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The cytotoxicity studies of water-soluble InP/ZnSe quantum dots

机译:水溶性InP / ZnSe量子点的细胞毒性研究

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摘要

Biomedical applications require nanocrystals with a narrow emission spectra and low toxicity. One major challenge of using quantum dots (QDs) in biomedical studies has been to synthesize them in large quantities while retaining desirable optical properties. To date, no research has been carried out to scale up the synthesis of InP/ZnSe nanocrystals. In this regard we synthesized InP/ZnSe nanocrystals using lower volumes and masses and scaled up the synthesis while retaining their molar ratios. The properties of the products obtained in small scale and scaled up syntheses were compared in regard to changes in particle size, emission wavelength and the trend of fluorescence of the aliquots. The particle size for the small scale reaction was determined to be 4.18 nm. When the synthesis was scaled up by a factor of 2, 4 and 6, the sizes were found to increase to 4.31, 4.13 and 4.37 nm, respectively. We also demonstrated the ability to tune the emission wavelength by sorting the particles in the crude product to different sizes. The size sorting process gave QDs with varied emission wavelengths and also narrow emission spectra. We further demonstrated a facile method for their water solubility as well as suitability for various biological applications. The toxicity of the synthesized InP/ZnSe nanocrystals was investigated. The cytotoxicity studies were carried out using two different types of noncancerous human cell lines, namely KMST6 and MCF-12A, which clearly showed that the nanocrystals have low toxicity and are suitable for biological applications.
机译:生物医学应用需要具有窄发射光谱和低毒性的纳米晶体。在生物医学研究中使用量子点(QD)的一项主要挑战是在保持所需光学特性的同时,大量合成量子点。迄今为止,尚未进行任何研究来扩大InP / ZnSe纳米晶体的合成。在这方面,我们使用较低的体积和质量合成了InP / ZnSe纳米晶体,并在保持其摩尔比的同时扩大了合成规模。比较了小规模和按比例放大的合成产物的性质,包括等分试样的粒径变化,发射波长和荧光趋势。小规模反应的粒径确定为4.18nm。当将合成放大到2、4和6倍时,发现尺寸分别增加到4.31、4.13和4.37 nm。我们还展示了通过将粗产物中的颗粒分类为不同大小来调节发射波长的能力。尺寸分选过程使量子点具有不同的发射波长和窄的发射光谱。我们进一步证明了它们的水溶性以及对各种生物学应用的适用性的简便方法。研究了合成的InP / ZnSe纳米晶体的毒性。使用两种不同类型的非癌性人类细胞系KMST6和MCF-12A进行了细胞毒性研究,它们清楚地表明纳米晶体具有低毒性并且适合生物学应用。

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