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Agarwood (Aquilaria spp) has high economic value. However, essential oil production from agarwood is a time-consuming process. Additionally, agarwood leaves have not been utilized even though they contain various bioactive ingredients. In this study, agarwood leaves were fermented using Lactobacillus plantarum ATCC 8014 with or without Stevia (4, 8, and 12%; v/v). The fermented fluid was mixed with maltodextrin (15%; w/v) and subjected to spray drying (inlet temperature, 120℃; outlet temperature, 65–70℃). The contents of polyphenols, polysaccharides, saponins, and flavonoids and the viability of L. plantarum were determined. Fermentation enhanced the levels of bioactive compounds. The contents of polyphenol (69.19 ± 4.05 mg GAE/g of sample), polysaccharide (20.75 ± 0.98 mg GE/g of sample), saponin (305.23 ± 4.21 mg OAE/g of sample), and flavonoid (7.86 ± 0.72 mg QE/g of sample), and the viability of L. plantarum (8.72 ± 0.17 log CFU/ml) were markedly upregulated in the samples containing Stevia (12%; v/v). This indicated that the supplementation of Stevia during fermentation decreases the fermentation time (9 h), upregulates bioactive compound production in agarwood leaves, enhances microencapsulation during spray drying, and increases the viability of L. plantarum under simulated gastric digestion conditions.
| 번호 | 참고문헌 | 국회도서관 소장유무 |
|---|---|---|
| 1 | Kalita P, Roy PK, Sen S. 2020. Agarwood: Medicinal side of the fragrant plant. In Herbal Medicine in India, pp. 223-236. Springer, Singapore. | 미소장 |
| 2 | Batubara R, Hanum TI, Surjanto. 2018. Phytochemical and tannin content in two species of agarwood leaves from Mandailing Natal Regency North Sumatera Province. In AIP Conference Proceedings, Vol. 2049, No. 1, pp. 030009. AIP Publishing LLC. | 미소장 |
| 3 | Kamonwannasit S, Nantapong N, Kumkrai P, Luecha P, Kupittayanant S, Chudapongse N. 2013. Antibacterial activity of Aquilaria crassna leaf extract against Staphylococcus epidermidis by disruption of cell wall. Annal. Clin. Microbiol. Antimicrob. 12: 20. | 미소장 |
| 4 | Manoka S, Sungthong B, Sato H, Sugiyama E, Sato VH. 2016. Hypoglycemic and antioxidant activities of the water extract of aquilaria crassna leaves in streptozotocin-nicotinamide-induced Type-2 diabetic mice. Nat. Prod. Commun. 11: 757-761. | 미소장 |
| 5 | Pang SF, Lau MZ, Yusoff MM, Gimbun J. 2017. Microwave-irradiation induced fast simultaneous extraction of methoxylated and hydroxylated phenolic compounds from orthosiphon stamineus leaves. In Materials Science Forum, Vol. 890, pp. 155-158. Trans Tech Publications Ltd., Switzerland. | 미소장 |
| 6 | Limón RI, Peñas E, Torino MI, Martínez-Villaluenga C, Dueñas M, et al. 2015. Fermentation enhances the content of bioactive compounds in kidney bean extracts. Food Chem. 172: 343-352. | 미소장 |
| 7 | Yeong YL, Pang SF, Chong SY, Gimbun J. 2018. Comparison of microwave and ultrasonic assisted extraction of kaempferol from Cassia alata. Int. J. Eng Technol. 7: 84-89. | 미소장 |
| 8 | Hussain A, Bose S, Wang JH, Yadav MK, Mahajan GB, Kim H. 2016. Fermentation, a feasible strategy for enhancing bioactivity of herbal medicines. Food Res. Int. 81: 1-16. | 미소장 |
| 9 | Septembre-Malaterre A, Remize F, Poucheret P. 2018. Fruits and vegetables, as a source of nutritional compounds and phytochemicals:Changes in bioactive compounds during lactic fermentation. Food Res. Int. 104: 86-99. | 미소장 |
| 10 | Parvez S, Malik KA, Ah Kang S, Kim HY. 2006. Probiotics and their fermented food products are beneficial for health. J. Appl. Microbiol. 100: 1171-1185. | 미소장 |
| 11 | Perrier JD, Mihalov JJ, Carlson SJ. 2018. FDA regulatory approach to steviol glycosides. Food Chem. Toxicol. 122: 132-142. | 미소장 |
| 12 | Lopes SMS, Francisco MG, Higashi B, de Almeida RTR, KrausováG, Pilau EJ, et al. 2016. Chemical characterization and prebiotic activity of fructo-oligosaccharides from Stevia rebaudiana (Bertoni) roots and in vitro adventitious root cultures. Carbohydr. Polym. 152: 718-725. | 미소장 |
| 13 | Ozdemir T, Ozcan T. 2020. Effect of steviol glycosides as sugar substitute on the probiotic fermentation in milk gels enriched with red beetroot (Beta vulgaris L.) bioactive compounds. LWT 134: 109851. | 미소장 |
| 14 | Agudelo J, Cano A, González-Martínez C, Chiralt A. 2017. Disaccharide incorporation to improve survival during storage of spray dried Lactobacillus rhamnosus in whey protein-maltodextrin carriers. J. Funct. Foods 37: 416-423. | 미소장 |
| 15 | de Souza MM, Santos AM, Converti A, Maciel MIS. 2020. Optimisation of umbu juice spray drying, and physicochemical, microbiological and sensory evaluation of atomised powder. J. Microencapsul. 37: 230-241. | 미소장 |
| 16 | Yeo SK, Liong MT. 2010. Effect of prebiotics on viability and growth characteristics of probiotics in soymilk. J. Sci. Food Agric. 90: 267-275. | 미소장 |
| 17 | Corrêa-Filho LC, Lourenço MM, Moldão-Martins M, Alves VD. 2019. Microencapsulation of β-Carotene by spray drying: effect of wall material concentration and drying inlet temperature. Int. J. Food Sci. 2019: 8914852. | 미소장 |
| 18 | Vuong QV, Hirun S, Roach PD, Bowyer MC, Phillips PA, Scarlett CJ. 2013. Effect of extraction conditions on total phenolic compounds and antioxidant activities of Carica papaya leaf aqueous extracts. J. Herb. Med. 3: 104-111. | 미소장 |
| 19 | Ly NT, Tham NT, Thuy DTK, Dong LM. 2019. Extraction of bioactive component from herbal Anoectochilus formosanus hayata by microwave, ultrasound and lactic fermentation. Turkish J. Agric. Food Sci. Technol. 7: 593-597. | 미소장 |
| 20 | Zhishen J, Mengcheng T, Jianming W. 1999. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chem. 64: 555-559. | 미소장 |
| 21 | Chen Y, Xie MY, Gong XF. 2007. Microwave-assisted extraction used for the isolation of total triterpenoid saponins from Ganoderma atrum. J. Food Eng. 81: 162-170. | 미소장 |
| 22 | Gbassi G, Vandamme T, Ennahar S, Marchioni E. 2009. Microencapsulation of Lactobacillus plantarum spp. in an alginate matrix coated with whey proteins. Int. J. Food Microbiol. 129: 103-105. | 미소장 |
| 23 | Hur SJ, Lee SY, Kim YC, Choi I, Kim GB. 2014. Effect of fermentation on the antioxidant activity in plant-based foods. Food Chem. 160: 346-356. | 미소장 |
| 24 | Sestelo ABF, Poza M, Villa TG. 2004. β-Glucosidase activity in a Lactobacillus plantarum wine strain. World J. Microbiol. Biotechnol. 20: 633. | 미소장 |
| 25 | Lee JH, Kim B, Hwang CE, Haque MA, Kim SC, Lee CS, et al. 2018. Changes in conjugated linoleic acid and isoflavone contents from fermented soymilks using Lactobacillus plantarum P1201and screening for their digestive enzyme inhibition and antioxidant properties. J. Funct. Foods 43: 17-28. | 미소장 |
| 26 | Tchabo W, Ma Y, Kaptso GK, Kwaw E, Cheno RW, Xiao L, et al. 2019. Process analysis of mulberry (Morus alba) leaf extract encapsulation: Effects of spray drying conditions on bioactive encapsulated powder quality. Food Bioprocess Technol. 12: 122-146. | 미소장 |
| 27 | Gao H, Wen JJ, Hu JL, Nie QX, Chen HH, Nie SP, et al. 2019. Momordica charantia juice with Lactobacillus plantarum fermentation:Chemical composition, antioxidant properties and aroma profile. Food Biosci. 29: 62-72. | 미소장 |
| 28 | Wilkowska A, Ambroziak W, Czyżowska A, Adamiec J. 2016. Effect of microencapsulation by spray-drying and freeze-drying technique on the antioxidant properties of blueberry (Vaccinium myrtillus) juice polyphenolic compounds. Polish J. Food Nutr. Sci. 66: 11-16. | 미소장 |
| 29 | Avila-Reyes SV, Garcia-Suarez FJ, Jiménez MT, San Martín-Gonzalez MF, Bello-Perez LA. 2014. Protection of L. rhamnosus by spray-drying using two prebiotics colloids to enhance the viability. Carbohydr. Polym. 102: 423-430. | 미소장 |
| 30 | Ballesteros LF, Ramirez MJ, Orrego CE, Teixeira JA, Mussatto SI. 2017. Encapsulation of antioxidant phenolic compounds extracted from spent coffee grounds by freeze-drying and spraydrying using different coating materials. Food Chem. 237: 623-631. | 미소장 |
| 31 | Çam M, Işıklı MD, Yüksel E, Alaşalvar H, Başyiğit B. 2018. Application of pressurized water extraction and spray drying techniques to produce soluble spearmint tea. J. Food Meas. Charact. 12:1927-1934. | 미소장 |
| 32 | Mahdi AA, Mohammed JK, Al-Ansi W, Ghaleb AD, Al-Maqtari QA, Ma M, et al. 2020. Microencapsulation of Fingered citron extract with gum Arabic, modified starch, whey protein, and maltodextrin using spray drying. Int. J. Biol. Macromol. 152: 1125-1134. | 미소장 |
| 33 | Kalita D, Saikia S, Gautam G, Mukhopadhyay R, Mahanta CL. 2018. Characteristics of synbiotic spray dried powder of litchi juice with Lactobacillus plantarum and different carrier materials. LWT 87: 351-360. | 미소장 |
| 34 | Sosa N, Gerbino E, Golowczyc MA, Schebor C, Gómez-Zavaglia A, Tymczyszyn EE. 2016. Effect of galacto-oligosaccharides: maltodextrin matrices on the recovery of Lactobacillus plantarum after spray-drying. Front. Microbiol. 7: 584. | 미소장 |
| 35 | Both E, Gyorgy E, Kibedi-Szabo CZ, Tamas E, Abraham B, Miklossy I, et al. 2010. Acid and bile tolerance, adhesion to epithelial cells of probiotic microorganisms. UPB Buletin Stiintific, Series B: Chem. Mater. Sci. 72: 37-44. | 미소장 |
| 36 | Ding WK, Shah NP. 2007. Acid, bile, and heat tolerance of free and microencapsulated probiotic bacteria. J. Food Sci. 72: M446-M450. | 미소장 |
| 37 | Andrade R, Santos E, Azoubel P, Ribeiro E. 2019. Increased survival of Lactobacillus rhamnosus ATCC 7469 in guava juices with simulated gastrointestinal conditions during refrigerated storage. Food Biosci. 32: 100470. | 미소장 |
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