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Manganese and dysprosium codoped carbon quantum dots as a potential fluorescent/T1/T2/CT quadri-modal imaging nanoprobe

机译:锰和镝共掺杂碳量子点作为电位荧光/T1/T2/CT四模态成像纳米探针

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摘要

It has been challenging to integrate various medical imaging modalities into an ultra-small nanoparticle with good biocompatibility to build highly efficient multimodal imaging nanoprobes. A new manganese and dysprosium codoped carbon quantum dots (Mn,Dy-CQDs) with a mean diameter of 1.77 nm was synthesized for fluorescence imaging, T1/T2-weighted magnetic resonance imaging (T1/T2-weighted MRI), and x-ray computed tomography (CT) imaging using a simple one-step hydrothermal approach. The obtained Mn,Dy-CQDs showed good water solubility, long-term stability, strong stable fluorescence property (fluorescence quantum yield of 31.62), and excellent biocompatibility. The cell imaging verified that the Mn,Dy-CQDs have high efficiency of fluorescence imaging. The Mn,Dy-CQDs, on the other hand, had a superior x-ray absorption performance (47.344 HU l g(-1)), a higher longitudinal relaxivity (r (1) = 7.47 mM(-1) s(-1)), a higher transverse relaxivity (r (2) = 42.686 mM(-1) s(-1)). In vitro T1/T2-weighted MRI and CT imaging showed that Mn,Dy-CQDs can produce a strong contrast enhancement impact. To summarise, the Mn,Dy-CQDs may be used as a T1/T2-weighted MRI/CT/fluorescent quadri-modal imaging nanoprobe, indicating that they have a lot of uses in biomedical multimode imaging and clinics.
机译:将各种医学成像模式集成到具有良好生物相容性的超小纳米颗粒中以构建高效的多模态成像纳米探针一直具有挑战性。采用简单的一步水热法合成了平均直径为1.77 nm的新型锰镝共掺杂碳量子点(Mn,Dy-CQDs),用于荧光成像、T1/T2加权磁共振成像(T1/T2加权MRI)和X射线计算机断层扫描(CT)成像。所得的Mn,Dy-CQDs具有良好的水溶性、长期稳定性、较强的稳定荧光性能(荧光量子产率为31.62%)和优异的生物相容性。细胞成像验证了Mn,Dy-CQDs具有较高的荧光成像效率。另一方面,Mn,Dy-CQDs具有优异的X射线吸收性能(47.344 胡 l g(-1)),更高的纵向弛豫率(r (1) = 7.47 mM(-1) s(-1)),较高的横向弛豫率(r (2) = 42.686 mM(-1) s(-1))。体外T1/T2加权MRI和CT显像显示,Mn,Dy-CQDs能产生较强的对比度增强效果。综上所述,Mn,Dy-CQDs可作为T1/T2加权MRI/CT/荧光四模态成像纳米探针,在生物医学多模成像和临床中具有广泛的应用价值。

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