Hayat Alzahrani, Mohammed S Alkaltham, Tawfiq Alsulami, Abdulhakeem Alzahrani, Suleiman A Althawab
{"title":"磁性n掺杂碳点作为ph响应靶向分子货物的合成及其抗氧化和抗菌性能。","authors":"Hayat Alzahrani, Mohammed S Alkaltham, Tawfiq Alsulami, Abdulhakeem Alzahrani, Suleiman A Althawab","doi":"10.2478/acph-2025-0017","DOIUrl":null,"url":null,"abstract":"<p><p>This study successfully generated magnetic N-doped carbon dots (CDs-MNPs) that exhibit two distinct functions: pH-responsive targeted drug delivery and powerful antioxidant action. The structural integrity, magnetic characteristics, and thermal stability of the samples were confirmed using comprehensive characterisation techniques, such as scanning electron microscopy, superconducting quantum interference device, Fourier Transform Infrared Spectroscopy, X-ray diffraction, continuous-wave electron para-magnetic resonance, X-ray photoelectron spectroscopy, surface porosity and thermogravimetric analysis. The CDs-MNPs displayed pH-dependent drug release profiles that conformed to zero-order, Higuchi, and Peppas models, demonstrating their ability to provide regulated release. The antioxidant activity of the carbon dots was assessed using the DPPH assay, where the radical scavenging capacity exceeded 80 %. This high level of activity was attributed to the synergistic effects of nitrogen doping and the functional groups present on the carbon dots. The biocompatibility of the specimen (up to 100 mg mL<sup>-1</sup>), which is essential for biomedical applications, was confirmed by MTT assays. This study highlights the potential of CDs-MNPs as an effective option for therapeutic interventions, providing customised drug delivery and antioxidant advantages. The antibacterial activity of CDs-MNPs was evaluated against Gram-negative <i>Escherichia coli</i> and Gram-positive <i>Staphylococcus aureus</i> bacterial strains, demonstrating significant efficacy. These results highlight the potential of CD-based nanobactericides for applications in biomedical and food monitoring.</p>","PeriodicalId":7034,"journal":{"name":"Acta Pharmaceutica","volume":" ","pages":""},"PeriodicalIF":2.1000,"publicationDate":"2025-07-16","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Synthesis of magnetic N-doped carbon dots as pH-responsive targeted molecule cargo and its antioxidant and antibacterial behaviour.\",\"authors\":\"Hayat Alzahrani, Mohammed S Alkaltham, Tawfiq Alsulami, Abdulhakeem Alzahrani, Suleiman A Althawab\",\"doi\":\"10.2478/acph-2025-0017\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>This study successfully generated magnetic N-doped carbon dots (CDs-MNPs) that exhibit two distinct functions: pH-responsive targeted drug delivery and powerful antioxidant action. The structural integrity, magnetic characteristics, and thermal stability of the samples were confirmed using comprehensive characterisation techniques, such as scanning electron microscopy, superconducting quantum interference device, Fourier Transform Infrared Spectroscopy, X-ray diffraction, continuous-wave electron para-magnetic resonance, X-ray photoelectron spectroscopy, surface porosity and thermogravimetric analysis. The CDs-MNPs displayed pH-dependent drug release profiles that conformed to zero-order, Higuchi, and Peppas models, demonstrating their ability to provide regulated release. The antioxidant activity of the carbon dots was assessed using the DPPH assay, where the radical scavenging capacity exceeded 80 %. This high level of activity was attributed to the synergistic effects of nitrogen doping and the functional groups present on the carbon dots. The biocompatibility of the specimen (up to 100 mg mL<sup>-1</sup>), which is essential for biomedical applications, was confirmed by MTT assays. This study highlights the potential of CDs-MNPs as an effective option for therapeutic interventions, providing customised drug delivery and antioxidant advantages. The antibacterial activity of CDs-MNPs was evaluated against Gram-negative <i>Escherichia coli</i> and Gram-positive <i>Staphylococcus aureus</i> bacterial strains, demonstrating significant efficacy. 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Synthesis of magnetic N-doped carbon dots as pH-responsive targeted molecule cargo and its antioxidant and antibacterial behaviour.
This study successfully generated magnetic N-doped carbon dots (CDs-MNPs) that exhibit two distinct functions: pH-responsive targeted drug delivery and powerful antioxidant action. The structural integrity, magnetic characteristics, and thermal stability of the samples were confirmed using comprehensive characterisation techniques, such as scanning electron microscopy, superconducting quantum interference device, Fourier Transform Infrared Spectroscopy, X-ray diffraction, continuous-wave electron para-magnetic resonance, X-ray photoelectron spectroscopy, surface porosity and thermogravimetric analysis. The CDs-MNPs displayed pH-dependent drug release profiles that conformed to zero-order, Higuchi, and Peppas models, demonstrating their ability to provide regulated release. The antioxidant activity of the carbon dots was assessed using the DPPH assay, where the radical scavenging capacity exceeded 80 %. This high level of activity was attributed to the synergistic effects of nitrogen doping and the functional groups present on the carbon dots. The biocompatibility of the specimen (up to 100 mg mL-1), which is essential for biomedical applications, was confirmed by MTT assays. This study highlights the potential of CDs-MNPs as an effective option for therapeutic interventions, providing customised drug delivery and antioxidant advantages. The antibacterial activity of CDs-MNPs was evaluated against Gram-negative Escherichia coli and Gram-positive Staphylococcus aureus bacterial strains, demonstrating significant efficacy. These results highlight the potential of CD-based nanobactericides for applications in biomedical and food monitoring.
期刊介绍:
AP is an international, multidisciplinary journal devoted to pharmaceutical and allied sciences and contains articles predominantly on core biomedical and health subjects. The aim of AP is to increase the impact of pharmaceutical research in academia, industry and laboratories. With strong emphasis on quality and originality, AP publishes reports from the discovery of a drug up to clinical practice. Topics covered are: analytics, biochemistry, biopharmaceutics, biotechnology, cell biology, cell cultures, clinical pharmacy, drug design, drug delivery, drug disposition, drug stability, gene technology, medicine (including diagnostics and therapy), medicinal chemistry, metabolism, molecular modeling, pharmacology (clinical and animal), peptide and protein chemistry, pharmacognosy, pharmacoepidemiology, pharmacoeconomics, pharmacodynamics and pharmacokinetics, protein design, radiopharmaceuticals, and toxicology.