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Microfluidic synthesis of ultra-small magnetic nanohybrids for enhanced magnetic resonance imaging

机译:超小磁性纳米杂化物的微流体合成以增强磁共振成像

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We have developed a core alloying and shell gradient doping strategy for the controlled surface modification of nanoparticles, realized by a coupled competitive reducing-nucleation and precipitation reaction controlled in microfluidic channels. Here it is extended in surface modification of Fe and CoFe nanoparticles by doping zinc oxide and aluminum oxide to form well-dispersed stable ultra-small Fe(1-x)Znx@Zn(1-y)FeyO-(OH)(z) and (CoFe)((1-x))Al-x@Al(1-y)(CoFe)(y)O-(OH)(z) nanohybrids as contrast agents for magnetic resonance imaging (MRI). They exhibit greatly enhanced T-1 weighted spin echo imaging and T-2 weighted spin echo imaging effects. Particularly, (CoFe)((1-x))Al-x@Al(1-y)(CoFe)(y)O-(OH)(z) nanohybrids give a T-1 relaxation rate (R-1) of 0.156 (mu g-CoFe mL(-1))(-1) s(-1) and a T-2 relaxation rate (R-2) of 0.486 (mu g-CoFe mL(-1))(-1) s(-1), much higher than the commercial gadopentetate dimeglumine (R-1 = 0.022 (mu g-Gd mL(-1))(-1) s(-1); R-2 = 0.025 (mu g-Gd mL(-1))(-1) s(-1)). The R-1 of (CoFe)((1-x))Al-x@Al(1-y)(CoFe)(y)O-(OH)(z) nanohybrids is also higher than superparamagnetic iron oxide (SPIO) nanoparticles (R-1 = 0.121 (mu g-Fe mL(-1))(-1) s(-1)). SPIO nanoparticles of 7.1 +/- 1.2 nm still show an excellent negative MRI contrast agent by the highest R-2 (5.07 (mu g-Fe mL(-1))(-1) s(-1)) and R-2/R-1 ratio (42) among these reagents.
机译:我们已经开发了用于控制纳米粒子表面改性的核合金和壳层梯度掺杂策略,该策略通过在微流体通道中控制竞争性还原成核和沉淀反应实现。在这里,它通过掺杂氧化锌和氧化铝扩展了Fe和CoFe纳米颗粒的表面改性,从而形成了分散良好的稳定超细Fe(1-x)Znx @ Zn(1-y)FeyO-(OH)(z)和(CoFe)((1-x))Al-x @ Al(1-y)(CoFe)(y)O-(OH)(z)纳米杂化物作为磁共振成像(MRI)的造影剂。它们表现出大大增强的T-1加权自旋回波成像和T-2加权自旋回波成像效果。特别是(CoFe)((1-x))Al-x @ Al(1-y)(CoFe)(y)O-(OH)(z)纳米杂化物的T-1弛豫率(R-1)为0.156(μg-CoFe mL(-1))(-1)s(-1)和T-2弛豫率(R-2)为0.486(μg-CoFe mL(-1))(-1) s(-1),远高于市售的gadopentetate dieglumine(R-1 = 0.022(mu g-Gd mL(-1))(-1)s(-1); R-2 = 0.025(mu g-Gd mL(-1))(-1)s(-1))。 (CoFe)((1-x))Al-x @ Al(1-y)(CoFe)(y)O-(OH)(z)纳米杂化物的R-1也高于超顺磁性氧化铁(SPIO)纳米粒子(R-1 = 0.121(μg-Fe mL(-1))(-1)s(-1))。 SPIO纳米粒子的7.1 +/- 1.2 nm仍然显示出最高的R-2(5.07(μg-Fe mL(-1))(-1)s(-1)和R-2最高的阴性MRI造影剂这些试剂中的/ R-1比(42)。

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