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Preparation of Nanoparticles Including Antisolvent Drugs by the Combination of Roll Milling and High-pressure Homogenization

机译:辊磨与高压均质相结合制备包括抗溶剂药物在内的纳米粒子

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摘要

Description: Design methods of nanoparticle formulations are divided into break-down methods and build-up methods. The former is further divided into dry and wet processes. For drug nanoparticle preparations, the wet process is generally employed, and organic solvents are used in most formulations.Method: In this study, we investigate the preparation of nifedipine (IB) and griseofulvin (GF) nanoparticles without using organic solvent. Both IB and GF nanoparticles, with a mean particle size of approximately 50 nm, were prepared without organic solvent by employing a combination of roll milling and high-pressure homogenization.Result: The X-ray diffraction peak of the IB and GF samples prepared by roll milling was present at a position (2θ) identical to that of IB and GF crystals, indicating that no peak shift was induced by interaction with phospholipids.Conclusion: These findings demonstrate that most IB and GF nanoparticles exist as crystals in phospholipids.
机译:描述:纳米颗粒制剂的设计方法分为分解法和堆积法。前者又分为干法和湿法。对于药物纳米颗粒制剂,通常采用湿法工艺,大多数制剂使用有机溶剂。方法:在本研究中,我们研究了不使用有机溶剂的硝苯地平(IB)和灰黄霉素(GF)纳米颗粒的制备。通过采用辊磨和高压均质相结合的方法,在不使用有机溶剂的情况下制备了平均粒径约为50 nm的IB和GF纳米颗粒。结果:IB和GF样品的X射线衍射峰由滚磨出现在与IB和GF晶体相同的位置(2θ),这表明与磷脂相互作用不会引起峰移动。结论:这些发现表明,大多数IB和GF纳米粒子以晶体形式存在于磷脂中。

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