Wu Sophia P, Lee Intae, Ghoroghchian P Peter, Frail Paul R, Zheng Gang, Glickson Jerry D, Therien Michael J
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.
Bioconjug Chem. 2005 May-Jun;16(3):542-50. doi: 10.1021/bc0497416.
Meso-to-meso ethyne-bridged tris[(porphinato)zinc(II)] (PZn(3)) near-infrared (NIR) fluorophores (lambda(em)(max) approximately 800 nm) can be rendered sufficiently amphiphilic to enable their facile incorporation into the hydrophobic core of the apo form of low-density lipoprotein (apo-LDL). These NIR fluorophores are notable in that they manifest low energy excited states polarized exclusively along the long axis of the supermolecule, broad spectral coverage of the visible and high energy NIR spectral domains, intense S(0)-->S(1) transition moments, and comparably large S(1)-->S(0) emission dipole strengths. The reconstituted LDL(PZn(3)) proteins can be used to deliver rapidly hundreds of copies of PZn(3) to a given murine B16 melanoma cell via LDL receptor-mediated endocytosis. PZn(3)-based NIRFs and their corresponding LDL(PZn(3)) proteins have been shown to display minimal cytotoxicity. Confocal NIR fluorescence microscopy evinces that B16 cells can be imaged at very low doses (approximately nM) of NIRF. The highly attractive photophysical properties of PZn(3) and closely related chromophores, coupled with their lack of toxicity and compatibility with uptake into apo-LDL and subsequent rapid delivery to B16 cells via LDLr-mediated endocytosis, suggest the potential utility of this platform for NIR optical imaging of cancer cells in vivo.
中到中乙炔桥连三[(卟啉)锌(II)](PZn(3))近红外(NIR)荧光团(λ(em)(max)约800nm)可变得具有足够的两亲性,使其能够轻松掺入载脂蛋白形式的低密度脂蛋白(apo-LDL)的疏水核心中。这些近红外荧光团的显著之处在于,它们表现出仅沿超分子长轴极化的低能量激发态、可见光和高能量近红外光谱域的宽光谱覆盖、强烈的S(0)-->S(1)跃迁矩以及相当大的S(1)-->S(0)发射偶极强度。重组的LDL(PZn(3))蛋白可通过低密度脂蛋白受体介导的内吞作用,将数百个PZn(3)拷贝快速递送至给定的小鼠B16黑色素瘤细胞。基于PZn(3)的近红外荧光团及其相应的LDL(PZn(3))蛋白已被证明具有最小的细胞毒性。共聚焦近红外荧光显微镜显示,在非常低剂量(约纳摩尔)的近红外荧光团下即可对B16细胞进行成像。PZn(3)和密切相关发色团极具吸引力的光物理性质,加上它们无毒且与掺入apo-LDL以及随后通过低密度脂蛋白受体介导的内吞作用快速递送至B16细胞具有兼容性,表明该平台在体内对癌细胞进行近红外光学成像具有潜在用途。