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Fabrication of pH-responsive nanoparticles for high efficiency pyraclostrobin delivery and reducing environmental impact

机译:pH响应纳米粒子的制备用于高效丙杂蛋白递送和降低环境影响

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摘要

In this work, a pH-responsive pesticide delivery system using mesoporous silica nanoparticles (MSNs) as the porous carriers and coordination complexes of Cu ions and tannic acid (TA-Cu) as the capping agent was established for controlling pyraclostrobin (PYR) release. The results showed the loading capacity of PYR@MSNs-TA-Cu nanoparticles for pyraclostrobin was 15.7 ± 0.5% and the TA-Cu complexes deposited on the MSNs surface could protect pyraclostrobin against photodegradation effectively. The nanoparticles had excellent pH responsive release performance due to the decomposition of TA-Cu complexes under the acid condition, which showed 8.53 ± 037%, 82.38 ± 1.67% of the encapsulated pyraclostrobin were released at pH 7.4, pH 4.5 after 7 d respectively. The contact angle and adhesion work of PYR@MSNs-TA-Cu nanoparticles on rice foliage were 86.3° ± 2.7° and 75.8 ± 3.1 mJ/m~2 after 360 s respectively, indicating that TA on the surface of the nanoparticles could improve deposition efficiency and adhesion ability on crop foliage. The control effect of PYR@MSNs-TA-Cu nanoparticles against Rhizoctonia solani with 400 mg/L of pyraclostrobin was 85.82% after 7 d, while that of the same concentration of pyraclostrobin EC was 53.05%. The PYR@MSNs-TA-Cu nanoparticles did not show any phytotoxicity to the growth of rice plants. Meanwhile, the acute toxicity of PYR@MSNs-TA-Cu nanoparticles to zebrafish was decreased more than 9-fold compared with that of pyraclostrobin EC. Thus, pH-responsive PYR@MSNs-TA-Cu nanoparticles have great potential for enhancing targeting and environmental safety of the active ingredient.
机译:在这项工作中,建立了使用介孔二氧化硅纳米粒子(MSN)作为Cu离子和单宁酸(Ta-Cu)作为封端剂的多孔载体和配位复合物的pH-响应性农药递送系统,以控制Pyraclostrobin(Pyr)释放。结果表明,Pyraclostrobin的MSNS-TA-Cu纳米颗粒的加载能力为15.7±0.5%,并且沉积在MSNS表面上的TA-Cu络合物可以有效地保护Pyraclostrobin免受光降解。由于酸条件下的Ta-Cu络合物分解,纳米颗粒具有优异的pH响应释放性能,其显示在7d至pH7.4,pH 4.5的pH 7.4,pH 4.5的皮吡喃啶蛋白的82.38±1.67%的82.38±1.67%。 Pyr @ MSNS-TA-Cu纳米粒子的接触角和粘附工作分别在360秒后的86.3°±2.7°和75.8±3.1MJ / m〜2。表明纳米颗粒表面上的TA可以改善沉积作物叶子的效率和粘附能力。 Pyr @ MSNS-TA-Cu纳米粒子对具有400mg / L的吡喃啶菌酰甲酰胺的Pyr @ MSNS-TA-Cu纳米粒子的控制效果为85.82%,而相同浓度的吡咯磷脂EC为53.05%。 PYR @ MSNS-TA-CU纳米粒子未显示出植物生长的植物毒性。同时,与Pyraclostrobin EC相比,Pyr @ MSNS-TA-Cu纳米颗粒的急性毒性与斑马鱼的Zebrafish降低超过9倍。因此,pH-响应性Pyr @ MSNS-TA-Cu纳米颗粒具有增强活性成分的靶向和环境安全的巨大潜力。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|147422.1-147422.10|共10页
  • 作者单位

    Co-Innovation Center for Modem Production Technology of Grain Crop/Jiangsu Key Laboratory of Crop Genetics and Physiology Yangzhou University Yangzhou China College of Plant Protection China Agricultural University Beijing China;

    Co-Innovation Center for Modem Production Technology of Grain Crop/Jiangsu Key Laboratory of Crop Genetics and Physiology Yangzhou University Yangzhou China;

    College of Plant Science Tarim University Alaer China;

    Co-Innovation Center for Modem Production Technology of Grain Crop/Jiangsu Key Laboratory of Crop Genetics and Physiology Yangzhou University Yangzhou China;

    College of Plant Protection China Agricultural University Beijing China;

    College of Plant Protection China Agricultural University Beijing China;

    College of Plant Protection China Agricultural University Beijing China;

    College of Plant Protection China Agricultural University Beijing China;

    College of Plant Protection China Agricultural University Beijing China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pyraclostrobin; Tannic acid-copper complexes; pH-triggered release; Rice sheath blight disease; Toxicity;

    机译:Pyraclostrobin;单宁酸 - 铜配合物;ph-触发释放;米鞘枯萎病;毒性;

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