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Editorial

机译:社论

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摘要

Nanosciences and Nanotechnologies are characterized by a strong interdisciplinary approach since they combine Physics, Chemistry, Materials Science, Biology, Medicine, Pharmacy and Engineering into a common base in order to unleash the potential of nano-materials for the fabrication of innovative structures and devices. The sophisticated combination of all these disciplines will allow the existing knowledge to be translated from one scientific field to another and will provide a fertile ground for breakthroughs in materials, processes, production and new applications. Among the many examples for this synergy, is the partnership between physical scientists who design and synthesize nano-particles and medical researchers who can use them as transport agents for targeted drug delivery and therapy as well as for gene therapy.
机译:纳米科学和纳米技术的特点是采用强大的跨学科方法,因为它们将物理,化学,材料科学,生物学,医学,药学和工程学结合到一个共同的基础上,以释放纳米材料在制造创新结构和设备方面的潜力。所有这些学科的精密结合将使现有知识从一个科学领域转化为另一个科学领域,并为材料,工艺,生产和新应用的突破提供沃土。在这种协同作用的众多例子中,设计和合成纳米粒子的物理科学家与可以将其用作靶向药物递送和治疗以及基因治疗的转运剂的医学研究人员之间的合作。

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