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    Optimization of green extraction methods for cinnamic acid and cinnamaldehyde from Cinnamon (Cinnamomum cassia) by response surface methodology

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    https://www.riss.kr/link?id=A105960833

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The major compounds of cinnamon are cinnamic acid and cinnamaldehyde, for which the conditions of microwave-assisted extraction (MAE), ultrasound-assisted extraction (UAE), and reflux extraction (RE) were optimized using response surface methodology for comparing their efficiencies in terms of extraction yield, consumption of time and energy, and CO2 emission. The results indicated MAE superiority to UAE and RE owing to the highest yield of target compounds (total yield: 0.89%, cinnamic acid: 6.48 mg/100 mL, and cinnamaldehyde: 244.45 mg/100 mL) at optimum MAE conditions: 59% ethanol, 147.5 W microwave power and 3.4 min of extraction time. RE resulted in comparable yields with the highest consumption of time, energy, and solvent, and least CO2 emission. Therefore, it is concluded that MAE is the most efficient method for green extraction of cinnamic acid and cinnamaldehyde from cinnamon powder compared to UAE and RE.
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    The major compounds of cinnamon are cinnamic acid and cinnamaldehyde, for which the conditions of microwave-assisted extraction (MAE), ultrasound-assisted extraction (UAE), and reflux extraction (RE) were optimized using response surface methodology f...

    The major compounds of cinnamon are cinnamic acid and cinnamaldehyde, for which the conditions of microwave-assisted extraction (MAE), ultrasound-assisted extraction (UAE), and reflux extraction (RE) were optimized using response surface methodology for comparing their efficiencies in terms of extraction yield, consumption of time and energy, and CO2 emission. The results indicated MAE superiority to UAE and RE owing to the highest yield of target compounds (total yield: 0.89%, cinnamic acid: 6.48 mg/100 mL, and cinnamaldehyde: 244.45 mg/100 mL) at optimum MAE conditions: 59% ethanol, 147.5 W microwave power and 3.4 min of extraction time. RE resulted in comparable yields with the highest consumption of time, energy, and solvent, and least CO2 emission. Therefore, it is concluded that MAE is the most efficient method for green extraction of cinnamic acid and cinnamaldehyde from cinnamon powder compared to UAE and RE.

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    참고문헌 (Reference)

    1 Ministry of Food and Drug Safety (MFDS), "The Korean Pharmacopoeia" The Society of Korean Official Compendium for Public Health, The Yakup Shinmoon Inc. 84-, 2013

    2 Mathew S, "Studies on the antioxidant activities of cinnamon (Cinnamomum verum) bark extracts through various in vitro models" 94 : 520-528, 2006

    3 서창섭, "Simultaneous Determination of Albiflorin, Cinnamaldehyde, Cinnamic Acid, Daidzin, Glycyrrhizin, Liquiritin, Paeoniflorin and Puerarin in Galgeun-tang by HPLC-PDA" 대한한의학회 31 (31): 8-15, 2010

    4 SAS Institute, "SAS User’s Guide" Statistical Analysis Systems Institute 1990

    5 Frydman-Marom A, "Orally administrated cinnamon extract reduces b-amyloid oligomerization and corrects cognitive impairment in Alzheimer’s disease animal models" 6 : e16564-e16564, 2011

    6 Ghafoor K, "Optimization of ultrasoundassisted extraction of phenolic compounds, antioxidants, and anthocyanins from grape (Vitis vinifera) seeds" 57 : 4988-4994, 2009

    7 Hayta M, "Optimization of ultrasound-assisted antioxidant compounds extraction from germinated chickpea using response surface methodology" 77 : 208-216, 2017

    8 Ghasemzadeh A, "Optimization of reflux conditions for total flavonoid and total phenolic extraction and enhanced antioxidant capacity in Pandan (Pandanus amaryllifolius Roxb.) using response surface methodology" 2014 : 1-10, 2014

    9 Ameer K, "Optimization of microwave-assisted extraction of total extract, stevioside and rebaudioside-A from Stevia rebaudiana (Bertoni) leaves using response surface methodology (RSM) and artificial neural network (ANN) modelling" 229 : 198-207, 2017

    10 Maeng JH, "Optimization of microwave-assisted extraction of bioactive compounds from Coriolus versicolor mushroom using response surface methodology" 40 : e12421-, 2017

    1 Ministry of Food and Drug Safety (MFDS), "The Korean Pharmacopoeia" The Society of Korean Official Compendium for Public Health, The Yakup Shinmoon Inc. 84-, 2013

    2 Mathew S, "Studies on the antioxidant activities of cinnamon (Cinnamomum verum) bark extracts through various in vitro models" 94 : 520-528, 2006

    3 서창섭, "Simultaneous Determination of Albiflorin, Cinnamaldehyde, Cinnamic Acid, Daidzin, Glycyrrhizin, Liquiritin, Paeoniflorin and Puerarin in Galgeun-tang by HPLC-PDA" 대한한의학회 31 (31): 8-15, 2010

    4 SAS Institute, "SAS User’s Guide" Statistical Analysis Systems Institute 1990

    5 Frydman-Marom A, "Orally administrated cinnamon extract reduces b-amyloid oligomerization and corrects cognitive impairment in Alzheimer’s disease animal models" 6 : e16564-e16564, 2011

    6 Ghafoor K, "Optimization of ultrasoundassisted extraction of phenolic compounds, antioxidants, and anthocyanins from grape (Vitis vinifera) seeds" 57 : 4988-4994, 2009

    7 Hayta M, "Optimization of ultrasound-assisted antioxidant compounds extraction from germinated chickpea using response surface methodology" 77 : 208-216, 2017

    8 Ghasemzadeh A, "Optimization of reflux conditions for total flavonoid and total phenolic extraction and enhanced antioxidant capacity in Pandan (Pandanus amaryllifolius Roxb.) using response surface methodology" 2014 : 1-10, 2014

    9 Ameer K, "Optimization of microwave-assisted extraction of total extract, stevioside and rebaudioside-A from Stevia rebaudiana (Bertoni) leaves using response surface methodology (RSM) and artificial neural network (ANN) modelling" 229 : 198-207, 2017

    10 Maeng JH, "Optimization of microwave-assisted extraction of bioactive compounds from Coriolus versicolor mushroom using response surface methodology" 40 : e12421-, 2017

    11 Ameer K, "Optimization and modeling for heat reflux extraction of total yield, stevioside and rebaudioside-A from Stevia rebaudiana (Bertoni) leaves" 52 : 1193-1205, 2017

    12 Kim HK, "Optimisation of microwave-assisted extraction for functional properties of Vitis coignetiae extract by response surface methodology" 92 : 1780-1785, 2012

    13 Martino E, "Microwaveassisted extraction of coumarin and related compounds from Melilotus officinalis (L.) Pallas as an alternative to Soxhlet and ultrasound-assisted extraction" 1125 : 147-151, 2006

    14 Xiao W, "Microwave-assisted extraction of flavonoids from Radix Astragali" 62 : 614-618, 2008

    15 Ranasinghe P, "Medicinal properties of ‘true’ cinnamon (Cinnamomum zeylanicum): a systematic review" 13 : 275-, 2013

    16 "Korea Power Exchange (KPX)"

    17 Ministry of Trade, Industry and Energy (MTIE), "Implementing regulations in energy law"

    18 Cravotto G, "Green extraction techniques" 22 : 57-59, 2011

    19 Ameer K, "Green extraction methods for polyphenols from plant matrices and their byproducts: A review" 16 : 295-315, 2017

    20 Das A, "Enhanced extraction of rebaudioside-A: Experimental, response surface optimization and prediction using artificial neural network" 65 : 415-421, 2015

    21 Askari F, "Cinnamon may have therapeutic benefits on lipid profile, liver enzymes, insulin resistance, and high-sensitivity C-reactive protein in nonalcoholic fatty liver disease patients" 34 : 143-148, 2014

    22 Hamidpour R, "Cinnamon from the selection of traditional applications to its novel effects on the inhibition of angiogenesis in cancer cells and prevention of Alzheimer’s disease, and a series of functions such as antioxidant, anticholesterol, antidiabetes, antibacterial, antifungal, nematicidal, acaracidal, and repellent activities" 5 : 66-70, 2015

    23 Kwon JH, "Application of the microwave-assisted process (MAPTM) to the fast extraction of ginseng saponins" 36 : 491-498, 2003

    24 Pires RH, "Anticandidal efficacy of cinnamon oil against planktonic and biofilm cultures of Candida parapsilosis and Candida orthopsilosis" 172 : 453-464, 2011

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    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
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