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Drug-loaded Pectin Microparticles Prepared by Emulsion-Solvent Evaporation

机译:通过乳液溶剂蒸发制备的药物装载果胶微粒

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The aim of this study was to develop the pectin-based microparticles by emulsion-solvent evaporation technique. The effects of concentration and type of pectin and addition of glutaraldehyde on size, size distribution, drug crystalline state and drug dissolution from microparticles were investigated. The results showed that a model drug, indomethacin, could be encapsulated in microparticles. Higher molecular weight of pectin caused a larger in size of microparticles than the lower one. A high degree of esterification is preferred to stabilize the pectin microparticles. The powder x-ray diffractograms showed that all microparticles led to amorphous products while their physical mixture still showed the crystalline state of drug. Drug dissolution from the microparticles containing indomethacin and pectin was increased, resulting from the formation of an amorphous solid dispersion. Addition of glutaraldehyde, however, resulted in slower drug dissolution, compared to the formulations without glutaraldehyde or drug alone.
机译:本研究的目的是通过乳液溶剂蒸发技术进行基于果胶基微粒。研究了凝胶素浓度和型谷氨酸的影响,对微粒的尺寸,尺寸分布,药物结晶状态和药物溶解进行了抑制胶质醛。结果表明,模型药物,吲哚美辛,可以在微粒中包封。果胶的较高分子量导致微粒的尺寸较大,而不是下部。高度酯化是优选稳定果胶微粒的酯化。粉末X射线衍射图表明,所有微粒导致无定形产品,而其物理混合物仍显示出晶体的药物。从含有吲哚美辛和果胶的微粒的药物溶解,由形成无定形固体分散体产生。然而,加入戊二醛导致药物溶解较慢,与单独的没有戊二醛或药物的配方相比。

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