生物合成具有内置生物活性的碳点

Varsha Sahu, Sunit Kumar Sahoo
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摘要

最近,碳点因其独特的性质被广泛用于疾病的诊断和治疗。人们对碳点进行了大量的研究工作,首先是以绿色方法合成碳点,包括以生物质、植物和废料为碳前体。另一个是它们的应用和特性。碳点通常被用作载体来输送治疗疾病的药物,这在某种程度上降低了药物的毒性,提高了药物的活性,但效果并不明显。我们的综述侧重于碳点的生物合成方法,这也是绿色合成的一部分。生物合成技术的原理是利用植物和微生物等生物体合成碳点。生物源方法具有多种优点,如低毒性、可持续和可再生资源、生态友好和一定的生物活性。从生物源制备的碳点具有抗菌、抗癌、抗氧化、抗炎等生物特性和其他一些生物活性,这些特性内置于碳点中,无需进一步添加药物即可发挥治疗作用。含有碳点的生物或治疗活性还能最大限度地减少耐药性、对细胞的非靶向副作用以及与药物相关的不良反应,从而极大地促进疾病的治疗。因此,本综述仅侧重于利用植物和微生物合成碳点的生物源、其制备技术、性质、形成机制、纯化及其特定的生物或治疗作用,以促进纳米科学的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biogenic synthesis of carbon dots with inbuilt biological activity

Recently, carbon dots have been widely used for the diagnosis to treatment of disease, because of their distinctive properties. A lots of research work has been done on CDs, first is their synthesis as a green approach, which includes biomass, plant, and waste material as carbon precursor. Another is their application and properties. Carbon dots are generally used as a carrier for delivering the drug for treating diseases, which somehow reduces the toxicity of the drug and increases its activity but not that much. Our review focuses on the biogenic approach for the synthesis of carbon dots, which is also a part of green synthesis. Biogenic techniques involve the principle of using living organisms such as plants and microorganisms for the synthesis of carbon dots. The biogenic approach provides various benefits such as low toxicity, sustainable and renewable sources, eco-friendly, and some biological activity. Carbon dots prepared from the biogenic source provides biological properties such as antimicrobial, anticancer, antioxidant, anti-inflammatory, and some other biological activity, which inbuilt into carbon dots and give their therapeutic action without further drug loading. Biological or therapeutic activity containing carbon dots also minimizes drug resistance, non-target side effects into cells and drug-related adverse effects, which provides great advancement for treating the diseases. Hence, this review is focused only on the biogenic synthesis of carbon dots using plants and microorganisms, their preparation technique, properties, formation mechanism, purification and their specific biological or therapeutic actions with the improvement of nanoscience.

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