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Biocompatible natural deep eutectic solvent-based extraction and cellulolytic enzyme-mediated transformation of Pueraria mirifca isofavones: a sustainable approach for increasing health-bioactive constituents

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dc.contributor.author Fonthip Makkliang
dc.contributor.author Boondaree Siriwarin
dc.contributor.author Gorawit Yusakul
dc.contributor.author Suppalak Phaisan
dc.contributor.author Attapon Sakdamas
dc.contributor.author Natthapon Chuphol
dc.contributor.author Waraporn Putalun
dc.contributor.author Seiichi Sakamoto
dc.contributor.author ฝนทิพย์ มากเกลี้ยง
dc.contributor.author บุณฑรี ศิริวาริน
dc.contributor.author กรวิทย์ อยู่สกุล
dc.contributor.author ศุภลักษณ์ ไพศาล
dc.contributor.author อรรถพล ศักดามาศ
dc.contributor.author วราภรณ์ ภูตะลุน
dc.contributor.other Walailak University. School of Languages and General Education th
dc.contributor.other Huachiew Chalermprakiet University. Faculty of Pharmaceutical Sciences th
dc.contributor.other Walailak University. School of Pharmacy th
dc.contributor.other Walailak University. School of Pharmacy th
dc.contributor.other Walailak University. School of Pharmacy th
dc.contributor.other Prince of Songkla University. Faculty of Pharmaceutical Sciences th
dc.contributor.other Khon Kaen University. Faculty of Pharmaceutical Sciences th
dc.contributor.other Kyushu University. Graduate School of Pharmaceutical Sciences th
dc.date.accessioned 2024-03-03T06:33:55Z
dc.date.available 2024-03-03T06:33:55Z
dc.date.issued 2021
dc.identifier.citation Bioresources and Bioprocessing volume 8, Article number: 76 (2021) th
dc.identifier.other https://doi.org/10.1186/s40643-021-00428-9
dc.identifier.uri https://has.hcu.ac.th/jspui/handle/123456789/1785
dc.description สามารถเข้าถึงบทความฉบับเต็มได้ที่ https://bioresourcesbioprocessing.springeropen.com/articles/10.1186/s40643-021-00428-9 th
dc.description.abstract The presence of specific gut microflora limits the biotransformation of Pueraria mirifica isoflavone (PMI) glycosides into absorbable aglycones, thus limiting their health benefits. Cellulolytic enzyme-assisted extraction (CAE) potentially solves this issue; however, solvent extraction requires recovery of the hydrophobic products. Here, we established the simultaneous transformation and extraction of PMIs using cellulolytic enzymes and natural deep eutectic solvents (NADESs). The NADES compositions were optimized to allow the use of NADESs as CAE media, and the extraction parameters were optimized using response surface methodology (RSM). The optimal conditions were 14.7% (v/v) choline chloride:propylene glycol (1:2 mol ratio, ChCl:PG) at 56.1 °C for the cellulolytic enzyme (262 mU/mL) reaction in which daidzin and genistin were extracted and wholly transformed to their aglycones daidzein and genistein. The extraction of PMIs using ChCl:PG is more efficient than that using conventional solvents; additionally, biocompatible ChCl:PG enhances cellulolytic enzyme activity, catalyzing the transformation of PMIs into compounds with higher estrogenicity and absorbability. th
dc.language.iso en_US th
dc.subject Biotransformation (Metabolism) th
dc.subject Cellulolytic enzymes th
dc.subject Isoflavonoids th
dc.subject ไอโซฟลาโวนอยด์ th
dc.subject Pueraria mirifica th
dc.subject Natural deep eutectic solvent th
dc.title Biocompatible natural deep eutectic solvent-based extraction and cellulolytic enzyme-mediated transformation of Pueraria mirifca isofavones: a sustainable approach for increasing health-bioactive constituents th
dc.type Article th


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