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DEVELOPMENT STATUS IN THE MEADOW OF NANOSTRUCTURE MAGNETIC DRUG DELIVERY SYSTEM AND ITS PROMISING APPLICATIONS

机译:纳米结构磁性药物输送系统中膜的发展现状及其应用前景

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This article discusses about magnetic nanoparticles, their physico-chemical properties various applications in medicinal sectors and technology advancements.?Superparamagnetic, high magnetic susceptibility, non-toxicity, biocompatibility and less Curie temperature are critical characteristics of magnetic nanoparticles which make them suitable for assorted medical applications. Now a day’s magnetic particles play significant role in diverse technological areas with potential applications in fields such as electronics, energy biomedicine and diagnosis. Magnetic nanoparticles have been a vivacious topic of extreme research for the last fifty years due to its top-down approaches. The prospective of magnetic nanoparticles stems from the fundamental characteristics of their magnetic cores collective with their drug loading capability, biochemical properties. This article review the modern advancement of magnetic nanoparticles for drug delivery, focusing chiefly on the impending applications like targeted drug delivery, bioseparation, ,magnetic resonance and cancer diagnosis, induction of hyperthermia, induction of hyperthermia, nanorobotic agents ,tissue engineering ,artificial muscle ,magnetically activated polymers, controlled tissue assembly, control cell function, bone regeneration scaffold ,destruction of blood clots ,labeling stem cells with magnetic nanoparticles, implant-assisted intrathecal magnetic drug targeting, biodegradable magnetic nanocomposite stent, local drug delivery etc.
机译:本文讨论了磁性纳米颗粒,其理化性质在医药领域的各种应用和技术发展。超顺磁性,高磁化率,无毒,生物相容性和居里温度低是磁性纳米颗粒的关键特性,使其适合用于各种医疗领域。应用程序。如今,一天中的磁性粒子在各种技术领域中发挥着重要作用,并在电子,能源生物医学和诊断等领域具有潜在的应用前景。由于自上而下的方法,磁性纳米粒子在过去的五十年中一直是极端研究的活跃话题。磁性纳米粒子的前途源于其磁性核的基本特征以及它们的载药能力,生化特性。本文回顾了磁性纳米粒子在药物输送方面的最新进展,主要集中在诸如靶向药物输送,生物分离,磁共振和癌症诊断,热疗的诱导,热疗的诱导,纳米机器人试剂,组织工程,人工肌肉,磁性活化的聚合物,受控的组织装配,控制的细胞功能,骨骼再生支架,血栓的破坏,用磁​​性纳米颗粒标记干细胞,植入物辅助的鞘内磁性药物靶向,可生物降解的磁性纳米复合材料支架,局部药物递送等。

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