首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Amino-Functionalized Nitrogen-Doped Graphene-Quantum-Dot-Based Nanomaterials with Nitrogen and Amino-Functionalized Group Content Dependence for Highly Efficient Two-Photon Bioimaging
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Amino-Functionalized Nitrogen-Doped Graphene-Quantum-Dot-Based Nanomaterials with Nitrogen and Amino-Functionalized Group Content Dependence for Highly Efficient Two-Photon Bioimaging

机译:具有氮和氨基官能团含量依赖性的氨基官能化氮掺杂石墨烯-量子点基纳米材料用于高效双光子生物成像

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摘要

We fabricated nanomaterials comprising amino-functionalized and nitrogen-doped graphene quantum dots (amino-N-GQDs) and investigated their photostability and intrinsic luminescence in the near-infrared spectrum to determine their suitability as contrast agents in two-photon imaging (TPI). We observed that amino-N-GQDs with a higher amount of bonded nitrogen and amino-functionalized groups (6.2%) exhibited superior two-photon properties to those with a lower amount of such nitrogen and groups (4.9%). These materials were conjugated with polymers containing sulfur (polystyrene sulfonate, PSS) and nitrogen atoms (polyethylenimine, PEI), forming amino-N-GQD–PSS–PEI specimens (amino-N-GQD-polymers). The polymers exhibited a high quantum yield, remarkable stability, and notable two-photon properties and generated no reactive oxygen species, rendering them excellent two-photon contrast agents for bioimaging. An antiepidermal growth factor receptor (Ab ) was used for labeling to increase specificity. Two-photon imaging (TPI) of amino-N-GQD (6.2%)-polymer-Ab -treated A431 cancer cells revealed remarkable brightness, intensity, and signal-to-noise ratios for each observation at a two-photon excitation power of 16.9 nJ pixel under 30 scans and a three-dimensional (3D) depth of 105 µm, indicating that amino-N-GQD (6.2%)-polymer-Ab -treated cells can achieve two-photon luminescence with 71 times less power required for two-photon autofluorescence (1322.8 nJ pixel with 500 scans) of similar intensity. This economy can minimize photodamage to cells, rendering amino-N-GQD-polymers suitable for noninvasive 3D bioimaging.
机译:我们制造了包含氨基官能化和氮掺杂石墨烯量子点(amino-N-GQDs)的纳米材料,并研究了它们的光稳定性和在近红外光谱中的固有发光,以确定它们是否适合用作双光子成像(TPI)中的造影剂。我们观察到,具有较高键氮和氨基官能团(6.2%)的氨基-N-GQD表现出比具有较低氮原子和基团(4.9%)的氮原子更强的双光子性能。这些材料与含有硫(聚苯乙烯磺酸盐,PSS)和氮原子(聚乙烯亚胺,PEI)的聚合物结合,形成氨基-N-GQD-PSS-PEI标本(氨基-N-GQD-聚合物)。该聚合物表现出高量子产率,出色的稳定性和显着的双光子特性,并且不产生任何活性氧,使它们成为用于生物成像的优异双光子造影剂。抗表皮生长因子受体(Ab)用于标记以增加特异性。氨基-N-GQD(6.2%)-聚合物-Ab处理的A431癌细胞的双光子成像(TPI)在每一个光子的双光子激发功率下显示出显着的亮度,强度和信噪比。在30次扫描下16.9 nJ像素,三维(3D)深度为105 µm,表明氨基-N-GQD(6.2%)-聚合物-Ab处理的细胞可以实现两光子发光,所需功率降低了71倍相似强度的双光子自发荧光(1322.8 nJ像素,可进行500次扫描)。这种经济性可以最大程度地减少对细胞的光损伤,从而使氨基N-GQD聚合物适用于无创3D生物成像。

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