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Nanotechnology Meets Oncology: Nanomaterials in Brain Cancer Research Diagnosis and Therapy

机译:纳米技术与肿瘤学:脑癌研究诊断和治疗中的纳米材料

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摘要

Advances in technology of the past decades led to development of new nanometer scale diagnosis and treatment approaches in cancer medicine leading to establishment of nanooncology. Inorganic and organic nanomaterials have been shown to improve bioimaging techniques and targeted drug delivery systems. Their favorable physico-chemical characteristics, like small sizes, large surface area compared to volume, specific structural characteristics, and possibility to attach different molecules on their surface transform them into excellent transport vehicles able to cross cell and/or tissue barriers, including the blood–brain barrier. The latter is one of the greatest challenges in diagnosis and treatment of brain cancers. Application of nanomaterials can prolong the circulation time of the drugs and contrasting agents in the brain, posing an excellent opportunity for advancing the treatment of the most aggressive form of the brain cancer—glioblastomas. However, possible unwanted side-effects and toxicity issues must be considered before final clinical translation of nanoparticles.
机译:过去几十年的技术进步导致了癌症医学中新的纳米级诊断和治疗方法的开发,从而导致了纳米肿瘤学的建立。无机和有机纳米材料已被证明可以改善生物成像技术和靶向药物递送系统。它们具有良好的理化特性,例如体积小,比体积大的表面积,特殊的结构特征以及在其表面附着不同分子的可能性,使它们转变成能够穿过细胞和/或组织屏障(包括血液)的出色转运载体–脑屏障。后者是脑癌诊断和治疗中的最大挑战之一。纳米材料的应用可以延长药物和造影剂在大脑中的循环时间,为推进治疗最具侵略性的脑癌胶质母细胞瘤提供了极好的机会。然而,在最终的纳米粒子临床翻译之前,必须考虑可能的不良副作用和毒性问题。

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