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Author
dc.contributor.author
Tahereh Esmaeilpour
Author
dc.contributor.author
Esmaeil Fereydouni
Author
dc.contributor.author
Farzaneh Dehghani
Author
dc.contributor.author
Istvan Bokkon
Author
dc.contributor.author
Mohammad-Reza Panjehshahin
Author
dc.contributor.author
Noemi Csaszar-Nagy
Author
dc.contributor.author
Mehdi Ranjbar
Author
dc.contributor.author
Vahid Salari
Availability Date
dc.date.accessioned
2023-04-14T07:34:51Z
Availability Date
dc.date.available
2023-04-14T07:34:51Z
Release
dc.date.issued
2020
Issn
dc.identifier.issn
2045-2322
uri
dc.identifier.uri
http://hdl.handle.net/20.500.12944/20378
Abstract
dc.description.abstract
Neurons like other living cells may have ultraweak photon emission (UPE) during neuronal activity. This study is aimed to evaluate UPE from neural stem cells (NSC) during their serial passaging and differentiation. We also investigate whether the addition of silver nanoparticles (AgNPs) or enhancement of UPE (by AgNPs or mirror) affect the differentiation of NSC. In our method, neural stem and progenitor cells of subventricular zone (SVZ) are isolated and expanded using the neurosphere assay. The obtained dissociated cells allocated and cultivated into three groups: groups: I: cell (control), II: cell?+?mirror, and III: cell?+?AgNPs. After seven days, the primary neurospheres were counted and their mean number was obtained. Serial passages continuous up to sixth passages in the control group. Differentiation capacity of the resulting neurospheres were evaluated in vitro by immunocytochemistry techniques. Measurement of UPE was carried out by photomultiplier tube (PMT) in the following steps: at the end of primary culture, six serial cell passages of the control group, before and after of the differentiation for 5?minutes. The results show that neither mirror nor AgNPs affect on the neurosphere number. The UPE of the NSC in the sixth subculturing passage was significantly higher than in the primary passage (P?<?0.05). AgNPs significantly increased the UPE of the NSC compared to the control group before and after the differentiation (P?<?0.05). Also, the treatment with AgNPs increased 44% neuronal differentiation of the harvested NSCs. UPE of NSC after the differentiation was significantly lower than that before the differentiation in each groups, which is in appropriate to the cell numbers (P?<?0.0001). The mirror did not significantly increase UPE, neither before nor after the differentiation of NSC. As a conclusion, NSC have UPE-properties and the intensity is increased by serial passaging that are significant in the sixth passage. The AgNPs increases the UPE intensity of NSC that pushes more differentiation of NSC to the neurons. The mirror was not effective in enhancement of UPE. As a result, UPE measurement may be suitable for assessing and studying the effects of nanoparticles in living cells and neurons.
Language
dc.language
en
Keywords
dc.subject
neural stem cell
Keywords
dc.subject
photon emission
Keywords
dc.subject
neuron
Keywords
dc.subject
NSC
Title
dc.title
An Experimental Investigation of Ultraweak Photon Emission from Adult Murine Neural Stem Cells
Type
dc.type
folyóiratcikk
Date Change
dc.date.updated
2023-04-06T12:49:16Z
Version
dc.description.version
kiadói

dc.rights.accessRights
nyílt hozzáférésű

dc.description.notes
Cited By :1 Export Date: 19 February 2021 Correspondence Address: Esmaeilpour, T.; Department of Anatomical Sciences, Iran; email: esmaeilt@sums.ac.ir
Doi ID
dc.identifier.doi
10.1038/s41598-019-57352-4
Discipline Discipline +
dc.subject.discipline
Természettudományok

dc.subject.sciencebranch
Biológiai tudományok
MTMT ID
dc.identifier.mtmt
31011972

dc.identifier.journalTitle
Scientific Reports

dc.identifier.journalVolume
10
Scope
dc.format.page
1-13
Wos ID
dc.identifier.wos
000551461800014
ID Scopus
dc.identifier.scopus
85077940784

dc.identifier.journalAbbreviatedTitle
SCI REP
Release Date
dc.description.issuedate
2020
Author institution
dc.contributor.department
Rendészettudományi Doktori Iskola
Author institution
dc.contributor.department
Közszervezési és Infotechnológiai Tanszék
Author institution
dc.contributor.department
Károli Gáspár Református Egyetem
Author institution
dc.contributor.department
Gyógyszerészeti Intézet
Author institution
dc.contributor.department
Közigazgatás-tudományi Doktori Iskola


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An Experimental Investigation of Ultraweak Photon Emission from Adult Murine Neural Stem Cells
 
 

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