Institute of Functional Nano and Soft Materials Laboratory (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Soochow University, Suzhou 215123, Jiangsu, China.
Macao Institute of Materials Science and Engineering (MIMSE), MUST-SUDA Joint Research Center for Advanced Functional Materials, Macau University of Science and Technology, Taipa 999078, Macao, China.
J Mater Chem B. 2024 Feb 28;12(9):2346-2353. doi: 10.1039/d3tb02442c.
Due to the advantages of good aqueous dispersion and biocompatibility, carbon dots (CDs) are promising candidates for a wide range of applications in the biological field. Notably, CDs derived from biosafe organic precursors will contribute both new types of CDs and new bioactivities. Herein, metformin (MET), a first-line drug for the treatment of type II diabetes, was selected as an organic precursor to fabricate a new type of CDs, namely, semi-carbonized MET (MCDs). These MCDs derived from MET possess a completely new antibacterial activity against () and () compared with that of MET and achieve complete antibacterial activity at 200 μg mL. The broad-spectrum antibacterial mechanism of MCDs involves two aspects. For the Gram-positive bacteria , MCDs mainly affect the transport of nutrients by adsorbing onto the surface of bacteria, thereby inhibiting bacterial growth. For the Gram-negative bacteria , MCDs can easily pass through their thin cell walls and stimulate the bacteria to produce excess ROS, eventually leading to the death of the bacteria. This work may open a new way for the future design and development of CDs prepared from biosafe organic precursors with specific functions.
由于良好的水分散性和生物相容性优势,碳点(CDs)有望在生物领域的广泛应用中成为候选者。值得注意的是,由生物安全的有机前体制备的 CDs 将为新型 CDs 和新的生物活性提供来源。在这里,二甲双胍(MET),一种治疗 II 型糖尿病的一线药物,被选为制备新型 CDs 的有机前体,即半碳化 MET(MCDs)。与 MET 相比,这些来源于 MET 的 MCDs 对 ()和 ()具有全新的抗菌活性,在 200 μg mL 时即可实现完全的抗菌活性。MCDs 的广谱抗菌机制涉及两个方面。对于革兰氏阳性菌 ,MCDs 主要通过吸附在细菌表面来影响营养物质的运输,从而抑制细菌生长。对于革兰氏阴性菌 ,MCDs 可以很容易地穿透它们的薄细胞壁,并刺激细菌产生过量的 ROS,最终导致细菌死亡。这项工作可能为未来设计和开发具有特定功能的生物安全有机前体制备的 CDs 开辟新途径。