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pH-Responsive size-shrinkable mesoporous silica-based nanocarriers for improving tumor penetration and therapeutic efficacy

机译:pH-Responsive size-shrinkable介孔为人们改善肿瘤渗透和治疗效果

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摘要

Poor tumor penetration is a major obstacle to nanomedicine for achieving effective anticancer therapy. Tumor microenvironment-induced nanomedicine size shrinkage is a promising strategy to overcome the drug penetration barrier across the dense tumor matrix. Herein, we design a size-shrinkable nanocarrier that uses acid as a means of triggering a change in particle size for co-achievement of efficient tumor accumulation followed by deep tumor penetration and rapid clearance from the body. This nanocarrier is constructed from a pH-sensitive lipid layer shell and an ultrasmall amino-functionalized mesoporous silica nanoparticle core capable of loading drugs. After intravenous injection into mice bearing the 4T1 tumor, the nanocarrier with an initial hydrodynamic size of about 33 nm could effectively accumulate at the tumor site through the enhanced permeability and retention effect. Subsequently, in the acidic tumor microenvironment, the lipid layer comprising 9 alkyl-spiropyran (SP-C9) undergoes a volume shrinkage due to the conversion of hydrophobic SP-C9 to amphiphilic 9 alkyl-merocyanine (MC-C9), thus leading to a significant decrease in the entire particle size (hydrodynamic size similar to 17 nm) for enhanced intratumoral penetration. Moreover, we find that this size-shrinkable nanocarrier could be rapidly excreted out of the body based on the ICP analysis, significantly reducing biosafety issues. Benefiting from the effective tumor accumulation and penetration of the nanocarrier, the released doxorubicin shows potent antitumor efficacy. This demonstrates the high potential of the designed nanocarrier in solid tumor treatment.
机译:可怜的肿瘤渗透是一个主要的障碍纳米实现有效的抗癌治疗。纳米尺寸的收缩是一种很有前途的策略来克服药物渗透屏障整个肿瘤密度矩阵。使用酸作为一个size-shrinkable nanocarrier引发的粒度变化的手段co-achievement积累有效的肿瘤其次是深部肿瘤和快速渗透排除体外。由一个pH-sensitive脂质层壳和一个超amino-functionalized介孔二氧化硅纳米粒子加载的核心能力药物。轴承4 t1肿瘤,nanocarrier的最初的水动力大小约33海里有效地聚集在肿瘤部位增强的渗透率和保留效果。随后,在酸性的肿瘤微环境,脂质层组成的9alkyl-spiropyran (SP-C9)经历一个卷收缩由于疏水性的转换SP-C9两亲性9 alkyl-merocyanine (MC-C9),因此导致显著降低整个粒度(水动力大小相似为增强瘤内渗透17海里)。此外,我们发现这个size-shrinkablenanocarrier可以迅速排除体外的身体ICP分析的基础上,显著减少生物安全问题。有效的肿瘤的积累和渗透nanocarrier,释放阿霉素强有力的抗肿瘤功效。高潜力的设计nanocarrier实体瘤的治疗。

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