• Title/Summary/Keyword: alginate coating

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Effects of a Sodium Alginate Coating on Egg Quality during Storage (Sodium Alginate 코팅이 계란의 저장시 품질에 미치는 영향)

  • Hong, Wan-Pyo;Jeong, Yoon-Hwa;Ahn, Yong-Hyun
    • Journal of the East Asian Society of Dietary Life
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    • v.17 no.6
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    • pp.822-826
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    • 2007
  • This study was conducted to determine the effects of a 0.5% sodium alginate eggshell coating, that was applied at two temperatures, 5 and $25^{\circ}C$, by examining the degree of microbial inhibition on the eggshell surface as well as the coating's effects on egg quality during storage. A significant portion of human Salmonella enteritidis infection is traced to food contamination, and eggs are often highly exposed to this type of contamination. The 0.5% sodium alginate coating's effect for inhibiting microbial growth on the eggs, at $25^{\circ}C$ for 7 days, was one hundred thousand times more effective than that of the uncoated eggs. The pH level in eggs increases as the eggs lose $CO_2$ and as the storage temperature increases. We found that the pH of the coated eggs was lower than that of the uncoated eggs. The pH for the uncoated eggs changed from 7.72 to 7.94 over 30 days of storage at $5^{\circ}C$. However, when the eggs were coated with 0.5% sodium alginate, the pH changed from 7.72 to 7.85 over 30 days of storage at $5^{\circ}C$. The Haugh unit was 66.02 for the uncoated eggs and 70.37 for the 0.5% sodium alginate coated eggs after 30 days of storage. The yolk index of the eggs coated with sodium alginate was higher than that of the uncoated eggs after 30 days. These results indicate that a sodium alginate coating on eggs can serve as protection from microbes and is effective in preserving the interior quality of eggs.

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The Effect of Sodium Alginate Coating on the Storage Stability and Dissolution Rate of Enteric Coated Lansoprazole (알긴산 나트륨이 장용코팅된 란소프라졸 제제의 저장안정성 및 용출률에 미치는 영향에 관한 연구)

  • Kim, Jung-Hoon;Oh, Jung-Min;Khang, Gil-Son;Jeong, Je-Kyo;Lee, Jung-Sik;Jeung, Sang-Young;Lee, Hai-Bang
    • Journal of Pharmaceutical Investigation
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    • v.32 no.4
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    • pp.277-284
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    • 2002
  • Lansoprazole, pharmaceutics for acid-related diseases, is unstable in low pH environments and generally coated with enteric polymer to obtain gastroresistance in stomach. Because its storage stability is influenced by acidic substitutes of enteric polymer, alkaline chemicals wεre generally addεd to dosage form as a stabilizer. In this experience, we coated lansoprazole bead with sodium alginate and evaluated the effect of bead size and sodium alginate coating on the storage stability and dissolution profile of lansoprazole. Sodium alginate solution containing lansoprazole was sprayed as a droplet into 3% (w/v) $CaCl_2$ solution and the resultant bead was coated with starch, sodium alginate, and hydroxypropyl methylcellulose phthalate. The content of lansoprazole granule not coated with sodium alginate decreased to 57.96% of initial content when stored at a severe condition for 4 weeks, but that of lansoprazole granule coated with sodium alginate before enteric coating decreased little and as the thickness of sodium alginate film increased, the content of bead didn't decreased for 4 weeks. Sodium alginate film also improved the gastroresistance without much influencing the maximum dissolution rate.

Improvement of Water Resistant Properties of a Linerboard for Corrugated Fiberboard Box by Coating with Na-alginate (알긴산 코팅에 의한 골판지 상자 제조용 라이너 원지의 수분저항성 증진)

  • Kim, Eun-Jung;Rhim, Jong-Whan;Kim, Byung-Yong
    • Korean Journal of Food Science and Technology
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    • v.38 no.6
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    • pp.762-766
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    • 2006
  • To improve water resistance of paperboard used to manufacture the corrugated boxes, effect of surface coating of the liner- board with Na-alginate was investigated by determining the optimum processing conditions such as a optimum alginate concentration for surface coating, plasticizer content, concentration of divalent cations their immersion times, For the surface coating of the liner-board, 2.5% Na-alginate solution was found to be the optimum concentration, and the concentration of glycerol used as plasticizer was effective when 35% alginate concentration was use was Used Immersion of the alginate coated paperboard for 3 min in a $CaCl_2$ solution improved the water resistance properties. As a divalent cation for the insolubilization of the alginate films, $Cu^{2+}$ was found to be as effective as $Ca^{2+}$. Among the platicizers tested, sorbitol was the most effective in reducing water vapor permeability and water solubility of alginate coated paperboard.

Application of Statistical Experimental Design to Improve the Quality of Fresh-Cut Apple Cubes by Edible Coating with Alginate

  • Zuo, Li;Lee, Jun-Ho
    • Food Science and Biotechnology
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    • v.15 no.6
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    • pp.825-832
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    • 2006
  • The effect of alginate coating in combination with an anti-browning agent on increasing the post-cutting shelf life and improving the quality of minimally processed apple cubes was studied during storage at room temperature for 5 days. A simple coating technique involving the chemical cross-linkage of alginate by calcium was used. Statistical-based experimental designs were applied to improve the quality of the alginate-coated apple cubes (ACAC). Plackett-Burman design was first used to determine the main factors influencing the preservation of the original weight, color, and texture of ACAC. Among these variables, alginate concentration ($X_1$), dipping time ($X_2$), and dipping temperature ($X_3$) significantly influenced the ACAC weight and color (confidence levels above 90%). Subsequently, the effects of the 3 main factors were further investigated by a central composite design. The polynomial models developed by response surface methodology were adequate to describe the relationships between the studied factors and the responses. Overall optimization conducted by superimposing the curves of the responses enabled the determination of an optimal range of the independent variables in which the five responses were simultaneously optimized. The point chosen as representative of this optimal area corresponded to $X_1=2.98%$, $X_2=0.85\;min$, and $X_3=55^{\circ}C$ and under these conditions the model predicted weight loss=0.522%, relative hardness=1.517, ${\Delta}E=1.423$, browning inhibition=93.403%, and ${\Delta}L=0.158$.

Control of Crisphead Lettuce Damping-off and Bottom Rot by Seed Coating with Alginate and Pseudomonas aeruginosa LY-11

  • Heo, Kwang-Ryool;Lee, Kwang-Youll;Lee, Sang-Hyun;Jung, Soon-Je;Lee, Seon-Woo;Moon, Byung-Ju
    • The Plant Pathology Journal
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    • v.24 no.1
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    • pp.67-73
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    • 2008
  • Seedling damping-off and bottom rot caused by Rhizoctonia solani are yield limiting diseases of crisphead lettuce. To provide biocontrol measure in the management of the diseases, biocontrol strain Pseudomonas aeruginosa LY-11 was isolated from lettuce rhizosphere and introduced into crisphead lettuce rhizosphere by the seed coating delivery method. Alginate was used as a coating material to generate beads containing $10^6-10^{6.5}$ colony-forming units (CFUs) of viable bacterial cells of LY-11. When seeds germinated from the alginate beads containing the strain LY-11, the bacteria established mostly in plant rhizosphere to maintain at least $10^4$ CFU per gram of plant tissues. Crisphead lettuce seedlings germinated from the entrapped seeds were less affected from damping-off and bottom rot with disease control values of 70.4% and 85.4% respectively. Although P. aeruginosa LY-11 colonized plant rhizosphere and not phyllosphere, the result indicated that bottom rot caused by the foliar inoculation of R. solani was effectively reduced by the rhizobacteria. All data suggested that immobilized rhizobacterial application in seeds by alginate coating could control damping-off and induce induced systemic resistance of crisphead lettuce to reduce bottom rot.

Release proporties of ovalbumin from alginate microspheres prepared using the nozzle in spray dryer system

  • Park, Jeong-Eun;Lee, Chang-Moon;Park, Hee-Jung;Kim, Gwang-Yun;Rhee, Joon-Haeng;Lee, Ki-Young
    • 한국생물공학회:학술대회논문집
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    • 2005.04a
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    • pp.570-573
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    • 2005
  • The spray method was chiefly used to prepare alginate microspheres. Additionally due to formation at mild conditions, the alginate microspheres were coated with chitosan. The particle size of alginate microspheres increased when the sodium alginate increased. Release pattern of OVA in alginate microspheres was evaluated at PBS buffer(pH 7.4) and HCl buffer(pH 1.2). Release rate of OVA from chitosan/alginate microsphere was also lower than that with the concentration of alginate in the microspheres, the amount of OVA released from alginate microspheres increased from alginate micorsphere. Therefore, the alginate microspheres can be prepared by spray rozzle for a protein drug delivery. OVA release from the alginate microspheres was controlled by a coating with chitosan.

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Effects of Physicochemical Parameters on Production of Cooked Rice Analogs by Calcium Alginate Gels (Calcium Alginate Gels을 이용한 Cooked Rice Analog의 제조에 대한 물리화학적 인자의 영향)

  • Roh, Hye-Jin;Jo, Eun-Hee;Kim, Hong-Deok;Kim, Seon-Bong
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.49 no.1
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    • pp.20-25
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    • 2016
  • This study elucidated the effects of physicochemical factors on the production of cooked rice analogs using calcium alginate gels. Cooked rice analogs were prepared using various sodium alginate concentrations, agitation speeds, dropping distances, coating times, curing times and heating times. The diameter ratio and rupture strength of authentic cooked rice were 0.38 and 268.4 kPa, respectively. The diameter ratio of the analogs prepared with 0.7% (w/v) sodium alginate was 0.39, which was the closest to that of authentic cooked rice. When sodium alginate solution (0.7%, w/v) was dropped into calcium chloride solution (2%, w/v) via a nozzle, the diameter ratio of the analogs at an agitation speed of 520 rpm was 0.39. The optimal dropping distance was 8 cm and the optimal coating and curing times were each 20 min. The analogs were coated with β-cyclodextrin to improve their physical properties. The diameter ratio of the coated analogs was little changed; however, the rupture strength decreased slightly after heating for 60 min at 95°C.

Development of High Functional Coating Agents for Pulp Mold (IV) - Manufacture of higher functional and biodegradable coating agents - (펄프몰드용 새로운 고기능 코팅제 제조기술개발(제4보) - 고기능 생분해성 코팅제 제조 -)

  • Kang Jin-Ha;Lim Hyun-A;Park Seong-Cheol
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.38 no.1 s.113
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    • pp.45-53
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    • 2006
  • This study was carried out to produce high functional and biodegradable coating agents for pulp mold by evaluating various kinds of biodegradable polymers. Five kinds of biodegradable polymers were used. In addition, the mixture of the carboxymethylated starch and biodegradable polymers(${\kappa}$-carrageenan, chitosan) were used for mixed coating agents. Physical properties of coated paperboards were evaluated. Conclusions obtained were as follows. 4% ${\kappa}$-carrageenan and 5% chitosan showed higher water and oil resistance. 10% sodium alginate, 4% corn zein and 15% polycaprolactone showed high water resistance while no improvement was found on oil resistance. The optimum mixture ratios for the mixed coating agents were 90:10(carboxymethylated starch : ${\kappa}$-carrageenan) and 50:50(carboxymethylated starch : chitosan). Since these mixed coating agents have excellent biodegradability with higher water and oil resistance, these can be used for the environmental-friendly coating agents.

Preparation and Characterization of Alginate-Chitosan Microsphere for Controlled Delivery of Silver Sulfadiazine (설파디아진은의 방출제어를 위한 알지네이트-키토산 미립구의 제조 및 특성)

  • Cho, Ae-Ri
    • Journal of Pharmaceutical Investigation
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    • v.31 no.2
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    • pp.101-106
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    • 2001
  • Alginate-chitosan (anion-cationic polymeric complex) was prepared to control the release rate of silver sulfadiazine (AgSD). Na-alginate (2%) solution containing AgSD was gelled in $CaCl_2$ solution. The gel beads formed were immediately encapsulated with chitosan (CS). The gel matrix and membrane were then reinforced with chondroitin-6-sulfate (Ch6S). Release rate of AgSD from the gel matrix was investigated by placing alginate beads in the sac of cellulose membrane simmered in HEPES-buffer solution. The concentration of AgSD released was analyzed by UV at 264 nm. Incorporation capacity of AgSD in Ca-alginate gel was more than 90%. Alginate-Ch6S-CS could control the release rate of AgSD. The amount of AgSD release was dependent on the AgSD loading dose. Incorporation of tripolyphosphate (polyanionic crosslinker) onto the alginate-Ch6S-CS bead increased the release rate of AgSD. Collagen-coating had no influence on the AgSD release rate. Alginate-Ch6S-CS beads with a sufficiently high AgSD encapsulation were capable of controlling the release of the drug over 10 days. In summary, alginate-Ch6S-CS beads could be used as a sustained delivery for AgSD and provide local targeting with low silver toxicity and patient discomfort.

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Preparation of Alginate/Chitosan Microcapsules and Enteric Coated Granules of Mistletoe Lectin

  • Lyu, Su-Yun;Kwon, Young-Ju;Joo, Hye-Jin;Park, Won-Bong
    • Archives of Pharmacal Research
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    • v.27 no.1
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    • pp.118-126
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    • 2004
  • The aqueous extract of European mistletoe (Viscum album, L.) has been used in cancer therapy. The purified mistletoe lectins, main components of mistletoe, have demonstrated cytotoxic and immune-system-stimulating activities. Korean mistletoe (Viscum album L. coloratum), a subspecies of European mistletoe, has also been reported to possess anticancer and immunological activities. A galactose- and N-acetyl-D-galactosamine-specific lectin (Viscum album L. coloratum agglutinin, VCA) with Mr 60 kDa was isolated from Korean mistletoe. Mistletoe preparations have been given subcutaneously due to the low stability of lectin in the gastrointestinal (GI) tract. In the present study, we investigated the possibility of alginate/chitosan microcapsules as a tool for oral delivery of mistletoe lectin. In addition, our strategy has been to develop a system composed of stabilizing cores (granules), which contain mistletoe lectin, extract or powder, coated by a biodegradable polymer wall. Our results indicated that successful incorporation of VCA into alginate/chitosan microcapsules has been achieved and that the alginate/chitosan microcapsule protected the VCA from degradation at acidic pH values. And coating the VCA with polyacrylic polymers, Eudragit, produced outstanding results with ideal release profiles and only minimal losses of cytotoxicity after manufacturing step. The granules prepared with extract or whole plant produced the best results due to the stability in the extract or whole plant during manufacturing process.