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Synthesis and characterization of pH sensitive carboxySNARF-1 nanoreactors

机译:pH敏感羧基SNARF-1纳米反应器的合成与表征

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A rapid response dual wavelength emission pH sensor consisting of carboxySNARF-1 nanoreactors has been synthesized and shown to provide accurate pH measurements even in complex biological media, where the unprotected pH responsive dyes have failed. The carboxySNARF-1 nanoreactor is made of a calcium phosphate shell covering phosphatidylcholine liposomes filled with the dye. Its mean diameter is 150nm with dynamic light scattering, the shell thickness is 5-7nm with TEM, and it contains about 10dyes/particle. The nanoreactor's response time to pH change nearly equals that of the dye in solution. Its pH titration curves at two different wavelengths are equivalent to those of the dye in solution and fluorescence intensity ratio dependent pH analysis is possible using the modified Henderson-Hasselbalch equation. However, the pH dependent fluorescence ratios of the dye in solution in the presence of plasma and albumin are distorted, and application of the Henderson-Hasselbalch equation is not possible. We have found that the distortions may be restored using cSNARF-1 nanoreactors and the pK_a of the dye in the nanoreactor then equals that in solution. These results suggest that the interference to the dye for the pH analyses with the environmental molecules may be reduced or prohibited by usage of cSNARF-1 nanoreactors.
机译:合成了由羧基SNARF-1纳米反应器组成的快速响应双波长发射pH传感器,即使在没有保护的pH响应染料失效的复杂生物介质中,也可以提供准确的pH测量。羧基SNARF-1纳米反应器是由磷酸钙壳制成的,该壳覆盖着充满染料的磷脂酰胆碱脂质体。在动态光散射下其平均直径为150nm,通过TEM测得的壳厚度为5-7nm,并且包含约10个染料/颗粒。纳米反应器对pH变化的响应时间几乎等于溶液中染料的响应时间。它在两个不同波长处的pH滴定曲线与溶液中染料的滴定曲线等效,并且使用修改后的Henderson-Hasselbalch方程可以进行依赖荧光强度比的pH分析。但是,存在血浆和白蛋白的溶液中染料在溶液中的pH依赖性荧光比率会失真,因此无法应用Henderson-Hasselbalch方程。我们发现使用cSNARF-1纳米反应器可以恢复畸变,然后纳米反应器中染料的pK_a等于溶液中的pK_a。这些结果表明,通过使用cSNARF-1纳米反应器,可以减少或禁止对染料进行环境分子pH分析的干扰。

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