4.8 Article

The shape effect of magnetic mesoporous silica nanoparticles on endocytosis, biocompatibility and biodistribution

期刊

ACTA BIOMATERIALIA
卷 49, 期 -, 页码 531-540

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.actbio.2016.11.007

关键词

Magnetic mesoporous silica nanoparticles; Shape; Endocytosis; Tumor accumulation; Biodistribution; Biocompatibility

资金

  1. National Natural Science Foundation of China [81201804, 81371681, 81601609]
  2. National Research Foundation for the Doctoral Program of Higher Education of China [20120061120079]
  3. Science and Technology Support Program of Jilin province [201205006]
  4. Key Research Program of the Chinese Academy of Sciences [KFZD-SW-204]
  5. Natural Science Foundation of Jiangsu Province - China [BE2015601, ZXY201434]
  6. Opening Project of State Key Laboratory of Supramolecular Structure and Materials of Jilin University [SKLSSM 201504]

向作者/读者索取更多资源

Although the aspect ratio (AR) play a crucial role in determining biological effects of homogeneous nano materials, studies available concerning how the shape contributes to biological effect of heterogeneous nanomaterials is limited. To systematically clarify the shape influence on the endocytosis, biocompatibility and biodistribution of magnetic mesoporous silica nanoparticles (M-MSNPs), three FITC-labeled M-MSNPs with different aspect ratio (AR = 1, 2, and 4) were specifically designed and constructed through altering the ratios of CTAB/TEOS in a modified so-gel method. We have demonstrated that long-rod M-MSNP2 possessed higher intracellular internalization amount than the short-rod M-MSNP1 and the sphere-like M-MSNPO in both cancer cells and normal cells due to the difference in the endocytosis pathways. However, there are no significant shape effects on biocompatibility including cytotoxicity and hemolytic rate. Moreover, biodistribution in HepG2 tumor-bearing mice showed that M-MSNPs administrated intravenously were mainly presented in reticuloendothelial system (RES) organs including liver, spleen and kidney. In particular, sphere-like M-MSNPO were easily trapped in the liver, while long-rod M-MSP2 exhibited more retention in the spleen. It is worth noting that rod-like M-MSNPs are preferentially accumulated in tumor sites than sphere-like M-MSNPs, indicating an improved drug delivery efficacy in cancer therapy. Our findings may provide useful data for deeply understanding the interaction between the different shapes and biological behavior of M-MSNPs, which is expected to give rise to a new generation of heterogeneous M-MSNPs with significantly enhanced efficacy and safety for the cancer theranostics. Statement of Significance In this work, we systematically clarified the shape influence on the endocytosis, biocompatibility and biodistribution of homogeneous nanomaterials. We have demonstrated that rod-like magnetic mesoporous silica nanoparticles (M-MSNPs) were capable of higher intracellular internalization and tumor accumulation than sphere-like M-MSNPs, which was expected to give rise to a new generation of heterogeneous M-MSNPs with significantly enhanced efficacy and safety for the cancer theranostics. (C) 2016 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.8
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据