La linaza (Linum usitatissimum l.) y su papel nutraceútico | Flaxseed (Linum usitatissimum l.) and its nutraceutical role
Resumen
El lino (Linum usitatissimum) es una planta herbácea de la familia de las lináceas, siendo la linaza su semilla de la cual se hace harina y se extraen los aceites. Debido a que los componentes de la semilla han demostrado tener potencial bioactivo (el ácido α-linolénico, los lignanos y la fibra), en las últimas décadas se han realizado diferentes estudios con esta oleaginosa, utilizando modelos de experimentación animal, ensayos in vitro y con humanos. En esta revisión, se describen específicamente trabajos relacionados con la linaza y su efecto sobre diferentes patologías, incluido el cáncer, hipercolesterolemia, hipertensión arterial y diabetes mellitus. Aunque ninguno de los estudios demostró que el consumo de la semilla o de sus componentes, lograron erradicar algún tipo de cáncer, en casi todos los trabajos reportados se observó mejoría en los grupos que la habían consumido en sus dietas con respecto a los que no la recibieron. Aun cuando se ha verificado la capacidad inhibitoria de los componentes de esta semilla en ensayos in vitro, su alcance todavía es desconocido, y quizás pudieran inhibir diversas funciones celulares, expresión de genes, enzimas o proteínas que juegan un papel importante en la proliferación de células malignas.
Palabras claves: Fitoestrógeno, lignanos, cáncer, hipertensión arterial, diabetes.
ABSTRACT
Flax (Linum usitatissimum) is a herb of the family Linaceae, and from flaxseed flour and oils are extracted. Since the seed components have shown bioactive potential (the α-linolenic acid, lignans and fiber) in recent decades there have been studies around the world with this oleaginous plant, using experimental animal models, in vitro tests and with humans. In this review, studies associated with flaxseed are described, specifically related to its effect on different pathologies, including cancer, hypercholesterolemia, arterial hypertension and diabetes mellitus. Although none of the studies showed that consumption of flaxseed or its components, was able to eradicate any type of cancer, in almost all the reports an improvement was observed in the groups that had consumed it in their diets with respect to those that did not receive it. Even though the inhibitory capacity of the components of flaxseed have been shown in in vitro tests, its scope is still unknown, and perhaps they could inhibit other cellular functions, gene expression, enzymes or proteins that play an important role in the proliferation of malignant cells.
Key words: Phytoestrogens, lignans, cancer, arterial hypertension, diabetes.
Referencias
ABARZUA S. SZEWCZYK M, GAILUS S, RICHTER DU, RUTH W, BRIESE V, PIECHULLA B. 2007. Effects of phytoestrogen extracts from Linum usitatissimun on the Jeg3 human trophoblast tumour cell line. Anticancer Res. 27(4A):2053-2058.
ANSENBERGER K, RICHARDS C, ZHUGE Y, BARUA A, BAHR J, LUBORSKY J, HALE D. 2010. Decreased severity of ovarian cancer and increased survival in hens fed a flaxseed enriched diet for one year. Gynecol. Oncol. 117(2):341-347.
AZRAD M, VOLLMER R, MADDEN J, DEWHIRST M, POLASCIK T, SNYDER D, RUFFIN M, MOUL J, BRENNER D, DEMARK-WAHNEFRIED W. 2013. Flaxseed-derived enterolactone is inversely associated with tumor cell proliferation in mean with localized prostate cancer. J. Med. Food. 16(4):357-360.
BOMMAREDDY A, ZHANG X, SCHRADER D, KAUSHIK R, ZEMAN D, MATTHEES D, DWIVEDI C. 2009. Effects of dietary flaxseed on intestinal tumorigenesis in Apc (Min) mouse. Nutr. Cancer. 61(2):276-83.
BOUCHER B, COTTERCHIO M, CURCA I, KRIEGER N, HARRIS S, KIRSH V, GOODWIN P. 2012. Intake of phytoestrogen foods and supplements among women recently diagnosed with breast cancer in Ontario, Canada. Nutr. Cancer. 64(5):695-703.
CALIGIURI S, LOVE K, WINTER T, GAUTHIER J, TAYLOR C, HANSEN T, ZAHRADKA P, AUKEMA H. 2013. Dietary linoleic acid and α-linolenic acid differentially affects renal oxylipins and phospholipid fatty acids in diet-induced obese rats. J. Nutr. 143(9).1421-1431.
CALIGIURI S, AUKEMA H, RAVANDI A, GUZMAN R, DIBROV E, PIERCE G. 2014. Flaxseed consumption reduces blood pressure in patients with hypertension by altering circulating oxylipins via an α-linolenic acid-induced inhibition of soluble epoxide hydrolase. Hypertension. 64(1):53-59.
CHEN J, SAGGAR J, COREY P, THOMPSON L. 2009. Flaxseed and pure secoisolariciresinol diglucoside, but not flaxseed hull, reduce human breast tumor growth (MCF-7) in athymic mice. J. Nutr. 139(11):2061-2066.
CHEN J, SAGGAR J, COREY P, THOMPSON L. 2011. Flaxseed cotyledon fraction reduces tumour growth and sensitisestamoxifen treatment of human breast cancer xenograft (MCF-7) in athymic mice. Br. J. Nutr. 105(3):339-347.
CHEN L, FANG J, SUN Z, LI H, WU Y, DEMARK-WAHNEFRIED, LI X. 2009. Enterolactone inhibits insulin-like growth Factor-1 receptor signaling in human prostatic carcinoma PC-3 cell. J. Nutri. 139(4):653-659.
CHUNG M, LEI B, LI-CHAN E. 2005. Isolation and structural characterization of the major protein fraction from Nor Man flaxseed (Linum usitatissimun L.). Food Chem. 90(1-2):271-279.
DEMARK-WAHNEFRIED W, POLASCIK T,GEORGE S, SWITZER B, MADDEN J, RUFFIN M, SNYDER D, OWZAR K, HARS V, ALBALA D, WALTHER P, ROBERTSON C, MOUL J, DUNN B, BRENNER D, MINASIAN L, STELLA P, VOLLMER R. 2008. Flaxseed supplementation (not dietary fat restriction) reduces prostate cancer proliferation rates in men presurgery. Cancer Epidemiol. Biomarkers Prev. 17(12):3577-3587.
DUPASQUIER M,WEBER A, ANDER B, RAMPERSAD P, STEIGERWALD S, WIGLE J, MITCHELL, KROEGER E, GILCHRIST J, MOGHADASIAN M, LUKAS A, PIERCE G. 2006. Effects of dietary flaxseed on vascular contractile function and atherosclerosis during prolonged hypercholesterolemia in rabbits. Am. J. Physiol. Heart Circ. Physiol. 291(6):2987-2996.
EILATI E, HALES K, ZHUGE Y, ANSENBERGER K, YU R, VAN BREMEN C, HALE D. 2013. Flaxseed enriched diet-mediated reduction in ovarian cancer severity is correlated to the reduction of prostaglandin E2 in laying hen ovaries. Protaglandins Leukot. Essent. Fatty Acids. 89(4):1-18.
EILATI E, BAHR J, HALE D. 2013. Long term flaxseed enriched diet decreased cancer incidence and prostaglandin E2 in hens. Gynecol. Oncol. 130(3):1-10.
FRANCIS A, DENISET J, AUSTRIA J, LAVALLEE R, MADDAFORT G, HEDLEY T, DIBROV E, PIERCE G. 2013. Effects of dietary flaxseed on atherosclerotic plaque regression. Am. J. Physiol. Heart Circ. Physiol. 304(12):1743-1751.
GOH K, PINDER D, HALL C, HEMAR Y. 2006. Rheological and light scattering properties of flaxseed polysaccharides aqueous solutions. Biomacromolecules. 7(11):3098-3103.
GOMIDEZ A, DE PAULA S, ROSA D, DE OLIVEIRA L, COMASTRI D, PELUZIO M. 2013. Use of defatted flaxseed meal reduces precancerous colon lesion in C57BL/6 mice. Acta Cir. Bras. 28(8):607-613.
HALL C, TULBEK M, XU Y. 2006. Flaxseed. Adv. Food Nutr. Res. 51(1):1-97.
HANKE D, ZAHRADKA P, MOHANKUMAR S, CLARK J, TAYLOR C. 2013. A diet high in α-linolenic acid and monounsaturated fatty acids attenuates hepatic steatosis and alters hepatic phospholipid fatty acid profile in diet-induced obese rats. Prostaglandins Leukot Essent. Fatty Acids. 89(6):391-401.
HERNÁNDEZ-SALAZAR M, GUEVARA-GONZÁLEZ R, CRUZ-HERNÁNDEZ A, GUEVARA-OLVERA L, BELLO-PÉREZ L, CASTAÑO-TOSTADO E, LOARCA-PIÑA G. 2013. Flaxseed (Linum usitatissimum L.) and its total non-digestible fraction influence the expression of genes involved in azoxymethane-inducedcolon cancer in rats. Plant Foods Hum. Nutr. 68(3):259-267.
LEE J, CHO K. 2012. Flaxseed sprouts induce apoptosis and inhibit growth in MCF-7 and MDA-MB-231 human breast cancer cells. In Vitro Cell Dev. Biol. Anim. 48(4):244-250.
MANI U, MANI I, BISWAS M, KUMAR S. 2011. An open-label study on the effect of flaxseed powder (Linum usitatissimum) supplementation in the management of diabetes mellitus. J. Diet Suppl. 8(3):257-265.
LOWCOCK C, COTTERCHIO M, BOUCHER B. 2013 Consumption of flaxseed, a rich source of lignans, is associated with reduced breast cancer risk. Cancer Causes Control. 24(4):813-816.
MASON J, CHEN J, THOMPSON L. 2010. Flaxseed oil-trastuzumab interaction in breast cancer. Food Chem. Toxicol. 48(8-9):2223-2226.
MCCANN MJ, GILL CI, TREVOR LT, BERRAR D, MCGLYNN H, ROWLAND IR. 2008. Enterolactone restricts the proliferation of the LNCaP human prostate cancer cell line in vitro. Mol. Nutr. Food Res. 52(5):567–580.
MCCANN S, EDGE S, HICKS D, THOMPSON L, MORRISON C, FETTERLY G. ANDREW C, CLARK K, WILTON J, KULKARNI S. 2014. A pilot study comparing the effect of flaxseed, aromatase inhibitor, and the combination on breast tumor biomarkers. Nutr. Cancer. 66(4):566-575.
MCCULLOUGH R, EDEL A, BASSETT C, LAVALLE R, DIBROV E, BLACKWOOD D, ANDERB, PIERCE G. 2011. The alpha linolenic acid content of flaxseed is associated with an induction of adipose leptin expression. Lipids. 6(11):1043-1052.
MORAD V, ABRAHAMSSONA, KJÖLHEDE P, DABROSIN C. 2015. Adipokines and vascular endothelial growth factor in normal human breast tissue in vivo – correlations and attenuation by dietary flaxseed. J. Mammary Gland Biol. Neoplasia. 21(1):69-76.
RICHTER D, ABARZUA S, CHROBAK M, SCHOLZ C, KUHN C, SCHULZE S, KUPKA M, FRIESE K, BRIESE V, PIECHULLA B, JESCHKE U. 2010. Effects of phytoestrogen extracts isolated from flax on estradiol production and ER/PR expression in MCF7 breast cancer cells. Anticancer Res. 30(5):1695-1699.
RUIZ A, GAVIRIA B, ARANGO C, MOLINA C, LOPEZ B. 2011. Consumo de linaza molida para la reduccion de peso corporal en personas con exceso de peso. Pespectivas en nutricion humana. Perspect. Nutr. Human. 3(1):45-56.
SHARMA J, SINGH R, Y GOYAL P. 2015. Chemomodulatory potential of flaxseed oil against DMBA/croton oil–induced skin carcinogenesis in mice. Integr Cancer Ther. 15(3):358-367.
SORICE A, GUERRIERO E,VOLPE M, CAPONE F , LA CARA F, CILIBERTO G, COLONNA G, COSTANTINI S. 2016. Differential response of two human breast cancer cell lines to the phenolic extract from flaxseed oil. Molecules. 21(3):2-18.
STURGEON S, HEERSINK J, VOLPE S, BERTONE-JOHNSON E, PULEO E, STANCZYK F, SABELAWSKI S, WAHALA K, KURZER M, BIGELOW C. 2008. Effect of dietary flaxseed on serum levels of estrogens and androgens in postmenopausal women. Nutr. Cancer. 60(5):612-618.
STURGEON S, VOLPE S, PULEO E, BERTONE-JOHNSON E, HEERSINK J, SABELAWSKI S, WAHALA K, BIGELOW C, KURZER M. 2010. Effect of flaxseed consumption on urinary levels of estrogen metabolites in postmenopausal women. Nutr. Cancer. 62(2):175-180.
STURGEON S, VOLPE S, PULEO E, BERTONE-JOHNSON E, HEERSINK J, SABELAWSK S, WAHALA K, BIGELOW C,KURZER M. 2011. Dietary intervention of flaxseed: effect on serum levels of IGF-1, IGF-BP3, and C-peptide. Nutr. Cancer. 63(3):376-380.
THEIL C, BRIESE V, RICHTER D, JESCHKE U, FRIESE K. 2013. An ethanolic extract of Linum usitatissimum caused cell lethality and inhibition of cell vitality-proliferation of MCF-7 and BT20 mamma carcinoma cells in vitro. Arch. Gynecol. Obstet. 288(1):149-153.
TRUAN J, CHEN J, THOMPSON L. 2010. Flaxseed oil reduces the growth of human breast tumors (MCF-7) at high levels of circulating estrogen. Mol. Nutr. Food Res. 54(10):1414-1421.
TRUAN J, CHEN J, THOMPSON L. 2012. Comparative effects of sesame seed lignan and flaxseed lignan in reducing the growth of human breast tumors (MCF-7) at high levels of circulating estrogen in athymic mice. Nutr. Cancer. 64(1):65-71.
WALDSCHLAGER J, BERGEMANN C, RUTH W, EFFMERT U, JESCHKE U, RICHTER DU, KRAGL U, PIECHULLA B, BRIESE V. 2005. Flax-seed extracts with phytoestrogenic effects on a hormone receptor-positive tumour cell line. Anticancer Res. 25(3A):1817-1822.
WIESENBORN D, TOSTENSON K, KANGAS N. 2003. Continuous abrasive method for mechanically fractionating flaxseed. J. Am. Oil Chem. Soc. 80(3):295-300.
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