• Title/Summary/Keyword: calcium alginate

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Sphericity Optimization of Calcium Alginate Gel Beads and the Effects of Processing Conditions on Their Physical Properties

  • Woo, Jin-Wook;Rob, Hye-Jin;Park, Hyun-Duck;Ji, Cheong-Il;Lee, Yang-Bong;Kim, Seon-Bong
    • Food Science and Biotechnology
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    • v.16 no.5
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    • pp.715-721
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    • 2007
  • In this study, the sphericity of calcium alginate gel beads was optimized using response surface methodology. The optimum conditions for bead sphericity were a concentration of 2.24% sodium alginate, a flow rate of 0.059 mL/sec for the sodium alginate solution, and a 459 rpm rotation for the calcium chloride solution. The predicted and experimental bead sphericities under the optimum conditions were 94.5 and 96.7%, respectively, showing close agreement. We also investigated the processing condition effects for the physical properties of the optimized calcium alginate gel beads. Immersion in hot water slightly decreased bead size and rupture strength. NaCl treatment increased bead size and decreased rupture strength. While the pH of the calcium chloride solution had little effect on bead sphericity, the bead sizes and gel strengths decreased with longer times in each pH solution. The beads coated with pectin and glucomannan showed no significant changes in sphericity, but their sizes decreased with time. The coated beads showed higher rupture strengths than the uncoated beads.

Production optimization of flying fish roe analogs using calcium alginate hydrogel beads

  • Ha, Bom-Bi;Jo, Eun-Hee;Cho, Suengmok;Kim, Seon-Bong
    • Fisheries and Aquatic Sciences
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    • v.19 no.7
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    • pp.30.1-30.7
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    • 2016
  • Due to decreased supplies of marine resources and byproducts, new processing technologies for the development of analogs for natural fishery products are becoming increasingly important in the fishing industry. In the present study, we investigated the optimal processing conditions for flying fish roe analogs based on alginate hydrogels. Optimized processing of these analogs was performed by response surface methodology. The optimal processing conditions for the flying fish roe analogs (based on sphericity) were at a sodium alginate concentration of 2.41 %, calcium chloride solution curing time of 40.65 min, calcium chloride concentration of 1.51 %, and a reactor stir speed of $254{\times}g$. When the experiment was performed under these optimized conditions, the size (mm), sphericity (%), and rupture strength (kPa) of the analogs were $2.2{\pm}0.12$, $98.2{\pm}0.2$, and $762{\pm}24.68$, respectively, indicating physical properties similar to their natural counterparts.

Alginate-Microfibers Produced by Self-Assembly in Cell Culture Medium

  • Park, Jeong-Hui;Shin, Ueon-Sang;Kim, Hae-Won
    • Bulletin of the Korean Chemical Society
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    • v.32 no.2
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    • pp.431-433
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    • 2011
  • Alginate microfibers were fabricated by self assembly of alginate monomers exuded from alginate beads (~2 mm in diameter) containing calcium phosphate. Upon incubation of the beads in cell culture medium at $37^{\circ}C$ for a few days, fibers with a diameter of about $7{\mu}m$ started to sprout from the bead surface, and these grew up to about 10 mm in length, resulting in the beads being covered with fiber forests similar to chestnut bur. The combined system of the alginatebased microfiber forest and bead is considered to be useful as a novel 3-dimensional scaffold for cell culture and tisssue growth.

Development of Capacitive Deionization with Calcium Alginate Based Cation Exchange Membrane for Hardness Control (칼슘알지네이트 이온교환막을 활용한 경도 제거용 축전식 탈염 기술 개발)

  • Yoon, Hongsik;Min, Taijin;Lee, Gunhee;Park, Inyong;Han, Bangwoo;Kang, Bo Sik;Ryu, Kyungha;Lee, Jiho
    • Journal of the Korean Society of Industry Convergence
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    • v.24 no.5
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    • pp.563-571
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    • 2021
  • In this study, calcium alginate based cation exchange membrane was prepared and used to develop membrane capacitive deionization (MCDI) system for effective hardness control. As a major result, the MCDI with Ca-alginate membrane showed 27% better deionization capacity than the MCDI with a commercial cation exchange membrane. This superior improvement in the deionization capacity was expected to be due to the high ratio of transport number/electrical resistance (Sc/Rratio) of Ca-alginate membrane. In addition, the MCDI with Ca-alginate membrane showed better deionization performance than the MCDI with Ca-alginate coating. This was because the space between the electrode and the Ca-alginate membrane was utilized for ion adsorption. The preliminary results indicated that the MCDI with Ca-alginate membrane can be a viable technique for the hardness control.

Effects of Calcium Chloride Concentration and Reaction Time on Physical and Sensory Characteristics of Persimmon Calcium Alginate Beads (염화칼슘 농도와 반응시간에 따른 감 칼슘 알지네이트 비드의 물리적 및 관능적 특성)

  • Yong, Dong-Hee;Song, Min-Kyung;Yoon, Hye-Hyun
    • Culinary science and hospitality research
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    • v.18 no.4
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    • pp.209-221
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    • 2012
  • The purpose of this study is to apply molecular gastronomy and its spherification methodology to persimmon desserts. We prepared persimmon calcium alginate beads and investigated physical and sensory characteristics of beads according to the different concentration of calcium chloride(0.5, 0.75, 1.0%) and reaction time(2, 4, 6, 8, 10 min). Lightness and yellowness were decreased significantly as both calcium chloride concentration and reaction time increased. However, redness was increased significantly as the concentration of calcium chloride and reaction time increased. Hardness, springiness, chewiness, cohesiveness, and resilience except for adhesiveness tended to increase as the concentration of calcium chloride and reaction time increased. The thickness of beads also increased as the concentration of calcium chloride and reaction time increased. Quantitative descriptive analysis showed that voluminosity, springiness, hardness, chewiness, and residue tended to increase as the concentration of calcium chloride increased. Overall acceptability reached a peak at the persimmon bead containing 0.5% calcium chloride. The result of this study showed that the concentration of calcium chloride and reaction time influenced the overall characteristics of calcium alginate beads.

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Preparation of Sodium Alginate Microspheres Containing Hydrophilic $\beta-lactam$ antibiotics

  • Chun, Kyung-Hee;Kwon, Ick-Chan;Kim, Yong-Hee;La, Sung-Bum;Sohn, Young-Taek;Seo, Young-Jeong
    • Archives of Pharmacal Research
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    • v.19 no.2
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    • pp.106-111
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    • 1996
  • Alginate microspheres were prepared by the emulsification process as a drug delivery system of ampicillin sodium (AMP-Na). The preparation parameters such as the concentration of calcium chloride, the stirring time and the amount of AMP-NA were investigated. The alginate microspheres containing hydroxypropylmethylcellulose (HPMC) were found to be generally spherical, discrete and had smoother surfaces when compared to without HPMC. However, there was no significant difference in the release profile of AMP-NA from alginate microspheres prepared with or without HPMC. The concentration of calcium chloride solution and the stirring time in the preparation of alginate microspheres influenced the aggregation of alginate microspheres. The amount of AMP-NA in alginate microspheres influenced the surface morphology and the practical drug content in microspheres.

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Kinetics and diffusion studies in urease-alginate biocatalyst beads

  • Nakarani, Mukesh;Kayastha, Arvind M
    • Advances in Traditional Medicine
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    • v.7 no.1
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    • pp.79-84
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    • 2007
  • Urease was immobilized with calcium alginate by entrapment method in the form of spherical beads and stored in Tris/acetate buffer (pH 7.3) at $4^{\circ}C$. Urease immobilized at different concentration of alginate beads (3%, 4% and 5%) showed higher apparent $K_{m}$ values than the soluble urease. Furthermore, $K_{m}$ has been shown to be corelated with effective diffusion coefficient (De) at different concentration of alginate gel. The present study showed that diffusion and reaction contribute to control the overall rate.

Microencapsulation of Anchovy Oil by Sodium Alginate (알긴산소다를 이용한 멸치어유의 미세캡슐화)

  • 임상빈;좌미경
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.28 no.4
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    • pp.890-894
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    • 1999
  • Microencapsulation of anchovy oil as a core material in sodium alginate as a wall material was inves tigated. Microencapsulation was accomplished by injecting an oil/water emulsion, consisting of a mixture of liquefied sodium alginate and emulsifier, under high pressure through an orifice submerged in a calcium lactate solution. Microcapsules suspended in a dispersion fluid were observed under a fluorescence mi croscope to verify the presence of the capsules and to note coalescence or degradation of the capsules. Optimum conditions for microencapsulation of anchovy oil were obtained when 1.0% aqueous solution of sodium alginate contained 3% of a 1:1 ratio of ESPR 25(polyglycerine+polylinoleate) and TW 20(sorbitan laurate+ethylene oxide) as an emulsifier in terms of capsule size and size distribution, and emulsion stability. The airless sprayer produced microcapsules with a diameter between 15.9 and 73.9 m with different concentration of a wall material. The optimum mixing ratio of wall material to core material was 90:10(wt/wt). 0.2% calcium lactate was appropriate as a dispersion fluid.

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Iron succinyl casein encapsulated alginate beads for the treatment of iron deficiency anemia

  • Ko, Hye-Ran;Oungbho Kwunchit;Park, Jeong-Sook;Kim, Chong-Kook
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.247.1-247.1
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    • 2003
  • Iron deficiency is the most common nutritional problem worldwide. Oral iron supplementation programs have failed because of noncompliance and gastrointestinal toxicity. The purpose of this study was to explore the possibility of alginate gel bead as an oral controlled release system of iron supplements and increase the stability of iron succinyl casein (ISC). Alginate beads containing ISC were prepared by the gelation of sodium alginate with calcium cations. The release profiles of ISC were investigated according to the concentration of polymer, the drug/sodium alginate ratio, the concentration and type of cation, curing time and pH of calcium chloride solution. (omitted)

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