发光学报
髮光學報
발광학보
Chinese Journal of Luminescence
2015年
11期
1271-1277
,共7页
王倩%刘丽炜%朱泠西%邹鹏%胡思怡%卜承飞
王倩%劉麗煒%硃泠西%鄒鵬%鬍思怡%蔔承飛
왕천%류려위%주령서%추붕%호사이%복승비
金纳米棒%聚乙烯亚胺%非病毒载体%细胞毒性
金納米棒%聚乙烯亞胺%非病毒載體%細胞毒性
금납미봉%취을희아알%비병독재체%세포독성
gold nanorods%polyethylenimine%nonviral vectors%cytotoxicity
以表面修饰巯基十一烷酸的金纳米棒 ( GNRs/MUA)为骨架,将低分子量的聚乙烯亚胺( PEI)连接到GNRs/MUA表面,构建GNRs/MUA/PEI纳米载体. 首先采用MUA对GNRs进行表面修饰,减少由于GNRs表面的十六烷基三甲基溴化铵( CTAB)所造成的生物毒性. 然后采用低分子量 PEI 进一步修饰,同时利用GNRs巨大的比表面积进一步放大 PEI 的携带基因能力,这样既能够降低阳离子聚合物的毒性,又能够提高整个体系的转染效率. 利用透射电子显微镜( TEM)﹑紫外可见吸收光谱( UV-Vis)﹑Zeta电位等对纳米载体进行了表征. 结果显示,MUA与PEI已成功修饰到GNRs表面,并很好地保留了GNRs的光学性质,其表面电位发生正负交替变化. 采用噻唑蓝( MTT )比色法对纳米载体进行细胞毒性研究,结果显示 GNRs/MUA/PEI (1. 8 kDa)非病毒纳米载体,细胞存活率在控制聚合物浓度为300 μg/mL时仍然稳定在75%以上,明显高于商品化的PEI(25 kDa).
以錶麵脩飾巰基十一烷痠的金納米棒 ( GNRs/MUA)為骨架,將低分子量的聚乙烯亞胺( PEI)連接到GNRs/MUA錶麵,構建GNRs/MUA/PEI納米載體. 首先採用MUA對GNRs進行錶麵脩飾,減少由于GNRs錶麵的十六烷基三甲基溴化銨( CTAB)所造成的生物毒性. 然後採用低分子量 PEI 進一步脩飾,同時利用GNRs巨大的比錶麵積進一步放大 PEI 的攜帶基因能力,這樣既能夠降低暘離子聚閤物的毒性,又能夠提高整箇體繫的轉染效率. 利用透射電子顯微鏡( TEM)﹑紫外可見吸收光譜( UV-Vis)﹑Zeta電位等對納米載體進行瞭錶徵. 結果顯示,MUA與PEI已成功脩飾到GNRs錶麵,併很好地保留瞭GNRs的光學性質,其錶麵電位髮生正負交替變化. 採用噻唑藍( MTT )比色法對納米載體進行細胞毒性研究,結果顯示 GNRs/MUA/PEI (1. 8 kDa)非病毒納米載體,細胞存活率在控製聚閤物濃度為300 μg/mL時仍然穩定在75%以上,明顯高于商品化的PEI(25 kDa).
이표면수식구기십일완산적금납미봉 ( GNRs/MUA)위골가,장저분자량적취을희아알( PEI)련접도GNRs/MUA표면,구건GNRs/MUA/PEI납미재체. 수선채용MUA대GNRs진행표면수식,감소유우GNRs표면적십륙완기삼갑기추화안( CTAB)소조성적생물독성. 연후채용저분자량 PEI 진일보수식,동시이용GNRs거대적비표면적진일보방대 PEI 적휴대기인능력,저양기능구강저양리자취합물적독성,우능구제고정개체계적전염효솔. 이용투사전자현미경( TEM)﹑자외가견흡수광보( UV-Vis)﹑Zeta전위등대납미재체진행료표정. 결과현시,MUA여PEI이성공수식도GNRs표면,병흔호지보류료GNRs적광학성질,기표면전위발생정부교체변화. 채용새서람( MTT )비색법대납미재체진행세포독성연구,결과현시 GNRs/MUA/PEI (1. 8 kDa)비병독납미재체,세포존활솔재공제취합물농도위300 μg/mL시잉연은정재75%이상,명현고우상품화적PEI(25 kDa).
Based on the gold nanorods modified by 11-mercaptopropanic acid ( MUA) as the skele-ton, the low molecular weight polyethylenimine PEI was conjugated to the surface of GNRs/MUA to form GNRs/MUA/PEI nanocomplexes. Firstly, surface modification of gold nanorods was carried out by using MUA to reduce the toxicity of gold nanorods caused by CTAB surfactants, and then further modified by low molecular weight PEI. The large surface area of gold nanorods allows them to carry more genes, which can simultaneously reduce the toxicity of cationic polymer and improve the trans-fection efficiency of the whole system. GNRs/MUA/PEI were characterized by transmission electron microscopy ( TEM) , UV-Vis absorption spectra, and Zeta potential. The results show that MUA and PEI are conjugated to GNRs successfully which cause charge reversal on the surface of GNRs, and the optical properties of GNRs are well preserved. In vitro cytotoxic effects of GNRs/MUA/PEI (1. 8 kDa) are quantified by MTT assay, and the results suggest that the cell viability is above 75%at the concentration of 300 μg/mL, much higher than the commercialized PEI(25 kDa) .