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Characterization of L-cysteine capped CdTe quantum dots and application to test Cu(II) deficiency in biological samples from critically ill patients

机译:L-半胱氨酸加帽的CdTe量子点的表征及其在重症患者生物样品中检测Cu(II)缺乏的应用

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The catalytic activity of copper ion gives, from the physiological point of view, a central role in many biological processes. Variations in the composition and location of cellular copper have been addressed given their physiological and pathological consequences. In this paper L-cysteine capped CdTe quantum dots is used for the fluorimetric determination of Cu(II) in biological samples from healthy individuals and patients admitted to the Intensive Care Units (ICU). An acceptable homogeneity in the CdTe QDs size has been obtained with an average value of 3nm. No significant alterations in the spectral properties were observed for 2 months when stored in vacutainers at 6 °C and a concentration of approximately 2 μM. Data from oxidative stress markers such superoxide dismutase, total antioxidant capacity and DNA damage can be correlated with a Cu(II) deficiency for the ICU patients as measured by flame-atomic absorption spectroscopy (FAAS) and inductively coupled plasma source mass spectrometry (ICP-MS). Aqueous solutions 0.3 μM of L-cysteine capped CdTe QDs in MOPS buffer (6 mM, pH 7.4) used at 21 °C in the range 15-60 min after preparation of the sample for the measurements of fluorescence gives contents in Cu(II) for erythrocytes in good agreement with those obtained in FAAS and ICP-MS but the comparative ease of use makes the fluorimetric technique more suitable than the other two techniques for routine analysis.
机译:从生理学角度来看,铜离子的催化活性在许多生物学过程中起着核心作用。考虑到它们的生理和病理学后果,已经解决了细胞铜的组成和位置的变化。在本文中,L-半胱氨酸帽的CdTe量子点用于荧光测定健康人和重症监护病房(ICU)患者的生物样品中的Cu(II)。 CdTe QDs尺寸的均质性可以接受,平均值为3nm。当在真空容器中以6°C和大约2μM的浓度存储时,在2个月内未观察到光谱性质的显着变化。氧化应激标记物(如超氧化物歧化酶,总抗氧化剂能力和DNA损伤)的数据可与ICU患者的Cu(II)缺乏症相关,如火焰原子吸收光谱法(FAAS)和电感耦合等离子体源质谱法(ICP-多发性硬化症)。在准备用于荧光测量的样品制备后的15-60分钟内,在21°C下使用的MOPS缓冲液(6 mM,pH 7.4)中的0.3μML-半胱氨酸封端的CdTe QD水溶液在Cu(II)中产生与FAAS和ICP-MS中获得的红血球完全吻合,但相对易用性使得荧光技术比其他两种常规分析技术更适合。

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