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Nanomedical strategy to prolong survival period heighten cure rate and lower systemic toxicity of S180 mice treated with MTX/MIT

机译:延长MTX / MIT治疗的S180小鼠的生存期提高治愈率和降低全身毒性的纳米医学策略

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摘要

In spite of the usual combination form of methotrexate (MTX)/mitoxantrone (MIT) and various complex combination regimens of MTX/MIT with other anticancer drugs, the survival period, cure rate, and systemic toxicity still need to be improved. For this purpose, a nanostructured amino group-modified mesoporous silica nanoparticles (MSNN)−MTX/MIT was designed. In the preparation, the surface of mesoporous silica nanoparticles (MSNs) was modified with amino groups to form MSNN. The covalent modification of the amino groups on the surface of MSNN with MTX resulted in MSNN−MTX. The loading of MIT into the surface pores of MSNN−MTX produced nanostructured MSNN−MTX/MIT. Compared with the usual combination form (MTX/MIT), nanostructured MSNN−MTX/MIT increased the survival period greatly, heightened the cure rate to a great extent, and lowered the systemic toxicity of the treated S180 mice, significantly. These superior in vivo properties of nanostructured MSNN−MTX/MIT over the usual combination form (MTX/MIT) were correlated with the former selectively releasing MTX and MIT in tumor tissue and inside cancer cells in vitro. The chemical structure and the nanostructure of MSNN−MTX/MIT were characterized using infrared and differential scanning calorimeter spectra as well as transmission electron microscope images, respectively.
机译:尽管通常采用甲氨蝶呤(MTX)/米托蒽醌(MIT)的组合形式以及MTX / MIT与其他抗癌药的各种复杂组合方案,但仍需要改善生存期,治愈率和全身毒性。为了这个目的,设计了纳米结构的氨基改性的介孔二氧化硅纳米颗粒(MSNN)-MTX / MIT。在制备过程中,介孔二氧化硅纳米颗粒(MSNs)的表面被氨基修饰形成MSNN。用MTX对MSNN表面的氨基进行共价修饰导致MSNN-MTX。 MIT加载到MSNN-MTX的表面孔中产生了纳米结构的MSNN-MTX / MIT。与通常的组合形式(MTX / MIT)相比,纳米结构的MSNN-MTX / MIT大大延长了存活期,大大提高了治愈率,并显着降低了S180小鼠的全身毒性。纳米结构MSNN-MTX / MIT优于常规组合形式(MTX / MIT)的这些优越的体内特性与前者在体外在肿瘤组织和癌细胞内部的选择性释放MTX和MIT有关。 MSNN-MTX / MIT的化学结构和纳米结构分别使用红外和差示扫描量热仪光谱以及透射电子显微镜图像表征。

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