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Non-metallic nanomaterials in cancer theranostics: a review of silica- and carbon-based drug delivery systems

机译:癌症治疗中的非金属纳米材料:综述二氧化硅和碳的药物递送系统

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摘要

The rapid development in nanomaterials has brought great opportunities to cancer theranostics, which aims to combine diagnostics and therapy for cancer treatment and thereby improve the healthcare of patients. In this review we focus on the recent progress of several cancer theranostic strategies using mesoporous silica nanoparticles and carbon-based nanomaterials. Silicon and carbon are both group IV elements; they have been the most abundant and significant non-metallic substances in human life. Their intrinsic physical/chemical properties are of critical importance in the fabrication of multifunctional drug delivery systems. Responsive nanocarriers constructed using these nanomaterials have been promising in cancer-specific theranostics during the past decade. In all cases, either a controlled texture or the chemical functionalization is coupled with adaptive properties, such as pH-, light-, redox- and magnetic field- triggered responses. Several studies in cells and mice models have implied their underlying therapeutic efficacy; however, detailed and long-term in vivo clinical evaluations are certainly required to make these bench-made materials compatible in real bedside circumstances.
机译:纳米材料的快速发展为癌症治疗提供了很大的机会,旨在将诊断和治疗结合癌症治疗,从而改善患者的医疗保健。在本次综述中,我们专注于使用介孔二氧化硅纳米粒子和碳基纳米材料的几种癌症治疗策略的最近进展。硅和碳是IV组元素;它们是人类生活中最丰富和最重要的非金属物质。它们的内在物理/化学性质在制备多功能药物递送系统方面具有至关重要的重要性。使用这些纳米材料构建的响应性纳米载体在过去十年中一直在癌症特异性治疗方法。在所有情况下,受控质地或化学官能化与自适应性质相结合,例如pH-,光,氧化还原和磁场触发的反应。细胞和小鼠模型的几项研究暗示其潜在的治疗效果;然而,在体内临床评估中的详细和长期仍然需要在真实床边的情况下使这些替补材料兼容。

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