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细胞内化诱导多孔硅纳米颗粒聚集用于超声成像和蛋白质介导的干细胞保护。

Cellular Internalization-Induced Aggregation of Porous Silicon Nanoparticles for Ultrasound Imaging and Protein-Mediated Protection of Stem Cells.

机构信息

Department of Stomatology, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, 200072, China.

The Key Laboratory of Cardiovascular Remodeling and Function Research of Chinese Ministry of Education, Department of Cardiology, Qilu Hospital of Shandong University, Jinan, Shandong, 250012, China.

出版信息

Small. 2019 Jan;15(1):e1804332. doi: 10.1002/smll.201804332. Epub 2018 Nov 28.

Abstract

Nanotechnology employs multifunctional engineered materials in the nanoscale range that provides many opportunities for translational stem cell research and therapy. Here, a cell-penetrating peptide (virus-1 transactivator of transcription)-conjugated, porous silicon nanoparticle (TPSi NP) loaded with the Wnt3a protein to increase both the cell survival rate and the delivery precision of stem cell transplantation via a combinational theranostic strategy is presented. The TPSi NP with a pore size of 10.7 nm and inorganic framework enables high-efficiency loading of Wnt3a, prolongs Wnt3a release, and increases antioxidative stress activity in the labeled mesenchymal stem cells (MSCs), which are highly beneficial properties for cell protection in stem cell therapy for myocardial infarction. It is confirmed that the intracellular aggregation of TPSi NPs can highly amplify the acoustic scattering of the labeled MSCs, resulting in a 2.3-fold increase in the ultrasound (US) signal compared with that of unlabeled MSCs. The translational potential of the designed nanoagent for real-time US imaging-guided stem cell transplantation is confirmed via intramyocardial injection of labeled MSCs in a nude mouse model. It is proposed that the intracellular aggregation of protein drug-loaded TPSi NPs could be a simple but robust strategy for improving the therapeutic effect of stem cell therapy.

摘要

纳米技术在纳米范围内使用多功能工程材料,为转化干细胞研究和治疗提供了许多机会。在这里,提出了一种细胞穿透肽(病毒 1 转录激活物)缀合的、负载 Wnt3a 蛋白的多孔硅纳米颗粒(TPSi NP),通过联合治疗策略提高干细胞移植的细胞存活率和递送精度。具有 10.7nm 孔径和无机骨架的 TPSi NP 能够高效负载 Wnt3a,延长 Wnt3a 的释放,并增加标记间充质干细胞(MSCs)中的抗氧化应激活性,这对于心肌梗死的干细胞治疗中的细胞保护是非常有益的特性。证实 TPSi NPs 的细胞内聚集可以高度放大标记 MSC 的声散射,与未标记的 MSC 相比,超声(US)信号增加了 2.3 倍。通过在裸鼠模型中心肌内注射标记的 MSC 证实了设计的纳米剂用于实时 US 成像引导干细胞移植的转化潜力。提出负载蛋白药物的 TPSi NP 的细胞内聚集可能是提高干细胞治疗疗效的一种简单但强大的策略。

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