Chetty S Shashank, Praneetha S, Basu Sandeep, Sachidanandan Chetana, Murugan A Vadivel
Advanced Functional Nanostructured Materials Laboratory, Centre for Nanoscience and Technology, Madanjeet School of Green Energy Technologies, Pondicherry University, Kalapet, Puducherry-605014, India.
Council of Scientific and Industrial Research-Institute of Genomics &Integrative Biology (CSIR-IGIB), South Campus, New Delhi 110025, India.
Sci Rep. 2016 May 18;6:26078. doi: 10.1038/srep26078.
Near-infrared (NIR) luminescent CuInS2-ZnS alloyed nanocrystals (CIZS-NCs) for highly fluorescence bioimaging have received considerable interest in recent years. Owing, they became a desirable alternative to heavy-metal based-NCs and organic dyes with unique optical properties and low-toxicity for bioimaging and optoelectronic applications. In the present study, bright and robust CIZS-NCs have been synthesized within 5 min, as-high-as 230 °C without requiring any inert-gas atmosphere via microwave-solvothermal (MW-ST) method. Subsequently, the in vitro and in vivo nano-xenotoxicity and cellular uptake of the MUA-functionalized CIZS-NCs were investigated in L929, Vero, MCF7 cell lines and zebrafish-embryos. We observed minimal toxicity and acute teratogenic consequences upto 62.5 μg/ml of the CIZS-NCs in zebrafish-embryos. We also observed spontaneous uptake of the MUA-functionalized CIZS-NCs by 3 dpf older zebrafish-embryos that are evident through bright red fluorescence-emission at a low concentration of 7.8 μg/mL. Hence, we propose that the rapid, low-cost, large-scale "sustainable" MW-ST synthesis of CIZS-NCs, is an ideal bio-nanoprobe with good temporal and spatial resolution for rapid labeling, long-term in vivo tracking and intravital-fluorescence-bioimaging (IVBI).
近年来,用于高荧光生物成像的近红外(NIR)发光硫化铜铟锌(CuInS2-ZnS)合金纳米晶体(CIZS-NCs)受到了广泛关注。由于其具有独特的光学性质且生物成像和光电应用的毒性较低,它们成为了基于重金属的纳米晶体和有机染料的理想替代品。在本研究中,通过微波溶剂热(MW-ST)方法,在不要求任何惰性气体气氛的情况下,于高达230°C的温度下在5分钟内合成了明亮且稳定的CIZS-NCs。随后,在L929、Vero、MCF7细胞系和斑马鱼胚胎中研究了MUA功能化CIZS-NCs的体外和体内纳米异源毒性以及细胞摄取情况。我们观察到,在斑马鱼胚胎中,高达62.5μg/ml的CIZS-NCs具有最小的毒性和急性致畸后果。我们还观察到,3日龄斑马鱼胚胎能够自发摄取MUA功能化CIZS-NCs,在7.8μg/mL的低浓度下通过亮红色荧光发射即可明显看出。因此,我们认为,快速、低成本、大规模“可持续”的MW-ST合成CIZS-NCs是一种理想的生物纳米探针,具有良好的时间和空间分辨率,可用于快速标记、长期体内追踪和活体荧光生物成像(IVBI)。