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Synthesis of palmitoleic acid-enriched triacylglycerol via a two-step enzyme reaction

Title
Synthesis of palmitoleic acid-enriched triacylglycerol via a two-step enzyme reaction
Authors
Oh D.No D.S.Yoon S.W.Kim Y.Kim H.-R.Kim I.-H.
Ewha Authors
김양하
SCOPUS Author ID
김양하scopus
Issue Date
2022
Journal Title
Process Biochemistry
ISSN
1359-5113JCR Link
Citation
Process Biochemistry vol. 113, pp. 234 - 240
Keywords
Candida rugosa lipaseEsterificationEversa lipaseMacadamia nut oilPalmitoleic acid (POA)Selective hydrolysisTriacylglycerol (TAG)
Publisher
Elsevier Ltd
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
Palmitoleic acid (POA) is known to have various biological activities in animal models. POA-enriched triacylglycerol (TAG) was successfully synthesized using a two-step enzyme reaction. First, the POA-enriched fatty acid obtained from macadamia nut oil by Candida rugosa lipase-catalyzed selective hydrolysis was employed as a substrate for the synthesis of POA-enriched TAG. Two parameters such as temperature and enzyme loading, were optimized to enrich POA by the selective hydrolysis. For the TAG synthesis, liquid Eversa lipase was immobilized in house on Lewatit VP OC 1600 as a carrier and the protein content in the carrier was 130 mg/ g carrier. The degree of synthesis of POA-enriched TAG using Eversa immobilized lipase prepared in house was investigated in comparison to three commercial lipases and Eversa immobilized lipase demonstrated a superior activity in TAG conversion. The effects of temperature, enzyme loading, and vacuum on the synthesis of POA-enriched TAG using the Eversa immobilized lipase were investigated. The optimum conditions were a temperature of 60 °C, an enzyme loading of 12.5 %, and a vacuum of 100 torr. The maximum TAG conversion was ca. 89 % after 12 h under the optimum conditions. © 2022 Elsevier Ltd
DOI
10.1016/j.procbio.2022.01.007
Appears in Collections:
신산업융합대학 > 식품영양학과 > Journal papers
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