4.6 Article

Sustainable Synthesis of Bright Fluorescent Nitrogen-Doped Carbon Dots from Terminalia chebula for In Vitro Imaging

期刊

MOLECULES
卷 27, 期 22, 页码 -

出版社

MDPI
DOI: 10.3390/molecules27228085

关键词

Terminalia chebula; carbon dot; fluorescence; cell viability; bioimaging

资金

  1. National Research Foundation of Korea (NRF) - Korean government MSIT [2021R1A2B5B02002436]

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In this study, nitrogen-doped carbon dots were synthesized from Terminalia chebula biomass, exhibiting colorful fluorescence and great potential for biomedical applications. The conversion of low-cost and environmentally friendly biomass into valuable products not only benefits the economy but also promotes sustainable development.
In this study, sustainable, low-cost, and environmentally friendly biomass (Terminalia chebula) was employed as a precursor for the formation of nitrogen-doped carbon dots (N-CDs). The hydrothermally assisted Terminalia chebula fruit-derived N-CDs (TC-CDs) emitted different bright fluorescent colors under various excitation wavelengths. The prepared TC-CDs showed a spherical morphology with a narrow size distribution and excellent water dispensability due to their abundant functionalities, such as oxygen- and nitrogen-bearing molecules on the surfaces of the TC-CDs. Additionally, these TC-CDs exhibited high photostability, good biocompatibility, very low toxicity, and excellent cell permeability against HCT-116 human colon carcinoma cells. The cell viability of HCT-116 human colon carcinoma cells in the presence of TC-CDs aqueous solution was calculated by MTT assay, and cell viability was higher than 95%, even at a higher concentration of 200 mu g mL(-1) after 24 h incubation time. Finally, the uptake of TC-CDs by HCT-116 human colon carcinoma cells displayed distinguished blue, green, and red colors during in vitro imaging when excited by three filters with different wavelengths under a laser scanning confocal microscope. Thus, TC-CDs could be used as a potential candidate for various biomedical applications. Moreover, the conversion of low-cost/waste natural biomass into products of value promotes the sustainable development of the economy and human society.

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