• 제목/요약/키워드: Fast-disintegrating tablet

검색결과 3건 처리시간 0.017초

Effect of Hydrophobic Excipients on the Properties of Fast Disintegrating Tablets

  • Jeong, Seong-Hoon;Park, Ki-Nam
    • Journal of Pharmaceutical Investigation
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    • 제38권5호
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    • pp.303-311
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    • 2008
  • Highly hydrophobic lubricants including magnesium stearate may hinder water penetration into the tablet core resulting in delayed disintegration of fast disintegrating tablets. Alternative lubricants with equivalent lubricating properties may need to be incorporated into the tablet formulations. Sodium stearyl fumarate, glyceryl behenate and polyethylene glycol were evaluated regarding the tablet ejection energy, mechanical strength and disintegration time using Texture analyzer (TA). Resulting tablets were also compared with different particle sizes of granules and various compression forces. Among the tested lubricants, sodium stearyl fumarate was less sensitive to mixing time and also showed better or competitive tablet properties. During the experiments, TA was found to be very useful tool to investigate the tablet properties.

Terfenadine-pseudoephedrine HCl의 이중정 및 유핵정의 비교 용출시험 (Comparative Dissolution test of Terfenadine-Pseudoephedrine HCl Double-layered and Core Tablet)

  • 최한곤
    • Journal of Pharmaceutical Investigation
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    • 제27권3호
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    • pp.213-217
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    • 1997
  • The present sustained-release terfenadine-pseudoephedrine HCl dosage form was the core tablet composed of outer (fast-release) layer containing 60 mg of terfenadine and l0mg of pseudoephedrine HCl, and inner (sustained-release) layer containing 110 mg of pseudoephedrine HCl. The purpose of this study was to investigate the possibility of formulating the terfenadine-pseudoephedrine HCl double-layered tablet which was bioequivalent to the core tablet. Its sustained-release and fast-release layer were formulated with disintegrating agents and polymers, respectively, varying with their kinds and amounts. The comparative dissolution test of double-layered and core tablet was carried out at pH 1.2, 4.0 and 6.8, leading to select composite of double-layered tablet whose dissolution pattern was similar to that of core tablet. It was composed of fast-release layer containing 60mg of terfenadine. 10 mg of pseudoephedrine HCl, sodium bicarbonate, microcrystalline cellulose and sodium starch glycolate, and sustained-release layer containing 110 mg of pseudoephedrine HCl and ethylcellulose/hydroxypropyl methylcellulose) (110/30 mg/tablet).

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Formulation and Evaluation of Sustained Release Preparation of Ibuprofen Fast-Disintegrating Tablet (FDT)

  • Kim, Kwang-Hyeon;Park, Jun-Bom;Kang, Joo-Hyung;Lee, Kun-Hee;Kang, Chin-Yang
    • Journal of Pharmaceutical Investigation
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    • 제41권1호
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    • pp.51-57
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    • 2011
  • The objective of this study was to enhance the utilitization of Ibuprofen (IBU) by introducing the fast-disintegrating tablet (FDT) form. Presently, IBU is being widely used as a tablet or syrup form. But in contrast to these two formulations, IBU as FDT is not only convenient but also increases the control over the time release of the drug, noted by using Alginate beads. This study was carried out with Sodium Alginate and IBU at the ratios of 1:0, 1:0.5, 1:1, and 1:2 in order to produce a series of beads with different ratios. During the drying process of the beads, talc was added in beads to compare the effects with and without the talc. The final product was scanned with SEM imaging to determine the difference in the surface of the beads. The parameters assessed were the diameter, content assay, dissolution test and effectiveness of time-release. Direct compression method was used to prepare FDT containing IBU bead. The properties of FDT, such as hardness, disintegration time, were investigated. The dissolution profiles of FDT were tested using KP dissolution apparatus 1 (basket method). The results suggest addition of talc and drying the beads made the surface smooth and less vulnerable to clutter into chunks. The size of beads was less than 300 ${\mu}m$ which did not create a sandy feeling in the mouth. Thus, the beads formulation model made the sustained release of the drug possible, the hardness of FDT (1.25~1.50 $Kg/cm^2$) was acceptable and all the values of dissolving period were less than 30 seconds. The dissolution profile of FDT was same as that of IBU bead. The efficient dissolution profile and low price of IBU bead containing Sodium Alginate, the FDT formulation prepared from IBU bead can save the expenses and can improve the convenience of application of this drug.