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首页> 外文期刊>Nanoscale >Novel multifunctional nano-hybrid polyhedral oligomeric silsesquioxane-based molecules with high cell permeability: molecular design and application for diagnosis and treatment of tumors
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Novel multifunctional nano-hybrid polyhedral oligomeric silsesquioxane-based molecules with high cell permeability: molecular design and application for diagnosis and treatment of tumors

机译:新型多功能nano-hybrid多面寡聚silsesquioxane-based分子高细胞渗透性:分子设计和应用程序为肿瘤的诊断和治疗

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摘要

Chemotherapy mostly functions as a carrier for direct drug delivery to the tumor, which may induce secondary damage to healthy tissue cells around the tumor. To avoid this side effect, using multifunctional drugs with high cell permeability during chemotherapy is crucial to achieve significant antitumor efficacy. In this study, polyhedral oligomeric silsesquioxane-based multifunctional organic-inorganic hybrid molecules with potential for recognition, imaging, and treatment were designed and successfully synthesized through a facile and efficient one-pot reaction process. The structure and properties of the synthesized multifunctional molecules were characterized by Fourier transform infrared spectroscopy, nuclear magnetic resonance spectroscopy, mass spectrometry, fluorescence spectroscopy, cytotoxicity assay, surface tension testing, cell compatibility testing, hematoxylin and eosin staining, as well as in vivo and in vitro studies. The results demonstrated that these multifunctional molecules can be effectively used for delivering precisely-targeted imaging and therapeutic agents and exhibited considerable cell permeability. The excellent synergy between high permeability and precise targeting results in multifunctional molecules with superior diagnostic performance.
机译:化疗主要是功能的载体可能直接药物输送到肿瘤诱导二次损伤健康组织细胞在肿瘤。使用多功能药物细胞高渗透在化疗期间是至关重要的实现重要的抗肿瘤功效。研究多面体低聚物的silsesquioxane-based多功能有机-无机杂化分子识别、潜力设计和成像和治疗通过一个简单和成功合成高效锅反应过程。和合成多功能的属性分子在傅里叶变换的特征红外光谱,核磁共振光谱、质谱、荧光光谱学、细胞毒性试验、表面张力测试、细胞相容性测试、苏木精伊红染色,以及体内体外研究。这些多功能分子有效地用于交付根据目标的成像和治疗药物并表现出相当大的细胞渗透性。优秀的高渗透性和之间的协同作用在多功能精确定位结果分子诊断性能优越。

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