School of Chemistry, Raymond and Beverly Sackler Faculty of Exact Sciences, Tel Aviv University, Tel Aviv 69978, Israel.
Org Biomol Chem. 2018 Mar 7;16(10):1708-1712. doi: 10.1039/c8ob00087e.
A recent methodology, developed by our group, has enabled a dramatic improvement in the emissive nature of the excited species, formed during the chemiexcitation of dioxetanes under physiological conditions. This approach has resulted in the discovery of distinct phenoxy-dioxetane luminophores that produce a chemiluminescence signal via a direct-mode of emission. Here, we show a significant pK effect of our new phenoxy-dioxetanes on their chemiexcitation and on their ability to serve as chemiluminescent turn-ON probes for biological applications. Using an appropriate phenoxy-dioxetane probe with a direct-mode of emission, we were able to image β-galactosidase activity, in cancer cells and in tumor-bearing mice. To the best of our knowledge, this is the first example to demonstrate in vitro and in vivo endogenous enzymatic chemiluminescence images obtained by a single-component phenoxy-dioxetane probe. We anticipate that our strategy, for the design and synthesis of such distinct luminophores, will assist in providing new effective turn-ON probes for non-invasive intravital chemiluminescence imaging techniques.
我们小组最近开发的一种方法,极大地改善了在生理条件下双氧化合物化学激发过程中形成的激发态物种的发射性质。这种方法导致发现了独特的苯氧基-二氧杂环戊二烯发光团,它们通过直接发射模式产生化学发光信号。在这里,我们展示了我们新的苯氧基-二氧杂环戊二烯对其化学激发以及作为生物应用的化学发光开启探针的能力的显著 pK 效应。使用具有直接发射模式的合适的苯氧基-二氧杂环戊二烯探针,我们能够在癌细胞和荷瘤小鼠中成像β-半乳糖苷酶活性。据我们所知,这是第一个通过单个苯氧基-二氧杂环戊二烯探针在体外和体内获得内源性酶化学发光图像的例子。我们预计,我们用于设计和合成这种独特发光团的策略将有助于为非侵入性活体化学发光成像技术提供新的有效开启探针。