钛/铋氧化物纳米材料用于声动力/放射联合治疗肿瘤
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东华大学 生物与医学工程学院

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上海市科学技术委员会(22520710400、21WZ2501300和20DZ2254900);教育部生物医药纺织材料“111项目”(B07024)


Ti/Bi oxide nanomaterial for sonodynamic/radiation combined therapy of tumor
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College of Biological Science and Medical Engineering, Donghua University

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grants 22520710400, 21WZ2501300 and 20DZ2254900 from the Science and Technology Commission of Shanghai Municipality and the Biomedical Textile Materials “111 Project” of the Ministry of Education of China (No. B07024)

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    摘要:

    以钛酸四丁酯和冰醋酸为原料,经水热反应制备TiO2纳米晶体,再与Bi(NO3)3反应得到Bi2O3/TiO2纳米颗粒(BTH),最后经聚多巴胺(PDA)涂层包覆,得到BTH@PDA纳米颗粒(BTP),通过TEM、XRD和XPS对BTP形貌和组成进行了表征,采用生物安全性实验、体外细胞毒性测试、体外细胞摄取和活性氧染色测试了BTP的生物相容性、细胞毒性和活性氧生成能力。结果表明,BTP呈梭形,最长边粒径(125.18±14.66) nm,Zeta电位为(-4.17±0.33) mV;BTP悬液在远高于正常治疗质量浓度的条件下(300 μg/mL),对L929细胞和4T1细胞无明显的毒性;BTP能够增强放疗的疗效,在超声和X射线共同处理后,能够将4T1细胞的存活率降至34.3% ,并能有效产生活性氧;4T1细胞对BTP颗粒的摄取是时间依赖性的,在12 h附近有最大摄取。

    Abstract:

    Tetrabutyl titanate and acetic acid were used as the raw materials to synthesize TiO2 nanocrystal through a hydrothermal reaction. TiO2 nanocrystal was further reacted with Bi(NO3)3 to prepare Bi2O3/TiO2 nanoparticles (BTH). Finally, the BTH@PDA nanoparticles (BTP) were obtained by coating with a polydopamine (PDA) layer. Morphology and composition of BTP were characterized by TEM, XRD and XPS. The biosafety, biocompatibility and the ability of reactive oxygen species (ROS) generation of BTP were evaluated through biosafety test, cytotoxicity assay, cellular uptake assay and ROS staining respectively. The results indicated that BTP exhibited a fusiform shape, with the longest side having a particle size of (125.18±14.66) nm. Zeta potential of BTP was (-4.17±0.33) mV. The BTP suspension showed no obvious toxicity towards L929 and 4T1 cells at concentrations significantly above the normal treatment (300 μg/mL). Meanwhile, BTP could enhance the therapeutic outcome of radiotherapy and effectively generate ROS in response to ultrasound. After co-irradiated by ultrasound and X-ray, BTP could reduce the survival rate of 4T1 cell to 34.3%. The cellular uptake of BTP by 4T1 cells was time-dependent, with the maximum uptake occurring around 12 hours.

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郑之裕,修梦婷,王通,张艳艳,朱利民.钛/铋氧化物纳米材料用于声动力/放射联合治疗肿瘤[J].精细化工,2024,41(12):

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  • 收稿日期:2023-12-11
  • 最后修改日期:2024-03-14
  • 录用日期:2024-02-07
  • 在线发布日期: 2024-12-10
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