• 제목/요약/키워드: poorly soluble

검색결과 119건 처리시간 0.027초

자가미세유화시스템을 이용한 매스틱의 헬리코박터파일로리 대한 In vitro 및 In vivo 활성 연구 (In vitro and In vivo Activities Studies of Chois Mastic Using Self-microemulsifying Drug Delivery System (SMEDDS) against Helicobactor pylori)

  • 김수지;정상영;길영식;신병철;황성주;조선행
    • 약학회지
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    • 제55권1호
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    • pp.1-10
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    • 2011
  • Mastic is a bleed resin formed in pistacia lentiscus tree extract form the anacatdiaceae family. Mastic is used as a food ingredient in the Mediteraanean resin, and has been used by local inhabitants as a traditional medicine for relief of upper abdominal discomfort, dyspepsiaand peptic ulcer. Clinically, mastic has been effective in the treatment of benign gastric and duodenal, ulcers, giving symptomatic relief and endoscopically proven healing. In this study, to enhance activiteies of poorly water soluble Mastic with oils, surfactants and cosurfactants and then the mixure was microemulsified in aqueous media under condition of gentle agitation and digestive motility that would be encountered in the gastrointestinal tract. Formulation development and screening were based on phase diagrams and characteristics of resultant microemulsion. For optimum mastic formulation, microemulsions with various ratio (w/w%) of mastics, oils, surfactants and cosurfactants were prepared and their solubility was evaluated by monitoring particles size in their buffer through visual asessment and electrophoretic light scattering spectrophotomerter (ELS). In vitro activity of self microemulsified mastic (SME mastic) was determined by minimum ingibition concentration (MIC) test against a panel of Helicobacter pylori (H. pylori) clinical strains. Additionally, in vivo activity of SME masitc was investigated us mouse infected by CH275 of H. pylori. The mean diameter of SME mastic was less then 100 nm in water and SME mastic was showed similar antiboisis effect compared to tometronidazole, clarithromycin and omeproazole. Consequently, SME mastic would be effective system to exterminate H. pylori. If mastic were dose with combined treatment, mastic might augur well for effect of H. pylori eradication as good remedy.

카르바마제핀 정제 용출패턴과 용출액 조성과의 상관성 (Relationship Between Dissolution Patterns of Carbamazepine Tablet and Dissolution Medium Composition)

  • 이현태;김정호;김현주;사홍기
    • Journal of Pharmaceutical Investigation
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    • 제34권3호
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    • pp.185-192
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    • 2004
  • The objective of this study was to evaluate the effects of surfactant type and concentration upon dissolution rates of carbamazepine from an immediate-release tablet. The dissolution media used in this study were aqueous solutions containing 0.1-2% sodium lauryl sulfate, cetyltrimethylammonium bromide, or polysorbate 80. The solubility of carbamazepine in the dissolution media was determined at first. A dissolution study was then conducted by using the USP dissolution apparatus II (paddle method) with an agitation rate of 75 rpm. Aliquots of the dissolution media were taken at predetermined time intervals, and the amount of carbamazepine dissolved was measured spectrophotometrically at 285 nm. The dissolution data obtained were fitted into a biphasic exponential equation with four parameters. Excellent correlations were observed between the experimental data and the theoretical ones predicted by the equation. This equation permitted the calculation of $T_{50%}$ (the time required for dissolving 50% of carbamazepine) under various experimental conditions. Differentiation of the equation also led to the attainment of dissolution rates at dissolution time points. The addition of a surfactant to an aqueous solution led to increasing the solubility of carbamazepine by 3- to 12-folds, depending upon its type and concentration. This event also resulted in enhancing the magnitude of a sink condition during the dissolution study. As a result, the dissolution rate of carbamazepine was affected by the aqueous surfactant concentration in a proportional manner. Subsequently, $T_{50%}$ values declined rapidly, as the surfactant concentration increased. Such effects were observed in decreasing order of sodium lauryl sulfate, cetyltirmethylammonium bromide, and polysorbate 80. These results clearly demonstrated that it was possible to tailor a dissolution rate and $T_{50%}$ of carbamazepine by manipulating the type and concentration of a surfactant. Relevant information would be beneficial to setting up dissolution specifications for poorly water-soluble drug products.

Solid Dispersions as a Drug Delivery System

  • Kim, Ki-Taek;Lee, Jae-Young;Lee, Mee-Yeon;Song, Chung-Kil;Choi, Joon-Ho;Kim, Dae-Duk
    • Journal of Pharmaceutical Investigation
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    • 제41권3호
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    • pp.125-142
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    • 2011
  • Solid dispersion, defined as the dispersion of one or more active ingredient in a carrier or matrix at solid state, is an efficient strategy for improving dissolution of poorly water-soluble drugs for enhancement of their bioavailability. Compared to other conventional formulations such as tablets or capsules, solid dispersion which can be prepared by various methods has many advantages. However, despite numerous studies which have been carried out, limitations for commercializing these products remain to be solved. For example, during the manufacturing process or storage, amorphous form of solid dispersion can be converted into crystalline form. That is, the dissolution rate of solid dispersion would continuously decrease during storage, resulting in a product of no value. To resolve these problems, studies have been conducted on the effects of excipients. In fact, modification of the solid dispersions to overcome these disadvantages has progressed from the first generation to the recent third generation products. In this review, an overview on solid dispersions in general will be given with emphasis on the various manufacturing processes which include the use of polymers and on the stabilization strategies which include methods to prevent crystallization.

Microemulsion-based hydrogels for enhancing epidermal/dermal deposition of topically administered 20(S)-protopanaxadiol: in vitro and in vivo evaluation studies

  • Kim, Ki-Taek;Kim, Min-Hwan;Park, Ju-Hwan;Lee, Jae-Young;Cho, Hyun-Jong;Yoon, In-Soo;Kim, Dae-Duk
    • Journal of Ginseng Research
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    • 제42권4호
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    • pp.512-523
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    • 2018
  • Background: 20(S)-Protopanaxadiol (20S-PPD) is a fully deglycosylated ginsenoside metabolite and has potent dermal antiaging activity. However, because of its low aqueous solubility and large molecular size, a suitable formulation strategy is required to improve its solubility and skin permeability, thereby enhancing its skin deposition. Thus, we optimized microemulsion (ME)-based hydrogel (MEH) formulations for the topical delivery of 20S-PPD. Methods: MEs and MEHs were formulated and evaluated for their particle size distribution, morphology, drug loading capacity, and stability. Then, the deposition profiles of the selected 20S-PPD-loaded MEH formulation were studied using a hairless mouse skin model and Strat-M membrane as an artificial skin model. Results: A Carbopol-based MEH system of 20S-PPD was successfully prepared with a mean droplet size of 110 nm and narrow size distribution. The formulation was stable for 56 d, and its viscosity was high enough for its topical application. It significantly enhanced the in vitro and in vivo skin deposition of 20S-PPD with no influence on its systemic absorption in hairless mice. Notably, it was found that the Strat-M membrane provided skin deposition data well correlated to those obtained from the in vitro and in vivo mouse skin studies on 20S-PPD (correlation coefficient $r^2=0.929-0.947$). Conclusion: The MEH formulation developed in this study could serve as an effective topical delivery system for poorly soluble ginsenosides and their deglycosylated metabolites, including 20S-PPD.

친수성 고분자를 이용한 에프로살탄 고체분산체의 제조 및 특성 분석 (Preparation and Characterization of Solid Dispersions of Eprosartan with Hydrophilic Polymers)

  • 황준석;고지은;김소희;허강무
    • 폴리머
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    • 제36권4호
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    • pp.500-506
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    • 2012
  • 본 연구에서는 고혈압 치료제로 사용되고 있는 난용성 약물인 에프로살탄의 용해도 개선을 위한 고체분산체제제를 개발하기 위한 제조방법 및 조성비를 최적화하였다. 친수성 고분자 기제로 poly(ethylene glycol)(PEG)와 poly(vinyl pyrrolidone)(PVP)를 이용하여, 약물과 고분자의 조성비가 1:1에서 1:5 사이의 고체분산체를 용매증발법과 열용융법에 의해 제조한 후 비교 평가하였다. 용매증발법이 균일한 고체분산체 제조에 효과적이었고, 고분자의 조성비 증가와 함께 약물 결정성이 감소되었다. PEG 보다는 PVP가 약물과의 우수한 상용성을 바탕으로 결정화도 감소와 용해도 개선 효과가 우수하였다. 또한 고체분산체 제조 시 고분자 계면활성제인 poloxamer 407를 첨가한 경우, 약물의 결정성이 대부분 사라져 고체분산체 내 대부분의 약물 분자들이 무정형으로 분산되어 있음을 알 수 있었고,약물의 용해도 또한 3~4배 이상 향상되었다.

분무 건조 방식으로 제조한 에프로살탄 고체분산체 제조 및 특성 분석 (Preparation and Characterization of Solid Dispersions of Eprosartan Using Spray Drying Method)

  • 황준석;김소희;조선행;허강무
    • 폴리머
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    • 제37권4호
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    • pp.442-448
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    • 2013
  • 본 연구에서는 분무건조방법을 이용하여 고혈압 치료제로 사용되고 있는 난용성 약물인 에프로살탄의 고체분산체 제형을 다양한 조성 하에서 제조 및 평가하고, 효과적인 약물의 용해도 향상을 위한 제조 조건을 최적화하였다. 친수성 고분자 기제로 hydroxylpropylcellulose(HPC)와 poly(vinyl pyrrolidone)(PVP)를 사용하였고, 고분자 계면활성제로 poloxamer 407을 첨가하여 약물과 고분자의 다양한 조성비를 갖는 고체분산체를 제조한 후, 물리화학적 특성을 비교 평가하였다. 친수성 고분자의 조성비 증가와 함께 약물 결정성이 감소되었으며, HPC보다는 PVP가 약물과의 우수한 상용성을 바탕으로 결정화도 감소와 용출거동 개선 효과가 상대적으로 우수하였다. 친수성 고분자로 PVP를 사용한 경우 약물의 결정성이 대부분 사라져 고체분산체 내 대부분의 약물 분자들이 무정형으로 분산되어 있으며 약물의 용출률이 에프로살탄 대비 3~7배 이상 향상되었다.

Preparation and Release Characteristics of Polymer-Reinforced and Coated Alginate Beads

  • Lee, Beom-Jin;Min, Geun-Hong
    • Archives of Pharmacal Research
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    • 제18권3호
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    • pp.183-188
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    • 1995
  • Polymeric reinforcement and coatings of alginate beads were carried out to control the release rate of drug from alginate beads. A poorly water-soluble ibuprofen (IPF) was selected as a model drug. A commercially available $Eudragit^{\circledR}$ RS100 was also used as a polymer. Effects of polymeric contents, the presence of plasticizers and amount of drug loading on the release rate of drug were investigated. The release rate of drug from alginate beads in the simulated gastric fluid did not occur within 2 h but released immediately when dissolution media were switched to the simulated intestinal fluid. No significant difference of release rate from polymer-reinforced alginate bead without plasticizers was observed when compared to plain (simple) beads. However, the release rate of drug from polymer-reinforced alginate beads was further sustained and retarded when aluminium tristearate (AT) as a plasticizer was added to polymer. However, polyethylene glycol 400 (PEG400) did not change the release rate of drug from alginate beads although PEG400 was used to improve dispersion of polymer and sodium alginate, and plasticize $Eudragit^{\circledR}$ RS100 polymer. The presence of plasticizer was crucial to reinforce alginate gel matrices using a polymer. As the amount of drug loading increased, the release rate of drug increased as a result of decreasing effects of polymer contents in matrices. The significantly sustained release of drug from polymer-coated alginate beads occurred as the amount of polymer increased because the thickness of coated membrane increased so that cracks and pores of the outer surface of alginate beads could be reduced. The sustained and retarded action of polymer-reinforced and coated beads may result from the disturbance of swelling and erosion (disintegration) of alginate beads. From these findings, polymeric-reinforcement and coatings of alginate gel beads can provide an advanced delivery system by retarding the release rate of various drugs.

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Characterization of Itraconazole Semisolid Dosage Forms Prepared by Hot Melt Technique

  • Shim, Sang-Young;Ji, Chang-Won;Sah, Hong-Kee;Park, Eun-Seok;Lee, Beom-Jin
    • Archives of Pharmacal Research
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    • 제29권11호
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    • pp.1055-1060
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    • 2006
  • The objective of this study was to formulate itraconazole semisolid dosage forms and characterize their physicochemical properties. Itraconazole and excipients such as polysorbate 80, fatty acids, fatty alcohols, oils and organic acids were melted at $160^{\circ}C$. The fused solution was then cooled immediately at $-10^{\circ}C$ to make wax-like semisolid preparations. Their physicochemical attributes were first characterized using differential scanning calorimetry, Fourier transform infrared spectroscopy and nuclear magnetic resonance spectrometry. The solubility of itraconazole in semisolid preparations and their dispersability in the simulated gastric fluid were also determined. Our semisolid preparations did not show any distinct endothermic peak of a crystalline form of itraconazole around $160-163^{\circ}C$. This suggested that it was changed into amorphous one, when it was formulated into semisolid preparations. In addition, the distinctive functional peaks and chemical shifts of itraconazole were well retained after processing into semisolid preparations. It could be inferred from the data that itraconazole was stable during incorporation into semisolid preparations by the hot melt technique. In particular, itraconazole semisolid preparations composed of polysorbate 80, fatty acids and organic acids showed good solubility and dissolution when dispersed in an aqueous medium. It was anticipated that the semisolid dosage forms would be industrially applicable to improving the bioavailability of poorly water-soluble drugs.

Effects of the Particulate Matter2.5 (PM2.5) on Lipoprotein Metabolism, Uptake and Degradation, and Embryo Toxicity

  • Kim, Jae-Yong;Lee, Eun-Young;Choi, Inho;Kim, Jihoe;Cho, Kyung-Hyun
    • Molecules and Cells
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    • 제38권12호
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    • pp.1096-1104
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    • 2015
  • Particulate $matter_{2.5}$ ($PM_{2.5}$) is notorious for its strong toxic effects on the cardiovascular, skin, nervous, and reproduction systems. However, the molecular mechanism by which $PM_{2.5}$ aggravates disease progression is poorly understood, especially in a water-soluble state. In the current study, we investigated the putative physiological effects of aqueous $PM_{2.5}$ solution on lipoprotein metabolism. Collected $PM_{2.5}$ from Seoul, Korea was dissolved in water, and the water extract (final 3 and 30 ppm) was treated to human serum lipoproteins, macrophages, and dermal cells. $PM_{2.5}$ extract resulted in degradation and aggregation of high-density lipoprotein (HDL) as well as low-density lipoprotein (LDL); apoA-I in HDL aggregated and apo-B in LDL disappeared. $PM_{2.5}$ treatment (final 30 ppm) also induced cellular uptake of oxidized LDL (oxLDL) into macrophages, especially in the presence of fructose (final 50 mM). Uptake of oxLDL along with production of reactive oxygen species was accelerated by $PM_{2.5}$ solution in a dose-dependent manner. Further, $PM_{2.5}$ solution caused cellular senescence in human dermal fibroblast cells. Microinjection of $PM_{2.5}$ solution into zebrafish embryos induced severe mortality accompanied by impairment of skeletal development. In conclusion, water extract of $PM_{2.5}$ induced oxidative stress as a precursor to cardiovascular toxicity, skin cell senescence, and embryonic toxicity via aggregation and proteolytic degradation of serum lipoproteins.

자가미세유화를 통한 아토르바스타틴 칼슘의 난용성 개선 (Improvement of Solubility of Atorvastatin Calcium Using Self-Microemulsion Drug Delivery System(SMEDDS))

  • 이준희;최명규;김윤태;김명진;오재민;박정수;모종현;김문석;강길선;이해방
    • Journal of Pharmaceutical Investigation
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    • 제37권6호
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    • pp.339-347
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    • 2007
  • SMEDDS is mixture of oils, surfactants, and cosurfactants, which are emulsified in aqueous media under conditions of gentle agitation and digestive motility that would be encountered in the gastro-intestinal(GI) tract. The main purpose of this work is to prepare self-microemulsifying drug delivery system(SMEDDS) for oral bioavailability enhancement of a poorly water soluble drug, atorvastatin calcium. Solubility of atorvastatin calcium was determined in various vehicles. Pseudo-ternary phase diagrams were constructed to identity the efficient self-emulsification region and particle size distributions of the resultant micro emulsions were determined using a laser diffraction sizer. Optimized formulations for in vitro dissolution and bioavailability assessment were $Capryol^{(R)}$ 90(50%), Tetraglycol(16%), and $Cremophor^{(R)}$ EL(32%). The release rate of atorvastatin from SMEDDS was significantly higher than the conventional tablet ($Lipitor^{(R)}$), 2-fold. Our studies illustrated the potential use of SMEDDS for the delivery of hydrophobic compounds, such as atorvastatin calcium by the oral route.