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CdTe quantum dots prepared using herbal species and microorganisms and their anti-cancer, drug delivery and antibacterial applications; a review

机译:使用草药物种和微生物制备的CDTE量子点及其抗癌,药物递送和抗菌应用; 回顾

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One of the developing areas of nanotechnology is the production and application of nanoscale materials, with large surface/volume ratios, which provides them with the specific properties. Cadmium telluride (CdTe) is a typical nanomaterial, which has been the subject of various studies due to its large bandwidth and excitation binding energy, which make it suitable for various purposes like anti-inflammatory, wound healing, antioxidant, antifungal and antibacterial applications. The large quantities of toxic chemicals and harsh conditions required for preparing CdTe, led to great interest in developing green methods for its synthesis. This review provides a comprehensive overview of the research on the green biological synthesis of CdTe. It is also important to consider the increasing interest in the area of production of CdTe QDs (Quantum dots) for drug delivery, bioimaging and anti-cancer applications. One green approach for producing CdTe nanocrystals is the application of metabolic activity of living organisms. Intra and extra-cellular biosynthesis can occur through a biomimetic approach based on feeding organisms with cadmium and telluride precursors. Yet there are huge gaps in our knowledge on the toxic effects of nano-scale CdTe particles on single organisms and the mechanism there of and to guarantee the safe application of CdTe, further work needs to be done on assessing the long-term effects of nano-sized CdTe particles at low quantities.
机译:纳米技术的发展领域之一是纳米级材料的生产和应用,具有大的表面/体积比,其为它们提供特定的性质。碲化镉(CdTe)是一种典型的纳米材料,这是由于其具有大带宽和激发结合能源的各种研究的主题,这使其适用于抗炎,伤口愈合,抗氧化剂,抗真菌和抗菌应用等各种目的。制备CDTE所需的大量有毒化学品和苛刻的条件,导致对其合成的绿色方法感兴趣。本综述提供了关于CDTE绿色生物合成研究的全面概述。考虑CDTE QDS(量子点)的生产领域的兴趣越来越重要,用于药物递送,生物体和抗癌应用。一种生产CdTe纳米晶体的一种绿色方法是应用生物体代谢活性的应用。通过基于培养有镉和碲化物前体的饲养生物体,可以通过仿生和细胞内生物合成来发生。然而,我们对纳米Cdte颗粒对单一生物体的毒性作用以及保证CDTE安全应用的机制有巨大的差距,以评估纳米的长期效果,需要进行进一步的工作。为低量的C型CdTe颗粒。

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