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首页> 外文期刊>International Journal of Pharmaceutics >Solventless visible light-curable coating: I. Critical formulation and processing parameters.
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Solventless visible light-curable coating: I. Critical formulation and processing parameters.

机译:无溶剂可见光可固化涂料:I.关键配方和加工参数。

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Film coating is generally accomplished by spraying polymers dissolved in solvents onto a cascading bed of tablets. The limitations associated with the use of solvents (both aqueous and organic) can be overcome by the use of solventless coating technologies. In this proposed solventless photocurable film coating system, each layer of coating onto the pellets (non-pareil beads) was formed using liquid photocurable monomer, powdered pore-forming agents, photosensitizers and photoinitiators in a mini-coating pan and later cured by visible light. Yield, coating efficiency, variation in color, diameter and roundness were determined for each batch to evaluate process efficiency and coating quality. It was found that the ratio (S/L ratio) of the amount of solid (S) pore-forming agent to volume of liquid (L) monomer, particle size and type of the pore-forming agent, concentration of initiator, and total exposure (light intensity x exposure time) of light were critical formulation and processing parameters for the process. Using lactose as a pore-forming agent, an optimum ratio of pore-forming agent to photocurable polymer was 1.8-3.0 to achieve good process efficiency and uniformity. The ratio was sensitive to particle size and type of pore-forming agent.
机译:薄膜包衣通常是通过将溶解在溶剂中的聚合物喷涂到级联的片剂床上来完成的。通过使用无溶剂涂层技术可以克服与使用溶剂(水性和有机溶剂)相关的限制。在此拟议的无溶剂光固化膜涂料体系中,在微型包衣锅中使用液态光固化单体,粉末状成孔剂,光敏剂和光引发剂在丸粒(非颗粒珠)上形成每一层涂层,然后通过可见光固化。确定每批的产率,涂覆效率,颜色,直径和圆度的变化,以评价工艺效率和涂覆质量。发现固体(S)成孔剂的量与液体(L)单体的体积的比(S / L比),成孔剂的粒径和类型,引发剂的浓度和总和。光的曝光量(光强度x曝光时间)是该过程的关键配方和加工参数。使用乳糖作为成孔剂,成孔剂与可光固化聚合物的最佳比例为1.8-3.0,以实现良好的加工效率和均匀性。该比例对成孔剂的粒径和类型敏感。

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