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生物相溶性多孔炭-香豆素复合材料的制备及其细胞成像和靶向给药(英文)
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作者 s.yallappa Shoriya Aruni Abdul Manaf Gurumurthy Hegde 《新型炭材料》 SCIE EI CAS CSCD 北大核心 2018年第2期162-172,共11页
将棕榈叶在惰性气氛中经一步热解过程制备出多孔炭(NPCs),并结合香豆素-6(C-6)形成NPCs-C-6复合荧光染料来进行癌细胞成像及靶向给药。通过XRD和Raman分析可知,NPCs具有高的含碳量。傅里叶红外分析表明棕榈叶中含有纤维素、半纤维素和... 将棕榈叶在惰性气氛中经一步热解过程制备出多孔炭(NPCs),并结合香豆素-6(C-6)形成NPCs-C-6复合荧光染料来进行癌细胞成像及靶向给药。通过XRD和Raman分析可知,NPCs具有高的含碳量。傅里叶红外分析表明棕榈叶中含有纤维素、半纤维素和木质素,这有利于NPCs的形成,以及香豆素-6为导航分子的细胞成像和靶向给药。采用SEM和TEM观察NPCs结合前后的结构形貌,XPS表征元素组成。采用Zeta电位为初始指标来确定颗粒分散质量,以适合生物医学应用。NPCs-C-6分析细胞毒性和成像试验表明,对正常细胞系(MDCK:ATCCCCL-34^(TM))有高的生物相溶性,对人体癌细胞系(A-375∶ATCCCRL-1619TM与N2A∶ATCCCCL-131^(TM))有高的毒性。因此,这些研究结果有望为生物基功能NPCs作治疗载体的研究进展提供新思路。 展开更多
关键词 多孔炭 香豆素-6 细胞成像 靶向给药
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Phytochemically Functionalized Cu and Ag Nanoparticles Embedded in MWCNTs for Enhanced Antimicrobial and Anticancer Properties 被引量:2
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作者 s.yallappa J.Manjanna +5 位作者 B.L.Dhananjaya U.Vishwanatha B.Ravishankar H.Gururaj P.Niranjana B.S.Hungund 《Nano-Micro Letters》 SCIE EI CAS 2016年第2期120-130,共11页
Nanomedicine is an emerging field concerned with the use of precision engineered nanomaterials, which leads to the development of novel remedial and diagnostic modalities for human use. In this study, Cu(NO_3)_2 and A... Nanomedicine is an emerging field concerned with the use of precision engineered nanomaterials, which leads to the development of novel remedial and diagnostic modalities for human use. In this study, Cu(NO_3)_2 and Ag NO_3 precursors were reduced to copper nanoparticles(Cu NPs) and silver nanoparticles(Ag NPs) using Terminalia arjuna bark extracts under microwave irradiation in the presence of well-dispersed multi-walled carbon nanotubes(MWCNTs) in aqueous medium. The formation of Cu NPs or Ag NPs and their functionalization with MWCNTs via bioactive molecules of plant extract were evidenced from UV–Vis spectra, XRD, FTIR, FESEM, EDX, and TEM images. The phytochemically functionalized Cu-MWCNTs and Ag-MWCNTs nanomaterials showed enhanced biocide activity, and the inhibitory activity for bacteria was higher than that of fungus. Furthermore, these biohybrid nanomaterials are non-toxic to normal epithelial cells(Vero), whereas they are highly toxic for tested human cancer cells of MDA-MB-231, He La, Si Ha, and Hep-G2. The cell viability was found to decrease with the increasing dose from 10 to 50 lg m L^(-1), as well as incubation time from 24 to 72 h. For instance, the cell viability was found to be *91 % for normal Vero cells and *76 % for cancer cells for lower dose of 10 lg m L^(-1). 展开更多
关键词 Cu-MWCNTs Ag-MWCNTs TERMINALIA arjuna bark extract ANTIMICROBIAL ACTIVITY ANTICANCER ACTIVITY
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