ArticleJournal of biological engineering2025
Bioimaging application and growth-promoting behavior of Auxin-derived carbon dots on cancer cell and seed performance.
Article in Journal of biological engineering, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 1 paper.
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Who cites it
1 citing paper in PubMed.
- Carbon Quantum Dots as Versatile Nanosystems for Biomedical Innovation: Mechanisms, Applications, and Translational Prospects.British journal of biomedical science · 2026Review
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6 authors.
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Abstract
Auxin-derived carbon dots (Aux-CDs) were synthesized and evaluated for their dual functionality in biomedical and agricultural contexts. One-step hydrothermal synthesis was employed for the first time to produce eco-friendly and cost-effective Aux-CDs. The approach involves introducing a mixture of Auxin and water into the reactor. The fluorescence in the Aux-CDs was initially confirmed using a UV transilluminator. Physicochemical characterizations were evaluated via UV-Vis spectrophotometry (absorbance at 470 nm), zeta potential measurement (-37.8 mV), photoluminescence, scanning electron microscopy (SEM), and Fourier transform infrared (FT-IR). The total quantum yield exhibited was 43%, and the transmission electron microscopy (TEM) showed a size range of approximately 10 nm. In cancer cells, the MTT assay revealed that Aux-CDs demonstrated low cytotoxicity in 4T1 cells up to 10 µg/mL. The fluorescence accumulation indicates the internalization of the Aux-CDs by 4T1 cells. In seed performance, we examined the effects of Aux-CDs on through nanopriming. The wheat seeds (the Drum and Ehsan varieties) were incubated with CDs to check the absorption of Aux-CDs by them. The fluorescence was observed under a UV-transilluminator in the growing parts of seeds, indicating the absorption of Aux-CDs during wheat growth. Cancer cell and wheat imaging showed that fluorescent Aux-CDs could be used as a bioimaging agent. Additionally, Aux-CDs significantly improved seed germination percentage and the performance index in the Drum and Ehsan varieties in low concentration (1 µg/mL) compared to high concentration (10 µg/mL). Consequently, Aux-CDs synthesized via a one-step hydrothermal method exhibit high quantum yield and biocompatibility, and can act as multifunctional nanomaterials for bioimaging and plant growth enhancement in biomedical and agricultural research.
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