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Highly Luminescent and Biocompatible P and N Co-Doped Passivated Carbon Nanodots for the Sensitive and Selective Determination of Rifampicin Using the Inner Filter Effect

机译:高度发光且生物相容的P和N共掺杂的钝化碳纳米点可利用内部滤光效应灵敏和选择性地测定利福平

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摘要

The determination of rifampicin in pharmaceutical dosage forms using a rapid, sensitive, selective, biocompatible, and low-cost method is of vital importance in the pharmaceutical analysis field to ensure its concentration is within the effective range when administered. In this study, nitrogen-and-phosphorous-doped carbon nanodots (CNDs) were prepared using a single-step hydrothermal method with ciprofloxacin as the starting material. The CNDs showed a highly intense blue fluorescence emission centered at 450 nm, with a photoluminescence quantum yield of about 51%. Since the absorption of rifampicin was the same as the excitation spectrum of CNDs, inner filter effect (IFE) quenching occurred and it was used as a successful detection platform for the analysis of rifampicin in capsules. The detection platform showed a dynamic linear range from 1 to 100 μM (R = 0.9940) and the limit of detection was 0.06 μM (when S/N = 3). The average spike recovery percentage for rifampicin in the capsule samples was 100.53% ( = 5). Moreover, the sub-chronic cytotoxicity of CNDs was evaluated on healthy male mice (Balb/c) drenched with different amounts of CNDs (10 and 50 mg/kg). During this study period, no mortalities or toxicity signs were recorded in any of the experimental subjects. Based on the cytotoxicity experiment, the proposed nano-probe is considered safe and biocompatible.
机译:使用快速,灵敏,选择性,生物相容性和低成本的方法测定药物剂型中的利福平在药物分析领域至关重要,以确保给药时其浓度在有效范围内。在这项研究中,以环丙沙星为原料,采用一步水热法制备了氮磷掺杂的碳纳米点(CND)。 CND显示出以450 nm为中心的高强度蓝色荧光发射,光致发光量子产率约为51%。由于利福平的吸收与CND的激发光谱相同,因此发生了内部过滤效应(IFE)猝灭,它被用作分析胶囊中利福平的成功检测平台。检测平台显示出1到100μM的动态线性范围(R = 0.9940),检测极限为0.06μM(当S / N = 3时)。胶囊样品中利福平的平均加标回收率是100.53%(= 5)。此外,在浸有不同量CNDs(10和50 mg / kg)的健康雄性小鼠(Balb / c)上评估了CNDs的亚慢性细胞毒性。在此研究期间,未在任何实验对象中记录任何死亡或毒性迹象。基于细胞毒性实验,提出的纳米探针被认为是安全且生物相容的。

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