• Title/Summary/Keyword: persimmon peel

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Identification and Determination of Dietary Fibers in Citron, Jujube and Persimmon (유자, 대추, 감의 식이섬유 검색 및 정량)

  • 강민영;정윤화;은종방
    • Food Science and Preservation
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    • v.10 no.1
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    • pp.60-64
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    • 2003
  • This paper was performed to identify and determine dietary fibers considered as nutracerticals and for pharmaceuticals in Korean fruits, citron, jujube and persimmon. In the pulp and peel of citron, jujube and persimmon, the contents of dietary fiber were determined by the method of AOAC and Van Soest et al. The contents of dietary fiber(DF) in the pulp of citron were 2.61% of insoluble dietary fiber (IDF) and 1.25% of soluble dietary fiber(SDF) based on wet weight. The contents of DF in the peel of citron were 7.32% of IDF and 0.71% of SDF. The total pectin contents in the pulp and in the peel of citron were 1.77% and 3.19% respectively. The contents of IDF in the pulp of jujube were 2.98%, SDF 0.91 % calculated on wet weight basis. The contents of IDF were 16.88%, SDF 1.53% in the peel of jujube. The contents of DF in the pulp of persimmon were 1.95% of IDF and 0.31 % of SDF based on wet weight. The contents of IDF were 15.71 %, SDF 2.46% in the peel of persimmon. In dietary fibers of Korean fruits, citron, jujube and persimmon, IDE were much higher than SDF and mainly in the pulp. Therefore, they would be good source of dietary fibers.

Effects of Dietary Persimmon Peel and its Ethanol Extract on the Production Performance and Liver Lipids in the Late Stage of Egg Production in Laying Hens

  • Oh, S.T.;Zheng, L.;Shin, Y.K.;An, B.K.;Kang, C.W.
    • Asian-Australasian Journal of Animal Sciences
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    • v.26 no.2
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    • pp.260-265
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    • 2013
  • The purpose of this study was to investigate the dietary effects of persimmon peel (PP) and PP ethanol extract (PPE) on egg production, egg quality, and liver lipids in the late stage of egg production in laying hens. One hundred and twenty 50-wk-old Hy-Line Brown layers (n = 120) were fed different diets. Four replicate groups of 6 hens each were randomly assigned to 5 dietary treatments. The 5 dietary treatments were as follows: i) CON, basal diet; ii) PP 0.15, CON+0.15% PP (0.035% tannin); iii) PP 0.5, CON +0.5% PP (0.117% tannin); iv) PPE 0.075, CON+0.075% PPE (0.03% tannin); and v) PPE 0.25, CON+0.25% PPE (0.11% tannin). The total tannin concentration of PPE was higher (p<0.05) than that of PP. Egg production in the PP 0.5 group was higher than in the other groups. Egg production and mass of hens in the PPE 0.25 group showed a greater decrease than that in the other groups (p<0.05). Eggshell color in the PP 0.15, PP 0.5, and PPE 0.075 groups was lighter than that of the control group (p<0.05). The Haugh unit for the groups that were fed PP and PPE were significantly higher than that in the other groups after 7 d of storage (p<0.05). Therefore, PP seems an effective feed additive for improving the production performance and egg quality in late stage laying hens.

Carotenoids pigment extraction from a wasted persimmon peel (폐기 감 과피를 이용한 Carotenoids색소의 추출)

  • 오상룡;차원섭;박준희;조영제;홍주헌;이원영
    • Food Science and Preservation
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    • v.8 no.4
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    • pp.456-461
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    • 2001
  • To develop the use of natural pigment for food, carotenoids from wasted persimmon peel were extracted with seven organic solvents. Among the solvents, acetone was a high yielding solvent of carotenoids. Extraction trends depending on process variables(temperature, time, solvent ratio to persimmon peel) were explained through response surface which was made by central composite experimental design. Carotenoid contents were increased with the extraction time and solvent ratio but it decreaed in the higher experimental design. Carotenoid contents were increased with the extraction time and solvent ratio but it decreased in the higher extraction temperature. The optimum conditions of extraction process variables were predicted as 29$\^{C}$, 93min. at fixed solvent ratio(1:27).

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Effect of Persimmon Peel (Diospyros kaki Thumb.) Extracts on Lipid and Protein Oxidation of Raw Ground Pork During Refrigerated Storage

  • Choe, Ju-Hui;Kim, Hack-Youn;Kim, Cheon-Jei
    • Food Science of Animal Resources
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    • v.37 no.2
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    • pp.254-263
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    • 2017
  • The inhibition effect of persimmon peel extracts (PPE) (0.05(PPE-0.05), 0.1(PPE-0.1), and 0.2 g(PPE-0.2) per meat sample) on lipid and protein oxidation of pork patties during chilled storage for 12 days were investigated and compared to ascorbic acid (As-0.05) and butylhydroxytoluene (BHT) (BHT-0.01). The meat samples treated with PPE had greater (p<0.05) $a^*$ values comparing control in raw pork patties meat from day 4 of storage. The addition of PPE at all concentrations on meat samples effectively inhibited the formation of oxidation products as shown by decreasing conjugated dienes (CD), peroxide values (POVs), thiobarbituric acid reaction substances (TBARS), and carbonyl content during chilled storage for 12 d. The PPE-0.2 and BHT-0.01 had the lowest in decrease rate of free thiol content (0.24 and 0.22 times) during chilled storage. Therefore, results of this study suggest that PPE can be considered a potential antioxidant against lipid and protein oxidation of raw meat products.

Changes in the Antioxidant Potential of Persimmon Peel Extracts Prepared by Different Extraction Methods (고종시 감껍질의 추출조건에 따른 항산화 활성)

  • Jeong, Myeong Jin;Jin, Soon Woo;Hwa, Sung Yong;Bang, Hee Ok;Han, Dong Moon;Jeon, Ji Yeong;Hwa, Se Kyung
    • Korean Journal of Medicinal Crop Science
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    • v.27 no.3
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    • pp.186-193
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    • 2019
  • Background: Astringent persimmon (Diospyros kaki Thunb. cv. Kojongsi) peels are by-products of dried persimmons. This study aimed to evaluate the antioxidant activities of Kojongsi persimmon peel (KPP) extracts prepared by 15 different extraction methods: 5 heating durations (0.5 - 2.5 h) at 3 heating temperatures (50, 70, and $90^{\circ}C$). Methods and Results: An increase in heating temperature increased the antioxidant effect of KPP extracts. Those prepared by heating at 1 h had the highest total phenol content, regardless of the heating temperature. In addition, the 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging activity and cell-protective effects against $H_2O_2-induced$ oxidative stress were dependent on the total phenol contents of the extract. However, the KPP-induced increased in catalase expression was dependent on heating temperature and duration. Conclusions: These results suggest that extraction by heating at $90^{\circ}C$ for 1 h may enhance KPP's antioxidant effects, which mainly involve non-enzymatic antioxidant systems.

Optimization of Gamsulgi Prepared with Persimmon Peel Powder Using Response Surface Methodology (반응표면분석법에 의한 감설기 제조조건의 최적화)

  • 박금순;정외숙;이선주
    • Korean journal of food and cookery science
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    • v.16 no.5
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    • pp.394-401
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    • 2000
  • To enhance gamsulgi quality, the optimal conditions for persimmon peel powder (PPP) addition were evaluated with PPP content(10, 50), sugar content(5, 25) and water content(10, 50%) by reponse surface methodology (RSM). The statistical significanes of sugar element in gamsulgi preperation did not show. Optimal conditions for the content of PPP and water, predicted for each corresponding sensory parameter of gamsulgi, were 10∼40% and 18∼50% for consistency, 10∼32% and 11∼50% for after swallowing, 24∼50% and 14∼39% for color, 10∼40% and 31∼50% for chewiness, 14∼38% and 22∼47% for moistness, 10∼38% and 22∼50% for texture, and 10∼43% and 18∼50% for overall quality. The overall optimal conditions, which satisfied with all sensory properties of gamsulgi, were 25% for PPP content and 35% for water content.

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Neuroprotective effects of astringency-removed peel extracts of Diospyros kaki Thunb. cv. Cheongdo-Bansi on oxidatively-stressed PC-12 cells (청도반시(Diospyros kaki Thunb. cv. Cheongdo-Bansi) 탈삽 껍질 추출물의 산화스트레스로부터 PC-12 신경세포 보호 효과)

  • Jeong, Da-Wool;Cho, Chi Heung;Rha, Chan Su;Lee, Seung Hwan;Kim, Dae-Ok
    • Korean Journal of Food Science and Technology
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    • v.49 no.5
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    • pp.538-543
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    • 2017
  • Astringent persimmon (Diospyros kaki Thunb. cv. Cheongdo-Bansi) peel with the astringency removed, which is a by-product of dried persimmon (gotgam), was investigated for its antioxidant and neuroprotective properties. A mixture of peel and 40% (v/v) aqueous ethanol was subjected to ultrasonication and then thermal and nonthermal treatments, to produce thermally-treated and nonthermally-treated persimmon peel extracts (TPE and NTPE, respectively). The total phenolic and flavonoid contents and the antioxidant capacity of TPE was approximately 1.3-1.8 times higher than those of NTPE. TPE resulted in the increased viability of neuronal PC-12 cells compared with NTPE. Furthermore, intracellular oxidative stress in PC-12 cells was more decreased by treatment with TPE than NTPE. Cholinesterases, such as acetylcholinesterase and butyrylcholinesterase, were more inhibited by treatment with TPE than NTPE. These results suggest that TPE is useful as a functional material to decrease oxidative stress in neuronal cells and to inhibit cholinesterases.

Chemical Composition and Quality of Persimmon Peels According to Cultivars (품종별 감피의 화학적 성분 특성)

  • Kim, Suk-Kyung;Lim, Jung-Hyung;Kim, Young-Chan;Kim, Mi-Yeon;Lee, Byung-Woo;Chung, Shin-Kyo
    • Applied Biological Chemistry
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    • v.48 no.1
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    • pp.70-76
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    • 2005
  • Approximate composition and physicochemical properties of 7 cultivars of persimmon peel, by product of dried-persimmon, were examined. The content of crude fiber were different according to cultivars. Glucose, fructose and sucrose were isolated by HPLC; also, myristic, palmitic, palmitoleic, oleic and linolenic acid were the major fatty acids in persimmon peel. Total and free amino acid were 241.32-371.45 mg/100 g and 3.69-28.31 mg/100 g, respectively; also, aspartic and glutamic acid were the predominant amino acids, reaching a level between 19.6 and 24.8% of total amino acids. Insoluble dietary fiber content(34.89-50.76 g/100 g) was remarkably higher than soluble dietary fiber (2.44-7.09 g/100 g). Total carotenoids were in the range of 179.4-340.6 mg/100 g, and total phenolic compounds ranged from 44.07-196.98 mg/100 g, showing differences between cultivars.

Fruit Qualities of De-astringent Persimmon 'Fuyu' Affected by Various Light Sources under Low and High Temperatures before Storage of Harvested Fruit

  • Kim, Tae-Choon;Kim, Chul Min;Kim, Ho Cheol
    • International Journal of Advanced Culture Technology
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    • v.7 no.4
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    • pp.260-267
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    • 2019
  • Harvested de-astringent persimmon 'Fuyu' were treated with various lighting sources under low (3℃) and high (22℃) temperatures. The weight loss rate of fruits was lower in those with Red LED than Fluorescence and Blue LED under both temperature conditions. Hardness and soluble solid content of fruits were higher in those with 3℃ / Blue LED or mixed LED (Blue+Red LEDs). Beta-carotene and lycopene content of fruit peel were higher in those with 3℃ than 22℃ and with Red LED or light sources with mixed red wavelength under both temperatures. When the fruits treated with light and temperature were stored for 4 days under 3℃ / dark condition, the hardness of the fruits did not significant difference among the treatments. Taken together all the results, it would be best to treat it light sources mixed red wavelength under 3℃.

Effect of Storage Temperature on Fruit Quality Attributes and Storage Disorders in Cold-stored 'Sangjudungsi' Persimmon Fruit (저온저장 온도가 '상주둥시' 감의 과실품질 및 저장장해 발생에 미치는 영향)

  • Yoo, Jingi;Kang, In-Kyu;Park, Jun-yeun;Kim, Kyoung-ook;Win, Nay Myo;Ryu, Seulgi;Kim, Dae Hyun;Choung, Myoung-Gun;Lee, Jinwook
    • Journal of Bio-Environment Control
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    • v.25 no.4
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    • pp.262-269
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    • 2016
  • The objective of this study was to evaluate the effect of storage temperature on fruit quality attributes and physiological disorders including peel blackening in 'Sangjudungsi' persimmon (Diospyros kaki Thunb.) fruit stored in air at -1, 0.5 or $3^{\circ}C$ for up to 3 months. Higher storage temperature reduced ethylene production but not respiration rate, compared with lower storage temperature. Flesh firmness decreased continuously as storage time passed but firmness was reduced rapidly in the fruits stored at higher storage temperature. Fresh weight loss increased at higher storage temperatures. Soluble solids content was higher at lower storage temperature than at higher storage temperature. All color variables ($L^*$, $a^*$, $b^*$) were reduced by lower storage temperature, compared with higher storage temperature, regardless of tissue regions. Fruit softening increased as storage duration advanced and with the increase in storage temperature. Results indicated that the 'Sangjudungsi' persimmon fruits stored at higher storage temperature ($3^{\circ}C$) could not retain fruit quality properly on account of lower flesh firmness and higher incidence of peel blackening and fruit decay, compared with lower storage temperature.