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国家自然科学基金(81071280)

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液态氟碳纳米脂质微粒与全氟丙烷纳米脂质微泡的物理特性及体外显影效果比较被引量:4
2013年
目的制备液态氟碳(PFOB)纳米脂质微粒与全氟丙烷气体(c3F8)纳米脂质微泡,比较两者一般理化性质及体外显影效果。方法分别制备PFOB纳米脂质微粒与C3F8纳米脂质微泡,检测2种造影剂形态、粒径、表面电位、浓度及稳定性,并进行比较。制备生物素化(外膜标记生物素)及空白(外膜未标记生物素)的PFOB脂质微粒及C,R微泡造影剂。以高频探头观察各组造影剂加入亲和素前后的显影效果,并运用Matlab软件获得图像平均灰度值,再进行统计分析。2组间比较采用两样本t检验,同一样本多个时间点观察比较采用重复测量方差分析,组内不同时间点间两两比较采用Bonferroni法,同一样本加入亲和素前后的显影强度比较采用配对t检验。结果(1)PFOB脂质微粒与C3F8脂质微泡粒径分别为(152.30±35.99)nm和(774.59±108.59)nm,前者明显小于后者(t=-24.327,P〈0.001);表面电位分别为(-40.90±6.51)mV和(-14.80±3.97)mV,前者明显大于后者(t=-15.308,P〈0.001)。(2)PFOB脂质微粒造影剂的浓度及粒径在整个观察期间内无明显改变[c0h:(2.28±0.64)×10^11/ml,C(2.06±0.53)×10^11/ml;D0h:(152.30±35.99)nm,D。月:(178.80±63.07)nm]。c3F8脂质微泡造影剂制备后放置12h,浓度[c0h:(4.08±0.96)X10^10/ml,C㈨:(3.25±1.02)X10^10/nil]尚未发生明显改变,而放置24h、2d、4d及1周后浓度明显减低[白h:(z28±Q73)X10”/ml,c2d:(1.56±n54)X10^10/ml,qd:(1.03±n37)X10^10/ml,C1目:(0.74±0.24)×10^10/ml;F=78.515,P〈0.01];c3F8微泡造影剂放置2d内粒径[Dnh:(774.59±108.59)nm,D2d:(1020.68±223.64)nm]未见明显变化,放置4d及1周后粒径明显增大[D4d:(1391.67±268.65)nm,Dl(1532.41±326.25)nm,F=50.772,P〈0.01]。(3)�
刘莹莹谢明星徐金锋王新房吕清张丽覃小娟项飞翔张艳容丁楠杨畅项光亚
关键词:造影剂
Ultrasound-triggered Microbubble Destruction in Combination with Cationic Lipid Microbubbles Enhances Gene Delivery被引量:1
2011年
This study aimed to examine the preparation of cationic lipid microbubble(CLM),and evaluate its physical and chemical properties and toxicity,measure the gene transfection efficiency by ultrasound triggered microbobble destruction(UTMD) in combination with CLM.The CLM was prepared by the method of the thin film hydration,and its morphology was observed under the electron microscopy at 1st,3rd,7th,10th,and 14th day after preparation,respectively.The size,Zeta potential and stability of CLM were tested.The acute toxicity of CLM was assessed.The green fluorescent protein gene(EGFP) transfection efficiency was evaluated.The experiment grouping was as follows:naked plasmid group(P group),ultrasonic irradiation plus naked plasmid group(P-US group),naked plasmid plus CLM group(P-CLM group),naked plasmid plus ultrasound and CLM group(UTMD group).The expression of EGFP was detected by fluorescent microscopy and flow cytometry.The results showed that CLMs were spherical in shape,with the similar size and good distribution degree under the light and electron microscopies.The size of CLMs was varied from 250.4±88.3 to 399.0±99.8 nm and the Zeta potential of CLMs from 18.80±4.97 to 20.1±3.1 mV.The EGFP expression was the strongest in the UTMD group,followed by the P-CLM group,P-US group and P group.Flow cytometry results were consistent with those of fluorescent microscopy.The transfection efficiency was substantially increased in the P-US group,P-CLM group and UTMD group as compared with that in the P group,almost 7 times,10 times and 30 times higher than that in the P group respectively.It is suggested that CLMs prepared by the method of thin film hydration are uniform in diameter,and proved non-toxic.UTMD combined with CLM can significantly increase the transfection efficiency of EGFP to targeted cells.
张丽刘莹莹项光亚吕清黄桂杨亚莉张艳容宋越周欢谢明星
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