• Title/Summary/Keyword: neohesperidin

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Contents of Naringin, Hesperidin and Neohesperidin in Premature Korean Citrus Fruits (제주재래종 감귤류 미숙과의 neohesperidin, naringin 및 hesperidin 함량)

  • Rhyu, Mee-Ra;Kim, Eun-Young;Bae, In-Young;Park, Yong-Kon
    • Korean Journal of Food Science and Technology
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    • v.34 no.1
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    • pp.132-135
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    • 2002
  • Neohesperidin, naringin, and hesperidin contents of nine species of premature Korean citrus fruits have been determined. Flavonoids were extracted from dried citrus fruits by N,N-dimethylformamide and analyzed using RP-HPLC. 'Dangyooja' and 'Jikak' had higher content of neohesperidin and naringin. The content of hesperidin was higher in 'Binkyool' and 'Dongjeongkyool' than other seven species of citrus fruits, respectively.

Optimization of Production Yield for Neohesperidin by Response Surface Methodology (반응표면 분석법을 이용한 neohesperidin 생산 수율의 최적화)

  • Yang, Hee-Jong;Jeong, Seong-Yeop;Choi, Nack-Shick;Ahn, Keug-Hyun;Park, Chan-Sun;Yoon, Byoung-Dae;Ryu, Yeon-Woo;Ahn, Soon-Cheol;Kim, Min-Soo
    • Journal of Life Science
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    • v.20 no.11
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    • pp.1691-1696
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    • 2010
  • Neohesperidin is a natural new nutrition sweetener, widely existing in plants of dry citrus peel, which can be derived from extraction. Since the sweetness is 1,300-1,500 times greater than that of sugar, neohesperidin are widely used in fruit juices, wines, beverages, bakeries and pharmaceutical formulations, and are particularly suitable for consumption by diabetic patients. However, the yield of extraction from citrus peel waste is very low. In this study optimal yield conditions were determinedusing response surface methodology (RSM) in order to increase the neohesperidin extraction yield. The critical factors for maximum extraction yield were selected extraction pressure ($x_1$), extraction time ($x_2$), and concentration of ethanol ($x_3$). As a result, the extraction yield was improved when the extracting pressure increased. The extraction yield also increased in a time-dependent manner. When adding ethanol as an assistance solvent to the supercritical carbon dioxide, extraction yield was increased as more ethanol concentration was added. Finally, the extraction yield of neohesperidin was improved to about 162.22% compared to ethanol extraction as a conventional method.

Simultaneous Determination of Flavanone Glycosides in the Fruit of Citrus paradisi and C. grandis by HPLC-PDA

  • Piao, Xiang-Lan;Wu, Qian;Han, Saem;Kim, Hyun-Young;Lee, Sang-Hyun
    • Natural Product Sciences
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    • v.17 no.4
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    • pp.337-341
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    • 2011
  • An HPLC (high-performance liquid chromatography)-PDA (photodiode array) detection method was established for the determination of naringin, hesperidin and neohesperidin in the fruit of Citrus paradisi and C. grandis. The flavonoids were separated in less than 20 min using an YMC RP 18 column with isocratic elution using acetonitrile and water (23 : 77, v/v) at a flow rate of 1 ml/min, and a PDA detector. The levels of naringin, hesperidin and neohesperidin were 1345.92, 950.62, and 2078.82 ${\mu}g/g$, respectively, in the peel, and 102.43, 59.13, and 86.68 ${\mu}g/g$, respectively, in the flesh of C. paradisi. In C. grandis, the levels of naringin, hesperidin and neohesperidin were 3530.56, 80.00, and 5.26 ${\mu}g/g$, respectively, in the peel, and 59.59, 7.43, and 38.41 ${\mu}g/g$, respectively, in the flesh. The total content was highest in the peel, reaching 0.44% and 0.36% in C. paradisi and C. grandis, respectively, while the flesh contained only 0.025% and 0.011%, respectively. Therefore, the peels of C. paradisi and C. grandis are necessary for the processing and utilization of flavonoids.

Effect $\beta$-Cyclodextrin on the Taste Quality of Neohesperidin Dihydrochalcone

  • Chung, Hai-Jung
    • Preventive Nutrition and Food Science
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    • v.1 no.2
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    • pp.186-189
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    • 1996
  • Neohesperidin dihydrochalcone(NHDC) is an intense sweetener with lingering aftertaste, which limits NHDC to use as a sweetener in food products. This study was conducted to examine the changes of teste quality of NHDC when using $\beta$-cyclodextrin($\beta$-CD) as a taste modifier. A series of $\beta$-CD(0.01%, 0.03%, 0.1%, 0.176%) was added to NHDC solution (100ppm) and the taste quality was evaluated by magnitude estimation. It was found that $\beta$-CD produced a significant effect in the reduction of aftertaste of NHDC(p<0.01) and sweetness as well.(p<0.001). Linear regression(log mean magnitude estimate versus $\beta$-CD concentration) analysis showed that the intensity of sweetness(n=-0.31) decreased more rapidly than that of aftertaste(m=-0.17). This result suggests the possibility that $\beta$-CD may form inclusion complex with NHDC, so that the hydrophobic portion is encapsulated in the cavity of $\beta$-CD and the carbohydrate moiety is oriented to the outside of the cavity. Or it may be that $\beta$-CD competes with the NHDC molecule for binding to the taste receptor, resulting in reduced perceived intensity.

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HPLC Analysis of Some Flavonoids in Citrus Fruits (조생온주 밀감의 품종에 따른 Flavonoids 함량 분석에 관한 연구)

  • 이창환;강영주
    • Food Science and Preservation
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    • v.4 no.2
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    • pp.181-187
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    • 1997
  • New HPLC method was developed for determination of some flavonoids such as naringin, hesperidin, neohesperidin, rutin, quercitrin, naringenin, hesperetin and apigenin and their contents in citrus juice and citrus peel from citrus varieties Brown in Cheju. Detection was at 280nm and reverse phase ${\mu}$-Bondapak C-18 column was used. Water/methanol/acetic acid as the mobile phase was better than water/acetonitrile/acetic acid. Flavonoids were more stable in 20% n,n-dimethylformamide in methanol(20% DMF) than methanol and pH 12 adjusted by 1N-sodium hydroxide solution. Standard flavonoid solutions were injected three times consecutively and the reproduciability was 0.236 to 3.550%, Correlation coefficient of the calibration curve was 0.9946 to 0.9999. The exiraction efficiency of hesperidin from citrus peel was evaluated with different extraction method such as reflux, ultra-sonicating method, using three solvents (aqueous solutions with pH12 adjusted by 1N-sodium hydroxide, methanol and 20% DMF), respectively. The reflux for 4 hour in 20% DMF was the most efficient of the tested methods and solvents, and recovery percentage were 78.0∼130.0%. Flavonoids were determined in citrus juice. Naringin was 68.2mg/100$m\ell$ in Natsudaidai, Hesperidin were 85.6mg/100$m\ell$ in Sankyool and Neohesperidin was 25.3mg/100$m\ell$ in Dangyooja. Flavonoids were determined in citrus peel. Naringin was 110mg/g in Dangyooja, Hesperidin was 242mg/g in Hungjin and Neohesperidin was 87.9mg/g in Dangyooja.

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Changes of Major Constituents by Soaking of Kumquats and Citrus platymama with Ethanol Solution (금귤과 병귤의 침출 중 유용성분의 변화)

  • Lee Sang-Hyup;Yang Young-Taek;Koh Jeong-Sam
    • Food Science and Preservation
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    • v.13 no.3
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    • pp.389-396
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    • 2006
  • In order to prepare liqueur of citrus fruit, changes of major constituents, flavonoid pH, color changes, and extract, by soaking 3 kg/6 L kumquats for $1{\sim}70$ days and 1 kg/3 L Citrus platymama for $1{\sim}50$ days in $30{\sim}95%$ ethanol solution were investigated 1.5kg of kumquats, and 1kg of citrus platymama were soaked in 3 L of $30{\sim}95%$ ethanol solution for $50{\sim}70$ days. pH and color changed largely by ethanol concentration. Glucose and fructose were more extracted in $60{\sim}95%$ ethanol concentration. Citric acid and malic acid were extracted $10{\sim}15$ times with kumquats than with Citrus platymama in 30% ethanol solution. Ascorbic acid was more extracted in 60% ethanol solution for kumquats, and in 95% ethanol for Citrus platymamma. The content of ascorbic acid was $3.19{\sim}41.91{\mu}g/mL$ in kumquats, and $21.90{\sim}30.12{\mu}g/mL$ in Citrus platymamma. $312.82{\sim}688.12{\mu}g/mL$ of rutin were extracted in 95% ethanol solution, $9.32{\sim}74.49{\mu}g/mL$ of neohesperidin were extracted in 60% ethanol as for kumquats. Rutin and neohesperidin were more extracted in 30% ethanol concentration contrary to hesperidin. Hesperidin was extracted $38.93{\sim}136.86{\mu}g/mL$ in 95% ethanol solution.

Measurement of Synergistic Effects of Binary Sweetener Mixtures

  • Chung, Hai-Jung
    • Preventive Nutrition and Food Science
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    • v.2 no.4
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    • pp.291-295
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    • 1997
  • Some sensory properties of synthetic sweeteners are limiting factors for use in low calorie foods of soft drinks. By combining synthetic sweeteners(Neohesperidin dihydrochacone(NHDC), stevioside) with sucrose, sorbitol or xylitol, these limitations can be overcome. Using trained taste panelists and magnitude estimation methods, synergistic effects were investigated in binary sweetener mixtures, The results showed that synergism, as much as 28% to 69%,was noted at all concentration in xylitol-stevioside, NHDC-stevioside mixtures. Synergistic effects were found only at high concentration levels in mixtures of sucrose-NHDC, sucrose-stevioside, and sorbitol-stevioside, ranging from 11% to 22%.By taking advantage of synergistic effects, ginseng tea and orange flavored beverages, sweetened with either xylitol-stevioside of NHDC-stevioside, were prepared and the sensory quality was compared with that of sucrose containing beverages. It was found that sensory characteristics were judged to be very similar for all formulations. The result suggests the possibility of using of using these sweetener mixtures as sugar substitutes in ginseng tea and orange drink.

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Compositional Differences of Ojeok-san (Wuji-san) Decoctions Using Pressurized or Non-pressurized Methods for Variable Extraction Times

  • Kim, Jung-Hoon;Seo, Chang-Seob;Kim, Seong-Sil;Shin, Hyeun-Kyoo
    • Journal of Pharmacopuncture
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    • v.15 no.2
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    • pp.24-30
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    • 2012
  • This study compared Ojeok-san (Wuji-san in Chinese) decoctions produced using different extraction methods for variable times. Decoctions were extracted in pressurized or non-pressurized conditions for 60, 120, and 180 mins. We investigated the Ojeok-san extract yield, the total soluble solid content, the hydrogen ion concentration (pH), and the reference compound content. The extract yield and the total soluble solid content were higher in decoctions produced by non-pressurized extraction; both were proportional to the extraction time. The pH tended to decrease as the extraction time was increased in decoctions produced using both methods. After 60 and 180 mins, the levels of albiflorin, paeoniflorin, nodakenin, naringin, and neohesperidin were significantly higher in decoctions extracted using the non-pressurized method compared with those extracted using the pressurized method. After 120 mins, only cinnamaldehyde was extracted in a greater amount in pressurized decoctions compared with non-pressurized decoctions. The levels of paeoniflorin, ferulic acid, nodakenin, naringin, hesperidin, neohesperidin, and glycyrrhizin increased with time in non-pressurized decoctions. This study showed that the use of pressurized and non-pressurized extraction methods for different times affected the composition of Ojeoksan (Wuji-san) decoctions.

Changes in the Constituents of Citrus Juice by Ultrafiltration (한외여과에 의한 온주 밀감주스의 성분 변화)

  • 김성미;강영주
    • Food Science and Preservation
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    • v.8 no.4
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    • pp.442-448
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    • 2001
  • The citrus juice obtained from Jeju mandarines, Citru unshiu, was filtered to remove 20% of its original volume through the hollow fiber ultrafiltration systems equipped with various pore sizes of membranes. As the results of ultrafiltration, the contents of total acids, ascorbic acid, ascorbic acid, free sugars and neohesperidin in retentate showed the tendencies of gradual decreases with the increase of membrane pore sizes from 10K to 100K daltons, but tendencies were inverted when the membrane with 500k was used. The changes of color, soluble solids, total nitrogen, amino-nitrogen, naringin and hesperidin were not consistent with the membrane pore size. Considering all the data obtained using various pen sizes of membranes, the filtration system with NMWC 500K daltons was the most effective to produce citrus juices with hither quality.

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Changes of Some Flavonoids in the Peel of Late Maturing Citrus during Maturation

  • Kim, Young-Cheon;Koh, Kyung-Soo;Koh, Jeong-Sam
    • Preventive Nutrition and Food Science
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    • v.7 no.1
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    • pp.1-4
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    • 2002
  • Eleven flavonoids, including rutin, naringin, hesperidin, neohesperidin, quercetin, naringenin, kaempferol, hesperetin, nobiletin, 3,5,6,7,8,3',4'-methoxylated flavone and tangeretin in the peel of late maturing citrus fruit species of Mucott (smith tangerine), Singamha (C. natsudidai), Sambogam (C. sulcata), Hongpalsak (C. hassaku), Seminol (Dancy tangerine) and Jawdung (C. aurantium) harvested during from August to December were analyzed with HPLC. The mobile phase consisted of water and acetonitrile with 0.5% acetic acid. Wavelength in UV detector was determined at 254 nm. Naringin and neohesperidin content in the peel of Jawdung harvested at the early stage of maturation were 34.02 mg/g and 13.68 mg/g, respectively, and it was highest among the tested citrus fruits. Hesperidin content in the peel of Mucott harvested at the earthy stage of maturation was 12.48 mg/g. Rutin content of Sambogam harvested at the early stage of maturation was 5.13 mg/g. Quercetin, naringein, kaempferol, nobiletin, 3,5,6,7,8,3',4'-methoxylated flavone flavonoids were in trace. Flavonoid contents of Singamha, Sambogam and Jawdung were high in the peel of fruits at the early stage of maturation, after which time they decreased rapidly.