• 제목/요약/키워드: drug release system

검색결과 287건 처리시간 0.028초

Controlled Release Behavior of Temperature Responsive Composite Hydrogel Containing Activated Carbon

  • Yun, Ju-Mi;Im, Ji-Sun;Jin, Dong-Hwee;Lee, Young-Seak;Kim, Hyung-Il
    • Carbon letters
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    • 제9권4호
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    • pp.283-288
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    • 2008
  • The composites of temperature-sensitive hydrogel and activated carbons were prepared in order to improve both the mechanical strength of hydrogel matrix and the loading capacity of drug in a hydrogel drug delivery system. The swelling of composite hydrogel was varied depending on the temperature. Both the swelling and the release behavior of the composite hydrogel were varied depending on the kind of activated carbon. The release behavior showed the high efficiency which is important for practical applications.

Alprazolam함유 poly(D,L-lactic acid) Microsphere의 제조 및 평가 (Preparation and Characterization of Poly(D,L-lactic acid) Microspheres Containing Alprazolam)

  • 용철순;권미라;박새해;오두만
    • Journal of Pharmaceutical Investigation
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    • 제26권1호
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    • pp.13-22
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    • 1996
  • Poly(D,L-lactic acid) (PLA) microspheres containing alprazolam(APZ) were prepared by a solvent-emulsion evaporation method and their release patterns were investigated in vitro. Various batches of microspheres with different size and drug content were obtained by changing the ratio of APZ to PLA, PLA concentration in the dispersed phase and stirring rate. Rod-like APZ crystals on microsphere surface, which were released rapidly and could act as a loading dose, were observed with increasing drug content. The release rate was increased with increase in drug contents and decrease in the molecular weight of PLA. The release rate of APZ for long-acting injectable delivery system in vitro, which would aid in predicting in vitro release profile, could be controlled by properly optimizing various factors affecting characteristics of microspheres.

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Colonic Delivery를 위한 펙틴 비드로부터 BSA의 방출 특성 (Release Properties of BSA from Pectin Heads for Colonic Drug Delivery)

  • 최춘순;박상무;송원현;이창문;이기영;김동운;김진철
    • KSBB Journal
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    • 제18권2호
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    • pp.161-164
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    • 2003
  • 경구 투여가 비교적 어려운 단백질 약물을 생체적합성이 우수하고 생분해성을 가진 펙틴을 이용하여 목적하는 colon에 전달하고자 하였다. 이온결합을 통해 펙틴, 펙틴-알긴산비드를 제조할 수 있었고, 단백질 약물인 BSA를 포함하여 방출을 행한 결과, 비드의 건조온도가 높을수록 방출률이 높은 경향을 보인 반면, 동결건조된 비드가 가장 높은 방출을 나타냈다. 또한, 가교제의 농도를 높게 처리한 비드일수록 방출률이 낮았다. 경구 투여 후 colon에 도달할 것으로 예상되는 5시간 후에 펙틴 분해효소를 처리한 결과, 효소 처리하지 않은 비드에 비해 급격한 방출이 일어났다. 이러한 결과로 colon내에 존재하는 미생물이 분비하는 효소에 의해 펙턴 비드에 포함된 약물이 방출될 것으로 판단된다. 따라서, 경구로 투여된 펙틴 비드 안의 약물이 소화기관에서 안정하게 통과하고 colon에서 방출되어 효과를 나타낼 것으로 판단된다.

메칠메타크릴레이트-부틸메타크릴레이트 공중합체 필름의 평가 및 니트로푸라존 방출의 속도론적 연구 (Evaluation of Methyl Methacrylate-Butyl Methacrylate Copolymer Films and Kinetics of Nitrofurazone Release)

  • 전인구
    • Journal of Pharmaceutical Investigation
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    • 제17권3호
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    • pp.111-126
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    • 1987
  • Methyl methacrylate-butyl methacrylate copolymer (MMBM)-dibutyl phthalate (DBP) films were investigated as a potential topical drug delivery system for the controlled release of nitrofurazone. The kinetic analysis of release data indicated that drug release followed a diffusion-controlled granular matrix model, where the quantity released per unit area is proportional to the square root of time. DBP of several hydrophobic plasticizers selected was found to give the highest release of nitrofurazone. However, hydrophilic plasticizers such as propylene glycol and polyethylene glycol 400 had no controlled release properties and acceptable film formation. The effects of changes in film composition, drug concentration, film thickness, pH of release medium, and temperature on the in vitro release of nitrofurazone were analyzed both theoretically and experimentally. The release rate constant (k') was found to be proportional to DBP content, pH, and the temperature of release medium, but independent of film thickness, and drug concentration in a range of 0.1-0.4% by weight. The linear relationship was found to exist between the log k' and DBP content. The release of nitrofurazone from MMBM-DBP (8:2) films was found to be an energy-linked process. Two energy terms were calculated ; the activation energy for matrix diffusion was 13.45 kcal/mole, and the heat of drug crystal solvation was 27.26-29.34 kcal/mole. Observation of scanning electron micrographs and microscopic photographs showed that the incorporation of DBP in films increased markedly the particle size of nitrofurazone dispersed in the film matrix, comparing with the fine dispersion of nitrofurazone in pure MMBM film alone.

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Development of Specific organ targeting drug delivery system II : Physico-pharaceutical study on the crose-linked albumin microspheres containing cytarabine

  • Kim, Chong-Kook;Lee, Jin-Kyu;Lah, Woon-Lyong
    • Archives of Pharmacal Research
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    • 제9권1호
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    • pp.39-43
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    • 1986
  • Bovine serum albumin microspheres containing cytarabine were prepared using cross-linking agent, formaldehyde. The shape and the size distribution of them were observed. The shape of them was spherical and the susrface was compact and smooth. The size distribution of them was affected by dispersion forces during emulsfication. The release of cytarabine from albumin microspheres was dependent upon cross-linking time, amount of cross-linking agent and drug/albumin ratio. However, the difference of drug release by the dispersion forces was not great. After release test, the shape of albumin microspheres was nonspherical and the albumin matrix seemed to be a little relaxed. The degradation tests of albumin microspheres by the proteolytic enzyme showed that albumin microspheres were progressively digested according to the cross-linking degree.

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Thermosensitive Chitosan as an Injectable Carrier for Local Drug Delivery

  • Bae Jin-Woo;Go Dong-Hyun;Park Ki-Dong;Lee Seung-Jin
    • Macromolecular Research
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    • 제14권4호
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    • pp.461-465
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    • 2006
  • Two types of injectable system using thermosensitive chitosan (chitosan-g-NIPAAm), hydrogel and microparticles (MPs)-embedded hydrogel were developed as drug carriers for controlled release and their pharmaceutical potentials were investigated. 5-Fluorouracil (5-FU)-loaded, biodegradable PLGA MPs were prepared by a double emulsion method and then simply mixed with an aqueous solution of thermosensitive chitosan at room temperature. All 5-FU release rates from the hydrogel matrix were faster than bovine serum albumin (BSA), possibly due to the difference in the molecular weight of the drugs. The 5-FU release profile from MPs-embedded hydrogel was shown to reduce the burst effect and exhibit nearly zero-order release behavior from the beginning of each initial stage. Thus, these MPs-embedded hydrogels, as well as thermosensitive chitosan hydrogel, have promising potential as an injectable drug carrier for pharmaceutical applications.

수성미세채널을 형성하는 서방성 매트릭스 장용정을 이용한 탐스로신의 방출제어 (Controlled Release of Tamsulosin from Enteric Coated Sustained-Release Matrices with Aqueous Microchannels)

  • 이기봉;최성업;전홍렬;이봉상;김현일;이재휘;최영욱
    • Journal of Pharmaceutical Investigation
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    • 제34권6호
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    • pp.471-475
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    • 2004
  • Tamsulosin has been frequently used for the treatment of benign prostatic hyperplasia. To avoid dose-dependent side effects of tamsulosin upon oral administration, the development of sustained-release delivery system is required, that can maintain therapeutic drug levels for a longer period of time. The aim of this study was therefore to formulate sustained-release tamsulosin matrix tablets and assess their formulation variables. We designed enteric coated sustained-release tamsulosin matrices to fulfill above statement. Aqueous microchannels in the enteric film need to be formed in order to obtain tamsulosin release even in an acidic environment such as gastric region. In the sustained-release tamsulosin matrix, low viscosity hydroxypropylmethylcellulose was used as a rate controller. Povidone K30 was also added to the matrices to facilitate water uptake so that a decrease in the release rate of tamsulosin as time elapses was prevented, possibly leading to pseudo zero-order release of the drug. The matrices were enteric-coated with hydroxypropylmethylcellulose phthalate (HPMCP), along with povidone K30 as an aqueous microchannel former. With the aqueous microchannels formed within the enteric film, tamsulosin could be released in an acidic condition. The release of tamsulosin decreased with increasing thickness of HPMCP membrane while the release rates of tamsulosin from those having different HPMCP thickness in pH 7.2 aqueous media were not considerably different, indicating that the enteric film was promptly dissolved at pH 7.2. These results clearly suggest that the sustained-release oral delivery system for tamsulosin could be designed with satisfying drug release profile approved by the KFDA.

키토산 매트릭스를 이용한 Sulfadiazine의 방출 특성 (Release Characteristics of Sulfadiazine Using Chitosan Matrices)

  • 문일식;나재운
    • KSBB Journal
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    • 제11권6호
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    • pp.676-680
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    • 1996
  • 키토산을 10%-아세트산에 팽윤시킨 용액과 SD 를 인산염 완충용액에 녹인 용액을 흔합하여 키토산 매트릭스를 제조하였다. 키토산 매트릭스로부터 pH 7 7.4와 pH 1.2에서 약물방출 거통을 규명하고 지속적이고 조절된 약물방출형 제제로서의 사용 가능성 을 고찰하였다. 키토산 매트릭스내의 약물 함유량이 증가함에 따 라 약물 방출 시간이 늦어졌으며, pH 1.2에서보다 p pH 7.4에서 약물 방출 시간이 더 지연되었다. 그 이 유는 약물전달체가 엽기성 용액에서보다 산성 용액 에서 팽윤를 더 잘하기 때문이라고 생각된다. 약물 방출 속도에 있어서는 pH 7.4에서보다 pH 1.2에서 더 빨랐으며, 겉보기 방출속도상수(K)값도 역시 증가하였다. 결과적으로 본 실험에셔 약물전달체로 사 용된 키토산은 방출조절형 제제로서 그 가능성을 타진할 수 있었다.

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Development of Drug-Loaded PLGA Microparticles with Different Release Patterns for Prolonged Drug Delivery

  • Choi, Yeon-Soon;Joo, Jae-Ryang;Hong, Areum;Park, Jong-Sang
    • Bulletin of the Korean Chemical Society
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    • 제32권3호
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    • pp.867-872
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    • 2011
  • For the prolonged delivery and sustained release rates of low molecular weight drugs, poly(lactic-co-glycolic acid) (PLGA) microparticles containing the drug SKL-2020 have been investigated. On increasing polyvinyl alcohol (PVA) concentration (from 0.2% to 5%), the size of microparticles decreased (from $48.02{\mu}m$ to $10.63{\mu}m$) and more uniform size distribution was noticeable due to the powerful emulsifying ability of PVA. A higher drug loading (from 5% to 20%) caused a larger concentration gradient between 2 phases at the polymer precipitation step; this resulted in decreased encapsulation efficiency (from 34.19% to 25.67%) and a greater initial burst (from 61.71% to 70.05%). SKL-2020-loaded PLGA microparticles prepared with different fabrication conditions exhibited unique release patterns of SKL-2020. High PVA concentration and high drug loading led to an initial burst effect by rapid drug diffusion through the polymer matrix. Since PLGA microparticles enabled the slow release of SKL-2020 over 1 week in vitro and in vivo, more convenient and comfortable treatment could be facilitated with less frequent administration. It is feasible to design a release profile by mixing microparticles that were prepared with different fabrication conditions. By this method, the initial burst could be repressed properly and drug release rate could decrease.

페닐프로피온산계 해열진통제 고형지질나노입자의 입도분포와 약물봉입 및 용출특성 (Particle Size Distribution, Drug Loading Capacity and Release Profiles of Solid Lipid Nanoparticles of Phenylpropionic Acids)

  • 김윤선;김길수
    • Journal of Pharmaceutical Investigation
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    • 제28권4호
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    • pp.249-255
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    • 1998
  • Solid Lipid Nanoparticle(SLN), one of the colloidal carrier systems, has many advantages such as good biocompatibility, low toxicity and stability. In this paper, the effects of drug lipophilicity and surfactant on the drug loading capacity, particle size and drug release profile were examined. SLNs were prepared by homogenization of melted lipid dispersed in an aqueous surfactant solution. Ketoprofen, ibuprofen and pranoprofen were used as model drugs and tweens and poloxamers were tested for the effect of surfactant. Mean particle size of prepared SLNs was ranged from 100 to 150nm. The drug loading capacity was improved with the most lipophilic drug and low concentration of surfactant. Particle size and polydispersity of SLNs were changed according to the used lipid and surfactant. The rates of drug release were controlled by the loading drug and surfactant concentration. SLN system with effective drug loading efficiency and proper particle size for the intravenous or oral formulation can be prepared by selecting optimum drug and surfactant.

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