-
Je něco špatně v tomto záznamu ?
Enhanced antibacterial and anticancer properties of Se-NPs decorated TiO2 nanotube film
O. Bilek, Z. Fohlerova, J. Hubalek,
Jazyk angličtina Země Spojené státy americké
Typ dokumentu časopisecké články, práce podpořená grantem
NLK
Directory of Open Access Journals
od 2006
Free Medical Journals
od 2006
Public Library of Science (PLoS)
od 2006
PubMed Central
od 2006
Europe PubMed Central
od 2006
ProQuest Central
od 2006-12-01
Open Access Digital Library
od 2006-01-01
Open Access Digital Library
od 2006-01-01
Open Access Digital Library
od 2006-10-01
Medline Complete (EBSCOhost)
od 2008-01-01
Nursing & Allied Health Database (ProQuest)
od 2006-12-01
Health & Medicine (ProQuest)
od 2006-12-01
Public Health Database (ProQuest)
od 2006-12-01
ROAD: Directory of Open Access Scholarly Resources
od 2006
- MeSH
- antibakteriální látky chemie farmakologie MeSH
- antitumorózní látky chemie farmakologie MeSH
- buňky NIH 3T3 MeSH
- Escherichia coli účinky léků MeSH
- infekce vyvolané Escherichia coli farmakoterapie MeSH
- lidé MeSH
- myši MeSH
- nádorové buněčné linie MeSH
- nádory farmakoterapie MeSH
- nanočástice * chemie ultrastruktura MeSH
- nanotrubičky * chemie ultrastruktura MeSH
- osteoblasty účinky léků MeSH
- selen chemie farmakologie MeSH
- titan chemie farmakologie MeSH
- zvířata MeSH
- Check Tag
- lidé MeSH
- myši MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
Selenium nanoparticle modified surfaces attract increasing attention in the field of tissue engineering. Selenium exhibits strong anticancer, antibacterial and anti-inflammatory properties and it maintains relatively low off-target cytotoxicity. In our paper, we present the fabrication, characterization and cytocompatibility of titanium oxide (TiO2) nanotube surface decorated with various surface densities of chemically synthesized selenium nanoparticles. To evaluate antibacterial and anti-cancer properties of such nanostructured surface, gram negative bacteria E. coli, cancerous osteoblast like MG-63 cells and non-cancerous fibroblast NIH/3T3 were cultured on designed surfaces. Our results suggested that selenium nanoparticles improved antibacterial properties of titanium dioxide nanotubes and confirmed the anticancer activity towards MG-63 cells, with increasing surface density of nanoparticles. Further, the selenium decorated TiO2 nanotubes suggested deteriorating effect on the cell adhesion and viability of non-cancerous NIH/3T3 cells. Thus, we demonstrated that selenium nanoparticles decorated TiO2 nanotubes synthesized using sodium selenite and glutathione can be used to control bacterial infections and prevent the growth of cancerous cells. However, the higher surface density of nanoparticles adsorbed on the surface was found to be cytotoxic for non-cancerous NIH/3T3 cells and thus it might complicate the integration of biomaterial into the host tissue. Therefore, an optimal surface density of selenium nanoparticles must be found to effectively kill bacteria and cancer cells, while remaining favorable for normal cells.
Citace poskytuje Crossref.org
- 000
- 00000naa a2200000 a 4500
- 001
- bmc19044928
- 003
- CZ-PrNML
- 005
- 20200113081502.0
- 007
- ta
- 008
- 200109s2019 xxu f 000 0|eng||
- 009
- AR
- 024 7_
- $a 10.1371/journal.pone.0214066 $2 doi
- 035 __
- $a (PubMed)30901347
- 040 __
- $a ABA008 $b cze $d ABA008 $e AACR2
- 041 0_
- $a eng
- 044 __
- $a xxu
- 100 1_
- $a Bilek, Ondrej $u Central European Institute of Technology, Brno University of Technology, Brno, Czech Republic.
- 245 10
- $a Enhanced antibacterial and anticancer properties of Se-NPs decorated TiO2 nanotube film / $c O. Bilek, Z. Fohlerova, J. Hubalek,
- 520 9_
- $a Selenium nanoparticle modified surfaces attract increasing attention in the field of tissue engineering. Selenium exhibits strong anticancer, antibacterial and anti-inflammatory properties and it maintains relatively low off-target cytotoxicity. In our paper, we present the fabrication, characterization and cytocompatibility of titanium oxide (TiO2) nanotube surface decorated with various surface densities of chemically synthesized selenium nanoparticles. To evaluate antibacterial and anti-cancer properties of such nanostructured surface, gram negative bacteria E. coli, cancerous osteoblast like MG-63 cells and non-cancerous fibroblast NIH/3T3 were cultured on designed surfaces. Our results suggested that selenium nanoparticles improved antibacterial properties of titanium dioxide nanotubes and confirmed the anticancer activity towards MG-63 cells, with increasing surface density of nanoparticles. Further, the selenium decorated TiO2 nanotubes suggested deteriorating effect on the cell adhesion and viability of non-cancerous NIH/3T3 cells. Thus, we demonstrated that selenium nanoparticles decorated TiO2 nanotubes synthesized using sodium selenite and glutathione can be used to control bacterial infections and prevent the growth of cancerous cells. However, the higher surface density of nanoparticles adsorbed on the surface was found to be cytotoxic for non-cancerous NIH/3T3 cells and thus it might complicate the integration of biomaterial into the host tissue. Therefore, an optimal surface density of selenium nanoparticles must be found to effectively kill bacteria and cancer cells, while remaining favorable for normal cells.
- 650 _2
- $a zvířata $7 D000818
- 650 _2
- $a antibakteriální látky $x chemie $x farmakologie $7 D000900
- 650 _2
- $a antitumorózní látky $x chemie $x farmakologie $7 D000970
- 650 _2
- $a nádorové buněčné linie $7 D045744
- 650 _2
- $a Escherichia coli $x účinky léků $7 D004926
- 650 _2
- $a infekce vyvolané Escherichia coli $x farmakoterapie $7 D004927
- 650 _2
- $a lidé $7 D006801
- 650 _2
- $a myši $7 D051379
- 650 _2
- $a buňky NIH 3T3 $7 D041681
- 650 12
- $a nanočástice $x chemie $x ultrastruktura $7 D053758
- 650 12
- $a nanotrubičky $x chemie $x ultrastruktura $7 D043942
- 650 _2
- $a nádory $x farmakoterapie $7 D009369
- 650 _2
- $a osteoblasty $x účinky léků $7 D010006
- 650 _2
- $a selen $x chemie $x farmakologie $7 D012643
- 650 _2
- $a titan $x chemie $x farmakologie $7 D014025
- 655 _2
- $a časopisecké články $7 D016428
- 655 _2
- $a práce podpořená grantem $7 D013485
- 700 1_
- $a Fohlerova, Zdenka $u Central European Institute of Technology, Brno University of Technology, Brno, Czech Republic. Department of Microelectronics, Brno University of Technology, Brno, Czech Republic.
- 700 1_
- $a Hubalek, Jaromir $u Central European Institute of Technology, Brno University of Technology, Brno, Czech Republic. Department of Microelectronics, Brno University of Technology, Brno, Czech Republic.
- 773 0_
- $w MED00180950 $t PloS one $x 1932-6203 $g Roč. 14, č. 3 (2019), s. e0214066
- 856 41
- $u https://pubmed.ncbi.nlm.nih.gov/30901347 $y Pubmed
- 910 __
- $a ABA008 $b sig $c sign $y a $z 0
- 990 __
- $a 20200109 $b ABA008
- 991 __
- $a 20200113081834 $b ABA008
- 999 __
- $a ok $b bmc $g 1483197 $s 1083601
- BAS __
- $a 3
- BAS __
- $a PreBMC
- BMC __
- $a 2019 $b 14 $c 3 $d e0214066 $e 20190322 $i 1932-6203 $m PLoS One $n PLoS One $x MED00180950
- LZP __
- $a Pubmed-20200109