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1)  Film-ultrasonic wave dissolving technique
薄膜-超声法
1.
Study on technique of preparing baicalin solid lipid nanoparticles by Film-ultrasonic wave dissolving techniques;
薄膜-超声法制备黄芩苷固体脂质纳米粒的工艺研究
2)  thin film evaporation and ultrasonic technique
薄膜蒸发-超声法
1.
Liposomes were prepared by thin film evaporation and ultrasonic technique, and single factor test was adopted to study the effects of several factors in preparation on encapsulation efficiency.
采用薄膜蒸发-超声法制备中链脂肪酸脂质体,考察单因素制备工艺对包封率的影响以及所得脂质体的外观形态、粒径、Zeta电位和稳定性。
3)  film-ultrasonic wave dissolving technique
薄膜-超声分散法
1.
Preparation of β-elemene solid lipid nanoparticles by film-ultrasonic wave dissolving techniques;
薄膜-超声分散法制备β-榄香烯固体脂质纳米粒
4)  film dispersion-ultrasonic
薄膜分散-超声法
1.
Methods The liposomes were prepared by film dispersion-ultrasonic and reverse phase evaporation technique.
方法薄膜分散-超声法、逆相蒸发法制备脂质体,HPLC测定硫酸多黏菌素E脂质体包封率,正交设计法优化脂质体处方。
5)  Membrane-sonic method
薄膜超声分散法
1.
METHODS The sterically stabilized nanoliposomes were prepared with membrane-sonic method, the effect of some factors on the encapsulation efficiency, including lecithins, the weight ratio of bee venom to SPC, the weight ratio of SPC to chol,the pH of water phase, the electricity of lipids and the iron strength of water phase, was investigated.
方法采用薄膜超声分散法制备蜂毒多肽长循环脂质体,以包封率为指标,分别考察药脂比、胆固醇用量、磷脂种类、不同相对分子质量PEG-胆固醇、不同pH值、离子强度等对脂质体的影响,在此基础上采用正交设计[L9(4])]对处方进行优化。
6)  film ultrasonic wave dissolving technique
薄膜超声分散法
1.
Methods:The ligustrazine solid lipid nanoparticles were prepared by film ultrasonic wave dissolving techniques,And the optimum formula was selected through orthogonal design test according to the entrapment efficiency.
方法:采用薄膜超声分散法制备,并以包封率为指标采用正交设计法优化川芎嗪固体脂质纳米粒的制备工艺。
2.
Methods:The ligustrazine solid lipid nanoparticles were prepared by film ultrasonic wave dissolving techniques,And the optimum formula was selected through orthogonal design test according to the entrapment efficiency oading.
方法:采用薄膜超声分散法制备,并以包封率为指标采用正交设计法优化川芎嗪口服固体脂质纳米粒的制备工艺。
3.
[Methods] The ligustrazine solid lipid nanoparticles were prepared by film ultrasonic wave dissolving techniques.
[方法]采用薄膜超声分散法制备,并以包封率为指标采用正交设计法优化川芎嗪固体脂质纳米粒的制备工艺。
补充资料:薄膜吹塑法
分子式:
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性质:见吹胀成型法。

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