4.7 Article

Synergistic effect of endocellular calcium ion release and nanotopograpy of one-dimensional hydroxyapatite nanomaterials for accelerating neural stem cell differentiation

期刊

COMPOSITES PART B-ENGINEERING
卷 219, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compositesb.2021.108944

关键词

Nanomaterials; Hydroxyapatite; Neural stem cell; Differentiation

资金

  1. National Key Research and Development Program of China [2017YFB0405400]
  2. Science and Technology Project of Jilin Provincial Department of Science and Technology [20180201029YY]
  3. Science Fund for Distinguished Young Scholars of Shandong Province [ZR2019JQ16]
  4. Interdisciplinary Science Innovation Group Project of Shandong University [2020QNQT001]
  5. Collaborative Innovation Center of Technology and Equipment for Biological Diagnosis and Therapy in Universities of Shandong
  6. Construction Engineering Special Fund of Taishan Scholars of Shandong Province [ts20190975]

向作者/读者索取更多资源

Rapid differentiation of neural stem cells can be achieved through the endocytosis of one-dimensional HAp nanomaterials, showing great potential for therapy of neurodegenerative diseases.
Neural stem cells (NSCs) based nerve repair is the most promising approach for neurodegenerative disease therapy. However, the long-time requirement for NSCs differentiation into mature neurons challenges the clinical applications of NSCs because of the missing of the best opportunity for nerve repair. In this work, we synthesized four kinds of one-dimensional (1D) hydroxyapatite (HAp) nanomaterials with different morphologies of short nanorod, long nanorod, short nanowire, and long nanowire. And we found that rapid differentiation of NSCs could be realized just by the endocytosis of 1D HAp nanomaterials with different lengths. Both the endocellular calcium ion (Ca2+) release of HAp nanosturctures suffered a low pH in endosomes and their nanotopography can regulate the neural differentiation of NSCs, and their synergistic effect is the main reason for the acceleration of NSCs differentiation. The safe, rapid and low-cost approach for promoting NSCs differentiation supposed in this work will have great potential in clinical applications for therapy of neurodegenerative diseases.

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