• Title/Summary/Keyword: poly(N-vinylpyrrolidone) (PVP)

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Effect of Hydrophilic Polymers on the Release of BCNU from BCNU-loaded PLGA Wafer (친수성 고분자가 BCNU 함유 PLGA 웨이퍼로부터 BCNU의 방출에 미치는 효과)

  • 안태군;강희정;문대식;이진수;성하수
    • Polymer(Korea)
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    • v.26 no.5
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    • pp.670-679
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    • 2002
  • 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU, carmustine) is one of the effective chemotherapeutic agents which has been used clinically for treating malignant glioma. Poly(D,L-lactide-co-glycolide) (PLGA, molecular weight: 20000 g/mole. mole ratio of lactide to glycolide 75 : 15) is a well known biodegradable polymer used as a drug carrier for drug delivery system. In this study, we investigated the BCNU release behaviour of BCNU-loaded PLGA wafers containing poly (N-vinylpyrrolidone) (PVP) or polyethyleneoxide (PEO) and the effect of hydrophilic polymers incoporated in the wafers. BCNU-loaded PLGA microparticles with or without hydrophilic polymers were prepared by a spray drying method and fabricated into wafers by direct compression. Encapsulation efficiency of BCNU-loaded PLGA microparticles containing PVP and PEO was 85 ∼ 97% and crystallinity of BCNU encapsulated in PLGA decreased significantly initial release amount and release rate of BCNU increased with the increasing PVP or PEO amount. Morphological change and mass loss of wafers during the release test were confirmed that hydration and degradation of PLGA would be facilitated with an increase of hydrophilic polymers.

Preparation and Characterization of Microorganism Fermentation Celluose as Hydrogel by Radiation Crosslinking (방사선 가교에 의한 미생물 발효 셀룰로오스 하이드로겔의 제조 및 특성)

  • Lim, Youn-Mook;Park, Jong-Seok;Gwon, Hui-Jeong;Nho, Young-Chang;Kim, Sung-Ho;Choi, Young-Hun;Lee, Sun-Yi;Chong, Moo-Sang
    • Journal of Radiation Industry
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    • v.5 no.2
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    • pp.113-118
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    • 2011
  • Hydrogels from a mixture of poly(N-vinylpyrrolidone) (PVP), ${\kappa}$-carrageenan and microorganism fermentation celluose were prepared by $^{60}Co$ gamma-ray irradiation. PVP and ${\kappa}$-carrageenan were mixed with the different ratios. Microorganism fermentation celluose were added to the mixture of PVP and ${\kappa}$-carrageenan to evaluate the effect of microorganism fermentation celluose on the gel strength. The gel strength of the hydrogel was evaluated for application of a wound dressing. The results showed that gelation and gel strength were increased with increasing the content of the microorganism fermentation celluose.

Comparative Bioavailability of Ipriflavone by Pharmaceutical Preparation Types (제제헝태에 따른 이프리플라본의 생체이용률 비교)

  • Jeong, Je-Kyo;Khang, Gil-Son;Rhee, John M.;Shin, Ho-Chul;Lee, Hai-Bang
    • Journal of Pharmaceutical Investigation
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    • v.30 no.1
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    • pp.21-26
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    • 2000
  • Bioavailability of ipriflavone (3-phenyl-7-isopropoxy-4H-I-benzopyran-4-one, IP), an antiosteoporotic drug with poor water-solubility, was studied for various types of pharmaceutical preparation in SD rats. The IP preparation types included (1) intact IP, (2) freezer milled IP (FIP), (3) freezer milled IP physically mixed with freezer milled poly-N-vinylpyrrolidone (PVP) (FIP+FPVP) and (4) spray-dried IP with PVP (SIP). Upon oral administration, SIP showed significantly higher absorption and elimination half-lives and the lag time $(t_{lag})$ than those of FIP+FPVP (approximately 2-fold). These results may be due to a sustained releasing effect of IP in the gastrointestinal tract by spray-drying with PVP. The $C_{max}$ of SIP was about 2 and 10 times higher than those of FIP+FPVP and FIP, respectively. The AUC of SIP was about 6 times higher than that of FIP+FPVP and 60 times that of FIP. Scanning electron microscopy (SEM) showed that SIP consisted of the finest particle size and minimal aggregation than other IP preparations. It is concluded that the IP formula prepared by the spray-drying method with PVP is the most effective approach to the improvement of bioavailability of IP.

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In Vitro Antitumor Activity of BCNU-Loaded PLGA Wafer Containing Additives (첨가제 함유 BCNU/PLGA웨이퍼의 in vitro 항암 활성)

  • Lee, Jin-Soo;An, Tae-Kun;Shin, Phil-Kyung;Chae, Ghang-Soo;Jeong, Je-Kyo;Lee, Bong;Cho, Sun-Hang;Khang, Gil-Son;Lee, Hai-Bang
    • Polymer(Korea)
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    • v.27 no.3
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    • pp.217-225
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    • 2003
  • We fabricated the 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU, carmustine)-loaded PLGA wafers containing poly(N-vinylpyrrolidone) (PVP) or tedium chloride (NaCl) in order to control the release profile of drug in special shape (3 in diameter, 1 mm in thickness) by direct compression method. In vitro release profiles of BCNU could be controlled by additives contained in the wafers. Initial release amount, release rate and duration of BCNU could be controlled with presence of PVP or NaCl. In vitro antitumor activity accessed using 9L gliosarcoma cell line has been evaluated by assaying the viability of cells treated with BCNU released from the wafers containing additives resulting in continuous growth inhibition of 9L gliosarcoma tumor cells. Specially, the continuous growth inhibition of BCNU-loaded PLGA wafers containing additives was more effective than that of non-additive BCNU-loaded PLGA wafers. The cytotoxic effect of the drug from the wafers containing NaCl as compared to wafers containing PVP was more enhanced.

The Effect of Solvents on Sold Dispersion of Ipriflavone with Polyvinylpyrrolidone In Vivo

  • Jeong, Je-Kyo;Ahn, Yong-San;Moon, Byung-Kwan;Choi, Myung-Kyu;Khang, Gil-Son;Rhee, John-M.;Lee, Hai-Bang
    • Journal of Pharmaceutical Investigation
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    • v.35 no.1
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    • pp.1-5
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    • 2005
  • ABSTRACT -Ipriflavone is a synthetic flavonoid derivate that improves osteoblast cell activity inhibiting bone resorption. In order to improve the bioavailability, solid dispersions of ipriflavone with PVP (poly-N-vinylpyrrolidone, MW=40,000 g/mole) were prepared by a spray-drying method. During the manufacturing of solid dispersion, various solvents [ethanol (EtOH), acetonitrile, methylene chloride and cosolvent-EtOH:acetone=1:1] were used to dissolve the ipriflavone and PVP. Scanning electron microscopy (SEM) and differential scanning calorimetry (DSC) were used to evaluate the physicochemical interaction between ipriflavone and PVP. Particle size, crystallinity and the area of the endotherm $({\Delta}H)$ of solid dispersed ipriflavone using the acetonitrile as solvent were much smaller than those of the other preparation types. Bioavailability of ipriflavone in vivo was changed by solvents. When considering the result of in vivo test, solid dispersion of ipriflavone using the acetonitrile as solvent showed the best choice.

Characteristics of BCNU-loaded PLGA Wafers (BCNU를 함유한 생분해성 PLGA 웨이퍼의 특성분석)

  • 안태군;강희정;이진수;성하수;정제교
    • Polymer(Korea)
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    • v.26 no.5
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    • pp.691-700
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    • 2002
  • Interstitial therapy using biodegradable polymeric device loaded with anticancer agent can deliver the drug to the tumor site at high concentration, resulting in an increase of therapeutic efficacy. 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU, carmustine) is most commonly used as chemotherapeutic agent for brain tumors. The design of implantable device is regarded as an important factor lot the efficient delivery of antitumor agent to targeting site. In order to control the release profile of drug, the release pattern of BCNU with the changes of various dimension and additives was investigated. The PLGA wafers containing 3.85, 10, 20 and 30% of BCNU were prepared in various shape (diameter of 3, 5 and 10 mm, thickness of 0.5, 1 and 2 mm) by direct compression method. In vitro drug release profile of BCNU-loaded PLGA wafers could be controlled by changing the dimension of wafers such as initial drug content, weight, diameter, thickness, volume and surface area of wafers, as well as PLGA molecular weight and additives. Drug release from BCNU-loaded PLGA wafers was facilitated with an increase of BCNU-loading amount or presence of poly(N-vinylpyrrolidone)(PVP) or sodium chloride (NaCl). The effects of various geometric factors and additives on the BCNU release pattern were confirmed by the investigation of mass loss and morphology of BCNU-loaded PLGA wafers.

Characterization and Controlled Release of Solid Dispersed Sibutramine (시부트라민 고체 분산체의 특성화 및 조절된 방출거동)

  • Park, Jung-Soo;Ku, Jeong;Lee, Jun-Hee;Kim, Yun-Tae;Park, Jong-Hak;Ahn, Sik-Il;Mo, Jong-Hyun;Lee, Hai-Bang;Khang, Gil-Son
    • Journal of Pharmaceutical Investigation
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    • v.38 no.2
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    • pp.119-126
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    • 2008
  • Solid dispersions of poorly water-soluble drug, sibutramine, were prepared with hydrophilic polymer, poly-N-vinylpyrrolidone (PVP), hydroxypropylmethylcellulose (HPMC) and organic acid, citric acid, to improve the solubility of drug. Physicochemical variation and shape of microsphere were characterized by scanning electron microscopy (SEM), differential scanning calorimeter (DSC) and Fourier-transform infrared spectroscopy (FT-IR). Microspheres containing additives showed more spherical shape than non additive microspheres. In vitro release behavior of microspheres presented at simulated gastric fluid (pH 1.2) and simulated intestinal fluid (pH 6.8). The solid dispersion form transformed the drug into an amorphous state and dramatically improved its dissolution rate. These data suggest that the solid dispersion technique is an effective approach for developing the appetite depressant drug products and various pharmaceutical excipients are able to control the release behaviors.