Kerr Caroline, DeRosa Christopher A, Daly Margaret L, Zhang Hengtao, Palmer Gregory M, Fraser Cassandra L
Department of Chemistry, University of Virginia , Charlottesville, Virginia 22904, United States.
Department of Radiation Oncology, Duke University , Durham, North Carolina 27710, United States.
Biomacromolecules. 2017 Feb 13;18(2):551-561. doi: 10.1021/acs.biomac.6b01708. Epub 2017 Feb 2.
Luminescent difluoroboron β-diketonate poly(lactic acid) (BFbdkPLA) materials serve as biological imaging agents. In this study, dye structures were modified to achieve emission colors that span the visible region with potential for multiplexing applications. Four dyes with varying π-conjugation (phenyl, naphthyl) and donor groups (-OMe, -NMe) were coupled to PLLA-PEG block copolymers (∼11 kDa) by a postpolymerization Mitsunobu reaction. The resulting dye-polymer conjugates were fabricated as nanoparticles (∼55 nm diameter) to produce nanomaterials with a range of emission colors (420-640 nm). For increased stability, dye-PLLA-PEG conjugates were also blended with dye-free PDLA-PEG to form stereocomplex nanoparticles of smaller size (∼45 nm diameter). The decreased dye loading in the stereoblocks blue-shifted the emission, generating a broader range of fluorescence colors (410-620 nm). Tumor accumulation was confirmed in a murine model through biodistribution studies with a red emitting dimethyl amino-substituted dye-polymer analogue. The synthesis, optical properties, oxygen-sensing capabilities, and stability of these block copolymer nanoparticles are presented.
发光二氟硼β-二酮聚乳酸(BFbdkPLA)材料用作生物成像剂。在本研究中,对染料结构进行了修饰,以实现跨越可见光区域的发射颜色,具有用于多重应用的潜力。通过后聚合Mitsunobu反应将四种具有不同π共轭(苯基、萘基)和供体基团(-OMe、-NMe)的染料与PLLA-PEG嵌段共聚物(~11 kDa)偶联。将所得的染料-聚合物共轭物制成纳米颗粒(直径约55 nm),以制备具有一系列发射颜色(420-640 nm)的纳米材料。为了提高稳定性,还将染料-PLLA-PEG共轭物与无染料的PDLA-PEG共混,以形成尺寸更小(直径约45 nm)的立体复合纳米颗粒。立体嵌段中染料负载量的降低使发射发生蓝移,产生了更宽范围的荧光颜色(410-620 nm)。通过对一种发射红色的二甲基氨基取代染料-聚合物类似物进行生物分布研究,在小鼠模型中证实了肿瘤积累。本文介绍了这些嵌段共聚物纳米颗粒的合成、光学性质、氧传感能力和稳定性。