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首页> 外文期刊>Journal of materials science >Hydrothermal synthesis and characterization of magnetic Fe_3O_4 and APTS coated Fe_3O_4 nanoparticles: physicochemical investigations of interaction with DNA
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Hydrothermal synthesis and characterization of magnetic Fe_3O_4 and APTS coated Fe_3O_4 nanoparticles: physicochemical investigations of interaction with DNA

机译:磁Fe_3O_4的水热合成和表征和涂层Fe_3O_4纳米粒子:与DNA相互作用的物理化学研究

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Magnetic nanoparticles (MNPs) especially iron oxide (Fe3O4) NPs have quite extensively been used for in vivo delivery of biomolecules and drugs because of their high bioconjugation efficiency. In this study, Fe3O4 NPs and (3-Aminopropyl) triethoxysilane (APTS) coated Fe3O4 NPs were synthesized and their interaction with Calf thymus (Ct) DNA has been studied in order to understand their usage in biomedical applications. Hydrothermal method was used for the NPs synthesis. Characterization of NPs was done using techniques like UV-Visible spectroscopy, FTIR spectroscopy, FE-SEM, EDAX, Zeta Sizer and powder XRD. Further, interaction studies of NPs with Ct-DNA were investigated using various physicochemical techniques. In UV-Visible studies, hypochromicity with binding constant 3.2x10(5)M(-1) was observed. Binding constants calculated using fluorescence studies were found to be k=3.2x10(4)M(-1), 2.9x10(4)M(-1) at 293 and 323K respectively. Results of UV-Visible and fluorescence studies were in correlation with other techniques like UV-T-M and CD. All studies suggested alteration in DNA conformation on interaction with surface engineered Fe3O4 NPs, stabilizing DNA-NPs conjugate via partial intercalation and electrostatic interactions. This study may facilitate our understanding regarding the physicochemical properties and DNA-binding ability of APTS-Fe3O4 NPs for their further application in magnetosensitive biosensing and drug delivery. Iron oxide based magnetic nanoparticles are well known for their excellent bio-conjugation efficiency and therefore APTS-Fe3O4 NPs were synthesized via very simple and benign hydrothermal method. Further, the interaction of APTS-Fe3O4 NPs with calf thymus DNA was studied using various physicochemical techniques to explore their potential in biomedical applications./captiongraphic position="anchor" specific-use="HTML" mime-subtype="PNG" xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="10856_2020_6405_Figa_HTML.png"/graphic
机译:磁性纳米颗粒(MNP)尤其是氧化铁(Fe3O4)NPS具有相当广泛地用于体内递送生物分子和药物,因为它们的生物谐波效率高。在该研究中,合成了Fe3O4 NPS和(3-氨基丙基)三乙氧基硅烷(APTS)涂覆的Fe3O4 NPS,并研究了与小牛胸腺(CT)DNA的相互作用,以了解其在生物医学应用中的使用。水热法用于NPS合成。使用如UV可见光谱,FTIR光谱,Fe-SEM,eDAX,Zeta Sizer和粉末XRD等技术进行NPS的表征。此外,使用各种物理化学技术研究了NPS与CT-DNA的相互作用研究。在UV可见的研究中,观察到结合常数3.2x10(5)m(-1)的低粒状。发现使用荧光研究计算的结合常数分别在293和323K处是k = 3.2×10(4)m(-1),2.9×10(4)m(-1)。 UV可见和荧光研究的结果与UV-T-M和CD等其他技术相关。所有研究均建议改变DNA构象与表面工程Fe3O4NP的相互作用,通过部分插层稳定DNA-NPS缀合物和静电相互作用。本研究可以促进我们对APTS-Fe3O4 NPS的物理化学性质和DNA结合能力的理解,以便在磁敏性生物传感和药物递送中应用。氧化铁基磁性纳米颗粒是众所周知的,其优异的生物缀合效率,因此通过非常简单和良性的水热法合成APTS-Fe 3 O 4 NP。此外,使用各种物理化学技术研究了APTS-Fe3O4NP与小牛胸腺DNA的相互作用,以探讨它们在生物医学应用中的潜力。 <图形位置=“锚”特定使用=“HTML”MIME-SUBTYPE =“ PNG“XMLNS:XLink =”http://www.w3.org/1999/xlink“xlink:href =”10856_2020_6405_figa_html.png“>

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  • 来源
    《Journal of materials science》 |2020年第8期|68.1-68.11|共11页
  • 作者单位

    Univ Delhi Cluster Innovat Ctr Nanobioconjugate Chem Lab Delhi India|Univ Delhi Dept Chem Delhi India;

    Univ Delhi Cluster Innovat Ctr Nanobioconjugate Chem Lab Delhi India|Univ Delhi Dept Chem Delhi India;

    Univ Delhi Cluster Innovat Ctr Nanobioconjugate Chem Lab Delhi India;

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