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Bioactivities of protein hydrolysates from Chlorella sorokiniana

dc.contributor.authorTejano, Lhumen A.
dc.contributor.chairPeralta, Jose P.
dc.contributor.committeememberNuñal, Sharon N.
dc.date.accessioned2023-04-26T08:03:05Z
dc.date.available2023-04-26T08:03:05Z
dc.date.issued2018-06
dc.description.abstractABSTRACT Microalgal proteins can be a good source of nutrients and compounds with bioactivities. In this study, proteins from Chlorella sorokiniana were isolated by pH shift technology and enzymatically hydrolyzed using pepsin, bromelain, and thermolysin to produce hydrolysates. Molecular characteristics of the hydrolysates were determined by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) and amino acid analysis. After membrane ultrafiltration, bioactivities of the hydrolysates and peptide fractions were determined. Results revealed that thermolysin exhibited the highest degree of hydrolysis with 18.08 + 1.13%, followed by bromelain, and lastly by pepsin, after 4 h of hydrolysis. SDS-PAGE results showed that the hydrolysis generated peptides exhibited molecular weights of mostly <10 kDa of the hydrolysates, much less than those of the large and diverse proteins of the protein isolate. The essential amino acid indices (EAAIs) suggest that the hydrolysates could be considered as good quality protein sources. In vitro bioactivity assays, on the other hand, revealed that the pepsin peptide fraction of <5 kDa showed the highest DPPH radical scavenging activity (48.86 + 1.95%). Only pepsin hydrolysates and pepsin peptide fractions displayed inhibition to Staphylococcus aureus and Escherichia coli. However, there are no significant differences among the Angiotensin I Converting Enzyme (ACE) inhibitory and reducing power activities of the hydrolysates and peptide fractions. Both the protein hydrolysates and peptide fractions were observed to have satisfactory pH and heat stabilities. Overall, the results suggest that C. sorokiniana proteins can be a good alternative source of valuable compounds with pharmaceutical and nutraceutical application potentials.en
dc.format.extentxi, 91 p. : graphs & tablesen
dc.identifier.citationTejano, L.A. (2018). Bioactivities of protein hydrolysates from Chlorella sorokiniana [Master's thesis. University of the Philippines Visayas. UPV Institutional Repository. https://repository.upv.edu.phen
dc.identifier.urihttps://hdl.handle.net/20.500.14583/67
dc.language.isoenen
dc.publisherCollege of Fisheries and Ocean Sciences, University of the Philippines Visayasen
dc.subjectMicroalgal proteinsen
dc.subjectnutrientsen
dc.subjectproteinsen
dc.subjectChlorella sorokinianaen
dc.subjectpepsinen
dc.subjectbromelainen
dc.subjecthydrolysatesen
dc.subjectamino aciden
dc.subjectthermolysinen
dc.subjectbioactivityen
dc.subjectamino aciden
dc.subjectpeptidesen
dc.subject.agrovocamino acidsen
dc.subject.agrovocproteinsen
dc.subject.agrovocnutrientsen
dc.subject.agrovocpeptidesen
dc.subject.agrovocprotein hydrolysatesen
dc.subject.agrovocpolyacrylamide gel electrophoresisen
dc.subject.asfaamino acidsen
dc.subject.asfaproteinsen
dc.subject.asfapeptidesen
dc.subject.lccLG 995 2018 F5 T45en
dc.subject.lcshPeptidesen
dc.subject.lcshAmino acidsen
dc.subject.lcshBromelinen
dc.subject.lcshPepsinen
dc.subject.lcshProtein hydrolysatesen
dc.subject.lcshPolyacrylamide gel electrophoresisen
dc.subject.scientificnameStaphylococcus aureusen
dc.subject.scientificnameChlorella sorokinianaen
dc.subject.scientificnameEscherichiaen
dc.titleBioactivities of protein hydrolysates from Chlorella sorokinianaen
dc.typeThesisen
thesis.degree.disciplineFish Processing Technologyen
thesis.degree.grantorUniversity of the Philippines Visayasen
thesis.degree.levelMastersen
thesis.degree.nameMaster of Science in Fisheries (Fish Processing Technology)en

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