• Title/Summary/Keyword: Drug absorption

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Nutrition and Drug Interaction (영양과 약물의 상호작용)

  • 나안희;홍윤호
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.21 no.2
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    • pp.219-230
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    • 1992
  • Nutrients and drugs are similar to biological fate, such as absorption, metabolism and excretion. Such procedure may interact with nutrients and drugs. Drugs can influence nutrient absorption, metabolism or excretion ; the effects may impair the nutritional status of a patient. Specific nutrient, nutritional status, or dietary factors alter drug utilization. Therefore, medicated patients need to be aware of good nutrition practices and to understand the importance of dietary modifications associated with certain diseases. A nutritious and well balanced diet not only makes an important contribution to the health of those patients, but also reduces the risk of nutrition disorders or altered the pharmacological action of drugs.

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Oral Absorption of Cefoperazone Pivaloyloxymethyl Ester (세포페라존피바로일옥시메칠에스텔의 경구 흡수)

  • Choi, Young-Wook;Park, Gee-Bae;Choi, Seung-Ho;Kim, Johng-Kap
    • Journal of Pharmaceutical Investigation
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    • v.18 no.4
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    • pp.197-201
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    • 1988
  • Pivaloyloxymethyl ester of cefoperazone was synthesized by treating sodium cefoperazone with chloromethyl pivalate and its chemical structure was determined by spectroscopic trials. The pharmaceutical properties of the ester were investigated to assess its potential as a prodrug of cefo perazone. Cefoperazone pivaloyloxymethyl ester was microbiologically inactive itself in vitro, but hydrolyzed into the parent drug in vivo. After a single oral dose of each drug to rabbits, serum concentrations of cefoperazone were determined by high performance liquid chromatographic assay. The ester showed higher and more sustained blood level than cefoperazone. Therefore, the total area under the serum concentration-time curve of the derivative was 16.8 times larger than that of the parent drug.

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The Relationship of in vitro Dissolution and Intestinal Membrane Permeability with in vivo Bioavailability (시험관내 용출 및 장관막 투과도와 생체이용률과의 상관성)

  • 서수경;손수정;박인숙;최기환;김순선;유태무;조혜영;이용복;김동섭
    • YAKHAK HOEJI
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    • v.44 no.5
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    • pp.424-431
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    • 2000
  • A biopharmaceutics drug classification system for correlation between in vitro dissolution and in vivo bioavailability is proposed based on recognizing that drug dissolution and gastrointestinal permeability are the fundamental parameters controlling the rate and extent of drug absorption. The objective of this study was to assess whether in vitro dissolution profiles of immediate-release beta-blocker tablets can be correlated with intestinal membrane permeability and/or in vivo bioavailability In vitro dissolution of the beta-blocker tablets was examined using KP VII Apparatus II methods at various pH. Intestinal membrane permeability was determined in vitro using the diffusion chamber method. Bioavailablity parameters were cited from literatures. The dissolution profiles did not accurately represent the in vivo bioavailablity However there were good correlations between intestinal membrane permeability and log P (noctanol/buffer). The correlations obtained in this study indicated that in vitro diffusion chamber method could be used to predict intestinal absorption in vivo.

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Percutaneous absorption Characteristics of Anti hyperlipidemia Gel Ointment using Fibric acid (Fibric acid를 이용한 항고지혈증 겔 연고의 경피 흡수 특성)

  • Jung, Duck-Chae;Hwang, Sung-Kwy;Oh, Se-Young
    • Journal of the Korean Applied Science and Technology
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    • v.27 no.4
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    • pp.407-414
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    • 2010
  • New biological treatments were being developed at a record place, but their potential could be compromised by a significant obstacle: the delivery of these drugs into a body. Pharmaceutical delivery is now nearly as important as product. New systems are being developed, and Drug Delivery Markets Series cover these new systems. Transdermal Delivery System(TDS) is often used as a method of drug dosage into the epidermic skin. An approach used to delivery drugs through the skin for therapeutic use as an alternative to oral, intravascular, subcutaneous and transmucosal routes. Various transdermal drug delivery technologies are described including the use of suitable formulations, carriers and penetration enhancers. The most commonly used transdermal system is the skin patch using various types of technologies. Compared with other methods of dosage, it is possible to use for a long term. It is also possible to stop the drug dosage are stopped if the drug dosage lead to side effect. Polysaccharides, such as karaya gum and glucomannan, were selected as base materials of TDS. Also, these polymers were characterized in terms of enhancers, drug contents. Among these polysaccharide, the permeation rate of karaya gum matrix was fastest in fibric acid(ciprofibrate) such as lipophilic drug in vitro. We used glycerin, PEG400 and PEG800 as enhancers. Since dermis has more water content(hydration) than the stratum corneum, skin permeation rate at steady state was highly influenced when PEG400 was more effective for lipophilic drug. Proper selection of the polymeric materials which resemble and enhance properties of the delivering drug was found to be important in controlling the skin permeation rate. Especially, this result suggests a possible use of polysaccharide gel ointment matrix as a transdermal delivery system of anti-hyperlipoproteinemic agent.

Dissolution Characteristics of Hydrophobic Drug-Soluble Carrier Coprecipitates(III) -Dissolution Behaviour of Indomethacin from Several Fast Release Solid Dispersions of Indomethacin-

  • Jeon, In-Koo;Lee, Min-Hwa;Kim, Shin-Keun
    • Journal of Pharmaceutical Investigation
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    • v.6 no.3
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    • pp.58-69
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    • 1976
  • It is well established that dissolution is freruently the rate limiting step in the gastrointestinal absorpton of a drug from a solid dosage from. The relationship between the dissolution rate and absorption is particularly distinct when considering drugs of low solubility. Consequently, numerous attempts have been made to modify the dissolution characteristics of poorly water soluble drugs. Since dissolution rate is directly proportional to surface area, one may increase the rate by decreasing the particle size of the drug. Levy has considered a number of methods by which a drug may be presented to the GI fludids in finely divided from. The direct method is the utilization of microcrystalline or micronized particles. A second method involves the administration of solutions from which, upon dilution with gastric fluids, the dissolved drug will precipitate in the form of very fine particles. A more unique way of obtaining microcrystalline dispersions of a drug has been ercently suggested by Sekiguchi et al. They have first proposed the formation of a eutectic mixture of a poorly water soruble drug with a physiologically inert, easily soluble carrier. When such systems are exposed to water or GI fluids, the soluble carrier will dissolve rapidly and the finely dispersed drug particles will then be released. It has been suggested by Shefter and Higuchi that the formation of crystalline solvate could be a powerful tool in affecting rapid disslution of highly insoluble substances. Goldberg et al. have noted that the formation of solid solution could reduce the particle size to a minimum and increase the dissolution rate as well as the solubility of the durgs. It has also been shown that the rates of solution of drugs were appreciably increased by coprectipitating the drug with soluble polymers. The increase was found to be sensitive to the method of preparation, the molecular weight of polymer and the particular ratio of drugs to polymer. Although several investigations have demontrated that the solubility and/or dissolution rates of drugs can be increased in this manner, little information is available in the literature related to the in vivo absorption pattern of drugs orally administered as PVP coprecipitates. Recently, however, it was demonstrated that both the rate and extent of absorption of the insoluble drug could be markedly enhanced when orally administered to rats in the form of a coprecipitate with PVP. The purpose of the present investigation was to ascertain the general appility of soluble polymer coprectation technique as a method for enhancing the in vitro dissolution rate of hydrophobic indomethacin. To accomplish this aim, the dissolution characteristics of pure indomethacin, indomethcin-polymer physical mixtures and indomethacin-polymer coprecipitates were quantitatively studied by comparing their relative dissolution rates. The solubility and dissolution behavior of these systems were also examined.

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Drug Delivery Study on Chitosan Nanoparticles Using Iron Oxide (II, III) and Valine (Iron Oxide(II, III)와 Valine을 이용한 키토산 나노입자의 약물전달 연구)

  • Jang, So-Hyeon;Kang, Ik-Joong
    • Korean Chemical Engineering Research
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    • v.59 no.4
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    • pp.514-520
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    • 2021
  • A drug delivery system (DDS) based on nanoparticles has been used as a mediator to improve the efficacy of a drug by controlling the amount of drug released and delivering it to a target place. Chitosan, which is non-toxic and biodegradable, has good biocompatibility and excellent adsorption, so it can be used as a drug delivery vehicle. Valine, the essential amino acids, helps muscle growth and tissue recovery, and along with other amino acids. It lowers blood sugar levels and increases growth hormone production. In this study, Valine was adsorbed on magnetic chitosan which is capable of drug absorption, and Fe3O4-Valine CNPs was prepared through cross-linking with TPP (Tripolyphosphate). And then absorption and release trends of valine were investigated with the Fe3O4-Valine CNPs. Fe3O4, which has relatively high stability, is used to make the drug carrier magnetic so that the drug can be delivered to a target place. At optimal conditions, the absorption and release tendency of Fe3O4-Valine CNP was confirmed by analyzing by UV-Vis through the Ninhydrin test which is the color reaction of amino acids and by measuring the size of the particles, it was confirmed that it is suitable as a drug carrier.

Drug Adsorption Behavior of Polyolefin Infusion Tube Compared to PVC and PU (Non-PVC(폴리올레핀) 수액용 튜브 내면에서의 약물흡착 거동 - PVC 및 PU 수액튜브와의 비교)

  • Park, Kang Hoon;Park, Chang Kyu;Park, Jong;Jeon, Seungho;Bang, Sa-Ik;Kim, Ji-Heung;Chung, Dong June
    • Polymer(Korea)
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    • v.38 no.3
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    • pp.333-337
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    • 2014
  • PVC (polyvinyl chloride) intravenous fluid bags and tubes that contain DEHP (diethylhexyl phthalate) as a plasticizer have several associated disadvantages for intravenous injections. We investigated the drug absorption behaviors on the inner surface of an infusion tube that consisted of commercialized PVC/PU (polyurethane). We developed a non-PVC (polyolefin) tube in order to improve the efficacy of this drug administration method. We prepared four types of non-PVC (polyolefin) infusion tubes using a polyethylene (PE), polypropylene (PP), syndiotactic 1,2-polybutadiene (PB), and styrene-ethylene (SE) copolymer elastomers were prepared using a single screw extruder. The four types of manufactured non-PVC (polyolefin) infusion tubes had good mechanical properties that were equivalent to PVC tube properties. The four types of prepared non-PVC (polyolefin) infusion tubes also prohibited drug absorption when compared to the commercialized PVC and PU tubes. Therefore, based on the results of this study, prepared non-PVC (polyolefin) tubes are good candidates for infusion because they prevent drug absorption and the release of DEHP.

Technology for Skin Rejuvenation and Homeostasis by Fermented Product with Micro-needle Therapy System (마이크로니들 시술에 의한 발효제품의 피부 재생 및 항상성 강화 기술)

  • Kim, Eun-Ju;Jung, Hyun-Ki;Kim, Sung-Jun
    • KSBB Journal
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    • v.25 no.2
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    • pp.116-122
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    • 2010
  • Fermented materials have been used for long time around the world and have been researched according to the excellent effect in the part of medical and food industry. However, when such materials are applied on skin, because of the skin barrier, the most effective ingredients are poorly absorbed. The absorption of the skin is exceedingly limited and the method of increasing skin absorption needs special procedures. The micro-needle therapy is a method used to improve the absorption of drug (solution) in the skin which is called "natural skin rejuvenation therapy". This therapy uses micro-needle which is equipped with very thin, delicate needles smaller than a 0.07 mm thick hair. During this therapy, the micro-needle makes small holes and helps absorb the solution into the skin. This is a very excellent therapy in skin absorption. It can be used in wide regions of the skin without any side effects and no recovery time. In 2007, the micro-needle is permitted to personal care. However, the solutions have not yet been developed professionally, and such skill is needed.

Targeted and sustained delivery of hydrocortisone to normal and stratum corneum-removed skin without enhanced skin absorption using a liposome gel

  • Kim, Moon-Kyoung;Chung, Suk-Jae;Lee, Min-Hwa;Cho, Ae-Ri;Shim, Chang-Koo
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1996.04a
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    • pp.278-278
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    • 1996
  • Judging from hydrocortisone concentration in dosing area, the extent of absorption was reduced in the liposome-gel formulation. However, higher and sustained skin concentrations of hydrocortisone were achieved for the liposome-gel as compared to the ointment. Drug concentration in both viable and deep skin reached its maximum within 0.5 h after application of both formulations to both skin types. Drug concentrations in both skins from the ointment declined with time, while those from the liposome-gel were greatly sustained. The sustainment by the liposome-gel was more remarkable in the viable skin than in the deep skin. Drug concentration in the viable skin could be maintained at a nearly constant level for over 8 h by applying the liposome-gel. As a result, a 5-fold higher viable skin drug concentration was obtained from the liposome-gel than from the ointment at 8 h after the application to the SC-removed skin. However, the plasma concentration of hydrocortisone at 4 h from the liposome-gel was only one-fourth (p<0.01) the value from the ointment when the drug was applied to the SC-removed skin, consistent with. the lower urinary (one-third, p<0.05) and fecal (one-half, p<0.05) excretion. Conclusions : Retarded diffusion of the drug from the skin to the systemic blood stream appears to be a potential factor in the sustained skin concentration of hydrocortisone from the liposome-gel, Interaction of hydrocortisone in the skin with phosphatidylcholine, a component of the liposomes and skin, may well be a factor in retarding the diffusion of the drug in the skin.

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