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    Physicochemical properties of turanose and its potential applications as a sucrose substitute

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    https://www.riss.kr/link?id=A107328868

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Among the structural isomers of sucrose, turanosehas been considered as one of good candidates asnovel sweetener due to its mild taste, low calorie, and anticariogenicity.
    Here, various physicochemical properties ofturanose, such as solubility, temperature and pH stabilities,viscosity, non-enzymatic browning reaction, and dynamicvapor sorption, were investigated by comparing them tothose of other commercial sugars. Turanose did not significantlyhydrolyze through the simulated digestion tractoverall but in the artificial small intestinal environmentspecifically, turanose degraded by only 18% when sucrosewas hydrolyzed by 36% after 4 h. In addition, physicochemicalproperties of turanose confirmed that it had apotential to replace sucrose due to similar or better productqualities as a food ingredient than other types of sugarswith similar chemical structure. Thus, our study suggeststhat turanose can be applied as a functional sweetener orbulking agent in food processing.
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    Among the structural isomers of sucrose, turanosehas been considered as one of good candidates asnovel sweetener due to its mild taste, low calorie, and anticariogenicity. Here, various physicochemical properties ofturanose, such as solubility, temper...

    Among the structural isomers of sucrose, turanosehas been considered as one of good candidates asnovel sweetener due to its mild taste, low calorie, and anticariogenicity.
    Here, various physicochemical properties ofturanose, such as solubility, temperature and pH stabilities,viscosity, non-enzymatic browning reaction, and dynamicvapor sorption, were investigated by comparing them tothose of other commercial sugars. Turanose did not significantlyhydrolyze through the simulated digestion tractoverall but in the artificial small intestinal environmentspecifically, turanose degraded by only 18% when sucrosewas hydrolyzed by 36% after 4 h. In addition, physicochemicalproperties of turanose confirmed that it had apotential to replace sucrose due to similar or better productqualities as a food ingredient than other types of sugarswith similar chemical structure. Thus, our study suggeststhat turanose can be applied as a functional sweetener orbulking agent in food processing.

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    참고문헌 (Reference)

    1 서동호, "Versatile biotechnological applications of amylosucrase, a novel glucosyltransferase" 한국식품과학회 29 (29): 1-16, 2020

    2 Ravaud S, "Trehalulose synthase native and carbohydrate complexed structures provide insights into sucrose isomerization" 282 : 28126-28136, 2007

    3 Gilbert V. Levin, "Tagatose, the New GRAS Sweetener and Health Product" 한국식품영양과학회 5 (5): 23-36, 2002

    4 Oh DK, "Tagatose : properties, applications, and biotechnological processes" 76 : 1-8, 2007

    5 Hu FB, "Sugar-sweetened beverages and risk of obesity and type 2 diabetes : epidemiologic evidence" 100 : 47-54, 2010

    6 Vlitos AJ, "Sucrose: Properties and Applications" Blackie Academic and Professional 1995

    7 Okumura H, "Stability of sucrose fatty acid esters under acidic and basic conditions" 60 : 313-320, 2011

    8 정주연, "Regulation of Inflammation by Sucrose Isomer, Turanose, in Raw 264.7 Cells" 대한암예방학회 22 (22): 195-201, 2017

    9 Park MO, "Production and characterization of low-calorie turanose and digestion-resistant starch by an amylosucrase from Neisseria subflava" 300 : 125225-, 2019

    10 Roos Y, "Phase transitions of amorphous sucrose and frozen sucrose solutions" 56 : 266-267, 1991

    1 서동호, "Versatile biotechnological applications of amylosucrase, a novel glucosyltransferase" 한국식품과학회 29 (29): 1-16, 2020

    2 Ravaud S, "Trehalulose synthase native and carbohydrate complexed structures provide insights into sucrose isomerization" 282 : 28126-28136, 2007

    3 Gilbert V. Levin, "Tagatose, the New GRAS Sweetener and Health Product" 한국식품영양과학회 5 (5): 23-36, 2002

    4 Oh DK, "Tagatose : properties, applications, and biotechnological processes" 76 : 1-8, 2007

    5 Hu FB, "Sugar-sweetened beverages and risk of obesity and type 2 diabetes : epidemiologic evidence" 100 : 47-54, 2010

    6 Vlitos AJ, "Sucrose: Properties and Applications" Blackie Academic and Professional 1995

    7 Okumura H, "Stability of sucrose fatty acid esters under acidic and basic conditions" 60 : 313-320, 2011

    8 정주연, "Regulation of Inflammation by Sucrose Isomer, Turanose, in Raw 264.7 Cells" 대한암예방학회 22 (22): 195-201, 2017

    9 Park MO, "Production and characterization of low-calorie turanose and digestion-resistant starch by an amylosucrase from Neisseria subflava" 300 : 125225-, 2019

    10 Roos Y, "Phase transitions of amorphous sucrose and frozen sucrose solutions" 56 : 266-267, 1991

    11 Pikis A, "Metabolism of sucrose and its five isomers by Fusobacterium mortiferum" 148 : 843-852, 2002

    12 Bantle JP, "Metabolic effects of dietary sucrose in type II diabetic subjects" 16 : 1301-1305, 1993

    13 Johnson RE, "Mannitol–sucrose mixturesversatile formulations for protein lyophilization" 91 : 914-922, 2002

    14 Do¨rr T, "Isomaltulosecontaining instant beverage powder. U.S. Patent 7,553,509 B2"

    15 Yamamoto Y, "In vitro digestibility and fermentability of levan and its hypocholesterolemic effects in rats" 10 : 13-18, 1999

    16 Navale AM, "Glucose transporters : physiological and pathological roles" 8 : 5-9, 2016

    17 Simperler A, "Glass transition temperature of glucose, sucrose, and trehalose : an experimental and in silico study" 110 : 19678-19684, 2006

    18 Sikorski Z, "Fennema’s Food Chemistry" CRC Press 2007

    19 Tyapkova O, "Factors influencing crystallization of erythritol in aqueous solutions : a preliminary study" 1 : 207-217, 2012

    20 Vasanthan T, "Enzymatic quantitation of total starch in plant products" E2.2.1-E2.2.9, 2001

    21 Woelders H, "Effects of trehalose and sucrose, osmolality of the freezing medium, and cooling rate on viability and intactness of bull sperm after freezing and thawing" 35 : 93-105, 1997

    22 Ryu SY, "Effects of temperature and pH on the non-enzymatic browning reaction of tagatose-glycine model system" 12 : 675-679, 2003

    23 Leung SSY, "Effects of storage conditions on the stability of spray dried, inhalable bacteriophage powders" 521 : 141-149, 2017

    24 Mazzoni V, "Direct qualitative and quantitative analysis of carbohydrate mixtures using 13C NMR spectroscopy: application to honey" 35 : S81-, 1997

    25 Wang R, "Development of an efficient bioprocess for turanose production by sucrose isomerisation reaction of amylosucrase" 132 : 773-779, 2012

    26 Lee BH, "Contribution of the individual small intestinal aglucosidases to digestion of unusual a-linked glycemic disaccharides" 64 : 6487-6494, 2016

    27 Potocki de Montalk G, "Amylosucrase from Neisseria polysaccharea : novel catalytic properties" 471 : 219-223, 2000

    28 Irwin WE, "Alternative Sweeteners" CRC Press 413-421, 2001

    29 Patton J, "Alternative Sweeteners" CRC Press 525-548, 2012

    30 Dawber JG, "Acid-catalyzed hydrolysis of sucrose : a student study of a reaction mechanism" 43 : 34-, 1966

    31 Sumner JB, "A method for determination of saccharase activity" 108 : 51-54, 1935

    32 Browne CA, "A Handbook of Sugar Analysis: A Practical and Descriptive Treatise for Use in Research, Technical and Control Laboratories" BiblioBazaar 2016

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    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2010-11-23 학회명변경 영문명 : Korean Society Of Food Science And Biotechnology -> Korean Society of Food Science and Technology KCI등재
    2010-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2008-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2006-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2004-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2001-07-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    1999-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.75 0.17 0.56
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.49 0.43 0.364 0.06
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