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Short Communication

Determination of ϒ-aminobutyric acid (GABA) in jujube fruit (Ziziphus jujuba Mill.)

Determinación del ácido ϒ-aminobutírico (GABA) en fruta de azufaifo (Ziziphus jujuba Mill.)

ORCID Icon, , , &
Pages 158-162 | Received 06 Sep 2018, Accepted 22 Dec 2018, Published online: 06 May 2019

References

  • Bai, L., Zhang, H., Liu, Q., Zhao, Y., Cui, X., Guo, S., … Bai, N. (2016). Chemical characterization of the main bioactive constituents from fruits of Ziziphus jujuba. Food & Function, 7(6), 2870–2877.
  • Bowery, N. G. (2006). GABAB receptor: A site of therapeutic benefit. Current Opinion in Pharmacology, 6, 37–43.
  • Cao, J.-X., Zhang, Q.-Y., Cui, S.-Y., Cui, X.-Y., Zhang, J., Zhang, Y.-H., … Zhao, -Y.-Y. (2010). Hypnotic effect of jujubosides from Semen Ziziphi Spinosae. Journal of Ethnopharmacology, 130(1), 163–166.
  • Cao, S., Cai, Y., Yang, Z., & Zheng, Y. (2012). MeJA induces chilling tolerance in loquat fruit by regulating proline and γ-aminobutyric acid contents. Food Chemistry, 133(4), 1466–1470.
  • Chen, J., Zhonggui, L., Maiwulanjiang, M., Zhang, W. L., Zhan, J. Y. X., Lam, C. T. W., … Tsim, K. W. K. (2013). Chemical and biological assessment of Ziziphus jujuba fruits from China: Different geographical sources and developmental stages. Journal of Agricultural and Food Chemistry, 61(30), 7315–7324.
  • Commission, C. P. (2015). The Chinese pharmacopoeia (Vol. 1, pp. 21–22). Beijing: Chemical Industry Press.
  • Damiano, S., Forino, M., Arpan, D., Vitali, L. A., Lupidi, G., & Taglialatela-Scafati, O. (2017). Antioxidant and antibiofilm activities of secondary metabolites from Ziziphus jujuba leaves used for infusion preparation. Food Chemistry, 230, 24–29.
  • Deewatthanawong, R., Nock, J. F., & Watkins, C. B. (2010). γ-aminobutyric acid (GABA) accumulation in four strawberry cultivars in response to elevated CO2 storage. Postharvest Biology and Technology, 57(2), 92–96.
  • Diana, M., Quilez, J., & Rafecas, M. (2014). Gamma-aminobutyric acid as a bioactive compound in foods: A review. Journal of Functional Foods, 10, 407–420.
  • Finotti, E., Bersani, E., Del Prete, E., & Friedman, M. (2015). Application of a functional mathematical index (FMI) for predicting effects of the composition of jujube fruit on nutritional quality and health. Journal of Food Composition and Analysis, 42, 164–170.
  • Hernández, F., Noguera-Artiaga, L., Burló, F., Wojdyło, A., Áa, C.-B., & Legua, P. (2016). Physico-chemical, nutritional, and volatile composition and sensory profile of Spanish jujube (Ziziphus jujuba Mill.) fruits. Journal of the Science of Food and Agriculture, 96(8), 2682–2691.
  • Huang, B. (2017). The Chinese Rural Statistc Yearbook. Beijing: China Statistic Press.
  • Inoue, K., Shirai, T., Ochiai, H., Kasao, M., Hayakawa, K., Kimura, M., & Sansawa, H. (2003). Blood-pressure-lowering effect of a novel fermented milk containing γ-aminobutyric acid (GABA) in mild hypertensives. European Journal of Clinical Nutrition, 57, 490–495.
  • Jiang, J.-G., Huang, X.-J., Chen, J., & Lin, Q.-S. (2007). Comparison of the sedative and hypnotic effects of flavonoids, saponins, and polysaccharides extracted from Semen Ziziphus jujube. Natural Product Research, 21(4), 310–320.
  • Katsuno, N., Sakamoto, C., Yabe, T., Yamauchi, R., Nishizu, T., & Kato, K. (2015). Methods for enrichment of γ-aminobutyric acid in sesame seeds. Food Science and Technology Research, 21(6), 787–791.
  • Kinnersley, A. M., & Turano, F. J. (2010). Gamma aminobutyric acid (GABA) and plant responses to stress. Critical Reviews in Plant Sciences, 19(6), 479–509.
  • Li, X., Li, X., Zhou, B., Man, S., Gao, W., & Jing, S. (2017). Study on the bioactive constituents and in vitro antioxidant and in vivo anti-inflammatory activities of extracts from the fruits of ziziphus jujuba mill. cv. jinsixiaozao hort. Food Science and Technology Research, 23(3), 417–426.
  • Meeploy, M., & Deewatthanawong, R. (2016). Determination of gamma-aminobutyric acid (GABA) in rambutan fruit cv. rongrian by HPLC-ELSD and separation of GABA from rambutan fruit using dowex 50W-X8 column. Journal of Chromatographic Science, 54(3), 445–452.
  • Okada, T., Sugishita, T., Murakami, T., Murai, H., Saikusa, T., Horino, T., … Takahashi, T. (2000). Effect of the defatted rice germ enriched with GABA for sleeplessness depression, autonomic disorder by oral administration. Journal of the Japanese Society for Food Science and Technology, 47(8), 596–603.
  • Pu, Y., Ding, T., Wang, W., Xiang, Y., Ye, X., Li, M., & Liu, D. (2018). Effect of harvest, drying and storage on the bitterness, moisture, sugars, free amino acids and phenolic compounds of jujube fruit (Zizyphus jujuba cv. Junzao). Journal of the Science of Food and Agriculture, 98(2), 628–634.
  • Pu, Y., Ding, T., Zhang, N., Jiang, P., & Liu, D. (2017). Identification of bitter compounds from dried fruit of Ziziphus jujuba cv. Junzao. International Journal of Food Properties, 20(sup1), S26–S35.
  • Ramesh, S. A., Tyerman, S. D., Bo, X., Bose, J., Kaur, S., Conn, V., … Gilliham, M. (2015). GABA signalling modulates plant growth by directly regulating the activity of plant-specific anion transporters. Nature Communications, 6, 7879.
  • Ramesh, S. A., Tyerman, S. D., Gilliham, M., & Xu B. (2017). gamma-aminobutyric acid (GABA) signalling in plants. Cellular and Molecular Life Sciences, 74(9), 1577–1603.
  • Rostami, H. G., & Taghi, S. M. (2017). Mathematical modeling of mucilage extraction kinetic from the waste hydrolysates of fruiting bodies of zizyphus jujuba mill. Journal of Food Processing and Preservation, 41(4), e13064.
  • Sari, F., & Velioglu, Y. S. (2011). Effects of particle size, extraction time and temperature, and derivatization time on determination of theanine in tea. Journal of Food Composition and Analysis, 24(8), 1130–1135.
  • Shelp, B. J., Bown, A. W., & McLean, M. D. (1997). Metabolism and functions of gamma-aminobutyric acid. Trends in Plant Science, 11(4), 446–452.
  • Song, P., Zhang, Y., Ma, G., Zhang, Y., Zhou, A., & Xie, J. (2017). Gastrointestinal absorption and metabolic dynamics of Jujuboside A, A saponin derived from the seed of ziziphus jujuba. Journal of Agricultural and Food Chemistry, 65(38), 8331–8339.
  • Suwanmanon, K., & Hsieh, P.-C. (2013). IsolatingBacillus subtilisand optimizing its fermentative medium for GABA and nattokinase production. CyTA - Journal of Food, 12(3), 282–290.
  • Wang, Y., Liu, M., Zhao, L., Qiu, Y., & Zhuang, Y. (2015). Influence of processing conditions on reducing γ-aminobutyric acid content during fortified milk production. Food Research International, 72, 215–222.
  • Woraharn, S., Lailerd, N., Sivamaruthi, B. S., Wangcharoen, W., Sirisattha, S., Peerajan, S., & Chaiyasut, C. (2015). Evaluation of factors that influence the L-glutamic and γ-aminobutyric acid production duringHericium erinaceusfermentation by lactic acid bacteria. CyTA - Journal of Food, 14(1), 47–54.
  • Xie, P.-J., Youa, F., Huang, L.-X., & Zhang, C.-H. (2017). Comprehensive assessment of phenolic compounds and antioxidant performance in the developmental process of jujube (Ziziphus jujuba Mill.). Journal of Functional Foods, 36, 233–242.
  • Yang, A., Cao, S., Yang, Z., Cai, Y., & Zheng, Y. (2011). γ-aminobutyric acid treatment reduces chilling injury and activates the defence response of peach fruit. Food Chemistry, 129(4), 1619–1622.
  • Yoona, Y.-E., Kuppusamy, S., Cho, K. M., Kim, P. J., Kwack, Y.-B., & Lee, Y. B. (2017). Influence of cold stress on contents of soluble sugars, vitamin C and free amino acids including gamma-aminobutyric acid (GABA) in spinach (Spinacia oleracea). Food Chemistry, 215, 185–192.
  • Zhan, R., Xia, L., Shao, J., Wang, C., & Chen, D. (2018). Polysaccharide isolated from Chinese jujube fruit (Zizyphus jujuba cv. Junzao) exerts anti-inflammatory effects through MAPK signaling. Journal of Functional Foods, 40, 461–470.
  • Zhao, J., Li, S. P., Yang, F. Q., Li, P., & Wang, Y. T. (2006). Simultaneous determination of saponins and fatty acids in Ziziphus jujuba (Suanzaoren) by high performance liquid chromatography-evaporative light scattering detection and pressurized liquid extraction. Journal of Chromatography, A 1108(2), 188–194.
  • Zhou, M., Ndeurumio, K. H., Zhao, L., & Hu, Z. (2016). Impact of precooling and controlled-atmosphere storage on γ-aminobutyric acid (GABA) accumulation in longan (Dimocarpus longan Lour.) fruit. Journal of Agricultural and Food Chemistry, 64(33), 6443–6450.
  • Zi-Chen, W., Yang, Z.-Y., Jian-Guo, L., Chen, H.-B., Huang, X.-M., & Wang, H.-C. (2016). Methyl-inositol, gamma-aminobutyric acid and other health benefit compounds in the aril of litchi. International Journal of Food Sciences and Nutrition, 67(7), 762–772.