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Gradients of Al/Al<sub>2</sub>O<sub>3</sub>nanostructures for screening mesenchymal stem cell proliferation and differentiation
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作者 Michael Veith Cécile Dufloux +2 位作者 Soraya Rasi Ghaemi Cenk Aktas nicolas h. voelcker 《Open Journal of Regenerative Medicine》 2013年第3期74-79,共6页
By decomposing a molecular precursor we fabricated a novel surface based on an aluminium/aluminiumoxide composite incorporating nanotopography gradient to address high-throughput and fast analysis method for studying ... By decomposing a molecular precursor we fabricated a novel surface based on an aluminium/aluminiumoxide composite incorporating nanotopography gradient to address high-throughput and fast analysis method for studying stem cell differentiation by nanostructures. Depending on the topography of the nanostructures, mesenchymal stem cells exhibit a diverse proliferation and differentiation behavior. 展开更多
关键词 Gradient NANOWIRES Stem Cell TOPOGRAPHY
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Oligonucleotide delivery by chitosan-functionalized porous silicon nanoparticles 被引量:2
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作者 Morteza hasanzadeh Kafshgari Bahman Delalat +4 位作者 Wing Yin Tong Frances J. harding Martti Kaasalainen Jarno Salonen nicolas h. voelcker 《Nano Research》 SCIE EI CAS CSCD 2015年第6期2033-2046,共14页
Porous silicon nanoparficles (pSiNPs) are a promising nanocarrier system for drug delivery owing to their biocompatibility, biodegradability, and non-inflammatory nature. Here, we investigate the fabrication and cha... Porous silicon nanoparficles (pSiNPs) are a promising nanocarrier system for drug delivery owing to their biocompatibility, biodegradability, and non-inflammatory nature. Here, we investigate the fabrication and characterization of thermally hydrocarbonized pSiNPs (THCpSiNPs) and chitosan-coated THCpSiNPs for therapeutic oligonucleotide delivery. Chitosan coating after oligonucleotide loading significantly improves sustained oligonucleotide release and suppresses burst release effects. Moreover, cellular uptake, endocytosis, and cytotoxicity of oligonucleotide-loaded THCpSiNPs have been evaluated in vitro. Standard cell viability assays demonstrate that cells incubated with the NPs at a concentration of 0.1 mg/mL are 95% viable. In addition, chitosan coating significantly enhances the uptake of oligonucleotide-loaded THCpSiNPs across the cell membrane. Moreover, histopathological analysis of liver, kidney, spleen, and skin tissue collected from mice receiving NPs further demonstrates the biocompatible and non-inflammatory properties of the NPs as a gene delivery vehicle for intravenous and subcutaneous administration in vivo. Taken together, these results suggest that THCpSiNPs provide a versatile platform that could be used as efficient vehicles for the intracellular delivery of oligonucleotides for gene therapy. 展开更多
关键词 NANOPARTICLES porous silicon CHITOSAN gene delivery
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