Gil-Ramírez Alicia, Clavijo Cristina, Palanisamy Marimuthu, Ruiz-Rodríguez Alejandro, Navarro-Rubio María, Pérez Margarita, Marín Francisco R, Reglero Guillermo, Soler-Rivas Cristina
Department of Production and Characterization of New Foods, CIAL-Research Institute in Food Science (UAM+CSIC), Madrid, Spain.
J Sci Food Agric. 2013 Aug 30;93(11):2789-96. doi: 10.1002/jsfa.6102. Epub 2013 Apr 3.
Agaricus bisporus mushrooms were able to lower cholesterol levels in hypercholesterolaemic rats and it was suggested that dietary fibre might inhibit cholesterol absorption. However, A. bisporus extracts were also able to inhibit the 3-hydroxy-3-methyl-glutaryl CoA reductase (HMGCR, the key enzyme in the cholesterol biosynthetic pathway) and this might also contribute to the observed lowering of cholesterol levels in serum.
The methanol-water extracts obtained from A. bisporus were able to inhibit up to 60% the HMGCR activity using an in vitro assay. The HMGCR inhibitory capacities depended on cultivation conditions, strains, etc. The potential inhibitors were not statins, they might be β-glucans able to scavenge the substrate and impair the enzymatic reaction. They were present during all mushroom developmental stages and similarly distributed through all the tissues including the parts discarded as a by-product. Accelerated solvent extractions using 1:1 ethanol-water as pressurised solvent (10.7 MPa, 25°C, five cycles of 5 min) were more effective in the extraction of the HMGCiR inhibitor(s) than supercritical fluid extractions (9 MPa, 40°C) using CO2 with 10% ethanol.
A mushroom cultivation and two extraction procedures were optimised to obtain fractions from A. bisporus with high HMGCR inhibitory activities to design novel ingredients for hypocholesterolaemic functional foodstuffs.
双孢蘑菇能够降低高胆固醇血症大鼠的胆固醇水平,有人认为膳食纤维可能会抑制胆固醇吸收。然而,双孢蘑菇提取物也能够抑制3-羟基-3-甲基戊二酰辅酶A还原酶(HMGCR,胆固醇生物合成途径中的关键酶),这也可能是观察到血清胆固醇水平降低的原因之一。
使用体外试验,从双孢蘑菇中获得的甲醇-水提取物能够抑制高达60%的HMGCR活性。HMGCR抑制能力取决于培养条件、菌株等。潜在抑制剂不是他汀类药物,它们可能是能够清除底物并损害酶促反应的β-葡聚糖。它们在蘑菇的所有发育阶段都存在,并且类似地分布于所有组织中,包括作为副产品丢弃的部分。使用1:1乙醇-水作为加压溶剂(10.7 MPa,25°C,5分钟的五个循环)的加速溶剂萃取在提取HMGCiR抑制剂方面比使用含10%乙醇的CO2的超临界流体萃取(9 MPa,40°C)更有效。
优化了蘑菇栽培和两种提取程序,以从双孢蘑菇中获得具有高HMGCR抑制活性的馏分,从而为降胆固醇功能食品设计新型成分。