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Rewritable magnetic fluorescence-encoded microspheres: preparation, characterization, and recycling

机译:可重写的磁性荧光编码微球:制备,表征和回收

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Rewritable magnetic fluorescence-encoded microspheres were prepared by coating magnetic microspheres with a fluorescence-encoded melamine-formaldehyde (MF) shell. Fluorescence encoding was realized by varying the dye types and concentrations incorporated into the MF shell. Ten sets of magnetic fluorescence-encoded microspheres including four sets doped with single dye and six sets doped with two dyes were obtained and successfully identified through flow cytometric analysis. High encoding capacity could be achieved by increasing the dye number and intensity levels. More importantly, the original fluorescence-encoded MF shell could be removed via calcination. The inner magnetic microspheres remained unaffected and could be re-coated with a new fluorescence-encoded MF shell easily. The fluorescent MF coating (encoding writing) and calcination (encoding erasing) composed a cycle. Results demonstrated that the magnetic microspheres retained their original characteristics after writing-erasing cycles and the writing-erasing cycle could be repeated numerous times. These kinds of rewritable magnetic fluorescence-encoded microspheres enabled recycling and regeneration. Combining magnetic separation and re-encoding, which can significantly simplify the analysis processes and decrease the analysis cost, these microspheres are expected to be widely used in suspension arrays for high-throughput analyses.
机译:通过用荧光编码的三聚氰胺-甲醛(MF)壳包被磁性微球来制备可重写的磁性荧光编码的微球。荧光编码是通过改变MF壳中掺入的染料类型和浓度来实现的。获得了十套磁性荧光编码微球,包括四组掺杂单一染料和六组掺杂两种染料,并通过流式细胞仪分析成功鉴定。通过增加染料数量和强度水平可以实现高编码能力。更重要的是,可以通过煅烧除去原始的荧光编码的MF壳。内部的磁性微球保持不受影响,可以很容易地用新的荧光编码的MF外壳重新涂层。荧光MF涂层(编码写入)和煅烧(编码擦除)组成一个循环。结果表明,磁性微球在写入-擦除循环后仍保持其原始特性,并且写入-擦除循环可以重复多次。这些可重写的磁性荧光编码微球实现了回收和再生。结合磁分离和重新编码,可以显着简化分析过程并降低分析成本,这些微球有望被广泛用于高通量分析的悬浮阵列中。

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