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Quantum dots in biomedical applications

机译:生物医学应用中的量子点

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Semiconducting nanoparticles, more commonly known as quantum dots, possess unique size and shape dependent optoelectronic properties. In recent years, these unique properties have attracted much attention in the biomedical field to enable real-time tissue imaging (bioimaging), diagnostics, single molecule probes, and drug delivery, among many other areas. The optical properties of quantum dots can be tuned by size and composition, and their high brightness, resistance to photobleaching, multiplexing capacity, and high surface-to-volume ratio make them excellent candidates for intracellular tracking, diagnostics, in vivo imaging, and therapeutic delivery. We discuss recent advances and challenges in the molecular design of quantum dots are discussed, along with applications of quantum dots as drug delivery vehicles, theranostic agents, single molecule probes, and real-time in vivo deep tissue imaging agents. We present a detailed discussion of the biodistribution and toxicity of quantum dots, and highlight recent advances to improve long-term stability in biological buffers, increase quantum yield following bioconjugation, and improve clearance from the body. Last, we present an outlook on future challenges and strategies to further advance translation to clinical application
机译:半导体纳米颗粒,更常见的量子点,具有独特的尺寸和形状依赖性光电性。近年来,这些独特的性质在生物医学领域吸引了很多关注,以便在许多其他领域中实现实时组织成像(生物成像),诊断,单分子探针和药物递送。量子点的光学性能可以通过尺寸和组成来调节,以及它们的高亮度,耐光漂白,多路复用容量和高度体积比,使其成为细胞内跟踪,诊断,体内成像和治疗的优异候选者送货。我们讨论了据讨论了量子点的分子设计中的最近的进展和挑战,以及量子点作为药物递送载体,治疗剂,单分子探针和体内深层组织成像剂的实时的应用。我们对量子点的生物分布和毒性提供了详细讨论,并突出了最近改善生物缓冲液中的长期稳定性的进步,增加了生物缀合后的量子产量,并改善了身体的间隙。最后,我们提出了对未来挑战和战略的展望,以进一步推进翻译到临床应用

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