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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Maghemite-human serum albumin hybrid nanoparticles: towards a theranostic system with high MRI r(2)(star) relaxivity
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Maghemite-human serum albumin hybrid nanoparticles: towards a theranostic system with high MRI r(2)(star) relaxivity

机译:磁赤铁矿人血清白蛋白杂合纳米颗粒:朝着具有高MRI r(2)(star)弛豫性的诊断学系统

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Human Serum Albumin (HSA) is the most abundant plasma protein in human blood, and therefore, it is the material of choice for the development of particulate formulations due to its biodegradable and biocompatible nature. Over the last decade, HSA nanoparticles (NPs) have been prepared mostly using desolvation techniques and evaluated as promising drug carriers. In addition, controlling the particle size has become a primary concern while formulating such nanoparticulate systems. Since many of these HSA-based carrier systems have often demonstrated batch-to-batch fabrication variability, significant efforts have been made to develop and characterize HSA-based NPs featuring a robust and controllable particle size, by using a desolvation/cross-linking-type Divinyl Sulfone (DVS)-mediated nanofabrication method. For this purpose and for global multi-parameter fabrication process optimization, a statistically significant Design of Experiment (DoE, MINITAB (R) DoE software) methodology has been successfully implemented. It aimed to disclose an optimal set of HSA NP fabrication conditions in order to afford highly reproducible and stable 23.05 +/- 5.3 nm-sized DoE-globally optimized core HSA NPs. Due to the use of bifunctional DVS as a cross-linker for the preparation of such DoE-optimized HSA NPs, their surface contains a variety of free functional groups which are available for further second step functional modifications. Moreover, related hybrid organic/inorganic nanosystems consisting of DoE-optimized HSA NPs that encapsulated hydrophilic (NH4)(2)Ce(IV)(NO3)6 (Ceric Ammonium Nitrate CAN) modified gamma-Fe2O3 NPs (CAN-maghemite or CAN-gamma-Fe2O3 NPs), which enable medical imaging using magnetic resonance imaging (MRI), have also been fabricated and characterized. The resulting hybrid magnetic NPs are a quite powerful T-2(star) contrast agent (r(2)(star) of 482 mM(-1) s(-1)), which may be used as a powerful dual phase platform for both therapeutic (drug delivery) and diagnostic imaging (MRI) applications.
机译:人血清白蛋白(HSA)是人血液中最丰富的血浆蛋白,因此,由于其可生物降解和生物相容性,它是开发微粒制剂的首选材料。在过去的十年中,HSA纳米颗粒(NPs)大多是使用去溶剂化技术制备的,并被评估为有希望的药物载体。另外,在配制这样的纳米微粒体系时,控制粒径已经成为主要关注。由于许多此类基于HSA的载体系统经常表现出批次间的制造差异性,因此已做出大量努力来开发和表征具有鲁棒性和可控粒度的基于HSA的NP,方法是使用去溶剂化/交联-型二乙烯基砜(DVS)介导的纳米加工方法。为此目的,并且为了进行全局多参数制造工艺优化,已成功实施了具有统计意义的实验设计(DoE,MINITAB(R)DoE软件)方法。它旨在公开一组最佳的HSA NP制造条件,以提供高度可重复且稳定的23.05 +/- 5.3 nm尺寸的DoE-全球最优化的核心HSA NP。由于使用双功能DVS作为交联剂来制备此类经过DoE优化的HSA NP,因此它们的表面含有多种游离官能团,可用于进一步的第二步功能修饰。此外,相关的杂化有机/无机纳米系统由DoE优化的HSA NP组成,其中包裹了亲水性(NH4)(2)Ce(IV)(NO3)6(硝酸铈铵CAN)改性的γ-Fe2O3NP(CAN-磁赤铁矿或CAN- γ-Fe2O3NPs)也可以制造并使用磁共振成像(MRI)进行医学成像。所得的混合磁性NP是一种功能非常强大的T-2(star)造影剂(r(2)(star)为482 mM(-1)s(-1)),可用作强大的双相平台,用于治疗(药物输送)和诊断成像(MRI)应用。

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