豫率显著增加(十七倍)。通过向患有肝肿瘤的小鼠腹腔内(ip)注射Mn-NDs来研究其体内磁共振成像能力。腹腔注射2.5小时后,通过Mn-NDs在小鼠肝肿瘤中的积累,观察到T1加权和T2加权图像中的对比增强。因此,Mn-NDs在癌症治疗的磁共振成像体内成像方面具有巨大潜力。