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    KCI등재 SCOPUS SCIE

    Establishment of bioreactor cultures for the production of chlorogenic acid and ferulic acid from adventitious roots by optimization of culture conditions in Angelica acutiloba (Siebold & Zucc.) Kitag

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    https://www.riss.kr/link?id=A108503475

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    Adventitious roots were induced from root explants of Angelica acutilobaand suspension cultures were established in shake flasks. The effect of different concentrations of indole acetic acid (IBA, 0–38.4 µM), the strength of the Murashige and Skoog (MS) medium (0.5–2 ×), the concentration of sucrose (10–70 g·L−1), inoculum density (2.5–10 g·L−1) were determined for accumulation biomass. The optimized conditions for adventitious root biomass accumulation were found to be full-strength MS medium supplemented with 29.5 µM IBA, 30 g·L−1 of sucrose, and 5 g·L−1 of inoculum density. With optimized con- dition, adventitious root suspension cultures were established in 3 L capacity airlift bioreactors using 2 L of MS medium. Chlorogenic acid and ferulic acid were increased 4.9 (117.7 mg g·g−1 DW) and 1.9 times (47.2 mg g·g−1 DW), respectively, compared to control (0 week) after 4 weeks of culture in the optimized conditions. The results suggested that the harvested adventitious root biomass could able accumulate higher concentrations of chlorogenic acid and ferulic acid which could be used industrial purpose as a biomaterials.
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    Adventitious roots were induced from root explants of Angelica acutilobaand suspension cultures were established in shake flasks. The effect of different concentrations of indole acetic acid (IBA, 0–38.4 µM), the strength of the Murashige and Skoo...

    Adventitious roots were induced from root explants of Angelica acutilobaand suspension cultures were established in shake flasks. The effect of different concentrations of indole acetic acid (IBA, 0–38.4 µM), the strength of the Murashige and Skoog (MS) medium (0.5–2 ×), the concentration of sucrose (10–70 g·L−1), inoculum density (2.5–10 g·L−1) were determined for accumulation biomass. The optimized conditions for adventitious root biomass accumulation were found to be full-strength MS medium supplemented with 29.5 µM IBA, 30 g·L−1 of sucrose, and 5 g·L−1 of inoculum density. With optimized con- dition, adventitious root suspension cultures were established in 3 L capacity airlift bioreactors using 2 L of MS medium. Chlorogenic acid and ferulic acid were increased 4.9 (117.7 mg g·g−1 DW) and 1.9 times (47.2 mg g·g−1 DW), respectively, compared to control (0 week) after 4 weeks of culture in the optimized conditions. The results suggested that the harvested adventitious root biomass could able accumulate higher concentrations of chlorogenic acid and ferulic acid which could be used industrial purpose as a biomaterials.

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    참고문헌 (Reference)

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    2 Hantano R, "Water-soluble extracts from Angelica acutiloba Kitagawa enhance hematopoiesis by activating immature erythroid cells in mice with 5-fluorouracil-induced anemia" 32 : 918-924, 2004

    3 Murthy HN, "Tools for biotechnological production of useful phytochemicals from adventitious root cultures" 15 : 129-145, 2016

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    5 조민석 ; 박해웅 ; 이길현 ; 윤혜경 ; 오경모 ; 최석철 ; 현경예, "The Ameliorative Effect of Angelica acutiloba Ameliorates Through the NO / iNOS Pathway in Rats with Systemic Allergy" 대한의생명과학회 25 (25): 83-91, 2019

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    7 Cui XH, "Sucrose-induced osmotic stress affects biomass, metabolite and antioxidant levels in root suspension cultures of Hypericum perforatum L" 103 : 7-14, 2010

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    9 Zhang ZY, "Scale-up of centrifugal impeller bioreactor for hyperproduction of ginseng saponin and polysaccharide by high-density cultivation of Panax notoginseng cells" 20 : 1076-1081, 2004

    10 Kim JH, "Saponin production in submerged adventitious root culture of Panax ginseng as affected by culture conditions and elicitors" 13 : 87-91, 2005

    1 김아라 ; 이재준 ; 이명렬, "일당귀 에탄올 추출물의 항산화 효과" 한국생명과학회 19 (19): 117-122, 2009

    2 Hantano R, "Water-soluble extracts from Angelica acutiloba Kitagawa enhance hematopoiesis by activating immature erythroid cells in mice with 5-fluorouracil-induced anemia" 32 : 918-924, 2004

    3 Murthy HN, "Tools for biotechnological production of useful phytochemicals from adventitious root cultures" 15 : 129-145, 2016

    4 Aeschbacher RA, "The genetic and molecular basis of root development" 45 : 25-45, 1994

    5 조민석 ; 박해웅 ; 이길현 ; 윤혜경 ; 오경모 ; 최석철 ; 현경예, "The Ameliorative Effect of Angelica acutiloba Ameliorates Through the NO / iNOS Pathway in Rats with Systemic Allergy" 대한의생명과학회 25 (25): 83-91, 2019

    6 Hao JP, "Synthesis of saikosaponins in adventitious roots of Bupleurum chinense by semi-continuous culture" 108 : 159-165, 2012

    7 Cui XH, "Sucrose-induced osmotic stress affects biomass, metabolite and antioxidant levels in root suspension cultures of Hypericum perforatum L" 103 : 7-14, 2010

    8 Tao JY, "Studies on antiasthamatic action of ligustilide of dang-gui, Angelica sinensis (Oliv.) Diels" 19 : 561-565, 1984

    9 Zhang ZY, "Scale-up of centrifugal impeller bioreactor for hyperproduction of ginseng saponin and polysaccharide by high-density cultivation of Panax notoginseng cells" 20 : 1076-1081, 2004

    10 Kim JH, "Saponin production in submerged adventitious root culture of Panax ginseng as affected by culture conditions and elicitors" 13 : 87-91, 2005

    11 Min JY, "Production of tropane alkaloids by small-scale bubble column bioreactor cultures of Scopolia parviflora adventitious roots" 98 : 1748-1753, 2007

    12 Sivakumar G, "Production of biomass and ginsenonsides from adventitious roots of Panax ginseng in bioreactor cultures" 5 : 333-342, 2005

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    14 Lulu T, "Production of bioactive compounds from adventitious roots by optimization of culturing conditions of Eurycoma longifoia in balloon-type bubble bioreactor systems" 119 : 712-717, 2015

    15 Praveen N, "Production of andrographolide from adventitious root cultures of Andrographis paniculata" 96 : 694-697, 2009

    16 Cui XH, "Production of adventitious root biomass and secondary metabolites of Hypericum perforatum L. in a ballon type airlift bioreactors" 102 : 10072-10079, 2011

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    19 Chun-Hua Wu ; Yaser Hassan Dewir ; 한은주 ; 백기엽, "Optimization of Culturing Conditions for the Production of Biomass and Phenolics from AdventitiousRoots of Echinacea angustifolia" 한국식물학회 49 (49): 193-199, 2006

    20 Sarker SD, "Natural medicine: the genus Angelica" 11 : 1479-1500, 2004

    21 Wu CH, "Large-scale cultivation of adventitious roots of Echinacea purpurea in airlift bioreactors for the production of chicoric acid, chlorogenic acid and caftaric acid" 29 : 1179-1182, 2007

    22 Jeong CS, "Inoculum size and auxin concentration influence the growth of adventitious roots and accumulation of ginsenosides in suspension cultures of ginseng (Panax ginseng C. A. Meyer)" 31 : 219-222, 2009

    23 Saiman MZ, "Induction, characterization, and NMR-based metabolite profiling of adventitious root cultures from leaf explants, of Gynura procumbens" 109 : 465-475, 2012

    24 Baque MA, "Induction mechanism of adventitious root from leaf explants of Morindacitrifolia as affected by auxin and light quality" 46 : 71-80, 2010

    25 Gao X, "Induction and characterization of adventitious root directly from the explants of Panax notoginseng" 27 : 1771-1775, 2005

    26 Fattorini L, "Indole-3-butyric acid promotes adventitious rooting in Arabidopsis thaliana thin cell layers by conversion into indole-3-acetic acid and stimulation of anthranilate synthase activity" 17 : 121-, 2017

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    29 Georgiev MI, "Hosting the plant cells in vitro: recent trends in bioreactors" 97 : 3787-3800, 2013

    30 Zhang X, "Evaluation of the efficacy of chlorogenic acid in reducing small intestine injury, oxidative stress, and inflammation in chickens challenged with Clostridium perfringens type A" 99 : 6606-6618, 2020

    31 Sharma SN, "Establishment of in vitro adventitious root cultures and analysis of androgrpaholide in Andrographis paniculata" 8 : 1045-1047, 2013

    32 Praveen N, "Establishment of cell suspension cultures of Withania somnifera for the production of withanolide A" 101 : 6735-6739, 2010

    33 Ho TT, "Enhanced production of phenolic compounds in hairy root cultures of Polygonum multiflorum and its metabolites discrimination using HPLC and FT-IR methods" 102 : 9563-9575, 2018

    34 Cui Xi-Hua ; Hosakatte Niranjana Murthy ; Zhang Ji-De ; Song Hang-Lin ; Jiang Yin-Ji ; Qi Wen-Wen ; Li Yong Yi ; 백기엽 ; 박소영, "Effect of nutritional factors on the accretion of secondary metabolites in Malaysian ginseng adventitious root cultures" 한국식물생명공학회 14 (14): 381-386, 2020

    35 Ho TT, "Culture condition optimization and FT IR analysis of Polygonum multiforum Thunb. adventitious root cultures grown in an air lift bioreactor system" 144 : 371-381, 2021

    36 Heloir MC, "Changes in the concentrations of auxins and polyamines during rooting of invitro- propagated walnut shoots" 16 : 515-519, 1996

    37 Della Rovere F, "Auxin and cytokinin control formation of the quiescent centre in the adventitious root apex of Arabidopsis" 112 : 1395-1407, 2013

    38 Zduńska K, "Antioxidant properties of ferulic acid and its possible application" 31 : 332-336, 2018

    39 Uto T, "Anti-inflammatory activity of constituents isolated from aerial part of Angelica acutiloba Kitagawa" 29 : 1956-1963, 2015

    40 박민아 ; 심미자 ; 김영철, "Anti-Photoaging Effects of Angelica acutiloba Root Ethanol Extract in Human Dermal Fibroblasts" 한국독성학회 33 (33): 125-134, 2017

    41 Namba T, "Anglicae Radix" Hoikusha 58-61, 1993

    42 Liu IM, "Angelica acutiloba root attenuates insulin resistance by high-fructose diet in rats" 25 : 1283-1293, 2011

    43 Liu IM, "Angelica acutiloba root alleviates advanced glycation and product-mediated renal injury in streptozotocin-diabetic rats" 76 : 165-174, 2011

    44 Mestre JC, "Aeration step method for kLa measurement under growth conditions in pneumatic bioreactors" 94 : 2327-2332, 2019

    45 Hussein S, "Adventitious root induction of recalcitrant tropical woody plant Euricoma longifolia Romanian" 17 : 1-, 2012

    46 Murashige T, "A revised medium for rapid growth and bioassays with tobacco tissue cultures" 15 : 473-497, 1962

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