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Improved properties of fine active pharmaceutical ingredient powder blends and tablets at high drug loading via dry particle coating

机译:通过干颗粒涂层改善高药物载荷的细活性药物成分粉末混合物和片剂的性能

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It has been shown that dry coating cohesive active pharmaceutical ingredients (APIs) with nano-silica can improve packing and flow of their blends, facilitating high speed direct compression tableting. This paper examines the broader scope and generality of previous work by examining three fine APIs; micronized Acetaminophen (mAPAP), coarse Acetaminophen (cAPAP) and micronized Ibuprofen (mIBU), and considers dry coating with both hydrophobic or hydrophilic nano-silica to examine the effect not only on packing density and flow of their blends, but also dissolution and tensile strength of their tablets. The impact of the excipient size on blend and tablet properties are also investigated, indicating blend flow is most improved when matching API particle size with excipient particle size. In all cases where the API is dry coated, the blend packing and flow improve, so as to suggest such high drug loaded blends could enable direct compression. Using dry coated API along with finer excipients in blends lead to improved hardness of the corresponding tablets. Interestingly, dissolution profiles show dry coated API tablets generally have faster dissolution rates, regardless of silica hydrophilicity, suggesting API powder deagglomeration via nano-silica coating plays a crucial role. The most significant conclusion is that, although there are differences in properties of blends that depend on the API, hydrophobic or hydrophilic nanosilica coating, as well as large or fine excipients, in all cases, dry coating of APIs significantly improves the possibility of using the specific blend at high drug loading in direct compression tableting.
机译:已经表明,具有纳米二氧化硅的干涂层有内聚有效药物成分(API)可以改善它们的共混物的包装和流动,促进高速直接压缩压片。本文通过检查三个精细的API来检查以前的工作的更广泛的范围和一般性;微粉化乙酰氨基酚(Mapap),粗乙酰氨基酚(CaPAP)和微粉化的布洛芬(MiBu),并考虑用疏水性或亲水纳米二氧化硅的干涂层,不仅对包装密度和它们的混合物流动进行溶解和拉伸的效果他们的平板电脑的力量。还研究了赋形剂尺寸对共混物和片剂性质的影响,当用赋形剂粒度匹配API粒径时,表示混合流动最大。在API干燥涂覆的所有情况下,混合填料和流动改善,以表明这种高药物装载的共混物可以直接压缩。使用干涂覆的API以及混合物中的细粒赋形剂导致相应片剂的硬度提高。有趣的是,溶解型材显示干涂覆的API片剂通常具有更快的溶解速率,无论二氧化硅亲水性如何,都通过纳米二氧化硅涂层的API粉末切割起到至关重要的作用。最重要的结论是,尽管在所有情况下依赖于API,疏水或亲水性纳米硅涂层的混合物的性质存在差异,但在所有情况下,API的干涂层显着提高了使用的可能性直接压缩压片中的高药物载荷特异性混合物。

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