Ilhan Hasan, Erdem Burak, Ozkasapoglu Sezgin, Yayla Muhammed, Bas Orhan, Celikkan Huseyin
Department of Chemistry, Faculty of Science, Ordu University, 52200, Ordu, Turkey.
Department of Ophthalmology, Faculty of Medicine, Ordu University, 52200, Ordu, Turkey.
J Fluoresc. 2023 Sep;33(5):1917-1925. doi: 10.1007/s10895-023-03200-8. Epub 2023 Mar 11.
The florescence characteristics and the toxicities of carbon nanodots (CDs) are directly related to their elemental compositions. Fluorescent and non-toxic agent for imaging of biological systems was aimed. Sulfur and nitrogen co-doped CDs (S/N-CDs) was hydrothermally produced in an average size of 8 nm. S/N-CDs showed blue fluorescence under UV-light with an excitation wavelength of 365 nm. After 24 h, S/N-CDs was non-cytotoxic in HUVEC and L929 cells. S/N-CDs have a great potential to act as an alternative material for commercial fluorescent materials with its 85.5% of quantum yield. S/N-CDs was approved in vitro as an imaging agent for an ocular fundus angiography of rats.
碳纳米点(CDs)的荧光特性和毒性与其元素组成直接相关。旨在开发用于生物系统成像的荧光无毒剂。通过水热法制备了平均尺寸为8纳米的硫氮共掺杂碳纳米点(S/N-CDs)。S/N-CDs在365纳米激发波长的紫外光下呈现蓝色荧光。24小时后,S/N-CDs对人脐静脉内皮细胞(HUVEC)和L929细胞无细胞毒性。S/N-CDs具有85.5%的量子产率,极有潜力成为商业荧光材料的替代材料。S/N-CDs在体外被批准作为大鼠眼底血管造影的成像剂。