• Title/Summary/Keyword: amylopectin

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Production of Cyclodextrin from Raw Starch in the Agitated Bead Reaction System and its Reaction Mechanism (분쇄마찰매체 함유 효소반응계에서의 Cyclodextrin 생성과 Cyclodextrin Glucanotransferase의 작용 Mechanism)

  • Han, Il-Keun;Lee, Yong-Hyun
    • Microbiology and Biotechnology Letters
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    • v.19 no.2
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    • pp.163-170
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    • 1991
  • Production of cyclodextrin (CD) directly from raw corn starch without liquefaction using cyclodextrin glucanotransferase (CGTase) was carried out in an agitated bead reaction system. Similar CD yield and production rate comparable with those of conventional method using liquefied starch were obtained. Especially high purity-CD in the reaction mixture without accumulation of malto-oligosaccharides was obtained. The maximum 54g/l of CD was obtained at raw starch concentration of 200g/l. CD yield was inversely proportional to raw starch concentration, and conversion yield was 0.48 at substrate concentration of 100g/l. The optimal amount of enzyme (CGTase unit/g raw starch) was found to be around 6.0. Granular structure of raw starch degraded by CGTase was observed by SEM in order to investigate the enhancing mechanism, along with those of acid or alkali pretreated raw starch, amylose, and amylopectin. Kinetic constants of CGTase on raw starch in an agitated bead reaction system were evaluated, and CGTase was competitively inhibited by CD.

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Physicochemical and textural properties of germinated brown rice according to rice varieties

  • Oh, Sea-Kwan;Cho, Dong-Hwa;Park, Hye-Young;Lee, Seuk-Ki;Choi, Hye-Sun;Park, Jiyoung
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.269-269
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    • 2017
  • Germination is one of the techniques used to enhance the texture properties and nutritional value of the brown rice (BR). Therefore, germinated BR (GBR) has received significant attention during the last decade. Physicochemical and cooking properties of brown rice were examined before and after germination. Germination raised the cooking properties, such as water absorption, expanded volume and soluble solid of cooked BR (brown rice). The texture, measured using tensipresser, was significantly improved by germination. The hardness of cooked BR was decreased by germination, but the GBR was sticker. In RVA, all viscosity value (peak viscosity, break down, set back, and final viscosity) of germinated rice flour was also reduced while gelatinization temperature did not change. Amylose content and amylopectin chain length distribution of BR starch were slightly changed by germination. Overall results revealed that germination was an effective tool to improve texture and cooking properties of BR.

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A Study on Ju-ak as Affected by Adlay Flour (율무쌀을 첨가한 주악에 관한 연구)

  • 백재은;전희정
    • Korean journal of food and cookery science
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    • v.5 no.2
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    • pp.19-25
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    • 1989
  • In order to maks use of Adlay widely, it was analyzed and determined the content of amylose, amylopection. And Ju-ak was made from glutinous rice flours with vairous mixing ratio of Adlay flours and then this was tested for suitability to preparation of Ju-ak. Evaluation was conducted through sensory evaluation and objcetive evaluation. The results are as follow: 1. The content of moisture, total ash, crude protein, crude fat, and carbohydrate in Adlay were shown to be about 10.58%, 84.4%, 17.3%, 3.76%, 66.52%. 2. The amylose and amylopectin content were 15.6%, 84.4%. 3. By the sensory evaluation results the taste of Ju-ak prepared with mixing of 25% and 50% Adlay flour was better than glutinous rice Ju-ak but 75% and 100% mixed flour were undersirable. 4. By the Instron measurement results that hardness tend to increass as the additon level of Adlay increased. Gumminess, Chewiness and Elasticity was not significantly different as the addition level of Adlay increased. Conhesiveness tend to decrease as the addition level of Adlay. 5. Consistency of Ju-ak had significant relationship with hardness and cohesiveness. Moistness had significant relationship with hardness, elasticity, cohesiveness and chewiness. Texture of Ju-ak had significant relationship with hardness, elasticity, cohesiveness and gumminess.

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Molecular Characteristics and Functional Properties of Barley Starches with Varying Amylose Content

  • You, Sang-Guan;Kim, Sang-Moo
    • Preventive Nutrition and Food Science
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    • v.10 no.3
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    • pp.207-213
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    • 2005
  • Molecular structures and functional properties of starches isolated from normal, waxy, and zero amylose barleys were examined. Amylopectins from zero amylose starch had the largest molecular weight $(M_w)$, whereas those from high amylose starch, the smallest. A good correlation between the $(M_w)$ and the radius of gyration $(R_g)$ was observed among amylopectins from various starches, indicating similar polymeric conformation in solution even with the differences in the $(M_w)$. The debranched amylopectin molecules from different types of barley starches exhibited similar profiles, implying that the packing geometry of double helices in the different types of barley starches may be similar. Zero amylose starch showed the highest peak viscosity (326 RVU) in RV A viscograms at lower pasting temperature $(67.6^{\circ}C)$, compared to normal and high amylose starches. Relationship between RVA peak viscosity and amylose content suggested that the presence of amylose inhibited the development of granular swelling of barley starches during cooking. A rapid retrogradation, traced by differential scanning calorimetry (DSC) and strain-controlled rheometry, occurred in the high amylose starch sample during storage, while zero amylose starch showed a very good resistance to retrogradation, indicating excellent storage stability.

Bacillus sp. KJ16에서 Cyclodextrin Gluanotransferase와 Cyclodextrinase 생산의 Catabolite Repression

  • 김병우;권현주;이경희
    • Microbiology and Biotechnology Letters
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    • v.24 no.2
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    • pp.137-142
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    • 1996
  • The biosynthesis and catabolite repression of cyclodextrin glucanotransferase(CGTase) and cyclodextrinase(CDase) were studied in Bacillus sp. KJI6. In accompanying to the cell growth, CGTase was synthesized during early growth phase (20h culture) and CDase was synthesized during late growth phase (60h culture). Synthesis of CGTase was rather constitutive than that of CDase in the absence or presence of carbon source. Production of CDase was strongly stimulated by amylopectin and $\gamma$-CD medium (about 6 times), but CGTase synthesis was slightly increased (about 1.3 times). Easily metabolizable carbohydrates such as D-glucose, D- fructose and D-mannose completely repressed the expression of CDase, whereas their repressive effect to CGTase synthesis was relatively negligible. By addition of 10 mM cAMP, any significant effect on the synthesis of the two enzymes was not observed. Hardly metabolizable glucose analogues such as 2-deoxy-D-glucose and 3-0-methyl-D-glucopyranose also did not show any repression on the syntheses of CGTase and CDase. This indicates that D-glucose has to be metabolized to exert its repressive effect. With these results, it seems likely that the biosynthesis of CGTase and CDase are regulated by the catabolite repression due to unknown metabolite(s) of EM pathway.

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A Novel Maltopentaose-Producing Amylase as a Bread Antistaling Agent

  • Auh, Joong-Hyuck;Lee, Su-Yong;Yoo, Seung-Seok;Son, Hyun-Ju;Lee, Jae-Woo;Lee, Sung-Joon;Kim, Young-Bae;Park, Kwan-Hwa
    • Food Science and Biotechnology
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    • v.14 no.5
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    • pp.681-684
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    • 2005
  • A maltopentaose-producing amylase (G5-amylase) from Bacillus megaterium KSM B-404 was applied to retard bread retrogradation. Retrogradation rates were determined by differential scanning calorimetry. Gel permeation chromatography determined changes in maltooligosaccharide composition and the molecular weight profiles of carbohydrate tractions. The baking process produced maltopentaose and maltotriose by the hydrolysis of starch molecules into small units. Amylose and amylopectin degradation as well as maltooligosaccharides produced by the enzyme were likely responsible for retarding starch retrogradation. Overall, addition of G5-amylase reduced the starch retrogradation rate, and was as effective as Novamyl(R), a commercial enzyme.

Physicochemical Properties of Acorn Crude Starch and Acorn Refined Starch (도토리 조전분 및 정제전분의 이화학적 특성)

  • 김영아;이혜수
    • Korean journal of food and cookery science
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    • v.3 no.1
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    • pp.14-19
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    • 1987
  • The physicochemical properties of acorn starch were investigated by comparing acorn crude starch and refined starch, Proximate composition analysis revealed that the contents of crude protein, fat and ash were higher in acorn crude starch than in refined starch. Water binding capacity and swelling power of crude starch were a little higher than refined starch. Gelatinization temperature determined by optical transmittance and by Amylograph were $68^{\circ}C$ and $73^{\circ}C$, respectively. The viscosity of crude starch had the amylose content of 28.8%, and the molecular weight of amylose was 20, 425 and glucose unit per segment of amylopectin was 21.

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Polymer-Coated Liposomes for Oral Drug Delivery (I): Stability of Polysaccharide-Coated Liposomes Against Bile Salts (고분자 코팅을 이용한 경구용 리포좀의 개발(I): 다당체로 코팅된 리포좀의 담즙산염에 대한 안정성)

  • Choi, Young-Wook;Hahn, Yang-Hee
    • Journal of Pharmaceutical Investigation
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    • v.22 no.3
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    • pp.211-217
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    • 1992
  • Stabilization of liposomes against degradation by bile salts has been investigated in order to develop a liposomal model system for oral drug delivery. Two polysaccharides, amylopectin (AP) and chitin (CT), were employed to coat both empty liposomes and bromthymol blue (BTB)-encapsulated liposomes by adsorption-coating techniques. Turbidity changes and BTB-release characteristics in pH 5.6 buffer solutions with or without bile salts, sodium cholate and sodium glycocholate, were observed to compare the differences between uncoated liposomes and polysaccharide-coated liposomes. Initial turbidities of both uncoated and polysaccharide-coated liposomes in buffer solution were kept constant within 3% range during 4 hours of experiments. But they were decreased in a different manner in bile salts-containing buffer solutions, showing 10% or less decrease for polysaccharide-coated liposomes and 25% or more decrease for uncoated liposomes. BTB release from uncoated liposomes has been greatly increased upto 90% after 4 hours in bile salts-containing buffer solution, which is a clue for breakdown of liposomal vesicles. However, polysaccharide-coated liposomes showed the controlled-release pattern which is proportional to square-root of time, followed by around 50% release for the same time period. Consequently, it is possible to conclude that these polysaccharide-coated liposomes might be an available system for oral delivery of a drug which is unstable in gut environment.

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Molecular Structural Properties of Legume Starches (두류 전분의 분자구조적 특성)

  • Kweon, Mee-Ra;Ahn, Seung-Yo
    • Korean Journal of Food Science and Technology
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    • v.25 no.3
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    • pp.264-269
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    • 1993
  • Molecular structural properties of legume starches were investigated. In intrinsic viscosity and degree of Polymerization of amylose and amylopectins, cow pea and mung bean were high, but kidney bean was low. Low molecular weight fractions for kidney bean starch were much eluted by gel chromatography. In the elution profiles of their amylose by Sepharose 2B-CL, molecular weight of kidney bean amylose was smaller than that of other amylose Molecular weights of cow pea and mung bean amyloses were large, but that of kidney bean amylose was small and red bean amylose was medium. The elution profiles by Sephadex G-50 after debranching amylopectins with pullulanase showed similar patterns.

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Physicochemical Properties of Enzymatically Modified Maize Starch Using 4-${\alpha}$-Glucanotransferase

  • Park, Jin-Hee;Park, Kwan-Hwa;Jane, Jay-Iin
    • Food Science and Biotechnology
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    • v.16 no.6
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    • pp.902-909
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    • 2007
  • Granular maize starch was treated with Thermus scotoductus 4-${\alpha}$-glucanotransferase (${\alpha}$-GTase), and its physicochemical properties were determined. The gelatinization and pasting temperatures of ${\alpha}$-GTase-modified starch were decreased by higher enzyme concentrations. ${\alpha}$-GTase treatment lowered the peak, setback, and [mal viscosity of the starch. At a higher level of enzyme treatment, the melting peak of the amylose-lipid complex was undetectable on the DSC thermogram. Also, ${\alpha}$-GTase-modified starch showed a slower retrogradation rate. The enzyme treatment changed the dynamic rheological properties of the starch, leading to decreases in its elastic (G') and viscous (G") moduli. ${\alpha}$-GTase-modified starch showed more liquid-like characteristics, whereas normal maize starch was more elastic and solid-like. Gel permeation chromatography of modified starch showed that amylose was degraded, and a low molecular-weight fraction with $M_w$ of $1.1{\times}10^5$ was produced. Branch chain-length (BCL) distribution of modified starch showed increases in BCL (DP>20), which could result from the glucans degraded from amylose molecules transferred to the branch chains of amylopectin by inter-/intra-molecular transglycosylation of ${\alpha}$-GTase. These new physicochemical functionalities of the modified starch produced by ${\alpha}$-GTase treatment are applicable to starch-based products in various industries.