• Title/Summary/Keyword: soft red ginseng

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Phenol, Flavonoid, and Total Polysaccharide Content according to Temperature Treatment of Raw, Red, and Soft Red Ginseng (인삼, 홍삼, 연질 홍삼의 온도처리에 따른 페놀, 플라보노이드 및 총 다당류 함량)

  • Man Kyu Huh
    • Journal of Life Science
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    • v.33 no.7
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    • pp.549-554
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    • 2023
  • Korean ginseng has been used for centuries in traditional Chinese medicine as an overall wellness supplement. Red ginseng (Ginseng Radix Rubra) is produced by steaming the roots, followed by drying. Soft red ginseng is produced using a new processing technology. This study investigated whether soft red ginseng differs from raw and hard red ginseng in its physicochemical composition. Results showed that the total phenol content of raw ginseng was 2.96 mg/g at 80℃ and 3.47 mg/g at 160 ℃. Meanwhile, the total phenols of hard and soft red ginseng were 4.12 mg/g and 4.18 mg/g at 160℃, respectively. The total phenol contents of raw, hard red, and soft red ginseng revealed a statistically significant difference (p>0.05). The total flavonoid contents of raw, hard red, and soft red ginseng were 2.62 mg/g, 3.97 mg/g, and 3.83 mg/g at 160℃, respectively. Among the three samples, soft red ginseng had the highest total sugar content at 160℃. The acidic polysaccharide contents of both soft and hard red ginseng were much higher than that of raw ginseng (49%-58%). Significant differences were observed among raw, hard red, and soft red ginseng (p<0.001). Soft red ginseng exhibited higher phenol content (25%), total flavonoid content (49%), and total sugar content (45%) than raw ginseng.

Antioxidant Effects of Raw Ginseng, Soft Red Ginseng, and Red Ginseng Sap (수삼, 연질 홍삼, 수액 홍삼의 항산화 효과)

  • Huh, Man Kyu;Kim, Kuk Hwan
    • Journal of Life Science
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    • v.30 no.9
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    • pp.763-771
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    • 2020
  • Korean ginseng (Panax ginseng) generally has a good safety profile and contains many bioactive substances, such as ginsenosides or panaxosides. Korean red ginseng might help to stabilize the sympathetic nervous system and improve cognition in individuals. Soft red ginseng is produced by new processing technology. This study focused on investigating whether soft red ginseng produced under the new processing technology reduces or improves the existing antioxidant effects. No significant difference in 2,2'-azino-bis (3-ethylbenzthiazoline-6-sulphonic acid) (ABTS) scavenging activity was found between soft red ginseng and ready-made red ginseng (p<0.05). Soft red ginseng extract showed higher 2,2-diphenyl-1-picryl-hydrazyl-hydrate (DPPH) and hydroxyl radical (OH) scavenging activity than other ginseng extracts. OH scavenging activity was significantly different across three groups (raw ginseng, soft red ginseng, and red ginseng sap) (p<0.05). Nitric oxide (NO) scavenging activity was also significantly different among raw ginseng, soft red ginseng, and purchased red ginseng liquid products (p<0.05). Many calcium crystals appeared on the electron microscope in soft red ginseng. Magnesium and potassium showed no significant difference between soft red ginseng and hard red ginseng. The extract of soft red ginseng scavenged different free radicals efficiently due to the presence of DPPH and OH and may help treat free radical-induced diseases.

Quality Evaluation of Fresh ginseng by Soft X-ray and iodine Test. (연X선 및 요드반응에 의한 수삼의 품질평가)

  • Park, Hoon;Cho, Byung-Goo;Lee, Mee-Kyung
    • Journal of Ginseng Research
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    • v.8 no.2
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    • pp.167-171
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    • 1984
  • Soft X-ray is useful to identify the quality of fresh ginseng causing the inside cavity or white pan of red ginseng. The portion of low mass density identified by the difference in absorption of soft X-ray showed lower dry matter density and less or no response to iodine test indicating less accumulation or excess consumption of starch. The inside white part of red ginseng absorbed less X-ray than the normal part did. Probability for identification of the inside cavity or white at fresh ginseng was rather high (80-90%) in screen observation than f'3m reading and seemed to be increased further by using the developed screen and with training. The inside white of red ginseng appeared to be due to starch deficiency. Dry matter density appeared to be better than fresh weight density for the quality criterion.

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Quality and Antioxidant Characteristics of Soft Tofu Supplemented with Red Ginseng Extract during Storage (홍삼 추출물을 첨가한 연두부의 저장 중 품질 및 항산화 특성)

  • Choi, Goo-Hee;Kim, Kyu-Chun;Lee, Kyung-Haeng
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.39 no.3
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    • pp.414-420
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    • 2010
  • To develop tofu enhanced nutrition, storage stability and bioactivity, the soft tofu supplemented with red ginseng extract was prepared. Then, quality characteristics including storage stability, physical and chemical property, antioxidative activity, and sensory evaluation were measured. The pH and acidity of control tofu without red ginseng extract were not different from those of tofu supplemented with red ginseng extract during storage. The aerobic bacteria in the control tofu were detected from 10 days of storage whereas the number of total aerobic bacteria was reduced or not detected in the tofu added red ginseng extract during storage. The lightness and redness of the tofu supplemented with red ginseng extract were lower than those of control, but yellowness was higher. The addition of red ginseng extract did not also affect the texture of tofu, and increased lipid peroxidation inhibition and DPPH radical scavenging activity. Although the soft tofu manufactured with red ginseng extract showed a lower sensory preference in supplementation over 0.20% due to color, there was not much difference found until 0.18% red ginseng extract addition.

Changes of Antioxidant Activities of Soft Tofu Manufactured with Red Ginseng Extract during Storage (홍삼 추출물 첨가 연두부의 저장 중 항산화 활성 변화)

  • Hwang, Jong-Hyun;Lee, Kyung-Haeng
    • The Korean Journal of Food And Nutrition
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    • v.27 no.3
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    • pp.478-483
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    • 2014
  • To develop tofu with bioactivity, red ginseng extract was added and soft tofu was prepared without pressuring and forming steps. Then, the content of antioxidant components and antioxidative activities were measured using the prepared soft tofu during storage. The contents of polyphenols of the control and the sample added red ginseng extract were $605.25{\mu}g/mL$ and $598.51{\sim}681.65{\mu}g/mL$. The content of the polyphenols was proportional to the concentration of added red ginseng extract. The content of ascorbic acid of the control was 6.42 mg%, and the ascorbic acid contents of the sample added red ginseng extract were higher than that of the control. The contents of polyphenols and ascorbic acid of control were lower than those of the sample added red ginseng extract during the storage. The addition of red ginseng extract increased reducing power and ABTS radical cation decolorization.

Yield and Red Ginseng Quality of Super-aged Root of Panax ginseng (초고년근 고려인삼의 수량과 홍삼적성)

  • Park, Hoon;Kang, Soon-Woo;Lee, Mee-Kyoung
    • Journal of Ginseng Research
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    • v.13 no.2
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    • pp.169-173
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    • 1989
  • Seven year old ginseng was investigated for yield , the relationship between yield and percent missing plant and red ginseng quality. Yield was 2.06 kg/kan (3.3 m2) and percent missing plant was 27.1%. The highest yield plot showed 3.58 kg/kan and potential yield appeared to be 4.5 kg/kan. Yields of 1st, End and 3rd line showed significant negative linear correlation with percent missing plant. Potential yield without missing plant was in decreasing order of 1>2)3>5) 4 and negatively correlated with unit yield decrease per percent missing plant. Potential yield of 1st line was 6.56 kg/tan. Soft X-ray absorbtion characteristics was not different from that of 6 year old ginseng. Red ginseng grade and percent occurence of red ginseng quality factors were not different from those of 6 years old ginseng. The weight of red ginseng per root was much greater than that of 6 years ginseng. In view of yield and quality of fresh and red ginseng the production of red ginseng from 7 years old ginseng appears to be economically feasible.

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Studies on the Manufacturing of Soft Ginseng Drink Part I. Purification procedure of raw ginseng extracts (인삼청량음료 제조에 관한 연구)

  • 양재원;성현순;박명한;김우정;홍순근
    • Journal of Ginseng Research
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    • v.4 no.1
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    • pp.72-87
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    • 1980
  • Red ginseng tails were extracted with ethanol solutions over a range of concentrations and temperature conditions. Investigations were carried out to study the effects of treatments on yields, soluble solids, saponin and precipitate occured in red ginseng extract beverage during storage. It was found that: (1) Higher concentration of ethanol at low temperature resulted in less yield of crude extract (2) The amount of precipitate in the non-purified extract beverage were less with decrease in ethanol concentration used (3) The treatment for purification of extracts and storage of purified extract at 37$^{\circ}C$ for 6 months had no effect on HPLC chromatogram pattern of saponins (4) The amount of purified extract decreased by purification treatment and more decrease was found as the temperature and concentration of ethanol increased. For Preparation of red ginseng extract beverage, the treatment of extracts with ethanol at low temperature was found to be more effective to minimize precipitation in tile beverage.

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Diseases of Ginseng: Environmental and host effect on disease outbreak and growth of pathogens. (인삼의 환경 및 기주조건과 발병과의 관계)

  • 오승환
    • Journal of Ginseng Research
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    • v.5 no.1
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    • pp.73-84
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    • 1981
  • Effect of environmental factors and host on the growth and outbreak of various ginseng diseases was reviewed Environmental lectors included hydrogen ion concentration, moisture content, temperature, nutrition, and microbiol populations. Age of the ginseng plants in relation to several ginseng disease occurrence was also included in order to formulate the effective control measure for ginseng diseases. Damping-off caused by Rhizoctonia, Pythium, and Phytophthora, greymold by Botrytis, sclerotinia by Scleretinia, and phytophthora blight caused by Phytophthora were usually prevalent during the early growing season of ginseng when temperature is below 20$^{\circ}C$, while anthrac se caused by Colletotrichum, alternaria blight by Alternaria, and bacterial soft rot by Erwinia were so during the latter growing season when temperature is above 25$^{\circ}C$. However, the root rot incited by Fnarium and Cylindrocarpon caused severe damages throughout the growing season. Growth range of the temperature for a pathogen was highly related to the corresponding disease outbreak. Hydrogen ion concentration was highly related to the outbreak of sclerotinia, root rot, and red rot. Most severe outbreak of those diseases where the soil acidity was pH 4.7, pH 6.5- 7.5, and pH6.0-6.5, respectively. Nitrogen content in the soil was also related to outbreak of root rot and red rot. More red rot occurred where NH,-nitrogen is above 30 ppm and more root rot obtained when excessive nitrogen fertilizer applied. Yellow necrosis apparently was related to magnesium especially its ratio with potassium or calcium content in a soil. Fusarium Population showed significant .relations to missing rate of ginseng Plants in a Implanting ginseng field, while that of total bacteria showed similar relations in all ginseng field, However, in six year old ginseng fields, the more the Streptomyces population was, the less the Fusarium obtained. Consequently, less missing rate observed in a field where Streptomyces population was high. Damping-off, root rot, Rhytophthor a blight were mose severe on the nursery and on 2-3 years old ginseng plants, whereas sclerotinia, and grey cod, alteraria blight, anthracnose were severe on 4-6 years old ginseng plants. Root rot caused by Fusarium and Erwinia, however, was also severe regardless of the age of the plants when the roots were injured. Therefore, for the effective control of ginseng root rot most careful control of the disease during the early year should be rendered.

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Quality Characteristics of Korean Red Ginseng Powder with Different Milling Methods (분쇄방법에 따른 고려홍삼분말의 품질특성)

  • 서창훈;이종원;도재호;김나미;양재원;장규원
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.3
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    • pp.370-374
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    • 2003
  • Cell cracking method using a non-collision was evaluated for the possibility of new red ginseng grinding technique. Based on particle size distribution analysis by 1size shaker, the ratios of 100 mesh penetrated particles were 94.9% for hammer mill (group A) and 95.6% for cell crack (group B). The ratio of 120 mesh penetrated particle of group A was higher than that in group B. The particle size distributions for 100 mesh non-penetrated Powder between 2 groups were not significantly different, and particle size distribution analysis by laser scattering analyzer showed that the particle size ranges were 0.77~128.07 ${\mu}{\textrm}{m}$ for group A and 4.24~180.07 ${\mu}{\textrm}{m}$ for group B. The Particle size distribution in group A was more broad than that in group B. The mean particle size in group B was larger than that in group A, while the standard deviation of particle size distribution in group B was less than that in group A. Structural surface characteristics, in group A, particle size distribution was broad and the distribution curve was amorphous. The structure of individual particles was similar to unequal stone which was roughly grinded and had soft cotton-like surface. In the contrary, in group B, particle size distribution was relatively narrow and also individual size particles were ubiquitously distributed. The structure of individual particles was unequal cut stone shape.