Regulation of cell behavior and function is crucial to understand biological phenomena and overcome its functional disorder. Cell behavior includes cellular morphogenesis, proliferation, migration, and differentiation, etc. Because these cellular processes contribute to the underlying causes of many diseases, many researchers have investigated cellular responses by biochemical, physical and mechanical factors. Traditionally, chemicals such as signal transfer molecules have been used to induce various changes in intracellular level. Recently, many researchers have been trying to use physical stimulation or develop material-based system, which have nanoscale structures or features induce cellular changes by cell-matrix interactions. These sys...
[[abstract]]Superparamagnetic iron oxide (SPIO) nanoparticles have been widely used for stem cell la...
Publicado em "Journal of Tissue Engineering and Regenerative Medicine", vol. 7, supp. 1 (2013)Stem c...
International audienceIron oxide nanoparticles have the capability to cross Blood Brain Barrier (BBB...
Despite the many potential therapeutic applications of iron oxide nanoparticle such as its use as an...
Xiuying Li,1,* Zhenhong Wei,1,* Huiying Lv,1 Liya Wu,1 Yingnan Cui,1 Hua Yao,1 Jing Li,1 Hao Zhang,2...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Recent breakthroughs in employing magnetic iron oxide nanoparticles (IONPs) to improve gene transmis...
Recent breakthroughs in employing magnetic iron oxide nanoparticles (IONPs) to improve gene transmis...
Cell migration plays an important role in numerous normal and pathological processes. The physical m...
Iron oxide nanoparticle internalization exerts detrimental effects on cell physiology for a variety ...
Stem cell therapy in heart disease is challenged by mis-injection, poor survival, and low cell reten...
Iron oxide nanoparticle internalization exerts detrimental effects on cell physiology for a variety ...
In recent years, many promising nanotechnological approaches to biomedical research have been develo...
Cell monitoring and cell localization can be potentially achieved by the internalization of magneti...
Stem cells, either neural [NSCs] or mesenchymal [MSCs], possess tremendous untapped potential for ce...
[[abstract]]Superparamagnetic iron oxide (SPIO) nanoparticles have been widely used for stem cell la...
Publicado em "Journal of Tissue Engineering and Regenerative Medicine", vol. 7, supp. 1 (2013)Stem c...
International audienceIron oxide nanoparticles have the capability to cross Blood Brain Barrier (BBB...
Despite the many potential therapeutic applications of iron oxide nanoparticle such as its use as an...
Xiuying Li,1,* Zhenhong Wei,1,* Huiying Lv,1 Liya Wu,1 Yingnan Cui,1 Hua Yao,1 Jing Li,1 Hao Zhang,2...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Recent breakthroughs in employing magnetic iron oxide nanoparticles (IONPs) to improve gene transmis...
Recent breakthroughs in employing magnetic iron oxide nanoparticles (IONPs) to improve gene transmis...
Cell migration plays an important role in numerous normal and pathological processes. The physical m...
Iron oxide nanoparticle internalization exerts detrimental effects on cell physiology for a variety ...
Stem cell therapy in heart disease is challenged by mis-injection, poor survival, and low cell reten...
Iron oxide nanoparticle internalization exerts detrimental effects on cell physiology for a variety ...
In recent years, many promising nanotechnological approaches to biomedical research have been develo...
Cell monitoring and cell localization can be potentially achieved by the internalization of magneti...
Stem cells, either neural [NSCs] or mesenchymal [MSCs], possess tremendous untapped potential for ce...
[[abstract]]Superparamagnetic iron oxide (SPIO) nanoparticles have been widely used for stem cell la...
Publicado em "Journal of Tissue Engineering and Regenerative Medicine", vol. 7, supp. 1 (2013)Stem c...
International audienceIron oxide nanoparticles have the capability to cross Blood Brain Barrier (BBB...