• Title/Summary/Keyword: hexose

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The physico-chemical nature of prepared dextran sulfates

  • Kim, Young-Choong
    • Archives of Pharmacal Research
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    • v.4 no.1
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    • pp.33-41
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    • 1981
  • The prepared dextran sulfates were characterized by measuring the reduced viscosisty at five different concentrations to obtain an intrinsic viscosity in both phosphate and tris buffers, pH 7.4, ionic strength of 0.1 Dextran sulfates having 0.81, 1.06 sulfate groups per hexose unit have reduced viscosity value below 40 ml/g whereas dextran sulfates having 1.21, 1.43, 1.69 sulfate groups per hexose unit have reduced viscosity value over 40 ml/g. Dextran sulfate having 1.21 sulfate groups per hexose unit had highest value of reduced viscosity. The reduced viscosity of dextran sulfate in tris buffer was always higher than that in phosphate buffer regardless of the sulfate content of dextran sulfate. The influence of the sulfation of the dextran sulfate. The influence of the sulfation of the dextran sulfate molecule on the dextran sulfate-LDL interaction was studied with three different dextran sulfate molecules. Dextran sulfate molecules having more than one sulfate group per hexose unit. The dextran sulfate having 0.81 sulfate groups per hexose unit showed considerably different precipitation curves in phosphate and tris buffers. This peculiar behavior of dextran sulfate having 0.81 sulfate groups per hexose unit in the two buffer systems was not noticed with dextran sulfate having more than one noticed with dextran sulfate having more than one sulfate group per hexose unit.

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Fermentation of Pentose and Hexose Derived from Cellulosic Food Wastes by Mixed Yeast (공기 주입 방법에 따른 셀룰로오스계 음식물류 폐기물 유래의 오탄당과 육탄당의 동시발효)

  • Jeong, Seung-Mi;Kim, Yong-Jin
    • New & Renewable Energy
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    • v.9 no.1
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    • pp.25-32
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    • 2013
  • It is indispensable to increase the conversion rate of a reducing sugars such as pentose and hexose derived from cellulosic wastes for a highly efficient bioethanol fermentation from food wastes. The saccharification liquid from cellulosic substrates such as vegetable food wastes contained lots of hexose like glucose and pentose like xylose. Since Saccharomyces-based yeasts could not convert xylose to bioethanol, Pichia stipitis which could directly ferment xylose to ethanol was chosen. After selecting Saccharomyces coreanus and P. stipitis, fermentation characteristics by mixture of two yeasts were investigated. As a result, it was verified the production of ethanol was enhanced by the co-fermentation, although there were somewhat differences between the fermentation characteristics by the aeration methods. Moreover, the consumption of pentose, hexose and disaccharide was obviously observed, and aeration in the process of fermentation seemed to stimulate the activity of P. stipitis.

Softening Related Changes in Cell Wall Polysaccharides of Persimmon (감의 연화와 관련된 세포벽다당류의 변화)

  • Kim, Soon-Dong;Park, Nam-Sook;Kang, Meung-Su
    • Korean Journal of Food Science and Technology
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    • v.18 no.2
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    • pp.158-162
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    • 1986
  • Various cell wall polysaccharides such as ionically associated pectin (IAP), covalently bounded pectin (CBP),4N potassium hydroxide soluble hemicellulosic fraction (HF,) and 0-3N soluble hemicellulosic fraction (HF,) were fractionated from crude cell wall of the fresh and soft persimmon by chemical method. The changesin cell wall polysaccharides were studied by gel filteration chromatography . The content of crude cell wall remarkably decreased in the soft persimmon. The decreasing rates of IAP, CBP and $HF_2$ were 59, 60 and 74%, respectively, while $HF_1$ and cellulose changed only a little during softening. Sugar compositions of IAP and CBP were 72-84% uronic acid, 5-1% hexose and 11-16% pentose, and also the hemicellulose was composed of uronic acid besides hexose and pentose that was hemicellulosic components. The loss rate of pentose in IAP, of hexose in CBP, of hexose and uronic acid in $HF_2$, of pentose in $HF_1$ increased during softening. Though apparent average molecular freight of all polysaccharides shifted from high molecular freight to low molecular weight polymer, the shifting degree of CBP and $HF_2$ was especially remarkable during softening. It is suggested that the severe softening phenomenon of persimmon involved the degradation and dissolution of wall bound-CBP and $HF_2$ which were associated with each other.

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Effect of Apple Hemicellulose on the Ca-Pectate Gel Formation (사과의 Hemicellulose가 Ca-Pectate Gel형성에 미치는 영향)

  • Kim, Young-Ji;Kim, Chang-Sik
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.17 no.1
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    • pp.13-17
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    • 1988
  • $HF_1$(1H KOH soluble hemicellulose fraction), $HF_2$(2H KOH soluble hemicellulose fraction) $HF_3$(3H KOH soluble hemicellulose fraction) and $HF_4$(4H KOH soluble hemicellulose fraction) were fractionated from Fuji crude cell wall and purified using Sephacryl S-500 to determine the effects of these hemicellulosic fractions on the Ca- pectate gel formation. By increasing of KOH concentration, from 1 to 4N, hexose peas became higher in led, and molecula weights, especially pentose peaks in high molecular weight. Hemicellulose fractions using gel filtration were composed of $8{\sim}10$ peaks which were $10^4{\sim}143{\times}10^4$ molecular weight. Higher values of hardness, adhesiveness and gumminess were found in low molecular weight than in high molecular weight, also in hexose and uronic acid contained than in hexose contained.

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Analysis on the Contents of Several Carbohydrate Residues after Administration of Testosterone and Tunicamycin ill .fat Epididymis (Testosterone과 Tunicamycin 투여에 따른 흰쥐 부정소내 여러 탄수화물 관기의 정량분석)

  • 정경순;김옥용최임순
    • The Korean Journal of Zoology
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    • v.35 no.2
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    • pp.183-193
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    • 1992
  • 흰쥐 정자의 성숙과정중에 일어나는 부정소 상피세포, 내강 및 정자 사이의 상호관계를 알아보기 위하여 각 실험군 별로 웅성호르몬 투여에 따른 탄수화물 관기의 함량 변화를 측정하였고, tunicamycin 투여 후 hexosamine의 할량 변화를 살펴봄으로써 glycosylation되는 장소를 확인하였다. 부정소두와 부정소이 상피세포내의 hexose 함량은 거세 후 5일군부터 유의성있게 감소하였고, testosterone 투여시는 각각 5일 , 10일군부터 유의하게 증가하였으며 , hexosamine과 sialic acid의 경우도 통계적으로 유의하게 변화하는 시기는 달랐으나 hexose와 유사하게 증가와 감소하는 경향이 나타났으므로 이러한 하나하나의 탄수화물 관기의 함량 변화는 웅성호르몬에 의존적임을 알 수 있었다. Tunicamycin을 투여하여 hexosamine의 함량 변화를 측정하였을 때 투여 기간에 따라 상피세포와 내강액에서 유의하게 감소하였으나, 정자에서는 일관성있게 감소되지 않았으므로 정자가 직접 hexosamine또는 여러 당단백질 합성에 관여하는 것은 아니며 부정소상피세포나 내장에 의하여 영향받을 수 있다는 가능성을 확인하였다.

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Continuous Anaerobic H2 Production with a Mixed Culture (혐기성 수소 생산 공정의 연속운전)

  • Kim, Sang-Hyoun;Han, Sun-Kee;Youn, Jong-Ho;Shin, Hang-Sik
    • Journal of the Korea Organic Resources Recycling Association
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    • v.11 no.1
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    • pp.70-76
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    • 2003
  • Continuous anaerobic hydrogen production with a mixed culture was investigated. With a sucrose concentration of 5g COD/L in the feed, hydrogen production exceeded $0.5mole\;H_2/mole\;hexose$ was found at the early stage, however it did not maintain longer than 9days. It was assumed that the failure was caused by insufficient active hydrogen producing bacteria in the reactor. Therefore, effects of pH control, repeated heat treatment and substrate concentration on sustainable continuous anaerobic hydrogen production was examined to find out operating conditions to sustainable hydrogen production. Decrease of hydrogen production was not overcome by only pH control at 5.3. Repeated heat treatment could recover hydrogen producing activity without any external inoculum supply. However, frequent heat treatment was needed because the treated sludge also showed the tendency in decrease of hydrogen production. With a sucrose concentration of 30g COD/L in the feed, hydrogen production maintained $1.0-1.4mole\;H_2/mole\;hexose$ in continuously stirred tank reactor and $0.2-0.3mole\;H_2/mole\;hexose$ in anaerobic sequencing batch reactor) for 24days. More than 90% of soluble organics in effluent was organic acids, in which n-butyrate was the most one.

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A Study on the Inhibition of 2-deoxy-D-Glucose Transport of the Endogenous Glucose Transporters in Spodoptera frugiperda Clone 21-AE Cells by Using Hexoses

  • Lee Chong-Kee
    • Biomedical Science Letters
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    • v.11 no.4
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    • pp.487-492
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    • 2005
  • The baculovirus/insect cell expression system is of great value in the study of structure-function relationships in mammalian glucose-transport proteins by site-directed mutagenesis and for the large-scale production of these proteins for mechanistic and biochemical studies. Spodoptera frugiperda Clone 21 (Sf2l) cells grow well on TC-100 medium that contains $0.1\%$ D-glucose as the major carbon source, strongly suggesting the presence of endogenous glucose transporters. However, very little is known about the properties of the endogenous sugar transporter(s) in Sf2l cells, although a saturable transport system for hexose uptake has been previously revealed in the Sf cells. In order to further examine the substrate and inhibitor recognition properties of the Sf2l cell transporter, the ability of hexoses to inhibit 2-deoxy-D-glucose (2dGlc) transport was investigated by measuring inhibition constants $(K_i)$. The $K_i's$ for reversible inhibitors were determined from plots of uptake versus inhibitor concentration. Transport was effectively inhibited by D-mannose and D-glucose. Of the hexoses tested, L-glucose had the least effect on 2dGlc transport in the Sf2l cells, indicating that the transport is stereoselective. Unlike the human HepG2 type glucose transport system, D-mannose had a somewhat greater affinity for the Sf2l cell transporter than D-glucose, implying that the hydroxyl group at the C-2 position is not necessary for strong binding. However, epimerization at the C-4 position of D-glucose (D-galactose) resulted in a dramatic decrease in affinity of the hexose for the Sf2l cell transporter. Such a lowering of affinity might be the result of the involvement of the C-4 hydroxyl in hydrogen bonding. It is therefore suggested that Sf2l cells were found to contain an endogenous sugar transport activity that in several aspects resembles the human HepG2 type glucose transporter, although the insect and human transporters do differ in their affinity for cytochalasin B.

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Energy production from organic waste by anaerobic treatment (I) : Hydrogen production from food waste (혐기성 처리에 의한 유기성 폐기물 에너지화 (I) : 음식폐기물의 수소화)

  • Han, Sun-Kee
    • Journal of the Korea Organic Resources Recycling Association
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    • v.19 no.1
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    • pp.102-108
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    • 2011
  • Characteristics of hydrogen production from various food wastes in anaerobic batch reactors were evaluated to assess the energy potential of organic wastes. Organic wastes which were used in this study were scallion as vegetable, apple as fruit, rice as grain and pork as meat. Ultimate hydrogen yield of scallion, apple, rice and pork were 0.46, 0.47, 0.62 and $0.05mol\;H_2/mol\;hexose$, respectively. On the other hand, hydrogen production rates of scallion, apple, rice and pork were 0.013, 0.021, 0.014 and $0.005mol\;H_2/mol\;hexose/h$, respectively. These results indicated that anaerobic hydrogen fermentation from food waste except for meat was effective in removing organic material as well as producing renewable energy. Volatile fatty acids increased as hydraulic retention time was increased. In the hydrogen fermentation, acidification degree of rice was measured as the highest rate of 75.8% whereas pork was found as the lowest rate of 35.2%.

Start-up Strategy for the Successful Operation of Continuous Fermentative Hydrogen Production (연속 혐기성 수소발효 공정에서 성공적인 start-up 방법)

  • Lee, Chang-Kyu
    • Transactions of the Korean hydrogen and new energy society
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    • v.24 no.2
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    • pp.99-106
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    • 2013
  • The variations of performance and metabolites at an early stage were investigated for the successful start-up technology in continuous fermentative hydrogen production. Unsuccessful start-up was observed when the operation mode was changed from batch to continuous mode after the yield was reached to 0.5 mol $H_2$/mol $hexose_{added}$ by batch mode. $H_2$ production continued till 12 hours accompanied by butyrate production, but did not last with propionate production increase. It was suspected that the failure was due to the regrowth of propionic acid bacteria during batch mode which were inhibited by heat-shock but not completely killed. Thus, successful start-up was tried by early switchover from batch to continuous operation; continuous operation was started after the $H_2$ yield was reached to 0.2 mol $H_2$/mol $hexose_{added}$ by batch mode. Although $H_2$ production rate decreased at an early stage, stable $H_2$ yield of 0.8 mol $H_2$/mol $hexose_{added}$ was achieved after 10 days by lowering down propionate production. And it was also concluded that the reason for $H_2$ production decrease at an early stage was due to alcohol production by self detoxification mechanism against VFAs accumulation.

Changes in the Pectic Substance during Maturity of Apple (사과의 성숙에 따른 Pectin질의 변화)

  • Kim, Yeung-Ji;Kim, Chang-Sik
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.17 no.1
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    • pp.63-68
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    • 1988
  • The changes of methoxy content. compositional sugars. degree of esterification (DE) and pectic substances such as LMP (low methoxy pectin), HMP (high methoxy pectin) IAP (ionically associated pectin) and CBP (covalently bounded pectin) of Fuji apple were investigated during maturity. The contents of LMP+HMP and IAP+CBP in alcohol insoluble solid(AIS) were 70% and 20%. respectively. These pectic substances were increased slightly during maturity. The reductions of hexose and uronic acid were Iron 20-50% and from 2-4%, respectively, but the inclosed of pentose was from 1-9% in LMP, HMP, IAP and CBP during maturity of Fuji apple. The galactose was decreased significantly among hexose. Whereas the relative ratio of uronic acid in HMP and CBP was increased.

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