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Nuclear singlet multimers (NUSIMERs) with long-lived singlet states

机译:具有长寿命单重态的核单峰多聚体(NUSIMER)

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摘要

Magnetic resonance (NMR) is a powerful tool in chemical analysis, structure determination and in medical diagnostics. Developing novel biological sensors for this field holds promise to better investigate protein structures or target diseases more efficiently. Herein, we explore nuclear spin singlet states in dendritic macromolecules as a platform molecule to develop stimuli responsive probes. We have developed a nuclear singlet multimer (NUSIMER) based on a generation 5 poly(amidoamine) dendrimer (PAMAM) which contains on average about 90 accessible nuclear spin singlet states with lifetimes up to 10-fold longer than the T1 relaxation times (up to 10 seconds Tsvs. T1 < 0.5 seconds) in a single molecule. We demonstrate little influence on the singlet lifetime in phosphate buffer (H2O) and a high viscosity gel environment in the presence of paramagnetic oxygen. Additionally, we demonstrate an increase in singlet lifetime upon the release of a protective chemical moiety from the NUSIMER following a stimulus, whereby no change in longitudinal relaxation time is observed. The robustness and change in singlet lifetime of the NUSIMER holds promise for the development of a novel type of biosensors.
机译:磁共振(NMR)是化学分析,结构确定和医学诊断中的强大工具。为该领域开发新型生物传感器有望更好地研究蛋白质结构或更有效地靶向疾病。在本文中,我们探索树突状大分子中的核自旋单重态作为开发刺激响应探针的平台分子。我们基于第5代聚(酰胺基胺)树状大分子(PAMAM)开发了核单峰多聚体(NUSIMER),其平均包含约90种可及的核自旋单峰态,其寿命比T1弛豫时间长10倍(最长可达10秒Tsvs。T1<0.5秒)。我们展示了对磷酸盐缓冲液(H2O)和高粘度凝胶环境中存在顺磁性氧的单线态寿命的影响很小。另外,我们证明了在刺激后从NUSIMER释放保护性化学部分后,单线态寿命增加,由此未观察到纵向弛豫时间的变化。 NUSIMER的坚固性和单线寿命的变化为新型生物传感器的发展带来了希望。

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