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Melt Adsorption as a Manufacturing Method for Fine Particles of Wax Matrices without Any Agglomerates

机译:熔融吸附作为蜡基质细颗粒的制造方法,没有任何凝聚

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We have focused on melt adsorption as manufacture method of wax matrices to control particles size of granules more easily than melt granulation. The purpose of present study was to investigate the possibility of identifying a hydrophobic material with a low melting point, currently used as a meltable binder of melt granulation, to apply as a novel carrier in melt adsorption. Glyceryl monostearate (GM) and stearic acid (SA) were selected as candidate hydrophobic materials with low melting points. Neusilin US2 (US2), with a particle diameter of around 100 mu m was selected as a surface adsorbent, while dibasic calcium phosphate dihydrate (DCPD), was used as a non-adsorbent control to prepare melting granules as a standard for comparison. We prepared granules containing ibuprofen (IBU) by melt adsorption or melt granulation and evaluated the particle size, physical properties and crystallinity of granules. Compared with melt granulation using DCPD, melt adsorption can be performed over a wide range of 14 to 70% for the ratio of molten components. Moreover, the particle size; d50 of obtained granules was 100-200 mu m, and these physical properties showed good fiowability and roundness. The process of melt adsorption did not affect the crystalline form of IBU. Therefore, the present study has demonstrated for the first time that melt adsorption using a hydrophobic material, GM or SA, has the potential capability to control the particle size of granules and offers the possibility of application as a novel controlled release technique.
机译:我们专注于熔融吸附作为蜡质基质的制造方法,以更容易地控制颗粒的颗粒尺寸而不是熔融造粒。本研究的目的是研究鉴定具有低熔点的疏水材料的可能性,目前用作熔融造粒的可熔粘合剂,以作为熔融吸附的新载体施用。选择甘油单司酸酯(GM)和硬脂酸(SA)作为具有低熔点的候选疏水材料。选择粒径为约100μm的Neusilin US2(US2)作为表面吸附剂,而使用磷酸二元磷酸钙二水合物(DCPD)作为非吸附剂对照,以制备熔化颗粒作为对比标准。我们通过熔融吸附或熔融造粒制备含有布洛芬(IBU)的颗粒,并评估颗粒的粒度,物理性质和结晶度。与使用DCPD的熔体造粒相比,熔融吸附可以在宽范围内的14至70%的范围内进行,熔融组分的比例。而且,粒径;所得颗粒的D50为100-200μm,这些物理性质显示出良好的可维护性和圆度。熔融吸附过程不影响IBU的结晶形式。因此,本研究已经证明了使用疏水材料,GM或SA的熔化吸附的第一次具有控制颗粒粒度的潜在能力,并提供应用作为新型控释技术的应用。

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