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Nanotechnology platforms and physiological challenges for cancer therapeutics

机译:纳米技术平台和癌症疗法的生理挑战

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Nanotechnology is considered to be an emerging,disruptive technology that will have significant impact in all industrial sectors and across-the-board applications in cancer research.There has been tremendous investment in this area and an explosion of research and development efforts in recent years,particularly in the area of cancer research.At the National Institutes of Health,nanomedicine is one of the priority areas under its Roadmap Initiatives.Moreover,in 2005 the National Cancer Institute alone committed 144.3 million over 5 years for its Alliance for Nanotechnology in Cancer program.Much research and development is progressing in the areas of cancer diagnostics,devices,biosensors,and microfluidics,but this review will focus on therapeutics.Current nanotechnology platforms for cancer therapeutics encompass a vast array of nanomaterials and nanodevices.This review will focus on six of the most prominent and most widely studied:nanoshells,carbon nanotubes,dendrimers,quantum dots,superparamagnetic nanoparticles,and liposomes.All of these nanotechnology platforms can be multifunctional,so they are frequently touted as "smart" or "intelligent." This review will discuss the shared approaches in the design and development of these nanotechnology platforms that bestow such characteristics to the nanoparticles.Finally,the review will raise awareness of the physiological challenges for the application of these therapeutic nanotechnologies,in light of some recent advances in our understanding of tumor biology.
机译:纳米技术被认为是一种新兴的破坏性技术,它将对所有工业领域和癌症研究的广泛应用产生重大影响。近年来,在这一领域已进行了大量投资,并且研究与开发工作激增,在美国国立卫生研究院,纳米医学是其路线图计划的重点领域之一。此外,仅在2005年,美国国家癌症研究所就在五年内为其癌症纳米技术联盟计划拨款1.443亿美元。 。在癌症诊断,设备,生物传感器和微流体领域的许多研究与开发都在不断发展,但本文将重点放在治疗学上。当前用于癌症治疗的纳米技术平台包括各种各样的纳米材料和纳米设备。本文将重点研究六种最著名和研究最广泛的:纳米壳,碳纳米管,树枝状大分子,量子点,所有这些纳米技术平台都是多功能的,因此经常被吹捧为“智能”或“智能”平台。这篇综述将讨论在设计和开发这些纳米技术方面具有这些特性的纳米技术的共享方法。最后,本综述将根据近年来在治疗纳米技术方面的一些进展,提高人们对应用这些治疗纳米技术的生理挑战的认识。我们对肿瘤生物学的理解。

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