• Title/Summary/Keyword: flower of safflower

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Properties of the Chemical Composition of Safflower (Carthamus tinctorius L.) (홍화(Carthamus tinctorius L.)의 부위별 이화학적 특성)

  • 김성규;김현정;정병희;차재영;조영수
    • Journal of Life Science
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    • v.10 no.5
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    • pp.431-435
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    • 2000
  • In order to develop new materials for the functional feed, the components of safflower (Carthamus tinctorius L.) was studied. Chemical composition, minerals, amino acids, and fatty acids of the seed and the flower of safflower were analyzed. The chemical composition of safflower seed was 3.48% (w/w) moisture, 17.10% crude protein, 30.10% crude fat, 6.11% crude ash and these of safflower flower was 7.47% moisture, 26.30% crude protein, 11.50% crude fat, 5.73% crude ash. Mineral contents of the seed were K 170.70ppm, P 14.82ppm, Ca 13.17ppm, Mg 7.83 ppm whereas these of the flower were K 64.99 ppm, P 49.90 ppm, Ca 10.43ppm. Other mineral contents were less than 7.00ppm in all parts. The composition of the amino acid were approximately as follow, the major amino acid in all parts were aspartic acid, leucine, glycine, and arginine, the contents of these were 12.17mg/g, 11.52mg/g, 8.27mg/g, 6.99mg/g, 4.86mg/g in the seed, 19.35mg/g, 31.67mg/g, 10.30mg/g, 9.06mg/g, 12.51mg/g in the flower, respectively. The mahor fatty acids in the all parts were linoleic acid (C아래첨자). The linoleic acid and the palmitic acid (C아래첨자) in the seed and the flower parts were 77.75% (w/w), 19.32% and 8.37%, 25.62% respectively. On the basis of chemical analysis, the safflower showed to have relatively high contents of crude protein and crude fat, minerals, polyunsaturated fatty acid as linoleic acid. These results suggested that safflower was found to be a useful material of natural health food for the functional food development.

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Major Morphological Characteristics of Safflower(Carthamus tinctorius L.) Accessions (홍화 수집종의 주요 형태적 특성)

  • 김재철
    • Korean Journal of Plant Resources
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    • v.13 no.3
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    • pp.213-218
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    • 2000
  • Morphological characteristics of 16 collected safflower (Carthamus tinctorius L.)accessions were studied at Gyongbuk A.T.A. Uisong Medicinal Plant Experiment Station in 1998. As for plant height, 5 lines were tall(more than 131cm), which were mainly foreign safflower. Middle and small were 5 and 6 accessions, respectively. Number of branch per plant was 11∼13 in 2 accessions of domestic safflowers while foreign safflowers have more than 50 branches per plant. Leaf shapes were oblong(3 lines), lanceolate(10 lines) and broadly linear(3 lines). There were three types of leaf margin shape which were repand(7 lines), serrate(4 lines) and parted serrate(5 lines). Flower color was white(1 line), yellow(13 lines) and red orange(2 lines). As for flower head shape, 14 lines were conical and 2 lines were flattened. There were thorns on bract of flower head in 11 lines but in 5 lines there were not. Domestic safflower lines had seeds of conical shape. Contrastively, seed shapes of foreign saffower lines were oval.

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Volatile Components of Flower and Seed of Safflower (홍화꽃 및 홍화씨의 휘발성성분)

  • Choi, Sung-Hee;Im, Sung-Im;Jang, Eun-Young;Cho, Young-Su
    • Korean Journal of Food Science and Technology
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    • v.36 no.2
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    • pp.196-201
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    • 2004
  • Volatile components in flower and seed of safflower were identified. Volatile flavor compounds of safflower (Carthamus tinctorius L.) was extracted by simultaneous steam distillation and extraction method using Likens and Nickerson's extraction apparatus. Concentrated extract was analyzed and identified by gas chromatography and GC-mass spectrometry. Main volatile components in flower were terpene compounds, including p-cymene, limonene, ${\alpha}-phellandrene$, ${\gamma}-terpinene$, camphor, 4-terpineol, selinene, ${\beta}-caryophyllene$, torreyol, ${\beta}-eudesmol$, and 10 acids including 3-methylbutanoic acid, 2-methylbutanoic acid, and acids of $C_{2},\;C_{5}-C_{11}$. Main volatile components in seed and safflower were 20 aldehydes including hexanal (7.17%), (E)-2-heptenal (1.10%), (E,Z)-2,4-decadienal and (E,E)-2,4-decadienal.

Efficacy of Safflower on the Acne Skin and Its Application for Facial Cleansing Biomedical Material (홍화잇꽃의 여드름피부 개선효과 및 세안용 생약식물소재 응용)

  • Park, Young-Ho;Lee, Chang-Seop
    • Journal of the Korean Chemical Society
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    • v.55 no.3
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    • pp.400-404
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    • 2011
  • Safflower is called as the 'beneficial flower' because 'it helps human health', and it was introduced as red flower in Tonguibogam due to the red color of floral leaf. From old times, it has been used for the material of cloth and rouge. Recently, polyphenol compound, the main ingredient of safflower, known as anti-aging and anti-oxidizing material in the healthy food industry becomes the emerging hot topic. This study aims to confirm by DDT (Disk Diffusion Test) assay, MTT assay, and NF-${\kappa}$B Luciferase activity inhibition assay in vitro that polyphenol compound, which is the main ingredient of safflower, has the anti-microbial efficacy to inhibit the growth of acne germs that make troubles for the teenagers or middle aged. Also it aims to evaluate its clinical efficacy on the acne skin, utilizing the facial cleansing cosmetic form of soap sample. This study can contribute to take a major step forward to the development of cosmetic soap for acne in the cosmeceutical industry.

Reviews of Research trends on Safflower seed (Carthamus tinctorius L.) (홍화씨(잇꽃, Carthamus tinctorius L.) 연구 동향에 대한 고찰)

  • Choi, Cheol-Han;Kim, Hyeon-Dong;Im, E-Bin
    • Journal of Korean Medical classics
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    • v.24 no.6
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    • pp.63-90
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    • 2011
  • Safflower is a world-wide plant for multiple uses. flower of safflower is honghwa(紅花) which has been used for heart disease in oriental medicine. but its seed was not used in oriental medicine. after the publication of "Shinyak(神藥)" - the late 1980s, its seed(紅花子, hongwhassi) was known as good for bone fracture, osteoporosis and menopausal disorders. so many researchers studied hongwhassi and delivered lots of papers. the concern of each paper is different. this paper is a review paper. this paper studied documentary records about hongwhassi, and analyzed hongwhassi research trend. the trend consists of cultivation, ingredient analysis, osteoporosis, atherosclerosis, periodontal ligament and phytoestrogen. many papers lack of information about plant origin. so this paper supplements the standard form of plant origin(when sowing, where grow up, which direction, what kind etc).

Agronomic Characteristics and Path-coefficients of Safflower (Carthamus tinctorius L.) Collections (잇꽃 수집종의 주요특성과 경로계수 분석)

  • Park, Gyu-Hwan;Jung, Do-Chul;Kim, Jae-Cheol;Jeon, Chi-Hyeong;Kim, Kyung-Min
    • Korean Journal of Medicinal Crop Science
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    • v.12 no.1
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    • pp.17-23
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    • 2004
  • This study was carried out to obtain the basic information on mating parents and selection for high yielding safflower breeding. Thirty nine world safflower lines, which had collected from 13 countries of origjn, were evaluated for major agronomic characters, correlation and path-coefficients. The results obtained were summarized as follows. Days to flowers ranged from 83 days to 100 days. Days to flower of most foreign lines were later than that of domestic lines. Plant height ranged from 75 cm to 162 cm. The plant height and stem diameter of most foreign lines were higher than those of domestic lines. The leaf number and size of domestic lines were much more than those of foreign lines. The total branch numbers of foreign lines were more than domestic lines. Particularly, the number of third branch ranged from 0 to 25 and there were none in domestic lines. The number of corolla of foreign lines was much more than that of domestic lines. The yield of foreign lines collected from Central Asia and United States of America were more than any others. Significantly positive correlations were observed between yield and days to flower, stem diameter, the number of branch and the number of corolla. In the analysis of path-coefficient, the highest direct effects on yield was the number of corolla followed by the number of total branch, whereas those of the number of second branch and stem diameter were negative.

Growth and Seed Yield of Safflower in Plastic house (하우스 재배(栽培) 잇꽃의 생육(生育) 및 종실수양(種實收量))

  • Kim, Ki-Jae;Shin, Jong-Hee;Park, Chun-Hong;Park, So-Deuk;Choi, Boo-Sull
    • Korean Journal of Medicinal Crop Science
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    • v.7 no.4
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    • pp.269-274
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    • 1999
  • This experiment was carried out to investigate the effect of rain shelter cultivation on the its quality of safflower. The development and growth of safflower, especially the number of secondary branches per plant was increased by rain shelter. Under the rain shelter started earlier, the seed yield was increased by 95% compared with that of non-shelter condition. The number of plants in a unit area the number of flower buds and seeds per plant and seed weight were increased in rain shelter condition. As those plants were cultivated under the rain shelter, lightness(L) of their seeds was increased but redness (a) and yellowness (b) were decreased.

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Chemical Compositions and DPPH Radical Scavenger Activity in Different Sections of Safflower (홍화의 부위별 화학성분과 DPPH Radical 소거 활성)

  • Kim, Jun-Han;Kim, Jong-Kuk;Kang, Woo-Won;Ha, Young-Sun;Choi, Sang-Won;Moon, Kwang-Deog
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.5
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    • pp.733-738
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    • 2003
  • Chemical compositions and DPPH radical scavenger activity in different sections of safflower (Carthamus tinctorious L.) were investigated. Protein contained 28.39% in sprout and fat contained 20.47% in seed, respectively. Linoleic acid as predominant unsaturated fatty acid of safflower contained 80.01% in sprout and 78.27% in seed. Glucose contained 1253.6mg% in sprout and fructose contained 970.7mg% in sprout. Sucrose contained 912.0mg% in flower bud. Succinic acid was included 2795.3 mg% in flower, malic acid was included 2054.8mg% in leaf. K as minerals contained 2826.8mg% in leaf and 2613,6 mg% in sprout, Ca contained 1999.8mg% in leaf and 1160.9mg% in sprout. Total phenolics contained 5.8%, 4.7%, 4.4% in flower, sprout and leaf, and total flavonoid contained 6.5%, 2.5%, 2.0% in flower, sprout and leaf, respectively Serotonin-I (Ν- [2- (5-hydroxy - l Η- indol -3- yl)ethyl] ferulamide) as serotonin compounds was determined 147.7mg% in seed, serotonin - II (Ν-[2-(5-hydroxy-lΗ-indo-1-3yl )ethyl]-p-coumaramide) was determined 155.4 mg% in seed. Acacetin as flavonoid compounds was contained 116.5mg% in seed. Luteolin as flavonoid compounds was identified 388.3mg% in sprout, luteolin 7-glucoside was determined 692.3mg% in leaf, respectively. DPPH radical scavenger activity was measured by DPPH method, it was shown higher 114.2% in ethanol extract of flower and 113.6% in ethanol extract of leaf than 88.05% of 100 ppm BHA as chemical antioxidant.

Comparison of the Chemical Compositions of Korean and Chinese Safflower Flower(Carthamus tinctorius L.) (한국산과 중국산 홍화꽃의 화학적 성분조성비교)

  • 박금순;박어진
    • Korean journal of food and cookery science
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    • v.19 no.5
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    • pp.603-608
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    • 2003
  • In approximate composition, crude protein, lipid, ash, crude fiber, and N-free extract constituted 14.70%, 3.10%, 6.90%, 18.20%, and 57.10%, respectively, in Korean safflower flowers, compared to 12.60%, 2.70%, 5.80%, 16.40% and 62.50%, respectively, in Chinese safflower flowers. This indicated that Korean safflower flowers surpassed their Chinese counterparts except in terms of N-free extract. Free sugars such as fructose, glucose, and sucrose were proven to be dominant in both domestic and Chinese safflower flowers, while little xylose was contained. For content of polyphenolic compound, Korean safflower flowers contained 13.85% water soluble extract and 9.70% MeOH extract, compared to 9.39% and 7.04%, respectively, for the Chinese variety, confirming the higher levels in the Korean variety. For fatty acids, (Ed- the following results are not presented in ratio form) saturated fatty acids and unsaturated fatty acids comprised 6.80% and 93.20% in Korean safflower flowers and 16.0% and 84.0% in Chinese safflower flowers, respectively. Linoleic, oleic, and palmitoleic acids comprised 75.30%, 11.60%, and 3.40% in Korean safflower flowers, and 66.70%, 11.20%, and 6.10% in the Chinese variety, respectively. Of amino acids, essential amino acids comprised 46.67% in Korean safflower flowers and 36.79% in the Chinese variety. Moreover, total essential amino acids in Korean safflower flowers were higher than those of their counterparts. Non-essential amino acid comprised 65.17% in the Korean variety and 54.49% in the Chinese. In terms of mineral content, Korean safflower flowers contained more Ca, Cu, Fe and Mn than those of China, while Chinese safflower flowers contained more A1, Ba, Mg, K, Na, Zn, Sr and P.

Manufacture of Colored Hanji for Interior Materials from Natural Pigments (Part 3) - Functional Properties of Super Eight Colors Hanji Wallpaper - (천연색소를 이용한 건축내장용 색한지 제조 (제3보) - Super Eight Color 벽지의 기능성 연구 -)

  • Lee, Sang-Hyun;Shin, Yoo-Su;Choi, Tae-Ho
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.47 no.5
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    • pp.120-126
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    • 2015
  • In this study, we used various dyes from natural pigments such as tumeric, goldthread, indigo, pagoda tree flower, sappanwood, and safflower to make the Hanji wallpaper with super eight colors of yellow, orange, green, turquoise, violet, red, blue, and magenta. As a result of measuring the lightfastness, magenta dyed with sappanwood showed the worst effect, but blue dyed with only indigo showed the best effect. In terms of the spot test by water, red wallpaper dyed with safflower showed the clear spot, but blue, turquoise, and green dyed with indigo resulted in a little spot. The orange, violet, and magenta dyed with goldthread and sappanwood showed antibacterial activity, and the turquoise, green, and blue also has a little antibacterial activity. However, yellow and red didn't show the some result as expected. In the experiment for efficiency of formaldehyde removal, all Hanji wallpapers dyed with natural pigments showed the significant removal effect of formaldehyde, especially turquoise and red were the highest.