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首页> 外文期刊>ACS Omega >F?rster Resonance Energy Transfer-Mediated Globular Protein Sensing Using Polyelectrolyte Complex Nanoparticles
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F?rster Resonance Energy Transfer-Mediated Globular Protein Sensing Using Polyelectrolyte Complex Nanoparticles

机译:Fsterster共振能量转移介导的球状蛋白质传感使用聚电解质复合纳米粒子。

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Polyelectrolyte complex nanoparticles (PEC NPs) are synthesized using two oppositely charged polyelectrolytes, i.e., anionic poly(sodium 4-styrene sulfonate) (PSS) and cationic poly(diallyldimethylammoniumchloride), at molar mixing ratios (n–+) of ≈0.4, 0.67, 0.75, and 1.5 by applying consecutive centrifugation to modify the optical property of PSS. However, for n–+ ≈ 0.75, PEC NPs exhibit a larger blue shift and a specific emission peak occurs at ≈278 nm for the 225 nm excitation. The mechanism of such modification of PSS emission after complex formation is proposed. This specific emission by PEC NPs nearly matches with the optical absorption wavelength of globular proteins. The emission intensity of PEC NPs is therefore quenched in the presence of globular proteins (bovine serum albumin, human serum albumin, lysozyme, and hemoglobin) through resonance energy transfer between the donor (PEC NPs) and acceptor (globular proteins). The spectral overlap integral and the variation of the separation distance from 1.8 to 2.5 nm between the donor and acceptor confirm the resonance energy transfer. Sensing of proteins by the PEC NPs is possible within the detection limit of 5 nM and therefore such PEC NPs can be used as an efficient and promising protein sensing material.
机译:聚电解质复合物纳米颗粒(PEC NPs)是使用两种带相反电荷的聚电解质合成的,即阴离子聚4-苯乙烯磺酸钠(PSS)和阳离子聚二烯丙基二甲基氯化铵,摩尔混合比(n- / n +)约为0.4,通过连续离心来修改PSS的光学特性,从而获得0.67、0.75和1.5。但是,对于n– / n +≈0.75,PEC NP表现出更大的蓝移,并且对于225 nm激发,特定的发射峰出现在≈278nm。提出了复合物形成后改变PSS发射的机理。 PEC NP的这种特定发射几乎与球状蛋白的光吸收波长匹配。因此,在存在球形蛋白(牛血清白蛋白,人血清白蛋白,溶菌酶和血红蛋白)的情况下,PEC NPs的发射强度通过供体(PEC NPs)和受体(球形蛋白)之间的共振能量转移而猝灭。供体和受体之间的光谱重叠积分和分离距离在1.8至2.5 nm之间的变化确定了共振能量转移。在5 nM的检出限内,可以通过PEC NPs进行蛋白质感测,因此,此类PEC NPs可以用作有效且有前途的蛋白质感测材料。

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