• Title/Summary/Keyword: Silicon nutrition

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Effect of Vitamin C, Silicon and Iron on Collagen Synthesis and Break-Down Enzyme Expression in the Human Dermal Fibroblast Cell (HS27) (피부 섬유아세포에서 비타민 C, Silicon, 철분 처리가 콜라겐 합성 및 분해 관련 효소의 발현에 미치는 효과 비교)

  • Kim, Jeong-Eun;Lee, Jin-Ah;Kim, Hyun-Ae;Kim, Jung-Min;Cho, Yun-Hi
    • Journal of Nutrition and Health
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    • v.42 no.6
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    • pp.505-515
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    • 2009
  • Collagen is the major matrix protein in dermis and consists of proline and lysine, which are hydroxylated by prolyl hydroxylase (PH) and lysyl hydroxylase (LH) with cofactors such as vitamin C, oxygen, iron (Fe$^{2+}$), ketoglutarate and silicon. The collagen degradation is regulated by matrix metalloproteinase-1 (MMP-1), of which is the major collagen-degrading proteinase whereas tissue inhibitors of metalloproteinase-1 (TIMP-1) bind to MMP-1 thereby inhibiting MMP-1 activity. In this study, we investigated the effects of vitamin C, silicon and iron on mRNA, protein expressions of PH, LH, MMP-1 and TIMP-1. The physiological concentrations of vitamin C (0-100 $\mu$M), silicon (0-50 $\mu$M) and iron (Fe$^{2+}$:0-50 $\mu$M) were treated to human dermal fibroblast cells (HS27 cells) for 3 or 5days. The expression level of mRNA and protein was increased in not only PH but also LH when cells were incubated with vitamin C. A similar increase in LH mRNA or protein expression occurred when cells were incubated with silicon. Our results suggest that treatment of vitamin C and silicon increased mRNA and protein expression of PH and LH in human dermal fibroblast.

Studies on the Effect of Silicon Nutrition on Plant Growth, Mineral Contents and Endogenous Bioactive Gibberellins of Three Rice Cultivars

  • Jang, Soo-Won;Hamayun, Muhammad;Sohn, Eun-Young;Shin, Dong-Hyun;Kim, Kil-Ung;Lee, In-Jung
    • Journal of Crop Science and Biotechnology
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    • v.10 no.1
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    • pp.45-49
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    • 2007
  • Silicon is one of the key elements for healthy growth and development in rice crops. We analyzed the effect of silicon(Si) on some growth parameters, plant mineral contents, and bioactive gibberellins in three rice cultivars. Silicon was applied at the rates of 0 kg/0.1ha(control), 40 kg/0.1ha, and 80 kg/0.1ha throughout the course of experiment. Plant growth parameters were enhanced by the application of elevated Si, though plant height and culm length were more favorably affected than the respective dry weights. The plant mineral contents analyzed also increased in treatments where Si was applied without potassium, demonstrating that Si application promotes the absorption of these minerals in rice crops. The endogenous gibberellins measured in our study showed that $GA_1$ is the only bioactive GA form present in rice seedlings. The endogenous $GA_1$ and its precursor $GA_{20}$ contents increased after Si application. However, this increase in endogenous $GA_1$ and $GA_{20}$ contents, and plant growth parameters were different according to the rice cultivars. Our results indicate that Si is a beneficial element in rice nutrition and that different cultivars of Oryza sativa show differential responses to Si nutrition in terms of their growth and development.

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Effect of Ascorbic Acid, Silicon, Fe, Proline and Lysine on Proliferation and Collagen Synthesis in the Human Dermal Fibroblast Cell (HS27) (비타민 C, Silicon, 철분, Proline 및 Lysine의 처리가 피부 섬유아세포의 증식 및 Collagen I과 III의 발현에 미치는 효과 비교)

  • Kim, Sun-Ah;Lee, Jin-Ah;Kim, Jung-Min;Kim, Hyun-Ae;Kim, Young-Ae;Yun, Hye-Jeong;Cho, Yun-Hi
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.38 no.11
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    • pp.1492-1498
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    • 2009
  • In the dermis, fibroblast plays an important role in the turnover of the dermal extracellular matrix. Collagen I and III, which are the most important dermal proteins of the extracellular matrix, function as a stabilizing scaffold of dermal connective tissues, as well as a regulator of differentiation and migration of dermal cells. In this study, we investigated the effect of various nutrients, such as ascorbic acid, silicon, Fe, lysine and proline which function as cofactors or building blocks on collagen synthesis. When the physiological concentrations of ascorbic acid (0-100 ${\mu}M$), silicon (0-50 ${\mu}M$), Fe (0-50 ${\mu}M$), lysine (0-150 ${\mu}M$) and proline (0-300 ${\mu}M$) were treated at HS27 for either 3 or 5 days, 5 day treatment of ascorbic acid at the low concentration (5-10 ${\mu}M$) increased the expression of collagen I and III protein by 115-1300% without increasing cell proliferation. 3 or 5 days treatment of Fe increased the expression of collagen I and III proteins up to 323% in parallel with cell proliferation by 164%. However, cell proliferation and expression of collagen I and III protein in silicon treated HS27 did not differ. Proline and lysine only increased cell proliferation up to 247.9%. Taken together, we demonstrate that the physiological concentrations of ascorbic acid and Fe enhance the expression of collagen I and III protein for treatment of 3 or 5 days.

The Evaluation of Inorganic Components with Pu-Erh Tea (중국 보이차의 무기성분 특성 평가)

  • Cho, Young-Man;Jeung, Young-Sik
    • The Korean Journal of Food And Nutrition
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    • v.32 no.5
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    • pp.401-407
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    • 2019
  • This study compares and analyzes inorganic components of four different Pu-erh tea species consumed in Korea. The criteria for the inorganic components was based on the Royal Institute of Technology (KTH) recommendations. Out of the 19 general items: potassium, manganese, silicon and fluorine were detected in amounts exceeding the maximum allowable concentration by 5~23, 57~91, 1.6~1.8 and 9~18 times respectively. Out of the 15 potentially harmful elements: aluminum and nickel were exceeded the Maximum allowable concentration by 9~14 times and 0.8~1.2 times respectively. To reduce the concentration of inorganic elements in excess of the maximum allowable concentration, the extraction time of tea should be less than 1 minute in addition to limiting the amount. The amount of Pu-erh tea for extraction was about 0.1 g manganese, about 0.3 g potassium, about 0.5 g fluoride and about 2 g silicon. Therefore, the maximum amount of tea for extraction should be 0.1 g in regards to the safety of Pu-erh tea. Based on the recommended maximum daily intake of inorganic ingredients by the Ministry of Food and Drug Safety, it is desirable that the number of extractions be less than three.

Effect of Silicon on Growth and Temperature Stress Tolerance of Nephrolepis exaltata 'Corditas'

  • Sivanesan, Iyyakkannu;Son, Moon Sook;Soundararajan, Prabhakaran;Jeong, Byoung Ryong
    • Horticultural Science & Technology
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    • v.32 no.2
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    • pp.142-148
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    • 2014
  • Effect of silicon (Si) nutrition on growth and temperature stress tolerance of Nephrolepis exaltata 'Corditas' grown in a soilless substrate was examined. In vitro-grown acclimatized plantlets were transplanted into the pots containing a coir-based substrate. A nutrient solution containing 0, 50, or $100mg{\cdot}L^{-1}$ Si was supplied through a drip-irrigation system. After 5 months of cultiv ation, S i-treated and -untreated p lants were grown at 10, 25, or $40{\pm}1^{\circ}C$ under a 12 h photoperiod with $530{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$ PPFD and 60% RH. After 7 days, chlorophyll content and chlorophyll fluorescence parameters were measured. Silicon nutrition had a negative effect on growth characteristics of N. exaltata 'Corditas'. However, Si-treated plants had more tolerance to temperature stress than the control plants. The Fv/Fm value was not significantly different when the plants were exposed to $25^{\circ}C$. However, significant difference in Fv/Fm was recorded when plants were exposed to 10 or $40^{\circ}C$. Thus, Fv/Fm could be used as an indicator of low and high temperature tolerance in ferns. The present study also suggests that application of Si may be used to enhance temperature tolerance of ferns.

Studies on the effect of silicate on nutrients up take using radioisotopes in rice plant. (I) (RI를 이용한 규소시용이 수도의 영양필요흡수에 미치는 영향(I))

  • Choon-Johong Ro
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.12
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    • pp.15-20
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    • 1972
  • There are still many problems on the physiological role of silicon in rice plants, although, it has been reported that silicate slag is the most effective fertilizer for the improvement of Akiochi soils. This experiment is carried out to investigate the effect of silicate of the mineral nutrition uptake by rice plants, using Ca45, P32, C136, and Mn54. The obtained results are summerized as follows; 1. Contents of mineral nutrients except silicon were higher in the rice plant grown in minus Si-culture solution a than in plus Si-plot. 2. Transpiration amounts appeared to be greater in the low content plant of silicon. 3. The rate of translocation to shoot of each ion absorbed by roots depended on the rate of transpiration. 4. It seemed that only CI uptake was found small in minus Si-root. 5. Silicate fetilizer did not affect the solubility of mineral ions in soils.

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Effect of Nitrogen and Silicon Nutrition on Bioactive Gibberellin and Growth of Rice under Field Conditions

  • Hwang, Sun-Joo;Hamayun, Muhammad;Kim, Ho-Youn;Na, Chae-In;Kim, Kil-Ung;Shin, Dong-Hyun;Kim, Sang-Yeol;Lee, In-Jung
    • Journal of Crop Science and Biotechnology
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    • v.10 no.4
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    • pp.281-286
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    • 2007
  • Gibberellins are growth hormones that play a pivotal role in the growth and development of plants. Present investigations were carried to check the effect of nitrogen(N) and silicon(Si) on bioactive $GA_1$ and its immediate precursor $GA_{20}$ at different growth stages of two rice cultivars with different maturity traits. It was observed that the endogenous bioactive $GA_1$ level gradually increased during vegetative stage and anthesis stage of both Junghwabyeo(early flowering cultivar) and Daesanbyeo(late flowering cultivar). However, the $GA_1$ and $GA_{20}$ content start decreasing during the seed filling stage in both rice cultivars, which indicated a possible relationship of bioactive $GA_1$ and floral development. Our results also confirmed that early 13-hydroxylation pathway was operated at all developmental stages of rice plant. Variation in the levels of the endogenous gibberellins in rice shoots were measured by GCMS-SIM using $^2H_2$-labeled gibberellins as internal standards. Combined application of N and Si enhanced growth parameters and reduced lodging index of both rice cultivars. It was thus concluded that the level of physiologically active $GA_1$ increased during vegetative and early reproductive stage, but starts declining at seed filling stage.

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A Study on the Effects of the Cold Heat Storage with Salt Water on the Performance of a Kimchi Refrigerator (염수 축냉이 김치냉장고의 성능에 미치는 영향)

  • Gil, Bog-Im;Choi, Eun-Soo
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.22 no.12
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    • pp.891-896
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    • 2010
  • The objective of the present study is to reveal the effects of a phase-change material on the performance of a Kimchi refrigerator. Two-percent salt water, of which melting temperature was $-1.1^{\circ}C$, was used for the phase-change material. The salt water was packed in silicon cases and inserted between Kimchi container and the copper pipe of the evaporator. The maximum and minimum temperatures of the inner wall of the Kimchi container without salt-water pack were $-0.2^{\circ}C$ and $-8.9^{\circ}C$, which were remarkably improved by using the salt-water packs, resulting $-0.5^{\circ}C$ and$ -1.9^{\circ}C$. This shows a useful application of using phase-change materials for accurate temperature controls.

Optimal Conditions of Co-Immobilized Mixed Culture System with Aspergillus awamori and Zymomonas mobilis (Aspergillus awamori와 Zymomonas mobilis로 구성된 혼합고정화 배양계의 최적 조건)

  • 박석규;이상원;손봉수;최수철;서권일;성낙계;김홍출
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.5
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    • pp.803-810
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    • 1995
  • Co-immobilized mixed culture system(A-Z system) composed of two different oxygen-demanding strains, aerobic(Aspergillus awamori) and anaerobic(Zymomonas mobilis) strains, in a Ca-alginate gel beads was developed to increase ethanol production from raw starch as a carbon source. Optimal mixture ratio of A. awamori and Z. mobilis was $1.25{\times}10^{9}\;spores/L-gel$ and 0.5g cells/L-gel, respectively. After 120 hours of cultivation, gel beads distinguished oxygen-rich surface for A. awamori from oxygen-deficient central part for Z. mobilis. At A-Z culture system, yield of ethanol on glucose, $Y_{p/s}=0.18$, was very low and there was high leakage of cells from surface of gel beads. At A-Z 36 cultrue system with changing silicon check valve for cotton plug at 36 hours in A-Z culture system, there was no cell leakage from gel beads, pH was maintained at around 4.3 during cultivation, and yield of ethanol on glucose, $Y_{p/s}=0.36$, showed 2 times higher than that of control culture system(cotton plug culture).

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Ethanol Production from Raw Starch by Co-Immobilized Mixed Rhizopus japonicus and zymomonas mobilis (Rhizopus japonicus와 Zymomonas mobilis의 혼합고정화 배양계에 의한 생전분으로부터 에탄올 생산)

  • 최수철;이상원;박석규;성찬기;손봉수;성낙계
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.4
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    • pp.708-714
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    • 1996
  • Ethanol production from raw starch was performed using the co-immobilized culture system of Rhizopu japonicus and zymomonas mobilis(R-Z). Glucose Production in immobilized R. japonicus culture was 2-fold higher than that in free cell culture. Ethanol production was 1.67g/L(Yp/s, 0.094) and 6.549/L(Yp/s, 0.38) in R-Z and R-Z 24 culture system, respectively. R-Z system was modified and designated as R-Z 24 system by replacing cotton plug with silicon check valve after 24h fermentation with R-Z system. Optimal substrate concentration for ethanol production in batch culture was 5%(w/v) and ethanol concentration produced was 15.02g/L(Yp/s, 0.36). Ethanol yield(Yp/s, 0.38) in fed-batch culture of 5 times with 2%(w/v) substrate was equal to that in batch culture of 2%(w/v) substrate.

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