会议专题

Preparation and characterization of PLA ultrasound contrast agents by combining an ultrasound method and a Shirasu Porous Glass (SPG) membrane emulsification technique.

The ultrasound contrast agent based on a poly lactic acid (PLA) was prepared by combining an ultrasound method and a Shirasu Porous Glass (SPG) membrane emulsification technique. An aqueous phase containing ammonium bicarbonate was used as the internal water phase (W1), and PLA and Span 80 were dissolved in a solvent of dichloromethane (DCM), which was used as the oil phase (O). These two solutions were probe sonicated to form a W1/O primary emulstion. The primary emulsion was permeated through the uniform pores (1.1 μm) of an SPG membrane into the external water phase (W2) by the pressure of nitrogen gas to form the uiniform W1/O/W2 droplets. After DCM was evaporated, the hardened PLA microcapsules were further formulated into a lyophilized powder containing decafluorobutane gas. SEM image demonstrated that the PLA microcapsules were sphere-shaped and internally hollow with an average diameter ranging from 1.99 to 3.58 μm. In vitro, the PLA contrast agents showed high acoustic enhancement properties, the enhancement increased nonlinearly with dose, and the minimal loss (less than 5 dB) of signal was observed over 20 min of analysis at 37 ℃, the maximum acoustic enhancement was 45 dB, which significantly higher (p<0.01) compared to a value of 28 dB for those prepared by a conventional solvent evaporation method. In conclusion, the hollow PLA microcapsules prepared by the novel method have the characteristics desirable for an intravenously administered ultrasound contrast agents.

SPG membrane emulsification Poly(lactide) Ultrasound contrast agent

Zhenqing Hou Chenghong Lin Qiqing Zhang Xiaolong Tang Yuqian Wang

Research Center of Biomedical Engineering Material of College,Xiamen University Xiamen,China Department of clinical medicine Medical college of Xiamen University Xiamen,China

国际会议

The 3rd International Conference on Bioinformatics and Biomedical Engineering(iCBBE 2009)(第三届生物信息与生物医学工程国际会议)

北京

英文

1-4

2009-06-11(万方平台首次上网日期,不代表论文的发表时间)