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Superparamagnetic nanoparticles and RNAi-mediated gene silencing: Evolving class of cancer diagnostics and therapeutics

机译:超顺磁性纳米粒子和RNAi介导的基因沉默:不断发展的癌症诊断和治疗类别

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The ever increasing death of patients affected by various types of fatal cancers is of concern worldwide. Curative attempts by radiation/chemotherapy and surgery are often a failure in the long run. Moreover, adverse side effects of such treatments burden the patients with painful survival at the last phase of their life. The failure of early diagnosis is one of the root causes of the problem. Intensive research activities are being pursued in reputed laboratories across the globe to find superior diagnostics and therapeutics. Over the last decade, a number of publications have highlighted RNA interference based silencing of cancer-related gene expression as a promising technology to tackle the aforesaid problems. Superparamagnetic iron oxide nanoparticles (SPIONs) are reported to be excellent vehicles for short-interfering RNA (siRNA). The SPION-siRNA conjugate is biocompatible, stable, and amenable to specific targeting and can cross the blood brain barrier. The issues related to their synthesis, surface properties, delivery, tracking, imaging in relevance to cancer diagnostic and therapeutic, and so forth demand an extensive review, and we have addressed these aspects in this paper. The future prospects of the technology have also been traced.
机译:受各种类型致命性癌症影响的患者死亡人数的不断增加在全世界引起关注。从长远来看,通过放射/化学疗法和手术进行治疗尝试往往是失败的。此外,这种治疗的不良副作用使患者在生命的最后阶段痛苦地存活。早期诊断失败是问题的根本原因之一。全球各地的知名实验室都在进行深入的研究活动,以寻找卓越的诊断和治疗方法。在过去的十年中,许多出版物强调了基于RNA干扰的癌症相关基因表达的沉默是解决上述问题的有前途的技术。据报道,超顺磁性氧化铁纳米粒子(SPIONs)是短干扰RNA(siRNA)的优良载体。 SPION-siRNA偶联物具有生物相容性,稳定性,并且可以进行特异性靶向,并且可以穿越血脑屏障。与它们的合成,表面性质,递送,跟踪,与癌症诊断和治疗相关的成像等有关的问题需要进行广泛的审查,我们已经在本文中解决了这些问题。还跟踪了该技术的未来前景。

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