首页> 外文期刊>The Journal of Organic Chemistry >Near-IR emissive chlorin-bacteriochlorin energy-transfer dyads with a common donor and acceptors with tunable emission wavelength
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Near-IR emissive chlorin-bacteriochlorin energy-transfer dyads with a common donor and acceptors with tunable emission wavelength

机译:具有可调节发射波长的共同供体和受体的近红外发射二氢卟啉-细菌二氯能量转移二元组

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Design, synthesis, and optical properties of a series of novel chlorin-bacteriochlorin energy transfer dyads are described. Each dyad is composed of a common red-absorbing (645-646 nm) chlorin, as an energy donor, and a different near-IR emitting bacteriochlorin, as an energy acceptor. Each bacteriochlorin acceptor is equipped with a different set of auxochromes, so that each of them emits at a different wavelength. Dyads exhibit an efficient energy transfer (≥0.77) even for chlorin-bacteriochlorin pairs with large (up to 122 nm) separation between donor emission and acceptor absorption. Excitation of the chlorin donor results in relatively strong emission of the bacteriochlorin acceptor, with a quantum yield Φ_f range of 0.155-0.23 in toluene and 0.12-0.185 in DMF. The narrow, tunable emission band of bacteriochlorins enables the selection of a series of three dyads with well-resolved emissions at 732, 760, and 788 nm, and common excitation at 645 nm. Selected dyads have been also converted into bioconjugatable N-succinamide ester derivatives. The optical properties of the described dyads make them promising candidates for development of a family of near-IR fluorophores for simultaneous imaging of multiple targets, where the whole set of fluorophores can be excited with the common wavelength, and fluorescence from each can be independently detected.
机译:描述了一系列新型二氢卟酚-细菌二氢卟啉能量转移二聚体的设计,合成和光学性质。每个二元组由一个普通的吸收红光(645-646 nm)的二氢卟酚作为能量供体,以及一个不同的近红外发射菌绿素作为能量受体。每个细菌绿素受体都配备了不同的一组辅助色素,因此它们各自以不同的波长发射。即使对于二氢卟酚-细菌二氢卟吩对,在供体发射和受体吸收之间有较大的间隔(最高达122 nm)时,二联体也显示出有效的能量转移(≥0.77)。二氢卟酚供体的激发导致细菌二氯受体的发射相对较强,在甲苯中的量子产率Φ_f在0.155-0.23范围内,在DMF中在0.12-0.185范围内。细菌绿素的窄且可调的发射带使得能够选择一系列三个双色组,它们在732、760和788 nm处具有良好分辨的发射,并在645 nm处具有共同的激发。选定的二元组也已转化为可生物缀合的N-琥珀酰胺酯衍生物。所述二元组的光学性质使其成为开发近红外荧光团以同时成像多个靶标的有希望的候选者,其中整个荧光团可以在相同的波长下激发,并且每个荧光团可以独立检测。

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