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Polymeric nanoparticles with sequential and multiple FRET cascade mechanisms for multicolor and multiplexed imaging

机译:具有顺序和多种FRET级联机制的聚合物纳米颗粒,用于多色和多路成像

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摘要

The ability to map multiple biomarkers at the same time has far-reaching biomedical and diagnostic applications. Here, a series of biocompatible poly(d,l-lactic-co-glycolic acid) and polyethylene glycol particles for multicolor and multiplexed imaging are reported. More than 30 particle formulations that exhibit distinct emission signatures (ranging from the visible to NIR wavelength region) are designed and synthesized. These particles are encapsulated with combinations of carbocyanine-based fluorophores DiO, Dil, DiD, and DiR, and are characterized as <100 nm in size and brighter than commercial quantum dots. A particle formulation is identified that simultaneously emits fluorescence at three different wavelengths upon a single excitation at 485 nm via sequential and multiple FRET cascade events for multicolor imaging. Three other particles that display maximum fluorescence intensities at 570, 672, or 777 nm for multiplexed imaging are also identified. These particles are individually conjugated with specific (Herceptin or IgG2A11 antibody) or nonspecific (heptaarginine) ligands for targeting and, thus, could be applied to differentiate different cancer cells from a cell mixture according to the expressions of cell-surface human epidermal growth factor receptor 2 and the receptor for advanced glycation endproducts. Using an animal model subcutaneously implanted with the particles, it is further demonstrated that the developed platform could be useful for in vivo multiplexed imaging.
机译:同时绘制多个生物标志物的能力具有广泛的生物医学和诊断应用。在此,报道了一系列用于多色和多重成像的生物相容性聚(d,l-乳酸-乙醇酸共聚物)和聚乙二醇颗粒。设计并合成了30多种具有不同发射特征(从可见光到NIR波长范围)的颗粒配方。这些颗粒被碳花青基荧光团DiO,Dil,DiD和DiR的组合所包裹,其特征是尺寸小于100 nm,并且比商业量子点更亮。识别出一种颗粒制剂,该颗粒制剂通过连续和多次FRET级联事件在485 nm处进行一次激发,即可同时发出三种不同波长的荧光,以进行多色成像。还确定了其他三个在570、672或777 nm处显示最大荧光强度的粒子,用于多重成像。这些颗粒分别与特异性(赫赛汀或IgG2A11抗体)或非特异性(庚精氨酸)配体缀合以靶向,因此可根据细胞表面人表皮生长因子受体的表达应用于从细胞混合物中区分不同的癌细胞2,受体为晚期糖基化终产物。使用皮下植入颗粒的动物模型,进一步证明了开发的平台可用于体内多路复用成像。

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