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The Effect of Crystalline and Amorphous Lactose on Mechanical Properties of Roller Compaction Ribbon and Tablets.

机译:结晶和无定形乳糖对压实带和压片机械性能的影响。

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摘要

Lactose is a widely used excipient in the pharmaceutical industry. It exists as anhydrous, alpha- and beta- monohydrate forms, which can be either crystalline or amorphous. Commercially available lactose comes in various grades differentiated by physical forms as well as modifications such as particle size. These characteristic modifications enable formulation and processing. Lactose grades for direct compression applications for example, contain various concentrations of crystalline and amorphous content. The mixture of forms exhibit unique material compaction properties that facilitate performance within formulations.;Lactose is infrequently used in large concentrations for dry granulation processes because alpha-lactose monohydrate exhibits relatively poor binding properties and consolidates mainly by fragmentation due to its 'brittleness'. Though this is true of crystalline lactose, previous direct compaction research has found that amorphous lactose is known to be more compressible than its crystalline form. This research aims to characterize the material properties of a directly compressible lactose monohydrate, Flowlac 100 containing high crystalline and high amorphous content; and to compare the fundamental differences in mechanical properties when manufactured by dry granulation via a roller compaction emulator. Ribbon properties such as tensile strength and solid fraction were measured, and the subsequent mechanical properties of tablets evaluated. Additionally, model drug formulations containing a very brittle drug, paracetamol, were manufactured into ribbons with high crystalline and high amorphous lactose. Subsequent tablettability was also evaluated.;Results from this research suggest that amorphous lactose offers advantages over its crystalline counterpart such as an increased ribbon tensile strength under lower compression forces. A formulation containing amorphous lactose and a poorly compressible model drug manufactured through a roller compaction process resulted in acceptable tablets with improved friability over the crystalline formulation.
机译:乳糖是制药工业中广泛使用的赋形剂。它以无水,α-和β-一水合物形式存在,可以是结晶的也可以是非晶的。可商购的乳糖具有各种等级,根据物理形式以及诸如粒径的变化而有所区别。这些特性的修改使配方和加工成为可能。例如,用于直接压片应用的乳糖等级包含各种浓度的结晶和无定形含量。形式的混合物表现出独特的材料压实特性,从而促进了制剂的性能。乳糖不经常以高浓度用于干法制粒工艺,因为α-乳糖一水合物表现出相对较弱的结合特性,并且由于其“脆性”而主要通过碎裂而固结。尽管对于结晶乳糖确实如此,但先前的直接压实研究发现,已知非晶态乳糖比其结晶形式更易压缩。这项研究的目的是表征可直接压缩的乳糖一水合物Flowlac 100的材料特性,该结晶包含高结晶度和高无定形含量。并比较通过辊压实机通过干法制粒制造时机械性能的根本差异。测量带性能,例如抗张强度和固体分数,并评估随后的片剂机械性能。另外,将含有非常脆性药物扑热息痛的模型药物制剂制成具有高结晶度和高无定形乳糖的色带。随后的压片性也得到了评估。这项研究的结果表明,无定形乳糖比其结晶的乳糖具有更多的优势,例如在较低的压缩力下提高了带的拉伸强度。含有无定形乳糖和可压缩性差的模型药物的制剂通过辊压工艺生产,所产生的片剂具有比结晶制剂更高的脆性。

著录项

  • 作者

    Gochioco, Kim.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Pharmaceutical sciences.;Physical chemistry.
  • 学位 M.S.
  • 年度 2014
  • 页码 61 p.
  • 总页数 61
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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