1,139
Views
7
CrossRef citations to date
0
Altmetric
Articles

Immunological activities of polysaccharide extracted from Elaeagnus angustifolia L.

Actividades inmunológicas de polisacáridos extraídos de Elaeagnus angustifolia L.

, , , , , , & show all
Pages 995-1002 | Received 11 May 2018, Accepted 21 Aug 2018, Published online: 22 Nov 2018

References

  • Akira, S., Uematsu, S., & Takeuchi, O. (2006). Pathogen recognition and innate immunity. Cell, 124, 783–801.
  • Artym, J., Zimecki, M., & Kruzel, M. (2004). Normalization of peripheral blood cell composition by lactoferrin in cyclophosphamide-treated mice. Medical Science Monitor International Medical Journal of Experimental & Clinical Research, 10, 84–89. PMID:14976460.
  • Beigom, T. J., Anbari, F., Maleki, Z., Boostani, S., Zarghi, A., & Pouralibaba, F. (2010). Efficacy of Elaeagnus angustifolia topical gel in the treatment of symptomatic oral lichen planus. Journal of Dental Research Dental Clinics Dental Prospects, 4, 29–32.
  • Belarbi, M., Bendimerad, S., Sour, S., Soualem, Z., Baghdad, C., Hmimed, S., & Visioli, F. (2011). Oleaster oil positively modulates plasma lipids in humans. Journal of Agricultural & Food Chemistry, 59, 8667–8669.
  • Bendaikha, S., Gadaut, M., Harakat, D., & Magid, A. (2014). Acylated flavonol glycosides from the flower of Elaeagnus angustifolia L. Phytochemistry, 103, 129–136.
  • Bradford, M. M. (1976). A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Analytical Biochemistry, 72, 248–254.
  • Brown, G. D., & Gordon, S. (2005). Immune recognition of fungal β-glucans. Cellular Microbiology, 7, 471–479.
  • Cerqueira, F., Cordeirodasilva, A., Gasparmarques, C., Simões, F., Pinto, M. M., & Nascimento, M. S. (2004). Effect of abietane diterpenes from Plectranthus grandidentatus on T- and B-lymphocyte proliferation. Bioorganic & Medicinal Chemistry, 12, 217–223, PMID:14697786.
  • Chen, Q., Chen, J., Du, H., Li, Q., Chen, J., Zhang, G., & Wang, J. (2014). Structural characterization and antioxidant activities of polysaccharides extracted from the pulp of Elaeagnus angustifolia L. International Journal of Molecular Sciences, 15, 11446–11455.
  • Chen, W. X., Zhang, W. Y., Shen, W. B., & Wang, K. C. (2010). Effects of the acid polysaccharide fraction isolated from a cultivated Cordyceps sinensis on macrophages in vitro. Cellular Immunology, 262, 69–74.
  • Chen, Z. S, Tan, B. K. H, & Chan, S. H. (2008). Activation of t lymphocytes by polysaccharide-protein complex from lycium barbarum l. International Immunopharmacology, 8, 1663–1671. doi: 10.1016/j.intimp.2008.07.019
  • Cheng, A., Wan, F., Wang, J., Jin, Z., & Xu, X. (2008). Macrophage immunomodulatory activity of polysaccharides isolated from Glycyrrhiza uralensis fish. International Immunopharmacology, 8, 43.
  • Cheng, K., Song, Z. H., Zheng, X. C., Zhang, H., Zhang, J. F., Zhang, L. L., Zhou, Y. M., & Wang, T. (2017). Effects of dietary vitamin e type on the growth performance and antioxidant capacity in cyclophosphamide immunosuppressed broilers. Poultry Science, 96, 1159–1166.
  • Cho, C. W., Han, C. J., Rhee, Y. K., Lee, Y. C., Shin, K. S., & Hong, H. D. (2014). Immunostimulatory effects of polysaccharides isolated from Makgeolli (traditional Korean rice wine). Molecules, 19, 5266–5277.
  • Deng, J., Zhong, Y., Wu, Y., Luo, Z., Sun, Y., Wang, G., … He, R. (2018). Carnosine attenuates cyclophosphamide-induced bone marrow suppression by reducing oxidative DNA damage. Redox Biology, 14, 1–6.
  • Duggina, P., Kalla, C. M., Varikasuvu, S. R., Bukke, S., & Tartte, V. 2015. Protective effect of centella triterpene saponins against cyclophosphamide-induced immune and hepatic system dysfunction in rats: Its possible mechanisms of action. Journal of Physiology & Biochemistry, 71, 435–454 PMID:26168711.
  • Farzaei, M. H., Khanavi, M., Moghaddam, G., Dolatshahi, F., Rahimi, R., Shamsardekani, M. R., & Hajimahmoodi, M. (2016). Standardization of tragopogon graminifolius DC. extract based on phenolic compounds and antioxidant activity. Journal of Chemistry, 2014, 1–7.
  • Fu, Y., Jiang, L., Zhao, W., Meng, X., Huang, S., Yang, J., & Chen, H. (2017). Immunomodulatory and antioxidant effects of total flavonoids of Spatholobus suberectus Dunn on PCV2 infected mice. Scientific Reports, 7, 8676.
  • Han, S. B., Park, S. H., Lee, K. H., Lee, C. W., Lee, S. H., Kim, H. C., Yim, Y. S., Lee, H. S., & Kim, H.M. (2001). Polysaccharide isolated from the radix of platycodon grandiflorum selectively activates B cells and macrophages but not T cells. International Immunopharmacology, 1, 1969–1978, PMID:11606028
  • Han, S. B., Yoon, Y. D., Ahn, H. J., Lee, H. S., Lee, C. W., Yoon, W. K., Park, S. K., & Kim, H. M. (2003). Toll-like receptor-mediated activation of b cells and macrophages by polysaccharide isolated from cell culture of acanthopanax senticosus. International Immunopharmacology, 3, 1301–1312.
  • Hu, T., & Zheng, R. 2004. Promotion of sophora subprosrate, polysaccharide on nitric oxide and interleukin-2 production in murine t lymphocytes: Implicated Ca2+, and protein kinase C. International Immunopharmacology, 4, 109–118 PMID:14975365.
  • Katsiari, C. G., Liossis, S. N., & Sfikakis, P. P. (2010). The pathophysiologic role of monocytes and macrophages in systemic lupus erythematosus: A reappraisal. Seminars in Arthritis & Rheumatism, 39, 491–503.
  • Khan, S. U., Khan, A. U., Shah, A. U., Shah, S. M., Hussain, S., Ayaz, M., & Ayaz, S. (2016). Heavy metals content, phytochemical composition, antimicrobial and insecticidal evaluation of Elaeagnus angustifolia. Toxicology & Industrial Health, 32, 154–161.
  • Lee, K. Y., You, H. J., Jeong, H. G., Kang, J. S., Kim, H. M., Rhee, S. D., & Jeon, Y. J. (2004). Polysaccharide isolated from poria cocos sclerotium induces nf-kappab/rel activation and inos expression through the activation of p38 kinase in murine macrophages. International Immunopharmacology, 4, 1029–1038.
  • Lee, Y. S., Lee, G. H., Park, J. H., Kwon, Y. K., & Sang, W. S. (2007). Water extracted evodiae fructus possesses immunomodulatory activities on cyclophosphamide induced immunesuppression. Journal of Physiology & Pathology in Korean Medicine, 21, 1450–1455.
  • Li, X., & Xu, W. (2011). Tlr4-mediated activation of macrophages by the polysaccharide fraction from polyporus umbellatus (pers.) fries. Journal of Ethnopharmacology, 135, 1–6.
  • Liu, A. J., Yu, J., Ji, H. Y., Zhang, H. C., Zhang, Y., & Liu, H. P. (2017). Extraction of a novel cold-water-soluble polysaccharide from astragalus membranaceus and its antitumor and immunological activities. Molecules, 23, 62–74.
  • Liu, X. Q., Liu, H. P., Zhao, F., Zhang, C. P., Wang, Y., & Jiao-Jiao, X. U. (2015). Purification and preliminary analysis of Elaeagnusangustifolia L.polysaccharide-1a. Science & Technology of Food Industry, 36, 138–143.
  • Manente, F. A., Quinello, C., Ferreira, L. S., De, C. A., Jellmayer, J. A., Portuondo, D. L., Batista, D. A., & Carlos, I. Z. (2017). Experimental sporotrichosis in a cyclophosphamide-induced immunosuppressed mice model. Medical Mycology, 1–12. 10.1093/mmy/myx098
  • Martello, M. D., David, N., Matuo, R., et al. (2016). Campomanesia adamantium extract induces DNA damage, apoptosis, and affects cyclophosphamide metabolism. Genetics & Molecular Research Gmr, 15, 1–11.
  • Masuko, T., Minami, A., Iwasaki, N., Majima, T., Nishimura, S., & Lee, Y. C. (2005). Carbohydrate analysis by a phenol-sulfuric acid method in microplate format. Analytical Biochemistry, 339, 69–72.
  • Mehrabani, N. M., Pasalar, P., Kamalinejad, M., Dehpour, A. R., Tavangar, S. M., Sharifi, R., & Gerayeshnejad, S. (2012). Effect of aqueous extract of Elaeagnus angustifolia fruit on experimental cutaneous wound healing in rats. Acta Medica Iranica, 50, 589. PMID:23165807.
  • Moynihan, J., & Cohen, N. (1989). The kinetics of recovery of leukocyte number and lymphocyte function following an injection of a single high dose of cyclophosphamide in C3H/HeJ mice. International Journal of Immunopharmacology, 11, 517–527.
  • Nakamura, T., Suzuki, H., Wada, Y., Kodama, T., & Doi, T. (2006). Fucoidan induces nitric oxide production via p38 mitogen-activated protein kinase and nf-κb-dependent signaling pathways through macrophage scavenger receptors. Biochemical & Biophysical Research Communications, 343, 286–294.
  • Nikniaz, Z., Ostadrahimi, A., Mahdavi, R., Ebrahimi, A. A., & Nikniaz, L. (2014). Effects of Elaeagnus angustifolia L. supplementation on serum levels of inflammatory cytokines and matrix metalloproteinases in females with knee osteoarthritis. Complementary Therapies in Medicine, 22, 864–869.
  • Okmen, G., & Turkcan, O. (2013a). A study on antimicrobial, antioxidant and antimutagenic activities of Elaeagnus angustifolia L. leaves. African Journal of Traditional Complementary & Alternative Medicines Ajtcam, 11, 116–120.
  • Okmen, G., & Turkcan, O. (2013b). The antibacterial activity of elaeagnus angustifolia l. Against mastitis pathogens and antioxidant capacity of the leaf methanolic extracts. Journal of Animal & Veterinary Advances, 12, 491–496.
  • Park, H. R., Hwang, D., Hong, H. D., Shin, K. S., Park, H. R., Hwang, D., & Shin, K. S. (2017). Antitumor and antimetastatic activities of pectic polysaccharides isolated from persimmon leaves mediated by enhanced natural killer cell activity. Journal of Functional Foods, 37, 460–466.
  • Pellicci, D. G., Hammond, K. J. L., Uldrich, A. P., Baxter, A. G., Smyth, M. J., & Godfrey, D. I. (2002). A natural killer T (NKT) cell developmental pathway involving a thymus-dependent NK1.1(−)CD4(+)CD1d-dependent precursor stage. Journal of Experimental Medicine, 195, 835–844. PMID: 11927628.
  • Schepetkin, I. A., Xie, G., Kirpotina, L. N., Klein, R. A., Jutila, M. A., & Quinn, M. T. (2008). Macrophage immunomodulatory activity of polysaccharides isolated from Opuntia polyacantha. International Immunopharmacology, 8, 1455–1466.
  • Schoenaker, M. H. D., Henriet, S. S., Zonderland, J., Deuren, M. V., Qiang, P. H., Sluijs, S. J. P., & Ijspeert, H. (2018). Immunodeficiency in Bloom’s syndrome. Journal of Clinical Immunology, 38, 35–44.
  • Shao, B. M., Xu, W., Dai, H., Tu, P., Li, Z., & Gao, X. M. 2004. A study on the immune receptors for polysaccharides from the roots of astragalus membranaceus, a chinese medicinal herb. Biochem Biophys Res Commun, 320, 1103–1111 PMID:15249203.
  • Singh, S. S., Haldar, C., & Rai, S. (2006). Melatonin and differential effect of l -thyroxine on immune system of Indian tropical bird Perdicula asiatica. Gen Comp Endocrinol, 145, 215–221.
  • Subleski, J. J., Wiltrout, R. H., & Weiss, J. M. (2009). Application of tissue-specific NK and NKT cell activity for tumor immunotherapy. Journal of Autoimmunity, 33, 275.
  • Sun, C., Yang, J., Pan, L., et al. (2018). Improvement of icaritin on hematopoietic function in cyclophosphamide-induced myelosuppression mice. Immunopharmacology & Immunotoxicology, 40, 1–10.
  • Talaei-Khozani, T., Vojdani, Z., Dehghani, F., Heidari, E., Kharazinejad, E., & Panjehshahin, M. R. (2011). Toxic effects of Elaeagnus angustifolia fruit extract on chondrogenesis and osteogenesis in mouse limb buds. Tokai Journal of Experimental and Clinical Medicine, PMID:21932186. 36(3), 63–70.
  • Tsai, C. C., Yang, F. L., Huang, Z. Y., Chen, C. S., Yang, Y. L., Hua, K. F., Li, J. J., Chen, S. T., & Wu, S. H. (2012). Oligosaccharide and peptidoglycan of ganoderma lucidum activate the immune response in human mononuclear cells. Journal of Agricultural Food Chemistry, 60, 112830–2837 PMID:22364151.
  • Wang, B., Qu, H., Ma, J., Sun, X., & Wang, D. (2015). Protective effects of Elaeagnus angustifolia leaf extract against myocardial ischemia/reperfusion injury in isolated rat heart. Journal of Chemistry, 2014, 6797–6802.
  • Yalcin, G., & Sogut, O. (2014). Influence of extraction solvent on antioxidant capacity value of oleaster measured by ORAC method. Natural Product Research, 28, 1513–1517.
  • Yang, B., Zhao, M., Shi, J., Yang, N., & Jiang, Y. (2008). Effect of ultrasonic treatment on the recovery and DPPH radical scavenging activity of polysaccharides from longan fruit pericarp. Food Chemistry, 106, 685–690.
  • Yin, J. J., Zhou, Q., Wang, L., et al. (2016). Protective effect of extract of Mauremys mutica against cyclophosphamide (CY)-induced suppression of immune function in mice. Food & Agricultural Immunology, 27, 577–588.
  • Zalys, R., Zagon, I. S., Bonneau, R. H., Lang, C. M., & Mclaughlin, P. J. (2000). In vivo effects of chronic treatment with [Met5]-enkephalin on hematological values and natural killer cell activity in athymic mice. Life Sciences, 66, 829–834.
  • Zhao, C., Li, M., Luo, Y. F., & Wu, W. K. (2006). Isolation and structural characterization of an immunostimulating polysaccharide from fuzi, Aconitum carmichaeli. Carbohydrate Research, 341, 485–491, PMID:16406277.
  • Zhou, S., Zhang, T., Peng, B., Luo, X., Liu, X., Hu, L., & Deng, Y. (2017). Targeted delivery of epirubicin to tumor-associated macrophages by sialic acid-cholesterol conjugate modified liposomes with improved antitumor activity. International Journal of Pharmaceutics, 523, 203–216.
  • Zhou, Y., Chen, X., Yi, R., Li, G., Sun, P., Qian, Y., & Zhao, X. (2018). Immunomodulatory effect of tremella polysaccharides against cyclophosphamide-induced immunosuppression in mice. Molecules, 23, 239.