• 제목/요약/키워드: carboxymethylcellulose matrix

검색결과 4건 처리시간 0.017초

Photobacterium phosphoreum을 고정화하기 위한 Carboxymethylcellulose Sodium Salt [CMC] 담체의 이용성 연구 (Studies on the Use of Carboxymethylcellulose Sodium Salt Matrix for the Immobilization of Photobacterium phosphoreum)

  • 이용제;정성제;허문석;전억한
    • KSBB Journal
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    • 제15권1호
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    • pp.49-54
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    • 2000
  • 1.0%(w/v)의 CMC 담체는 고정화를 유지할 수 있는 점도를 가지며 0.1 M 이하의 양이온과 이온가교결합을 할 수 있는 농도이다. Luminometer tube내의 시료에 유동을 최소화함으로써 산소의 공급을 일정하게 하여 P. phosphoreum을 고정화 30분 후 bioluminescence intensity가 안정되어 바로 측정할 수 있는 장점을 가지고 있었다. 1.0%(w/v) CMC담체는 pH 6.92로 최적조건인 pH 7.0에 근접했으며, 발광기작에 필요한 산소전달(oxygen transfer)이 1.5%(w/v)~3.0%(w/v) CMC 담체보다 뛰어나 Bioluminescence intensity의 안정성을 부여하였다. Cr-화합물인 $Na_{2}CrO_{4}$, $K_{2}CrO_{4}$, $CrO_{3}$, CrK$(SO_4)_{2}$$CrCl_{3}$의 CMC담체에 대한 민감도는 $\gamma$값을 이용해서 $EC_{50}$값으로 나타내었을 때 $Na_{2}CrO_{4}$, $K_{2}CrO_{4}$, CrK$(SO_4)_{2}$$CrCl_{3}$$EC_{50}$값이 1.0%(w/v)CMC에서는 5.4~16.3 g/L으로 1.5%(w/v)~3.0%(w/v) CMC에서는 6.2~555.9 g/L의 범위로 나타났다. 이것은 1.0%(w/v) CMC가 낮은 독성 농도에서 bioluminescence intensity가 50% 감소함을 알 수 있고, 상관계수($R^2$)가 0.911~0.990 으로 높게 산출되었다. 따라서 1.0%(w/v) CMC 담체가 P. phosphoreum의 biolumincsene에 안정성을 주었으며, 독성물질에 가장 민감하다는 것을 알 수 있었다.

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삼출액과 감염이 동반된 창상의 치료에 있어 은 함유 카르복시메틸 셀룰로즈 드레싱의 역할 (Role of Silver-containing Carboxymethyl Cellulose Dressing in the Management of Exudative Infected Wounds)

  • 이지혁;이은상;강소라
    • Archives of Plastic Surgery
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    • 제34권3호
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    • pp.305-313
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    • 2007
  • Purpose: Wound healing is a result of complex processes whose components, such as cells, extracellular matrix, proteolytic enzymes, and their inhibitors receive effects from immune compartments, cytokines, chemokines, and growth factors. Impairment of normal physiologic response to wounding makes nonhealing chronic wounds. Wound infection and exacerbated proteolytic process may induce uncontrolled tissue degradation or exudates formation, which may result in the development of a nonhealing chronic wound. Thus proper management of wound infection and exudates is critical to prevent and treat nonhealing wound. The aim of this study is to evaluate effects of Aquacel AG, silver-containing carboxymethylcellulose dressing on treatment for exudative infected wound. Methods: The study included 31 patients with nonhealing wound. Wound was dressed with Aquacel AG. The effect of dressing was investigated by serial bacterial culture and wound exudates assessment. Each infection and exudates control time was determined and statistically analyzed. Results: Wound infection and exudates were effectively managed using Aquacel AG dressing. Mean infection and exudates control time were $3.4{\pm}1.2$ and $5.7{\pm}1.4$ weeks, respectively. Statistical analysis of the data indicated that infection control time correlated positively to age and exudates control time (p<0.05). Conclusion: There is as yet no ideal dressing for the topical treatment of chronic nonhealing wound. But silver-containing carboxymethylcellulose dressing can be used effectively for exudative, infected nonhealing wound.

수종의 붕해제가 살리실아미드정제의 제제특성에 미치는 영향 (The Effect of Disintegrants on the Properties of Salicylamide Tablets)

  • 황성주;이계주;지웅길;곽효성;김종국
    • Journal of Pharmaceutical Investigation
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    • 제22권1호
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    • pp.41-48
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    • 1992
  • Six common tablet disintegrants (corn starch, Avicel PH102, calcium carboxymethylcellulose, Primojel, Kollidon CL and Ac-Di-Sol) were used at the concentration of 0, 2, 4 and 6% (w/w) in salicylamide tablets made with wet granulation method. Certain physical parameters of the disintegrants (moisture sorption, hydration capacity and bulk density) were determined to evaluate their relative efficiency. The disintegration time and dissolution rate of the tablets were correlated well with the ranks of initial rate of moisture sorption for each disintegrant as follows; Ac-Di-Sol, Kollidon CL, primojel, calcium CMC, corn starch and Avicel PH102. The initial rate of moisture sorption was important for the disintegration capacity as well as hydration capacity. The effect of storage at different temperatures and relative humidity upon the tablets containing various disintegrants was evaluated in terms of tablet hardness and disintegration time. Storage at high temperature reduced the hardness substantially and retarded the disintegration of the all tablets studied. Especially, the hardness of tablets containing Kollidon CL was significantly reduced. Although the tablet hardness was decreased and the disintegration time was increased under a moderate humid condition, both of them were decreased under the severely high humid condition of 80 or 90% RH, which was due to the breakrupture of tablet matrix bonds by the excessive uptake of moisture. Therefore, the stability caused by moisture sorption should be considered, when disintegrants having high moisture sorption such as Kollidon CL, Ac-Di-Sol and Primojel were employed in the tablets containing water-labile or hygroscopic drugs.

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