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Bioconjugated Quantum Dots: A Multifunctional Nanomaterial for the Early Detection of Cancer

机译:生物缀化量子点:一种多功能纳米材料,用于早期检测癌症

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Cancer is the leading cause of the death worldwide. About 30% of cancer death is preventable. The early detection and quantification is essential for diagnosis and prevention in the case of cancer. In the past few years cancer nanotechnology has made immeasurable strides to enable visualization, identification and quantization in biological systems, which covers a vast and diverse array of nanomateri-als. One such material is Quantum Dots (QDs). It has tunable optical properties that have proved useful in multiplexed analysis such as Biomarker detection, cell sorting and tracking, multimodality targeting and imaging of tumor. These nanocentric agents can provide essential breakthroughs in the fight against cancer. When linked with targeting ligands such as antibodies, peptides or small molecules, QDs can be used to target tumor biomarkers as well as tumor vasculatures with high affinity and specificity. In particular, we focus upon CdSe quantum dots (TOPO coated) which is proved to be a critical nutrient necessary for rapid growth and cell division when conjugated with Folate receptor a (FR a) enhances the differential specificity by targeting folate receptor (FR)-positive cancer cells. This is over expressed in epithelial malignancies and facilitates improved specificity and decrease negative side effects. The synthesis and development of state-of-the-art this Bioconjuagated QDs are examined in this issue to provide more possibilities to detect the early-stage formation of a disease or early molecular changes during diagnosis or treatment of cancer.
机译:癌症是全世界死亡的主要原因。约30%的癌症死亡是可预防的。早期的检测和定量对于癌症的诊断和预防至关重要。在过去的几年中,癌症纳米技术使得无法估量的趋势,以实现生物系统中的可视化,识别和量化,涵盖了巨大和多样化的纳米水域。一种这样的材料是量子点(QDS)。它具有可调谐的光学性质,其证明是有用的多路复用分析,例如生物标志物检测,细胞分选和跟踪,多模靶标和肿瘤成像。这些纳米中心代理商可以在对抗癌症的斗争中提供必要的突破。当与靶向配体相连,例如抗体,肽或小分子,QD可用于靶向肿瘤生物标志物以及具有高亲和力和特异性的肿瘤血管。特别是,我们专注于CDSE量子点(Topo涂层),其被证明是当与叶酸受体A(fR a)缀合时快速生长和细胞分裂所需的关键营养素(fr a)通过靶向叶酸受体(fr)来增强差异特异性 - 阳性癌细胞。这是在上皮性恶性肿瘤中表达的,促进了改善的特异性并降低了负面副作用。在本问题中检查了本型生物谐振QDS的最新的这种生物谐振QD的合成和发展,以提供更多可能性来检测疾病期间疾病早期形成或在癌症期间的早期分子变化的可能性。

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