• Title/Summary/Keyword: citrus fruits peel

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Changes in ${\beta}$-Cryptoxanthin Contents of Citrus unshiu Markovich Fruits Ripened in Greenhouse versus Open Field Cultivation

  • Heo, Ji-Man;Lee, Sam-Pin;Song, Kwan-Jeong;Kim, Chan-Shick
    • Food Science and Biotechnology
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    • v.14 no.4
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    • pp.533-536
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    • 2005
  • [ ${\beta}$-Cryptoxanthin ] contents were determined from Citrus unshiu Markovich fruits grown in a greenhouse and open field of Jeju Island, off the southern coast of Korea. In a greenhouse and open field, the ${\beta}$-cryptoxanthin content in the peel was greatly increased by harvesting citrus fruits in the late season from August through November. However, ${\beta}$-cryptoxanthin content in the flesh was gradually increased and was superior to that of the citrus fruits grown in a greenhouse. ${\beta}$-Cryptoxanthin was efficiently purified from the flesh of citrus fruits harvested in the late harvesting season in November. The ${\beta}$-cryptoxanthin contents in the peel and flesh of citrus fruits harvested from a greenhouse in November were 0.89 mg% and 0.35 mg%, respectively, and in that obtained from an open field were 1.12 mg% and 0.35 mg%, respectively.

Changes of Some Flavonoids in the Peel of Satsuma Mandarin (Citrus unshiu) Harvested during Maturation

  • Kim, Young-Cheon;Koh, Kyung-Soo;Koh, Jeong-Sam
    • Journal of Applied Biological Chemistry
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    • v.44 no.3
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    • pp.143-146
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    • 2001
  • Eight flavonoids, including rutin, naringin, hesperidin, quercetin, hesperetin, nobiletin, 3,5,6,7,8,3',4'-methoxylated flavone, and tangeretin, in the peels of satsuma mandarin (Citrus unshiu) species of Halla, Gungcheon, Hungjin, Namgam-20, Illnam-1, and Chungdo harvested between August and December were analyzed through HPLC. Hesperidin content of Halla harvested during early maturation was 28.70 mg/g, and was the highest among the tested citrus fruits. Rutin content of Hungjin harvested during early maturation was 2.66 mg/g. Naringin in all citrus species and hesperetin in Halla, Gungchun, Namgam-20, and Chungdo were only detected in the peel of fruits harvested during early maturation. Hesperidin and rutin were detected mainly in all citrus species, and other flavonoids in trace. Flavonoid content in the peel of fruits was high during early maturation. Flavonoid contents in the peels of all fruit samples were generally high in the early stage of maturation, which then decreased rapidly.

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The Accelerating Action of Lipid Excretion of Immature Citrus Fruits (미숙감귤의 지질배설 촉진작용)

  • Kim, Ki Jung;Ko, Sung Kwon
    • Korean Journal of Pharmacognosy
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    • v.48 no.2
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    • pp.134-140
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    • 2017
  • In a series of investigations to develop a potential anti-obese agent, we prepared a immature Citrus fruits (IMF) and compared its lipid excretion effects to those of Citrus fruits (MF, CP, JP) in an ICR mouse model of obesity induced by a high fat diet. The body weights of IMF fed mice were found to be significantly lower from 2 weeks oral administration, despite the fact that their food intakes were similar to that of the HFD control mice. The fecal cholesterol content showed a significant increase in IMF (52.0 mg/g) at 7 weeks oral administration, and mature Citrus fruits (MF, 41.3 mg/g), immature Citrus peel (CP, 32.2 mg/g), mature Citrus peel (JP, 30.0 mg/g) respectively. And also, the triglyceride content in the feces showed a significant increase in MF (14.6 mg/g), and IMF (14.2 mg/g), CP (10.5 mg/g) and JP (10.0 mg/g), respectively. On the other hand, in the inhibition activity of pancreatic lipase, MF (0.78 nmol/min/ml) showed the greatest decrease in glycerol, CP (0.79 nmol/min/ml), JP, (0.93 nmol/min/ml) and IMF (1.42 nmol/min/ml).

Comparison in Antioxidant Effects of Four Citrus Fruits (감귤류 4종의 항산화 효과의 비교)

  • Park, Geun-Hong;Lee, Sang-Hoon;Kim, Hyun-Young;Jeong, Heon-Sang;Kim, Eun-young;Yun, Young-Won;Nam, Sang-Yoon;Lee, Beom-Jun
    • Journal of Food Hygiene and Safety
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    • v.26 no.4
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    • pp.355-360
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    • 2011
  • This study was performed to investigate the antioxidant effects of 4 citrus fruits including Hallabong, Cheonhyehyang, Cheonggyeon, and Jinjihyang. In this study the citrus fruits were separated in three parts of peel, pulp segment membrane (PSM), and pulp and extracted with methanol, then concentrated using a rotary vacuum evaporator. Total polyphenol contents ranged 23.497~42.341 mg/g in peel, 13.285~21.872 mg/g in PSM and 6.333~11.627 mg/g in pulp of the citrus fruits. The total polyphenol contents were highest in the peel and PSM of Jinjihyang and in the pulp of Cheonhyehyang. 1,1-diphenyl-2picryl hydrazyl (DPPH) radical scavenging activities were highest in the peel and PSM of Jinjihyang and in the pulp of Cheonhyehyang. 2,2'-Azino-bis-(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS) radical scavenging capacities were also highest in the peel and PSM of Jinjihyang and in the pulp of Cheonhyehyang. Reducing powers were highest in the peel of Cheonggyeon, in the PSM of Jinjihyang, and in the pulp of Cheonhyehyang. There were significant correlations in between total polyphenol contents and the radical scavenging activities, and reducing power each other. These results indicate that the 4 citrus fruits (Hallabong, Cheonhyehyang, Cheonggyeon, and Jinjihyang) evidently have antioxidant capacities and their peel parts have the highest antioxidant activities.

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.

Effect of Harvesting Season on the 6-Cryptoxanthin in Shiranuhi Mandarin Fruit Cultivated in Jeju Island

  • Heo, Ji-Man;Kim, Do-Hyun;Kim, In-Jung;Lee, Sam-Pin;Kim, Chan-Shick
    • Preventive Nutrition and Food Science
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    • v.10 no.3
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    • pp.219-223
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    • 2005
  • [ $\beta-Cryptoxanthin$ ] content was determined in Shiranuhi mandarin fruits harvested at monthly intervals from October to February in Jeju Island. Crude carotenoids were extracted from both peel and flesh of Shiranuhi mandarin fruits and analyzed using TLC and HPLC; $\beta-cryptoxanthin$ was indicated the Rr value of 3.2 and retention time of 23 min, respectively. $\beta-Cryptoxanthin$ contents in both peel and flesh were increased gradually as the citrus fruits ripened fully until harvesting season (February). According to the harvesting time, $\beta-cryptoxanthin$ contents in the peel were $0.15\;mg\%\;(October),\;0.28\;mg\%\;(November),\;0.38\;mg\%\;(December),\;1.23\;mg\%\;(January),\;and\;1.71\;mg\%\;(February).$In the flesh, $\beta-cryptoxanthin$ contents were lower than those of peels, having $0.06\;mg\%\;(October),\;0.08\;mg\%\;(November),\;0.19\;mg\%\;(December),\;0.26\;mg\%\;(January),\;and\;0.65\;mg\%\;(February).$ These results demonstrate that $\beta-cryptoxanthin$ in Shiranuhi mandarin fruits accumulated during ripening of the citrus fruits. In particular, the peels had much higher concentrations of $\beta-cryptoxanthin$ and have potential for use as a functional ingredient.

Quality Characteristics of Satuma Mandarin According to Harvest Areas in Cheju (생산지역별 온주밀감의 품질특성)

  • 고정삼;송상철
    • Food Science and Preservation
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    • v.6 no.1
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    • pp.7-10
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    • 1999
  • Physicochemical properties of Satsuma mandarin(Citrus unshiu Marc. var. miyagawa) harvested in middle of November according to production areas of Cheju were investigated. Peel thickness of citrus fruits was ranged from 2.54mm to 3.13mm, and it was lower on fruits harvested in western areas than those of other areas in Cheju. Soluble solids were ranged from 10.1 to 12.0$^{\circ}$Brix, and it was lower on fruits harvested in southern areas. Acid contents of citrus juice were ranged from 1.28% to 1.42%, it was higher on fruits harvested in eastern areas, specific gravity of citrus fruits was ranged between 0.86 and 0.88. Flesh ratio was ranged from 75.1% to 77.6%, it was lower on fruits harvested in southern areas. Soluble solids, acid content and specific gravity harvested in southern areas of below 100m and over 150m sea level altitude were 11.8 and 11.2, 1.43% and 1.40%, 0.87 and 0.9, respectively. Fruits quality harvested in southern areas was better, compared to other harvest areas of Cheju.

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Physicochemical Properties of Satsuma Mandarin according to Harvest Year (수확년도에 따른 조생온주 밀감의 품질변화)

  • 고정삼;양영택
    • Food Science and Preservation
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    • v.5 no.1
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    • pp.1-6
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    • 1998
  • Physicochemical properties of early cultivar of Satsuma mandarin(Citrus unshiu Marc. var. miyagawa) according to harvesting year during 1990 to 1995 were investigated. Climatic conditions of every year affected the quality of citrus fruits. Compared to other harvesting years, flesh ratio and soluble solids were higher, but acid content was lower on citrus fruits produced in 1994, as for good climatic conditions during growth of fruits. Especially, acid content of fruits produced in 1993 was higher, compared to those of years, as for low mean temperature and high rainfalls. Fruit weight, peel thickness and soluble solids had a good linear correlation to fruits size, but acid content and flesh ratio had not correlation derived from difference of individual fruits. From the climatic data, the prediction of fruit quality would be possible in some degree before harvest. It seemed recommend to ably the flexibe method by harvesting year for the quality stanardization of citrus fruit.

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Anti-Inflammatory Effect of Peel Extracts from Citrus Fruits (감귤류 과피 추출물의 항염증 효과)

  • Lee, Sook-Hyun;Suh, Seok-Jong;Lee, Kyoung-Hae;Yang, Jong-Beom;Choi, Sung-Up;Park, Sung-Soo
    • Journal of Food Hygiene and Safety
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    • v.28 no.4
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    • pp.342-348
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    • 2013
  • The following study was presented to investigate the anti-inflammatory effect of peel extracts (PE) from three citrus fruits: Citrus unshiu, Citrus limonia Osbeck and Citrus hallabong. According to this study, cytotoxicity, NO-production and protein levels of iNOS (inducible nitric oxide synthase) in macrophage cell were analyzed, which had been incubated in murine macrophage cell line RAW 264.7 cell of PE from those three citrus fruits. According to Citrus unshiu peel extracts (CUP), Citrus limonia Osbeck peel extracts (CHP) and Citrus hallabong peel extracts (CLP) treatment, the result showed that there was no cell growth inhibited below 2 mg/mL. Comparing the NO-production of the cell with LPS (100 ng/mL) and the treatment without LPS, significant increase of NO-production was detected. However NO-production also showed decrease trend, as the concentration increased. For each treatment, at the concentration of 1 mg/mL, NO-ihibitory activity showed significant result with following order: CUP > CHP > CLP. According to the result from Western blot, the inhibitory activities of iNOS protein from CUP and CHP showed fairly similar performances. Also inhibitory activity of COX-2 showed the following order: CUP > CHP> CLP. There was no doubt that all the treatments of CUP, CHP and CLP have anti-inflammatory effect and also that the inhibitory activity of the CUP treatment was the strongest among those three.

Changes in Pectin of Satsuma Mandarin during Ripening and Storage (온주밀감의 성숙과 저장 중 펙틴 함량의 변화)

  • 강문장;고경수;고정삼
    • Food Science and Preservation
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    • v.7 no.1
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    • pp.38-43
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    • 2000
  • Changes in firmness and pectin contents during maturation and sotrage of Stsuma mandarin (Citrus Unshiu Marc. var. miyagawa) were investigated. Firmness of fruits was decreased quickly from 1,176.8g-force to 503.6g-dorce. Satsuma mandarin was stored at 3$^{\circ}C$ and 85%${\pm}$5% relative humidity. Firmness were decreased from 538.9g-force to 336.9g-force during storage. Alcohol-insoluble solid(AIS) of peel and flesh were decreased quickly from 27.04g/100g to 12.30g/100g, and from 2.67g/100g to 1.91g/100g during maturation of fruits. During storage of fruits, AIS of peel was decreased from 14.32g/100g to 12.06g/100g . During maturation of fruits, water soluble pectin (WSP) of peel were increased from 420.82mg/100g to 601.62mg/100g as wet basis. Hexametaphosphate soluble pectin (HMP) was also increased from 450.17mg/100g to 577/53mg/100g. hydrochloricacid soluble pectin (HSP) was decreased from 1938.30 mg/100g to 695.14mg/100g. During storage of fruits, HMP and HSP of peel was decreased from 507.82mg/100g to 695.14mg/100g. During storage of fruits, HMP and HSP of peel was decreased from 527.82mg/100g to 275.47mg/100g , and from 672.28mg/100g to 351.36mg/100g, respectively. WSP of peel was increased from 543.70mg/100g to 584.31mg/100g. Total pectin substance (TPS) of peel was decreased from 2809.79 mg/100g to 1874.29mg/100g during maturation, and from 1723.80mg/100g to 1211.14mg/100g during storage, respectively. Composition ratio of pectin was in order of WSP>HSP>HMP.

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