Chan Ming-Hsien, Chen Bo-Gu, Ngo Loan Thi, Huang Wen-Tse, Li Chien-Hsiu, Liu Ru-Shi, Hsiao Michael
Genomics Research Center, Academia Sinica, Taipei 115, Taiwan.
Department of Chemistry, National Taiwan University, Taipei 106, Taiwan.
Pharmaceutics. 2021 Nov 5;13(11):1874. doi: 10.3390/pharmaceutics13111874.
This review outlines the methods for preparing carbon dots (CDs) from various natural resources to select the process to produce CDs with the best biological application efficacy. The oxidative activity of CDs mainly involves photo-induced cell damage and the destruction of biofilm matrices through the production of reactive oxygen species (ROS), thereby causing cell auto-apoptosis. Recent research has found that CDs derived from organic carbon sources can treat cancer cells as effectively as conventional drugs without causing damage to normal cells. CDs obtained by heating a natural carbon source inherit properties similar to the carbon source from which they are derived. Importantly, these characteristics can be exploited to perform non-invasive targeted therapy on human cancers, avoiding the harm caused to the human body by conventional treatments. CDs are attractive for large-scale clinical applications. Water, herbs, plants, and probiotics are ideal carbon-containing sources that can be used to synthesize therapeutic and diagnostic CDs that have become the focus of attention due to their excellent light stability, fluorescence, good biocompatibility, and low toxicity. They can be applied as biosensors, bioimaging, diagnosis, and treatment applications. These advantages make CDs attractive for large-scale clinical application, providing new technologies and methods for disease occurrence, diagnosis, and treatment research.
本综述概述了从各种自然资源制备碳点(CDs)的方法,以选择生产具有最佳生物应用效果的碳点的工艺。碳点的氧化活性主要涉及光诱导的细胞损伤以及通过产生活性氧(ROS)破坏生物膜基质,从而导致细胞自凋亡。最近的研究发现,源自有机碳源的碳点可以像传统药物一样有效地治疗癌细胞,而不会对正常细胞造成损害。通过加热天然碳源获得的碳点继承了与其来源碳源相似的特性。重要的是,可以利用这些特性对人类癌症进行非侵入性靶向治疗,避免传统治疗对人体造成的伤害。碳点在大规模临床应用中具有吸引力。水、草药、植物和益生菌是理想的含碳源,可用于合成治疗性和诊断性碳点,由于其出色的光稳定性、荧光性、良好的生物相容性和低毒性,这些碳点已成为关注的焦点。它们可应用于生物传感器、生物成像、诊断和治疗应用。这些优点使碳点在大规模临床应用中具有吸引力,为疾病的发生、诊断和治疗研究提供了新技术和方法。