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利用AutoDock模拟富勒烯与漆酶结合模型的研究 被引量:1
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作者 汪伟轩 白一彤 +1 位作者 陈凌云 杨胜韬 《广州化工》 CAS 2016年第7期50-51,69,共3页
富勒烯是典型的sp2碳纳米材料,研究其生物效应有重要的科学意义。本文以白腐菌分泌酶系中重要的漆酶为模型,采用Auto Dock计算模拟了富勒烯C60与漆酶的结合模型,并计算了结合能。计算模拟的结果显示,C60在漆酶上有9个可能的结合位点,其... 富勒烯是典型的sp2碳纳米材料,研究其生物效应有重要的科学意义。本文以白腐菌分泌酶系中重要的漆酶为模型,采用Auto Dock计算模拟了富勒烯C60与漆酶的结合模型,并计算了结合能。计算模拟的结果显示,C60在漆酶上有9个可能的结合位点,其中最优位点的结合能为-10.4 kcal/mol。这一结果表明富勒烯能与酶结合,引起酶结构和活性的变化。本文还对富勒烯与酶结合的潜在环境生物效应进行了探讨。 展开更多
关键词 AUTO DOCK 富勒烯 漆酶 构象 纳米生物效应
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Magnetic iron oxide nanoparticles accelerate osteogenic differentiation of mesenchymal stem cells via modulation of long noncoding RNA INZEB2 被引量:12
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作者 Qiwei Wang Bo Chen +4 位作者 Fang Ma Shikang Lin Meng Cao Yan Li Ning Gu 《Nano Research》 SCIE EI CAS CSCD 2017年第2期626-642,共17页
Nanomaterials are increasingly used for biomedical applications; thus, it is important to understand their biological effects. Previous studies suggested that magnetic iron oxide nanoparticles (IONPs) have tissue-re... Nanomaterials are increasingly used for biomedical applications; thus, it is important to understand their biological effects. Previous studies suggested that magnetic iron oxide nanoparticles (IONPs) have tissue-repairing effects. In the present study, we explored cellular effects of IONPs in mesenchymal stem cells (MSCs) and identified the underlying molecular mechanisms. The results showed that our as-prepared IONPs were structurally stable in MSCs and promoted osteogenic differentiation of MSCs as whole particles. Moreover, at the molecular level, we compared the gene expression of MSCs with or without IONP exposure and showed that IONPs upregulated long noncoding RNA INZEB2, which is indispensable for maintaining osteogenesis by MSCs. Furthermore, overexpression of INZEB2 downregulated ZEB2, a factor necessary to repress BMP/Smad- dependent osteogenic transcription. We also demonstrated that the essential role of INZEB2 in osteogenic differentiation was ZEB2-dependent. In summary, we elucidated the molecular basis of IONPs' effects on MSCs; these findings may serve as a meaningful theoretical foundation for applications of stem cells to regenerative medicine. 展开更多
关键词 iron oxide nanoparticle mesenchymal stem cell osteogenic differentiation long noncoding RNA magnetogenetics nano-magnetic bioeffects
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