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pH-responsive theranostic nanocomposites as synergistically enhancing positive and negative magnetic resonance imaging contrast agents

机译:pH-响应的托管纳米复合材料作为协同增强正极和负磁共振成像造影剂

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摘要

Abstract Background The rational design of theranostic nanoprobe to present responsive effect of therapeutic potency and enhanced diagnostic imaging in tumor milieu plays a vital role for efficient personalized cancer therapy and other biomedical applications. We aimed to afford a potential strategy to pose both T1- and T2-weighted MRI functions, and thereby realizing imaging guided drug delivery and targeted therapy. Results Theranostic nanocomposites Mn-porphyrin&Fe3O4@SiO2@PAA-cRGD were fabricated and characterized, and the nanocomposites were effectively used in T1- and T2-weighted MRI and pH-responsive drug release. Fluorescent imaging also showed that the nanocomposites specifically accumulated in lung cancer cells by a receptor-mediated process, and were nontoxic to normal cells. The r2/r1 ratio was 20.6 in neutral pH 7.4, which decreased to 7.7 in acidic pH 5.0, suggesting the NCs could act as an ideal T1/T2 dual-mode contrast agent at acidic environments of tumor. For in vivo MRI, T1 and T2 relaxation was significantly accelerated to 55 and 37%, respectively, in the tumor after i.v. injection of nanocomposites. Conclusion The synthesized nanocomposites exhibited highly sensitive MRI contrast function no matter in solution, cells or in vivo by synergistically enhancing positive and negative magnetic resonance imaging signals. The nanocomposites showed great potential for integrating imaging diagnosis and drug controlled release into one composition and providing real-time imaging with greatly enhanced diagnostic accuracy during targeted therapy.
机译:摘要背景技术纳米骨瘤的理性设计对肿瘤内部肿瘤内部治疗效力和增强诊断成像的响应作用对高效个性化癌症治疗和其他生物医学应用起着至关重要的作用。我们旨在提供潜在的策略来构成T1和T2加权的MRI功能,从而实现成像引导的药物递送和靶向治疗。结果制备纳米卟啉和Fe3O4,制备纳米卟啉和Fe3O4,并表征,在T1和T2加权MRI和PH响应药物释放中有效地使用纳米复合材料。荧光成像还表明,通过受体介导的方法在肺癌细胞中特别积聚的纳米复合材料,并与正常细胞无毒。中性pH 7.4中的R 2 / R 1比例为20.6,其在酸性pH 5.0中降低至7.7,表明NCS可以作为肿瘤酸性环境的理想T1 / T2双模造影剂。对于体内MRI,在I.V之后,T1和T2松弛分别在肿瘤中分别显着加速至55和37%。注射纳米复合材料。结论合成的纳米复合材料在溶液,细胞或体内在溶液,细胞或体内表现出高度敏感的MRI对比度,通过协同增强正负磁共振成像信号。纳米复合材料表明,将成像诊断和药物控制释放集成到一种组合物中并在有针对性疗法期间提供实时成像的实时成像。

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