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A Novel Method for Preparing High Efficient Fluorescence-Encoded Microspheres with Semiconductor Nanocrystals

机译:一种用半导体纳米晶体制备高效荧光编码微球的新方法

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A novel method with two steps for preparing high efficiency fluorescence nanocrystals (NCs)-encoded microspheres was developed. First, a series of polystyrene (PS) microspheres from 1 μm to 5 urn in diameter were prepared by dispersion polymerization;;then, after a swelling process with CdSe NCs of different size the PS microspheres were encoded quantitatively. This method for fluorescence-encoding of microspheres was shown to have the following outstanding characteristics: (1) An emulsion containing CdSe NCs and swelling agents (chloroform) are firstly used for introduction of NCs into microspheres. (2) The embedded nanocrystals remain their original properties and they are not simply absorbed onto the surface of the microspheres but being carried into the inner of microspheres and so the NCs cannot be released or leaked out easily. As-prepared fluorescence-encoded microspheres could conjugate with proteins by some further surface modification, so they have a great potential to be applied to such fields as biochemistry, molecular biology, cell biology, immunology, etc. In addition, the method could be operated easily and reproducibly.
机译:开发了一种用于制备高效荧光纳米晶体(NCS)的微球的两种方法的新方法。首先,从1μm至5瓮直径的一系列聚苯乙烯(PS)微球中通过分散聚合制备;;然后,具有不同大小的微球PS定量编码的的CdSe纳米晶的溶胀过程之后。该用于微球的荧光编码方法具有以下突出特性:(1)含CDSE NC和溶胀剂(氯仿)的乳液首先用于将NCS引入微球中。 (2)嵌入的纳米晶体仍然是原始性质,并且它们不仅仅被吸收到微球的表面上,而是被携带到微球的内部,因此NC不能容易地释放或泄漏。由于制备的荧光编码的微球可以通过一些进一步的表面改性与蛋白质缀合,因此它们具有较大的潜力,以适应生物化学,分子生物学,细胞生物学,免疫学等。此外,可以操作该方法容易又可重复地。

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