Priyam Amiya, Bhattacharya Subhash C, Saha Abhijit
UGC-DAE Consortium for Scientific Research, Kolkata Centre, III/LB-8, Bidhannagar, Kolkata, 700098, India.
Phys Chem Chem Phys. 2009 Jan 21;11(3):520-7. doi: 10.1039/b813620c. Epub 2008 Nov 17.
In order to explore the feasibility of using quantum dots (QDs) as nanodiagnostic tools in cells under oxidative stress, the interaction of cysteine-functionalized CdTe QDs with peroxynitrite (PN), a powerful biological oxidant, was spectroscopically investigated. The photoluminescence (PL) of CdTe QDs was quenched to the extent of 85% at 86 microM concentration of peroxynitrite. In contrast, the loss of PL intensity was merely 7% for CdS QDs under identical conditions. The quenching pattern shows a positive deviation from Stern-Volmer equation, but obeys the Perrin equation for static quenching. The Perrin quenching constants increased with decreasing temperature. Size dependence was also prominently observed as quenching efficiency increased by 70% on moving from 4.0 nm sized CdTe QDs to 2.8 nm ones. Interestingly, the QDs exhibited a time-dependent auto-recovery of photoluminescence. At 25 and 15 degrees C, the recovery time was found to be 1.25 and 3.5 h, respectively, however, the extent of recovery remained nearly the same, about 22%. Peroxynitrite followed a first order decay kinetics with a half-life of 45.6 min, which got substantially reduced to 2.9 min in the presence of CdTe QDs. The over-all mechanism of the interaction has been explained as a two-pronged attack of peroxynitrite on (i) the cysteine-capping layer and (ii) the CdTe core, resulting in a reversible and irreversible loss of QD-photoluminescence.
为了探索在氧化应激条件下将量子点(QDs)用作细胞内纳米诊断工具的可行性,通过光谱研究了半胱氨酸功能化的碲化镉量子点与强生物氧化剂过氧亚硝酸盐(PN)之间的相互作用。在过氧亚硝酸盐浓度为86 microM时,碲化镉量子点的光致发光(PL)被猝灭了85%。相比之下,在相同条件下硫化镉量子点的PL强度损失仅为7%。猝灭模式显示出与斯特恩-沃尔默方程的正偏差,但符合静态猝灭的佩兰方程。佩兰猝灭常数随温度降低而增加。尺寸依赖性也很显著,从4.0 nm大小的碲化镉量子点变为2.8 nm的量子点时,猝灭效率提高了70%。有趣的是,量子点表现出光致发光的时间依赖性自动恢复。在25℃和15℃时,恢复时间分别为1.25小时和3.5小时,然而,恢复程度几乎相同,约为22%。过氧亚硝酸盐遵循一级衰减动力学,半衰期为45.6分钟,在碲化镉量子点存在的情况下,半衰期大幅缩短至2.9分钟。相互作用的总体机制被解释为过氧亚硝酸盐对(i)半胱氨酸封端层和(ii)碲化镉核心的双管齐下攻击,导致量子点光致发光的可逆和不可逆损失。