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水溶性双模态磁共振-荧光树枝状大分子作为潜在的 MRI-FI 成像探针。

Water-Soluble Bimodal Magnetic-Fluorescent Radical Dendrimers as Potential MRI-FI Imaging Probes.

机构信息

Institut de Ciència de Materials de Barcelona, ICMAB-CSIC, Campus UAB, E-08193 Bellaterra, Spain.

Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Campus UAB, E-08193 Bellaterra, Spain.

出版信息

ACS Appl Mater Interfaces. 2024 Nov 27;16(47):65295-65306. doi: 10.1021/acsami.4c13578. Epub 2024 Nov 14.

Abstract

Dual or multimodal imaging probes have become potent tools for enhancing detection sensitivity and accuracy in disease diagnosis. In this context, we present a bimodal imaging dendrimer-based structure that integrates magnetic and fluorescent imaging probes for potential applications in magnetic resonance imaging and fluorescence imaging. It stands out as one of the rare examples where bimodal imaging probes use organic radicals as the magnetic source, despite their tendency to entirely quench fluorophore fluorescence. Opting for organic radicals over metal-based contrast agents like gadolinium (Gd)-chelates is crucial to mitigate associated toxicity concerns. We utilized an amino-terminated polyamide dendrimer containing a 1,8-naphthalimide () fluorescent group, amino acid derivatives as linkers to enhance water solubility, and TEMPO organic radicals as terminal groups. The same dendrimer structure, featuring an equivalent number of branches but lacking the fluorophore group, was also functionalized with amino acid and terminal radicals to serve as a reference. Remarkably, we achieved a fully water-soluble dendrimer-based structure exhibiting both magnetic and fluorescent properties simultaneously. The fluorescence of the group in the final structure is somewhat quenched by the organic radicals, likely due to photoinduced electron transfer with the nitroxyl radical acting as an electron acceptor, which has been supported by density functional theory calculations. Molecular dynamics simulations are employed to investigate how the dendrimers' structure influences the electron paramagnetic resonance characteristics, relaxivity, and fluorescence. In summary, despite the influence of the radicals-fluorophore interactions on fluorescence, this bimodal dendrimer demonstrates significant fluorescent properties and effective relaxivity of 1.3 mM s. These properties have proven effective in staining the live mesenchymal stem cells without affecting the cell nucleus.

摘要

双模态或多模态成像探针已成为提高疾病诊断中检测灵敏度和准确性的有力工具。在这种情况下,我们提出了一种基于树枝状大分子的双模态成像探针,它集成了磁共振成像和荧光成像用的磁性和荧光探针。该探针是为数不多的使用有机自由基作为磁性来源的双模态成像探针之一,尽管有机自由基会完全猝灭荧光团的荧光。选择有机自由基而不是金属基对比剂(如钆螯合物)对于减轻相关毒性问题至关重要。我们使用了一种含 1,8-萘二甲酰亚胺()荧光团的端氨基聚酰胺树枝状大分子、氨基酸衍生物作为连接体以提高水溶性、以及 TEMPO 有机自由基作为端基。同样的树枝状大分子结构,具有相同数量的支链但缺少荧光团,也被官能化了氨基酸和端基自由基作为对照。值得注意的是,我们实现了一种完全水溶性的树枝状大分子基结构,同时具有磁性和荧光性质。最终结构中基团的荧光被有机自由基部分猝灭,这可能是由于与作为电子受体的氮氧自由基发生光诱导电子转移,密度泛函理论计算支持了这一结论。分子动力学模拟用于研究树枝状大分子结构如何影响电子顺磁共振特性、弛豫率和荧光。总之,尽管自由基-荧光团相互作用对荧光有影响,但这种双模态树枝状大分子表现出显著的荧光性质和有效的弛豫率为 1.3mM s。这些性质已被证明可有效染色活间充质干细胞而不影响细胞核。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da9b/11615848/04cc57b090e5/am4c13578_0001.jpg

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