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Preparation and characterization of new hybrid nanostructured thin films for biosensors design

机译:用于生物传感器设计的新型混合纳米结构薄膜的制备与表征

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摘要

The present paper reports on an innovative route for the preparation of new hybrid nanostructured thin films based on hydroxyapatite and functionalized polyurethane. Hybrid nanopowders based on hydroxyapatite and functionalized polyurethane have been synthesized by a hydrothermal method with high pressure and low temperature conditions and further used for spin coating deposition. Biocompatible thin films with a thickness of about 50 nm have been deposited onto Si/SiO_2Ti/Au substrates and their properties recommend them suitable as possible electrodes for the fabrication of impedance biosensors. Hybrid materials with improved properties are obtained, combining the mechanical properties of polyurethane with biocompatible properties of hydroxyapatite (bioactivity and osteoconductivity). The presence of functional groups in polyurethane structure ensures the existence of strong interactions between components and an increased affinity of the thin films for further protein bonding in biosensor design. Hybrid nanostructured thin films based on hydrothermally synthesized hydroxyapatite-polyurethane nanopowders could enhance the amount of immobilized biomolecules in the construction of an impedance biosensor for diagnosis and therapy of bone diseases.
机译:本文报道了一种创新的方法,用于制备基于羟基磷灰石和功能化聚氨酯的新型杂化纳米结构薄膜。通过水热法在高压和低温条件下合成了基于羟基磷灰石和功能化聚氨酯的杂化纳米粉,并进一步用于旋涂沉积。厚度约为50 nm的生物相容性薄膜已沉积在Si / SiO_2Ti / Au基板上,其性能建议它们适合作为制造阻抗生物传感器的电极。获得了具有改进性能的杂化材料,将聚氨酯的机械性能与羟基磷灰石的生物相容性(生物活性和骨传导性)相结合。聚氨酯结构中官能团的存在确保了组件之间存在强大的相互作用,并提高了薄膜在生物传感器设计中进一步与蛋白质结合的亲和力。基于水热合成羟基磷灰石-聚氨酯纳米粉的杂化纳米结构薄膜可以在用于骨骼疾病诊断和治疗的阻抗生物传感器的构建中增加固定化生物分子的数量。

著录项

  • 来源
    《Materials Letters》 |2011年第13期|p.2032-2035|共4页
  • 作者单位

    National R&D Institute for Non-ferrous and Rare Metals, 102 Biruintei Blvd., CP 077145, Pantelimon, llfov, Romania;

    National R&D Institute for Non-ferrous and Rare Metals, 102 Biruintei Blvd., CP 077145, Pantelimon, llfov, Romania;

    National R&D Institute for Non-ferrous and Rare Metals, 102 Biruintei Blvd., CP 077145, Pantelimon, llfov, Romania;

    J. E. Purkinje University, Usti nad Labem, Czech Republic,University of Applied Sciences and Arts of Southern Switzerland, Laboratory of Applied Mathematics and Physics, Calleria 2, 6928, Manno, Ticino, Switzerland;

    University of Applied Sciences and Arts of Southern Switzerland, Laboratory of Applied Mathematics and Physics, Calleria 2, 6928, Manno, Ticino, Switzerland;

    Agricultural University of Athens, Department of Agricultural Biotechnology, Laboratory of Plant Physiology and Morphology, 75 lera Odos, Athens, Greece;

    Agricultural University of Athens, Department of Agricultural Biotechnology, Laboratory of Plant Physiology and Morphology, 75 lera Odos, Athens, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hydroxyapatite; polyurethane; nanostructure; thin films; molecular dynamics;

    机译:羟基磷灰石;聚氨酯;纳米结构;薄膜;分子动力学;
  • 入库时间 2022-08-17 13:19:30

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