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Mesenchymal stem cell therapy assisted by nanotechnology: a possible combinational treatment for brain tumor and central nerve regeneration

Authors
Kwon, SongYoo, Kwai HanSym, Sun JinKhang, Dongwoo
Issue Date
Jul-2019
Publisher
DOVE MEDICAL PRESS LTD
Keywords
glioblastoma multiforme; tumor inhibition; mesenchymal stem cell; nanocarrier; nerve regeneration; anti-inflammation
Citation
INTERNATIONAL JOURNAL OF NANOMEDICINE, v.14, pp.5925 - 5942
Journal Title
INTERNATIONAL JOURNAL OF NANOMEDICINE
Volume
14
Start Page
5925
End Page
5942
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/2894
DOI
10.2147/IJN.S217923
ISSN
1178-2013
Abstract
Mesenchymal stem cells (MSCs) intrinsically possess unique features that not only help in their migration towards the tumor-rich environment but they also secrete versatile types of secretomes to induce nerve regeneration and analgesic effects at inflammatory sites. As a matter of course, engineering MSCs to enhance their intrinsic abilities is growing in interest in the oncology and regenerative field. However, the concern of possible tumorigenesis of genetically modified MSCs prompted the development of non-viral transfected MSCs armed with nanotechnology for more effective cancer and regenerative treatment. Despite the fact that a large number of successful studies have expanded our current knowledge in tumor-specific targeting, targeting damaged brain site remains enigmatic due to the presence of a blood-brain barrier (BBB). A BBB is a barrier that separates blood from brain, but MSCs with intrinsic features of transmigration across the BBB can efficiently deliver desired drugs to target sites. Importantly, MSCs, when mediated by nanoparticles, can further enhance tumor tropism and can regenerate the damaged neurons in the central nervous system through the promotion of axon growth. This review highlights the homing and nerve regenerative abilities of MSCs in order to provide a better understanding of potential cell therapeutic applications of non-genetically engineered MSCs with the aid of nanotechnology.
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