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Surface activation and targeting strategies of superparamagnetic iron oxide nanoparticles in cancer-oriented diagnosis and therapy.

机译:超顺磁性氧化铁纳米粒子的表面活化和靶向策略在面向癌症的诊断和治疗中。

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The advanced fabrication and surface engineering of superparamagnetic iron oxide nanoparticles (SPIONs) could offer excellent physiochemical features for noninvasive tumor imaging and drug delivery. The key issues of realization of maximized selective cancer targeting of SPIONs are minimization of uptake by macrophages, preferential binding to cancerous cells over neighboring normal cells, visualization of tumor cells prior to and after treatment and triggered drug release into target cells in a controlled fashion. In this article, we summarize the current status of fabrication of multifunctional SPION-based nanodevices specially designed for cancer-oriented diagnosis and therapy, with a focus on potential malignancy-targeting ligands' identification and development as nanocarriers. A number of examples of passive and active targeting strategies--lymphoangiogenesis markers, cellular metabolite receptors, extracellular matrix component receptors, neuropeptide receptors and receptor-mediated bypass of the blood-brain barrier--are described in detail.
机译:超顺磁性氧化铁纳米粒子(SPIONs)的先进制造和表面工程设计可为无创肿瘤成像和药物输送提供出色的理化特性。实现最大化选择性靶向SPIONs的癌症的关键问题是最大程度地减少巨噬细胞的摄取,与相邻正常细胞优先结合的癌细胞,在治疗前后可视化肿瘤细胞并以受控方式触发药物释放到靶细胞中。在本文中,我们总结了专门为癌症导向的诊断和治疗而设计的基于多功能SPION的纳米设备的制造现状,重点关注潜在的靶向恶性配体的识别和发展为纳米载体。详细描述了被动和主动靶向策略的许多示例-淋巴血管生成标记,细胞代谢产物受体,细胞外基质成分受体,神经肽受体以及受体介导的血脑屏障旁路。

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