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Component Analysis and Antioxidant Activity of Plantago asiatica L. (질경이의 영양성분 분석과 항산화 활성)

  • Park, Sung-Jin;Sihn, Eon-Hwan;Kim, Cheun-An
    • Food Science and Preservation
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    • v.18 no.2
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    • pp.212-218
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    • 2011
  • The purpose of this study is to determine the possibility of using Plantago asiatica as natural health food source. To accomplish this purpose. the contents of proximate and anti oxidative nutrients of P. asiatica were measured. The contents of carbohydrate. crude protein. crude fat and crude ash are 63.71%, 18.75%, 1.67% and 6.48%, respectively And the calories and total dietary fiber of P. asiatica was 466.71 Kcal. Total dietary fiber was 22.68%, respectively. The contents of essential and non-essential amino acids were 4.815.22 mg and 6.591.04 mg, respectively. The K was the largest mineral followed by P, Ca, Mg, and Na, which means P. asiatica is alkali material. The EDA of P. asiatica was 59.32~70.30%, and the activity was dependent on the sample concentration. Total phenolic content of P. asiatica was $79.65{\mu}g/g$, and total flavonoids content was $4.43{\mu}g/g$. The P. asiatica extract showed the highest reducing power (3.5) at a concentration of 25 mg/mL. Based on the above results, we deemed that the P. asiatica might have potential antioxidant activities. The general nutrients and other antioxidant bioactive materials in P. asiatica were also potential materials for good health food.

Component Analysis of Different Parts of Chestnut (밤의 부위별 성분 분석)

  • Kim Yong-Doo;Choi Ok-Ja;Kim Kyung-Je;Kim Ki-Man;Hur Chang-Ki;Cho In-Kyung
    • Food Science and Preservation
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    • v.12 no.2
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    • pp.156-160
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    • 2005
  • To obtain basic data utilizing chestnuts as a raw food material, proximate analysis was conducted. Chemical component of chestnut flesh were $63.60\%$ moisture, $118\%$ ash, $3.02\%$ crude protein, $0.615\%$ crude fat, $1.21\%$ crude fiber, and $30.37\%$ nitrogen free extract, respectively. The weight ratio of tegmen, seed coat and flesh of chestnut sample were 17.05, 14.9, and $68.05\%$, respectively. The total amino acid contents of flesh and seed coat were $2,994\;mg\%$ and $1,450\;mg\%$, respectively. The total amount of free amino acids was less than that of total amino acids. As results of mineral analysis, the content of K was higher than that of any other minerals. The contents of maltose and sucrose were higher than those of fructose and glucose. The total polyphenol contents of tegmen, seed coat, fresh, leaf and bark were $9.56\;mg\%$, $0.047\;mg\%$, $0.23\;mg\%$, $15.44\;mg\%$ and $17.85\;mg\%$, respectively.

Quality Characteristics of White Bread Added with Chlorella powder (클로렐라를 첨가한 식빵의 품질특성)

  • Jeong Chang-Ho;Cho Hyun-Jae;Shim Ki-Hwan
    • Food Science and Preservation
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    • v.13 no.4
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    • pp.465-471
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    • 2006
  • The chemical components of chlorella powder and quality characteristics (texture, color and sensory evaluation etc.) of white bread added with chlorella powder in order to use as a new functional food material of chlorella powder were examined. The proximate composition was composed of crude protein 61.45%, crude fiber 13.47%, nitrogen free extract 13.15%, ash 6.35%, moisture 3.27% and crude fat 2.31%, respectively. The component of major minerals were P (1,478.94 mg%), K (250.54 mg%), Ca (147.24 mg%) and Na (107.26 mg%) and free sugar was composed of maltose 0.12%, glucose 0.09% and fructose 0.08%. The major amino acids of chlorella powder were glutamic acid(4,009.20 mg%), aspartic acid(3,017.72 mg%), proline(3,055.24 mg%), methionine(3,001.52 mg%) and histidine(2,951.06 mg%). The major fatty acids in chlorella powder were composed of linoleic acid and the amounts of those showed 34.27%. The volume tended to increase according to the addition of chlorella powder. Substituting chlorella powder with flour also resulted in decreased lightness, redness and yellowness of the white bread crust The color of white bread crust became darker as the amount of chlorella powder increased. The texture characteristics of white bread containing chlorella powder was no significant difference. The result of sensory evaluation by QDA (quantitative descriptive analysis) showed that overall acceptability of white broads containing 0.2% chlorella powder were higher than that of control without chlorella powder.

A Study on the Flavor Constituents of the Citron (Citrus junos) (유자의 향미성분에 관한 연구)

  • Kang Seong-Koo;Jang Mi-Jeong;Kim Yong-Doo
    • Food Science and Preservation
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    • v.13 no.2
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    • pp.204-210
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    • 2006
  • To accept basic data of utilizing of citron (Citrus junos) as a raw material of industrial produce, major chemical components of citron were investigated. Weight ration of poet flesh md seed of citron were 44.7, 42.9 and 12.4%, respectively. Comparing proximate composition of peel and flesh of citron, peel showed higher in crude protein crude fat and crude ash than flesh but lower in moisture, carbohydrate and soluble solid. The major free sugars of citron were fructose, glucose and sucrose. Peel contained higher in sucrose than flesh, but lower in fructose and glucose. The content of K md P were 309 and 15.9 mg% in peel and 175 and 22.4 mg% in fresh, respectively. The main organic acids of citron were citrate, malate and oxalate. Total organic acid content of flesh (6.6%) was higher than that of peel (4.6%). Total amino acid content of peel and flesh were 671.9 and 315.7 mg%, respectively. Free amino acid content of peel and flesh were 324.3 and 280.7 mg%, respectively, and the major ones were proline, serine, glutamic acid, aspartic acid, and histidine. Total 49 volatile compounds were detected and 26 of these ones were identified in cion. The major volatile component of citron was limonene, which consists of 80% among the total volatiles in peel by all extract methods.

Growth Performance of Lambs Fed Diet Supplemented with Rice Bran Oil as Such or as Calcium Soap

  • Bhatt, R.S.;Karim, S.A.;Sahoo, A.;Shinde, A.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.26 no.6
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    • pp.812-819
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    • 2013
  • Forty two Malpura lambs (21 d old) were divided into three groups of 14 each consisting of 8 females and 6 males. Lambs were allowed to suckle their respective dams twice daily up to weaning (13 wks) and offered free choice concentrate and roughage in a cafeteria system. The lambs in control group were fed conventional concentrate mixture, in RBO group concentrate mixture fortified with 4% industrial grade rice bran oil and in Ca-soap rice bran oil (as in RBO group) was supplemented in the form of calcium soap. The concentrate intake decreased($p{\leq}0.05$) in RBO group as a result total dry matter, crude protein and metabolizable energy intake decreased compared to control whereas Ca-soap prepared from the same rice bran oil stimulated the concentrate intake leading to higher total dry matter, crude protein and energy intakes. The digestibility of dry matter ($p{\leq}0.05$), organic matter ($p{\leq}0.05$) and crude protein ($p{\leq}0.05$) was higher in RBO group followed by Ca-soap and control whereas no effect was observed for ether extract digestibility. Higher cholesterol ($p{\leq}0.05$) content was recorded in serum of oil supplemented groups (RBO and Ca-soap) while no effect was recorded for other blood parameters. Rice bran oil as such adversely affected and reduced the body weight gain ($p{\leq}0.001$) of lambs in comparison to control whereas the Ca-soap of rice bran oil improved body weight gain and feed conversion efficiency in lambs. Fat supplementation decreased total volatile fatty acids ($p{\leq}0.05$) and individual volatile fatty acid concentration which increased at 4 h post feeding. Fat supplementation also reduced ($p{\leq}0.05$) total protozoa count. Ca-soap of rice bran oil improved pre slaughter weight ($p{\leq}0.05$) and hot carcass weight ($p{\leq}0.05$). It is concluded from the study that rice bran oil in the form of calcium soap at 40 g/kg of concentrate improved growth, feed conversion efficiency and carcass quality as compared to rice bran oil as such and control groups.

Composition analysis of raw material constituting the medium for mushroom cultivation (버섯재배용 배지재료의 성분분석)

  • Kim, Sun Young;Jeong, Min Hwa;Kim, Min-Keun;Im, Chak Han;Kim, Kyung-Hee;Kim, Tae Sung;Kim, Dong Sung;Cheong, Jong-Chun;Hong, Ki Sung;Ryu, Jae-San
    • Journal of Mushroom
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    • v.11 no.4
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    • pp.208-213
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    • 2013
  • The contents of raw materials which are components of mixed substrate for mushroom cultivation were analyzed to optimize the composition. The pure protein(amino acid) level of soybean meal was the highest, 44.02% followed by those of soybean curd residue(31.5%) and cotton seeds meal(30.6%). The non protein nitrogen(NPN) contents in crude protein of main nitrogen materials were 2.4% for soybean meal and 5.6% for dried soybean curd residue, while those of wheat bran and rice bran used as the carbon source were relatively higher, 17.6% compared to that of nitrogen supplying media. Crude protein content per price was 6.0 for rapeseed meal, indicating that it is high crude protein content per price. Nitrogen-free extract(NFE) considering as an ingredient for mycelial growth were high in alphacorn(72.9%) and wheat bran B(57.2%). Acid detergent fiber(ADF) was high in corncob, 51.88%, its use for cultivation of brown rot fungi including Lentinus lepideus should pay attention because the fungi lack complete lignin degradation activity.

Analysis of Nutritional Components and Evaluation of Functional Activities of Sasa borealis Leaf Tea (조릿대 잎차의 영양성분 분석 및 기능성 평가)

  • Jeong, Chang-Ho;Choi, Sung-Gil;Heo, Ho-Jin
    • Korean Journal of Food Science and Technology
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    • v.40 no.5
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    • pp.586-592
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    • 2008
  • In this study, the nutritional components and functional activities of Sasa borealis leaf tea were evaluated. The proximate compositions were as follows; moisture 5.68%, crude protein 16.38%, crude fat 4.68%, nitrogen free extracts 32.37%, crude fiber 32.36%, and ash 8.53%, respectively. The mineral elements were as follows: K 2,133.83, Ca 1,144.09 and P 543.00 mg%, respectively. The amino acid contents of the Sasa borealis leaf tea were very rich in proline (1,275.26 mg/100 g) and deficient in cystine (71.49 mg/100 g). The major fatty acid components were linoleic acid (50.52%), palmitic acid (18.52%), and oleic acid (14.16%). Finally, based on our sensory evaluations, the $80^{\circ}C$ extracted Sasa borealis leaf tea evidenced the best overall quality. The contents of total phenol and total flavonoids of the 80% methanol and hot water extracts were 15.09, 7.69 mg/g and 12.03, 6.12 mg/g, respectively. The DPPH and $ABTS^+$ radical scavenging activities of the 80% methanol extract from Sasa borealis leaf tea were 86.87% and 83.85% at a concentration of 1.25 mg/mL. The 80% methanol and hot water extracts evidenced reducing power and inhibitory effects against acetylcholinesterase in a dose-dependent manner.

Antioxidant Activity of Fermented Wild Grass Extracts (산야초 발효액의 항산화 활성)

  • Lee, Young-Jun;Yoon, Bo-Ra;Kim, Dan-Bi;Kim, Myoung-Dong;Lee, Dae-Won;Kim, Jae-Keun;Lee, Ok-Hwan
    • The Korean Journal of Food And Nutrition
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    • v.25 no.2
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    • pp.407-412
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    • 2012
  • Wild grass is edible, and it grows in the mountains or field areas. Wild grass has diverse biological effects, such as antiobesity, anti-cancer, antioxidant activities and immune stimulation. Currently, many studies are aimed at enhancing the efficacy of medicinal foods on biological activity using a bioconversion technology, including the fermentation process. In this study, the quality characteristics and antioxidative activity of the fermented wild grass was investigated. The antioxidant activity of fermented wild grass was assessed by various radical scavenging assays using DPPH(2,2-diphenyl-1-picrylhydrazyl), FRAP(ferric ion reducing antioxidant power), reducing power, and ABTS (2,2'-azino-bis(3-ethylbenzothiazoline-6-sulphonic acid)). Moisture contents of the fermented wild grass is $49.6{\pm}0.06%$. Contents of crude ash, crude protein, and crude fat were $0.65{\pm}0.01$, $0.65{\pm}0.04$, and $3.3{\pm}0.59%$, respectively. Moreover, fermented wild grass showed that the hunter's color values were 80.36(lightnees), 11.47(redness), and 44.53(yellowness), respectively. Total phenolic contents of the fermented wild grass was $1,185{\pm}159{\mu}g$ GAE(gallic acid equivalent)/g. The antioxidative activities of the fermented wild grass were significantly increased in a dose dependent manner. In addition, fermented wild grass did not show any cytotoxicity up to 500 ${\mu}g/m{\ell}$. However, the anti-adipogenic effect of the fermented wild grass extract was barely detectable. This antioxidant potential is partly due to the phenolic compounds that are present in the fermented wild grass extracts.

Physicochemical Composition and Antioxidative Effects of Yacon (Polymnia Sonchifolia) (야콘의 이화학적 성분과 항산화 효과)

  • Kim, Ah-Ra;Lee, Jae-Joon;Jung, Hae-Ok;Lee, Myung-Yul
    • Journal of Life Science
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    • v.20 no.1
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    • pp.40-48
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    • 2010
  • This study was carried out to investigate the physicochemical and functional properties of Yacon (Polymnia Sonchifolia) powder. The proximate composition of Yacon powder as a dry matter basis was 3.53% moisture content, 1.13% crude protein, 0.40% crude fat, 0.79% crude ash, 1.63% dietary fiber and 92.52% carbohydrate. The major free sugars were identified as fructose and glucose. Analysing total amino acids, 18 kinds of components were isolated from Yacon powder. The essential amino acid contained in Yacon powder accounted for 28.40% of total amino acid, while the non-essential amino acid accounted for 73.61%. Analysing total fatty acids, only 2 kinds - palmitic acid and lauric acid - were detected. Oxalic acid was the major organic acid. The contents of vitamin A, vitamin C and vitamin E were 0.057 mg%, 0.670 mg% and 0.001 mg%, respectively. The mineral contents of Yacon powder were in the order of Zn

Extraction and Component Sugar Analysis of Polysaccharides from Buckwheat (메밀의 다당류 추출과 구성당 분석)

  • Lee, Jung-Sun;Ra, Kyung-Soo;Son, Heung-Soo
    • Korean Journal of Food Science and Technology
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    • v.27 no.6
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    • pp.860-865
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    • 1995
  • This study was conducted to extract and isolate the polysaccharides from buckwheat. Also the sugar composition of the polysaccharides was investigated. The soluble and indigestible polysaccharides were isolated from supernatant and residue after enzyme treatment of raw, roast and steam buckwheat. The yields of low molecular weight soluble polysaccharides(LMS-P: MW<10 Kda) and high molecular weight soluble polysaccharides(HMS-P: MW>10 Kda) were $74.9{\sim}84.2%$ and $5.5{\sim}9.4%$, respectively. The yields of indigestible polysaccharides were low molecular weight insoluble polysaccharides; $0.8{\sim}4.2%$, crude hemicellulose; $3.2{\sim}9.6%$, alcohol insoluble hemicellulose; $0.9{\sim}1.7%$, residue; $2.0{\sim}2.4%$, respectively. The free sugars were detected in the soluble polysaccharides and low molecular weight insoluble polysaccharides but were not detected in the crude hemicellulose, alcohol insoluble hemicellulose and residue. The protein of all fraction were detected and the content was $1.0{\sim}18.9%$. The main sugar of soluble polysaccharides was glucose and the indigestible polysaccharides were composed of glucose, arabinose, rhamnose, xylose, mannose and galactose.

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