Plant sprout foods: Biological activities, health benefits, and bioavailability
- PMID: 34050545
- DOI: 10.1111/jfbc.13777
Plant sprout foods: Biological activities, health benefits, and bioavailability
Abstract
Plant sprout foods exhibit a lot of biological activities including anti-inflammatory, antioxidative, anticancer, antidiabetes, anti-infection, and antiviral activities. Up to the present moment, plant sprout foods have received much attention due to their abundance, good bioavailability, and health benefits for human. This review highlights the biological activities of different plant sprout foods (viz., broccoli sprout, buckwheat sprout, wheat sprout, mung bean sprout, soybean sprout, and adkuzi bean sprout) using in vitro model, animal model, and human model. Furthermore, the bioavailability of plant sprout foods is also discussed. PRACTICAL APPLICATIONS: A review of the literature was conducted to biological activities of plant sprout foods, in addition to a summary of health benefits and bioavailability of sprout foods. Several biological activities of plant sprout foods with in vitro and in vivo evidence are currently unexplored in clinical trials, because the effects of sprout foods on human tissues and cells measured by tube test do not recapitulate the actual in vivo effects. Moreover, the safety of chemoprevention strategies using sprout foods that to protect against environmental exposures and other oxidative stress-related pathologies is important. Further research is warranted to evaluate bioavailability of individual forms.
Keywords: bioavailability; biological activities; germination; health benefits; plant sprouts; vegetable sprouts.
© 2021 Wiley Periodicals LLC.
References
REFERENCES
-
- Alumkal, J. J., Slottke, R., Schwartzman, J., Cherala, G., Munar, M., Graff, J. N., Beer, T. M., Ryan, C. W., Koop, D. R., Gibbs, A., Gao, L., Flamiatos, J. F., Tucker, E., Kleinschmidt, R., & Mori, M. (2015). A phase II study of sulforaphane-rich broccoli sprout extracts in men with recurrent prostate cancer. Investigational New Drugs, 33, 480-489. https://doi.org/10.1007/s10637-014-0189-z
-
- Amici, M., Bonfili, L., Spina, M., Cecarini, V., Calzuola, I., Marsili, V., Angeletti, M., Fioretti, E., Tacconi, R., Gianfranceschi, G. L., & Eleuteri, A. M. (2008). Wheat sprout extract induces changes on 20s proteasomes functionality. Biochimie, 90(5), 790-801. https://doi.org/10.1016/j.biochi.2007.12.001
-
- Benincasa, P., Falcinelli, B., Lutts, S., Stagnari, F., & Galieni, A. (2019). Sprouted grains: A comprehensive review. Nutrients, 11, 421. https://doi.org/10.3390/nu11020421
-
- Bricker, G. V., Riedl, K. M., Ralston, R. A., Tober, K. L., Oberyszyn, T. M., & Schwartz, S. J. (2015). Isothiocyanate metabolism, distribution, and interconversion in mice following consumption of thermally processed broccoli sprouts or purified sulforaphane. Molecular Nutrition & Food Research, 58(10), 1991-2000. https://doi.org/10.1002/mnfr.201400104
-
- Chang, Y. W., Young, J. J., Ho, K. Y., Jung-Wook, K., & Jae-Jun, S. (2002). The effects of broccoli sprout extract containing sulforaphane on lipid peroxidation and helicobacter pylori infection in the gastric mucosa. Gut and Liver, 9(4), 486-493. https://doi.org/10.5009/gnl14040