Food Engineering / Gıda Mühendisliği
Permanent URI for this collectionhttps://hdl.handle.net/11147/12
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Article Citation - WoS: 16Citation - Scopus: 18Microencapsulation of a Potential Probiotic Lactiplantibacillus Pentosus and Its Impregnation Onto Table Olives(Elsevier, 2022) Elvan, Menşure; Baysal, Ayşe Handan; Harsa, Hayriye ŞebnemThis study aimed to demonstrate some probiotic properties of Lactiplantibacillus pentosus NRRL B-227 and impregnate the strain onto the table olive surfaces. In this respect, antioxidative ability, antibiotic resistance, and survivability after simulated digestion tests were carried out. Microencapsulation was performed using xylan and whey protein concentrate (WPC) using the water-in-oil emulsion technique to maintain cell viability. A vacuum impregnation process was performed to coat olive surfaces with L. pentosus. This strain demonstrated 71.6% DPPH radical scavenging activity and exhibited paramount resistance to antibiotics. The viable cell count of microencapsulated L. pentosus was found as 8 log CFU/g after 72 weeks of storage. After exposure to the simulated oral phase, 1-log reduction was detected, and gastric phase conditions led to a 3-log reduction of viability of microencapsulated as well as non-microencapsulated cells. The viability of microencapsulated L. pentosus on the surface of olives was also evaluated for one-month, and viable cell count was ≥6 log CFU/g. In the light of these findings, L. pentosus with antibiotic and digestion fluids resistant and antioxidant properties were successfully microencapsulated within xylan-WPC complex. Table olives can be considered as a suitable carrier for beneficial microorganisms that satisfies with the expectations of regulations for functional foods.Article Citation - WoS: 29Citation - Scopus: 31Evaluation of Bioactivity of Pomegranate Fruit Extract Against Alicyclobacillus Acidoterrestris Dsm 3922 Vegetative Cells and Spores in Apple Juice(Academic Press Inc., 2015) Molva, Çelenk; Baysal, Ayşe HandanThis research evaluated the antimicrobial activity of commercial pomegranate extract (POMELLA®, PE) against Alicyclobacillus acidoterrestris vegetative cells and spores (approximately 105 log CFU/mL) in apple juice (pH 3.82, °Brix 11.3) during storage at 37°C. After 240h, the cell counts were reduced from the initial log count (CFU/mL) by 2.84, 3.26, 3.32, 3.46 and 3.56 in the apple juice with PE at the concentrations of 2.5, 5, 10, 20 and 40μg/mL, respectively. On the other hand, counts of the control reached 7.36 log CFU/mL after 24h. The Weibull model satisfactorily described the survival curves of cell inactivation kinetics (R2 > 0.983). While the growth of all spores obtained from different sporulation media (potato dextrose agar, malt extract agar, Bacillus acidoterrestris agar, and Bacillus acidocaldarius agar) was inhibited in the apple juice with PE (2.5-40μg/mL), the control spores increased by 1.9-2.2 log CFU/mL after 336h. Based on the scanning electron microscopy (SEM) imaging, vegetative cells indicated substantial damage and spore germination was inhibited in the apple juice with PE. The results showed that PE can have possible uses as a natural antimicrobial to control the growth of A.acidoterrestris vegetative cells and spore germination in the apple juice. © 2015 Elsevier Ltd.
