首页> 外文会议>Symposium on Nanoscale Materials Science in Biology and Medicine >Infrared Emitting Dye and/or Two Photon Excitable Fluorescent Dye Encapsulated in Biodegradable Polymer Nanoparticles for Bioimaging
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Infrared Emitting Dye and/or Two Photon Excitable Fluorescent Dye Encapsulated in Biodegradable Polymer Nanoparticles for Bioimaging

机译:红外发射染料和/或包封在可生物降解的聚合物纳米粒子中的两种光子激发荧光染料用于生物模拟

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Near infrared fluorescent dyes have a significant potential in biological applications. However, many of these organic dyes are hydrophobic and/or their fluorescence is quenched in aqueous media. Nanoparticle technology has been utilized to overcome the hydrophobic property of these dyes, but there remain problems in their fabrication. To overcome these problems, a novel fabrication technique for incorporating hydrophobic dyes in a biodegradable polymer nanoparticle has been developed. An infrared emitting dye (D1) and a two photon excitable fluorescent dye (BT101) were selected as prototypic dyes for incorporation. The D1 nanocrystal dye shows quenched emission in aqueous media. Upon encapsulation in a polymeric nanoparticle, its emission at 1.1 to 1.35 μm was recovered. BT101 dye doped nanoparticles demonstrated significant increase in fluorescent yield in aqueous media as compared to the free dye. In addition, several different sizes of BT101 doped polymer nanoparticles were fabricated (c.a. 35 nm to 100 nm in size). The fluorescence intensity was found to increase with the particle size. The investigation of uptake of BT101 nanocrystal and BT101 doped PLGA nanoparticles by culture cells revealed the importance of polymer coating of dye for efficient cell imaging.
机译:近红外荧光染料在生物应用中具有显着的潜力。然而,许多这些有机染料是疏水的,/或它们的荧光在含水介质中淬灭。已经利用纳米粒子技术来克服这些染料的疏水性,但它们的制造存在问题。为了克服这些问题,已经开发出一种新的制造技术,用于将疏水性染料掺入可生物降解的聚合物纳米粒子中。选择红外发射染料(D1)和两个光子激发荧光染料(BT101)作为原型染料用于掺入。 D1纳米晶染料在水性介质中显示出淬火发射。在聚合物纳米颗粒中封装时,回收其在1.1至1.35μm的发射。与自由染料相比,BT101染料掺杂纳米颗粒在含水介质中显示出荧光产率的显着增加。此外,制备了几种不同尺寸的BT101掺杂聚合物纳米颗粒(C.a.35nm至100nm)。发现荧光强度随粒径增加。 BT101纳米晶体和BT101掺杂PLGA纳米粒子采用的调查培养细胞揭示了染料聚合物涂层对有效细胞成像的重要性。

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