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Enhancing molecular logic through modulation of temporal and spatial constraints with quantum dot-based systems that use fluorescent (foerster) resonance energy transfer

机译:通过调制使用荧光(Foerster)谐振能量转移的量子点系统的时间和空间约束来提高分子逻辑。

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Luminescent semiconductor nanocrystals or quantum dots (QDs) contain favorable photonic properties (e.g., resistance to photobleaching, size-tunable PL, and large effective Stokes shifts) that make them well-suited for fluorescence (Forster) resonance energy transfer (FRET) based applications including monitoring proteolytic activity, elucidating the effects of nanoparticles-mediated drug delivery, and analyzing the spatial and temporal dynamics of cellular biochemical processes. Herein, we demonstrate how unique considerations of temporal and spatial constraints can be used in conjunction with QD-FRET systems to open up new avenues of scientific discovery in information processing and molecular logic circuitry. For example, by conjugating both long lifetime luminescent terbium(Ⅲ) complexes (Tb) and fluorescent dyes (A647) to a single QD, we can create multiple FRET lanes that change temporally as the QD acts as both an acceptor and donor at distinct time intervals. Such temporal FRET modulation creates multi-step FRET cascades that produce a wealth of unique photoluminescence (PL) spectra that are well-suited for the construction of a photonic alphabet and photonic logic circuits. These research advances in bio-based molecular logic open the door to future applications including multiplexed biosensing and drug delivery for disease diagnostics and treatment.
机译:发光半导体纳米晶体或量子点(QDS)含有良好的光子性能(例如,对光漂白,尺寸可调的PL和大有效斯托克斯的换档),其使它们适合于荧光(Forster)共振能量转移(FRET)的应用包括监测蛋白水解活性,阐明纳米颗粒介导的药物递送的影响,并分析细胞生化过程的空间和时间动态。这里,我们展示了时间和空间约束的唯一考虑因素可以与QD-FRET系统结合使用,以在信息处理和分子逻辑电路中开辟科学发现的新途径。例如,通过将长的寿命发光铽(Ⅲ)络合物(TB)和荧光染料(A647)缀合到单个QD,我们可以在QD作为受体和供体在不同的时间时创造多个褶皱轿厢,随着QD作为受体和供体。间隔。这种时间摩擦调制产生了多步体级联,其产生具有非常适合于结构的独特光致发光(PL)光谱的多步体级联,其非常适合于施工光子字母和光子逻辑电路。这些研究基于生物的分子逻辑在未来的应用中开放,包括多重生物腐蚀和药物递送的疾病诊断和治疗。

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