Thomas Alexander W, Henson Zachary B, Du Jenny, Vandenberg Carol A, Bazan Guillermo C
Department of Chemistry & Biochemistry, and ‡Department of Molecular, Cellular and Developmental Biology, University of California , Santa Barbara, California 93106, United States.
J Am Chem Soc. 2014 Mar 12;136(10):3736-9. doi: 10.1021/ja412695w. Epub 2014 Mar 4.
A near-IR-emitting conjugated oligoelectrolyte (COE), ZCOE, was synthesized, and its photophysical features were characterized. The biological affinity of ZCOE is compared to that of an established lipid-membrane-intercalating COE, DSSN+, which has blue-shifted optical properties making it compatible for tracking preferential sites of accumulation. ZCOE exhibits diffuse staining of E. coli cells, whereas it displays internal staining of select yeast cells which also show propidium iodide staining, indicating ZCOE is a "dead" stain for this organism. Staining of mammalian cells reveals complete internalization of ZCOE through endocytosis, as supported by colocalization with LysoTracker and late endosome markers. In all cases DSSN+ persists in the outer membranes, most likely due to its chemical structure more closely resembling a lipid bilayer.
合成了一种近红外发射共轭低聚物电解质(COE),即ZCOE,并对其光物理特性进行了表征。将ZCOE的生物亲和力与一种已确立的脂质膜插入型COE(DSSN+)进行了比较,DSSN+具有蓝移光学特性,使其适用于追踪优先积累位点。ZCOE对大肠杆菌细胞呈现弥漫性染色,而对部分酵母细胞则显示内部染色,这些酵母细胞也呈现碘化丙啶染色,表明ZCOE对该生物体是一种“死”染色剂。对哺乳动物细胞的染色显示,ZCOE通过内吞作用完全内化,与溶酶体追踪染料和晚期内体标记物的共定位证明了这一点。在所有情况下,DSSN+都保留在外膜中,这很可能是由于其化学结构更类似于脂质双层。