References
1. Manzi P, Aguzzi A, Pizzoferrato L 2001. Nutritional value of mushrooms widely consumed in Italy. Food Chemisty 73: 321-325. Chang, S. T. and Miles, P. G. (1989). Edible mushrooms and their cultivation. CRC Press, Inc. Florida, 345. Chang, S. T. and. Miles, P. G. (2004). Mushrooms: Cultivation, Nutritional Value, Medicinal Effect, and Environmental Impact (Second Edition).CRC Press. Boca Raton, 451. Chang S. T. and. Buswell. J. A (1996). Mushroom nutriceuticals. World Journal of Microbiology and Biotechnology. 12:473-476. Taira, K., Miyashita, Y., Okamoto, K., Arimoto, S., Takahashi, E. and Negishi, T., (2005). Novel antimutagenic factors derived from the edible mushroom Agrocybe cylindracea, Mutation Research. 586 115–123. Feng T, Wu Y, Zhang Z, Song S, Zhuang H, Xu Z, et al. (2019) Purification, identification, and sensory evaluation of kokumi peptides from Agaricus bisporus mushroom. Food. ;8:1-12. DOI: 10.3390/foods8020043 Ma G, Yang W, Zhao L, Pei F, Fang D, Hu Q. (2018) A critical review on the health promoting effects of mushrooms nutraceuticals. Food Science and Human Wellness.;7:125-133. DOI: 10.1016/j.fshw.2018.05.002 Carbonero , E. R., Gracher, A. H. P., Smiderle, F. R., Rosado, F. R., Sassaki, G. L., Gorin, P. A. J., and Iacomini, M., (2006). A ?-glucan from the fruit bodies of edible mushrooms Pleurotus eryngii and Pleurotus ostreatoroseus. Carbohydr. Polym. 66, 252–257. Alquini G., Carbonero E.R., Rosado F.R., Cosentino C., Iacomini M., (2004). Polysaccharides from the fruit bodies of the basidiomycete Laetiporus Aquilani sulphureus (Bull.: Fr.) Murr. FEMS Microbiology. Lett. 230, 47–52. Smiderle, F.R., Carbonero, E. R., Mellinger, C. G., Sassaki, G. L., Gorin, P. A. J. and Iacomini, M. (2006). Structural characterization of a polysaccharide and a ?-glucan isolated from the edible mushroom Flammulina velutipes. Photochemistry. 67, 2189–2196. Rosado, F.R., Carbonero, E. R., Claudino, R. F., Tischer, C. A., Kemmelmeier, C., Iacomini, M., (2003). The presence of partially 3-O-methylated mannogalactan from the fruit bodies of edible basidiomycetes Pleurotus ostreatus ‘florida’ Berk. and Pleurotus ostreatoroseus FEMS Microbiology Letter. 221, 119–124. Brown, G.D., Gordon, S., (2003). Fungal ?-glucans and mammalian immunity. Immunology. 19, 311–315. Schepetkin, I. A., Quinn, M.T., (2006). Botanical polysaccharides: macrophage immunomodulation and therapeutic potential. International. Immuno-pharmacology. 6, 317–333. Wong , J.H.; Ng, T.B.; Chan,H.H.L.; Liu, Q.; Man, G.C.W.; Zhang, C.Z.; Guan, S.; Ng, C.C.W.; Fang, E.F.; Wang , H.; (2020) Mushroom extracts and compounds with suppressive action breast cancer : Evidence from studies using cultured cancer cells tumor- bearing anmal anc clinical trial. Appl. Microbiol Biotchnol. 104, 4675-4703 Toklu , H.Z., Sener, G., Jahovic, N., Uslu, B., Arbak, S., Yegen, B.Ç., 2006. ?-glucan protects against burn-induced oxidative organ damage in rats. International Immunopharmacology. 6,156–169. Dore, C.M.P.G., Azevedo, T.C.G., Souza, M.C.R., Rego, L.A., Dantas, J.C.M., Silva, F.R.F., Rocha, H.A.O., Baseia, I.G., Leite, E.L., (2007). Antiinflammatory, antioxidant and cytotoxic actions of ?-glucan-rich extract from Geastrum saccatum mushroom. International Immunopharmacology. 7, 1160–1169 Zhang, M., Cui, S.W., Cheung, P.C.K. and Wang, Q. (2007), Antitumor polysaccharides from mushrooms: A review on their isolation process, structural characteristics and antitumor activity, Trends in Food Science and Technology. 18 4–19. 18..Lu X, Brennan MA, Narciso J, Guan W, Zhang J, Yuan L, et al(2019). Correlations between the phenolic and fibre composition of mushrooms and the glycaemic and textural characteristics of mushroom enriched extruded products. LWT: Food Science and Technology. 2020;118:108730. DOI: 10.1016/j.lwt..108730 Ramos, M.; Burgos N.; Barnard, A.; Evans, G.; Preece, J.; Graz, M.; Ruthes , A. C.; Jimeniz- Quero, A.; Martinez-Abad, A.; Vilaplana, F.; (2019) Agaricus bisporus and its by-products as a source of valuable extracts and bioactive compound . Food Chem.l 292,176-187 Tam, S.C., Yip, K.P. Fund, K.P. and. Chang, S.T. (1986). Hypotensive and renal effects of an extract of the edible mushroom Pleurotus sajor-caju. Life Science, 38: 1155. Nanba, H., (1993). Maitake mushroom-the king mushroom. Mushroom News, 41 (2): 22-25. Falandysz. J.(2021) Nutritional and other trace elements oand their association in raw king bolete mushroom , boletus edulis . int J. Environs . Res. Public Health 19, 417 23.Kala, K.; Krakowska, A.; Gdula-Argasinska , J.; Opoka, W.; Muszynska B. (2019) Assessing the Bioavailability of Zinc and indole Compound from Mycelial culture of the Bay Mushroom Imeleria Badia (agaricomycete ) Using InvitroModel Int J. Med. Mushroom, 21,343-352 Steinmetz, K. A., Potter, J. D. (1991) Vegetables, fruit and cancer. 1. Epidemiology. Cancer Causes and Control. 2: 325–357. Stamets, P (2000) Growing Gourmet and Medicinal Mushrooms, 3rd edn. Olympia, WA: Ten Speed Press. Rop, O., Mlcek, J. and Jurikova, T. (2009). Beta-glucans in higher fungi and their healtheffects. Nutrition Reviews. 67 (11): 624-631. Wasser, S.P., (2002). Medicinal mushrooms as a source of antitumor and immuno-modulating polysaccharides, Applied Microbiology and Biotechnology. 60 258–274. Moradali, M.F., Mostafavi, H., Ghods, S. and Hedjaroude, G.A. (2007). Immuno-modulating and anti-cancer agents in the realm of macromycetes fungi (macrofungi). International Immunopharmacology 7: 701–724. Jessen, R., Hansen, G., Johan kjeldahl, H, and Meisen, V. (1932). Prominent Danish Scientists through the Ages. University Library of Copenhagen 450th Aniversary . Levin and Munksgaard, copenhagen 169-172. Johanson R. (1953) Interference of pentose in the estimation of hexose sugars with anthrone. Nature. Jan 24;171 (4343):176–177.