• Title/Summary/Keyword: 홍화색소

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The Changes in Properties of Silk Fabrics Dyed with Safflower under Ultraviolet-Light (홍화 염색 견직물의 자외선에 의한 성능 변화 연구)

  • Shin, Youn-Sook;Choi, Seung-Youn
    • Journal of the Korean Home Economics Association
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    • v.46 no.7
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    • pp.1-6
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    • 2008
  • The purpose of this study was to investigate the changes in properties of silk fabrics dyed with safflower red and yellow colorants under Ultraviolet(UV)-light. Silk fabrics dyed with safflower red and yellow colorants were compared with each other after uv-light exposure in terms of K/S value, color changes(${\Delta}E$), morphology, and strength retention. The K/S value rapidly decreased with increasing exposure time for samples of both colorants, but the extent of decrease was less for the samples dyed with safflower yellow colorant, than that of the samples dyed with safflower red colorant. Regarding the color changes with increasing exposure time, $L^*$ and $b^*$ increased, $a^*$ decreased, and thereby ${\Delta}E$ increased in the red-dyed samples, whereas $L^*$ increased, $a^*$ and $b^*$ decreased, and so ${\Delta}E$ increased in the yellow-dyed samples, indicating that the UV-light induced fading and changes of hue, value and chroma value. However, the color change of the yellow-dyed samples was less than that of the red-dyed samples. SEM images showed a severe degradation by UV-exposure for both colorant samples. Tensile strength slowly decreased until 14 days, but rapidly decreased thereafter. Strength retention of the yellow-dyed samples was higher than that of red-dyed samples.

A Study on Extraction and Analysis of Red Dyed Fabric (적색 염직물의 색소 추출 방법 및 분석연구)

  • Imn, Se Yeon;Chung, Yong Jae
    • Journal of Conservation Science
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    • v.32 no.3
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    • pp.385-394
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    • 2016
  • A fabric excavated from tombs or passed down is not easy to find its original color as it degrades and discolors by UV and visible rays, oxygen and microorganisms. LC-MS analysis is commonly used for separating and analyzing colors, but color extraction process is complicated and important in dye-qualitative analysis. To extract red colors from a fabric which is dyed with safflower and lac, solvents; hydrogen chloride, pyridine and oxalic acid are used and oxalic acid was the most effective solvent. Meanwhile, dyed samples were put in degradation condition; UV-A for 168 hours and analyzed with LC-MS to find out its colors'chemical changes. As a result, carthamin is detected in $T_R$ 13 min and laccaic acid A is detected in $T_R$ 10 min. However carthamin is not detected in a degraded fabric dying with safflower, it could be identified as a safflower fabric by the molecular weight of m/z 931. Through this study the most optimal method for red color extraction is found so it is expected to be used as a base line data for red color LC-MS analysis.

Dyeing of Silk and Ramie Fabric with Natural Dye(1) - The traditional dyeing method of safflower - (천연 염료에 의한 견 및 모시 염색(1) - 전통 방법에 의한 홍화 염색 -)

  • 정인모;우순옥
    • Journal of Sericultural and Entomological Science
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    • v.37 no.2
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    • pp.161-166
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    • 1995
  • Safflower is natural red dye largely used for dyeing on protein and cellulose fabric. It contains safflower yellow and carthamin red. Safflower yellow is water-soluble dye, while carthamin red is soluble in alkaline condition. Therefore the former was extracted by cold water. Cartamon obtained by adding acidic solution to carthamin red shows the original hue of safflower. In this study, the condition of extraction with bean stem ash solution and dyeing behavior of carthamon in safflower were examined by using the traditional dyeing method. The relationship between the dye-uptake(K/S) of silk and ramie fabric and the various extractions and dyeing conditions was investigated.

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Comparison Studies between Conventional Hot Water and Cellulase Extraction for Safflower Dyestuff (홍화색소의 일반추출과 셀룰라아제추출의 비교연구)

  • 신인수;홍경옥;오태광
    • Journal of the Korean Home Economics Association
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    • v.39 no.4
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    • pp.49-59
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    • 2001
  • Natural red and yellow dyestuff was extracted from safflower (Carthamus tinctorius Linnaeus) by a new process of cellulase extraction compared with the conventional hot water extraction. Dyestuffs were extracted from safflower easily and repeatedly by means of cellulose as safflower cell wall destroyer. It means that new dyestuff extraction by cellulase improves not only yields of dyestuff from safflower successfully but also the rate of repetition of extraction. From the above experiments, the conclusions of this study were summarized as follows. 1. The optimum conditions of dyestuff extraction from safflower by general extraction method were that the solvent was the water of pH 6.0 on yellow dyestuff and 3% $K_2CO_3$ solution on red dyestuff, extraction temperature was $55^{\circ}C$, and extraction time was 30 min. 2. Among various cellulase, the NOVO cellulase was the best cell wall destroyer of safflower and finally produced the largest amount of dyestuff from safflower by cellulase extraction method. 3. The optimum conditions of dyestuff extraction by cellulase extraction method were conducted on 10 unit of cellulase per gram of safflower at $100m{\ell}$ water of pH 5.0 at $50^{\circ}C$ for 30 min.

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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.

Antimicrobial Characteristics of Yellow-Pigment Produced by Monascus anka Y7 (Monascus anka Y7이 생성하는 황색소의 항균 특성)

  • 이호재;박미연
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.31 no.2
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    • pp.338-342
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    • 2002
  • Antimicrobial activity of yellow pigment produced by Monascus anka Y7 (Y7) was studied. The crude yellow pigment of Y7 showed antimicrobial activity against some bacteria and yeasts. The diameter of inhibition zone against gram-positive bacteria was a little smaller t]fan that of gram-negative bacteria to the crude yellow pigment. Especially, E2 fraction obtained from the crude yellow pigment by TLC method showed high anti-microbial activity against E. coli.. The fraction had bright yellow pigment, showing fluorescent light and having the maximum absorption at 373 nm. Citrinin, a mycotoxin which had been characterized as an antimicrobial substance from a Monascus strain, was not detected in the E2 fraction and in the crude yellow pigment by the results of TLC and HPLC. This indicates that the antimicrobial activity of Y7 pigments did not any relationship with citrinin. Yellow degree (b/a of Hunters color value) of Y7 pigment was much higher than that of other natural colorants such as annatto, gardenia yellow and carthamus yellow. But the colors of all of the yellow pigments were similar by panels. Thus, the yellow pigment of Y7 could be used as a useful alternative colorant for food industry, having the advantage of antimicrobial activity.

Efficient Purification and Chemical Structure ldentification of Carthamin from Carthamus tinctorius (홍화적색소 Carthamin의 효과적인 분리 및 화학구조 분석)

  • Kim, Jun-Beom;Cho, Man-Ho;Hahn, Tae-Ryong;Paik, Young-Sook
    • Applied Biological Chemistry
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    • v.39 no.6
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    • pp.501-505
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    • 1996
  • 우리나라에서 오랫동안 적색 및 황색색소원으로 널리 사용하여 왔던 홍화(Carthamus tinctorius)로부터 전통적인 추출방법을 응용한 새로운 방법을 사용하여 적색소를 효과적으로 분리정제하였다. 홍화꽃잎을 물 및 메탄올로 처리하여 황색소를 제거한 다음 건조파쇄하여 0.5 M $Na_2CO_3$로 홍색소를 추출하고 0.5 M citrate 수용액으로 침전시킨 후 cellulose 흡착, Sephadex LH-20 관크로마토그라피로 분리정제하였다. 분리정제된 적색소는 $300^{\circ}C$에서 분해되었고 silica gel TLC 상에서 BAW(n-BuOH : HOAc : $H_2O$=4 : 1 : 5)로 전개하였을 때 $R_f$값이 0.56이었다. 에탄올 용액에 녹인 적색소의 UV/Vis 흡수스펙트럼은 519, 372, 311, 244 nm에서 최대 흡수피크를 나타내었고, IR 스펙트럼은 특히 $3400\;cm^1$ 넓은 영역에서 hydroxyl기에 의한 강한 흡수띠를 보여주었다. $^{1}H$$^{13}C$ NMR data로 부터 enolized ${\beta}-triketone$, p-hydroxycinnamoyl, methine 및 glucosyl moieties를 확인하였고 그 값을 제시하였다. 이상의 data를 문헌과 비교한 결과 분리한 홍화적색소의 화학구조는 $6-{\beta}-D-glucopyranosyl-2-[[3-{\beta}-D-glucopyranosyl-2,3,4-trihydroxy-5-[3#-(4@-hydroxyphenyl)-1#-oxo-2#-propenyl]-6-oxo-1,4-cyclohexadien-1-yl]methylene]-5,6-dihydroxy-4-[3#-(4@-hydroxyphenyl)-1#-oxo-2#-propenyl]-4-cyclohexene-1,3-dione$인 carthamin으로 확인하였다.

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Efficiency of Dyes Extraction and Dyeing of Safflower according to pH Condition (pH에 따른 홍화(紅花)의 색소(色素) 추출(抽出)과 염색(染色)의 효율성(效率性)``)

  • Kim, Kyung-Sun;Jeon, Dong-Won;Oh, Ha-Na;Lee, Hye-Yeon
    • Journal of Fashion Business
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    • v.11 no.2
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    • pp.102-112
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    • 2007
  • Effect of the pH condition was examined on extraction and dyeing of the yellow and red dyes of safflower. Absorption of dye solution extracted from safflower was changed by pH of solvent. In the case of yellow dyes, cotton and ramie weren't dyed regardless of pH of dye bath, but silks were significantly dyed at pH4. Raw silk showed better dyeability than refined silk. In the case of red dyes, cotton and ramie absorbed red dyes selectively, but silks absorbed yellow dyes more significantly than red dyes. Efficiency of extraction and dyeing of yellow dyes in acidic range were find out higher than that in neutral range. Red dyes was effectively extracted at pH11 and dyed at pH6.

Effect of Ultrasonic Treatment on Colorants Extraction and Dyeability of Safflower (초음파처리가 홍화의 색소추출과 염색성에 미치는 영향)

  • Kim, Yong-Sook;Choi, Jong-Myoung
    • Journal of the Korean Home Economics Association
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    • v.45 no.10
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    • pp.13-20
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    • 2007
  • A new method for competent extraction of safflower (Carthamus tinctorius Linnaeus) colorants by using ultrasonic device was developed. When comparing to general extraction method, the ultrasonic method showed high extraction efficiency of safflower pigments. Ultrasonic method gave a higher extraction yield of red and yellow safflower pigments than using general method. It is supposed that the extraction efficiency is to be attributed to high vibration energies from ultrasound and finally induced physical changes of the pigments. Furthermore, this study explored the effects of ultrasonic treatment into the extracted safflower pigments on dyeing of cotton fabrics. Ultrasonic treatment into the extracted pigments exhibited significantly improved dyeing properties for the cotton fabrics.

Supercritical Fluid Extraction of Safflower Yellow Pigments from Carthamus tinctorius L. (초임계 이산화탄소를 이용한 홍화로부터 황색소 추출)

  • Han, Byung-Seok;Kim, Kong-Hwan;Chung, In-Sik
    • Applied Biological Chemistry
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    • v.41 no.5
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    • pp.363-366
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    • 1998
  • Supercritical fluid(SCF) carbon dioxide was used to extract safflower yellow pigments from Carthamus tinctorius L. In this work, supercritical fluid extractions were performed at various conditions; pressure (2000, 3000, 4000, 5000 psig), temperature $(40,\;50,\;60,\;70,\;80^{\circ}C)$ and co-solvent $(0,\;3,\;6,\;10,\;14\;wt%\;H_2O)$. Total concentrations of safflower yellow pigments extracted were determined by spectrophotometric method. A maximum yield of yellow pigments was obtained at 4000psig, $60^{\circ}C$ and 10% co-solvent. The extraction yield of pigments was also closely related to moisture content of the raw material. Extraction yield of safflower yellow pigments by SCF extraction at optimized conditions was 6% higher than that by solvent extraction. Supercritical carbon dioxide was proved to be suitable for the extraction of safflower yellow pigments from Carthamus tinctorius L.

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