Evaluation of folic acid-targeted gadolinium-loaded perfluorohexane nanodroplets on the megavoltage X-ray treatment efficiency of liver cancer

IF 4.7 3区 医学 Q1 PHARMACOLOGY & PHARMACY European Journal of Pharmaceutical Sciences Pub Date : 2025-06-01 Epub Date: 2025-03-04 DOI:10.1016/j.ejps.2025.107059
Roghayeh Kamran Samani , Masoud A. Mehrgardi , Fatemeh Maghsoudinia , Mohammad Najafi , Fatemeh Mehradnia
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Abstract

The efficacy of radiation therapy can decrease due to the inherent radioresistance of different tumor cells. Gadolinium shows significant potential as a radiosensitivity enhancer due to its high atomic number. In this study, a novel theranostic nanoprobe based on folic acid-conjugated gadolinium-loaded nanodroplets (FA-Gd-NDs) has been introduced for ultrasound imaging (USI)-guided radiation therapy of hepatocellular carcinoma. The ultrasound echogenicity evaluation of NDs, Gd release studies, biocompatibility test of Gd-NDs, colony assay, cellular uptake of NDs via fluorescence microscopy, and flow cytometry analysis were performed on Hepa1-6 cancer and L929 normal cell lines. Our results showed that synthesized NDs significantly enhanced ultrasound signal intensity in PBS solution and agarose gel phantom. MTT and clonogenic assays indicated that Gd-NDs substantially reduced the cell viability and also surviving fraction of Hepa1-6 cancer cells under US and X-ray exposure. Additionally, FA-Gd-NDs exhibited sensitization enhancement factor (SER) of 1.8 after concurrent exposure to US and X-ray. Fluorescence imaging demonstrated more internalization of FA-Gd-NDs into cancer cells in comparison with normal cells. According to flow cytometry results, the Gd-NDs and FA-Gd-NDs uptake by L929 cell line were 20 % and 28 %, respectively, while their uptake by Hepa1-6 cells was 60 % and 94 %, respectively. In conclusion, the synthesized novel theranostic nanoprobe shows great potential for enhancing the efficacy of radiation therapy and enabling ultrasound image-guided radiation therapy of cancers.

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叶酸靶向载钆全氟己烷纳米液滴对肝癌巨压x线治疗效果的评价。
由于不同肿瘤细胞固有的放射抵抗性,放射治疗的效果会降低。钆由于其高原子序数而显示出作为辐射敏感性增强剂的巨大潜力。在这项研究中,一种基于叶酸共轭钆负载纳米液滴(FA-Gd-NDs)的新型治疗纳米探针被引入超声成像(USI)引导下的肝细胞癌放射治疗中。在Hepa1-6癌和L929正常细胞株上进行了ndds的超声回声性评价、Gd释放研究、Gd- ndds的生物相容性试验、集落测定、荧光显微镜下ndds的细胞摄取和流式细胞术分析。结果表明,合成的NDs显著增强了PBS溶液和琼脂糖凝胶幻象中的超声信号强度。MTT和克隆实验表明,Gd-NDs在US和x射线照射下显著降低了Hepa1-6癌细胞的细胞活力和存活比例。此外,fa - gd - nd在同时暴露于US和x射线后表现出1.8的敏化增强因子(SER)。荧光成像显示,与正常细胞相比,FA-Gd-NDs更多地内化到癌细胞中。流式细胞术结果显示,L929细胞株对Gd-NDs和FA-Gd-NDs的摄取率分别为20%和28%,Hepa1-6细胞对Gd-NDs的摄取率分别为60%和94%。综上所述,所合成的新型治疗纳米探针在提高放射治疗疗效和实现超声图像引导癌症放射治疗方面具有很大的潜力。
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来源期刊
CiteScore
9.60
自引率
2.20%
发文量
248
审稿时长
50 days
期刊介绍: The journal publishes research articles, review articles and scientific commentaries on all aspects of the pharmaceutical sciences with emphasis on conceptual novelty and scientific quality. The Editors welcome articles in this multidisciplinary field, with a focus on topics relevant for drug discovery and development. More specifically, the Journal publishes reports on medicinal chemistry, pharmacology, drug absorption and metabolism, pharmacokinetics and pharmacodynamics, pharmaceutical and biomedical analysis, drug delivery (including gene delivery), drug targeting, pharmaceutical technology, pharmaceutical biotechnology and clinical drug evaluation. The journal will typically not give priority to manuscripts focusing primarily on organic synthesis, natural products, adaptation of analytical approaches, or discussions pertaining to drug policy making. Scientific commentaries and review articles are generally by invitation only or by consent of the Editors. Proceedings of scientific meetings may be published as special issues or supplements to the Journal.
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