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Optical Extinction Combined with Phase Measurements for Probing DNA-Small-Molecule Interactions Using an Evanescent Waveguide Biosensor

机译:消光与相位测量相结合,使用Wave逝波生物传感器探测DNA-小分子相互作用。

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We demonstrate the use of both optical extinction and phase measurements for probing the interactions between DNA and small molecules by dual polarization interferometry. On binding to DNA at the interface, mitoxantrone (MTX) and methylene blue (MB) induced reversible concentration-dependent optical extinction due to light absorption, which clearly revealed the association and dissociation of small molecules with DNA in real time. The binding constants of MTX-DNA and MB-DNA determined from the masses derived from optical extinction are 1.8 X 10~(5) and 4.2 X 10~(4) M~(-1), respectively, and shown to be buffer salt concentration-dependent. Apart from optical extinction, phase measurements reflected the overall change of the interaction; namely, a combined result of the binding of small molecules and any changes in DNA structure. The masses derived from phase could be very different from those derived from optical extinction. The structural changes detected by phase measurements showed a contraction and densification of DNA upon intercalation by MTX or MB. The combination of optical extinction and phase measurements allows a detailed understanding of the interaction process.
机译:我们演示了使用消光和相位测量通过双偏振干涉法探测DNA和小分子之间的相互作用。米托蒽醌(MTX)和亚甲基蓝(MB)与界面处的DNA结合后,由于光吸收而引起可逆的浓度依赖性旋光消光,这清楚地揭示了小分子与DNA的实时缔合和解离。由消光质量测定的MTX-DNA和MB-DNA的结合常数分别为1.8×10〜(5)和4.2×10〜(4)M〜(-1),显示为缓冲盐。浓度依赖性。除了光学消光之外,相位测量还反映了相互作用的整体变化。即小分子结合和DNA结构变化的综合结果。相产生的质量可能与消光产生的质量大不相同。通过相测量检测到的结构变化显示,通过MTX或MB插入后,DNA发生了收缩和致密化。消光和相位测量相结合,可以详细了解相互作用过程。

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