Flori Lorenzo, Albanese Lorenzo, Calderone Vincenzo, Meneguzzo Francesco, Pagliaro Mario, Ciriminna Rosaria, Zabini Federica, Testai Lara
Department of Pharmacy, University of Pisa, 56126 Pisa, Italy.
Istituto per la Bioeconomia, CNR, Via Madonna del Piano 10, 50019 Sesto Fiorentino, Italy.
Foods. 2022 Sep 11;11(18):2799. doi: 10.3390/foods11182799.
flavonoids are well-known for their beneficial effects at the cardiovascular and cardio-metabolic level, but often the encouraging in vitro results are not confirmed by in vivo approaches; in addition, the clinical trials are also inconsistent. Their limited bioavailability can be, at least in part, the reason for these discrepancies. Therefore, many efforts have been made towards the improvement of their bioavailability. Hydrodynamic cavitation methods were successfully applied to the extraction of byproducts of the fruits industry, showing high process yields and affording stable phytocomplexes, known as IntegroPectin, endowed with great amounts of bioactive compounds and high water solubility. The cardioprotective effects of grapefruit IntegroPectin were evaluated by an ex vivo ischemia/reperfusion protocol. Further pharmacological characterization was carried out to assess the involvement of mitochondrial potassium channels. Grapefruit IntegroPectin, where naringin represented 98% of the flavonoids, showed anti-ischemic cardioprotective activity, which was better than pure naringenin (the bioactive aglycone of naringin). On cardiac-isolated mitochondria, this extract confirmed that naringenin/naringin were involved in the activation of mitochondrial potassium channels. The hydrodynamic cavitation-based extraction confirmed a valuable opportunity for the exploitation of fruits waste, with the end product presenting high levels of flavonoids and improved bioaccessibility that enhances its nutraceutical and economic value.
黄酮类化合物因其在心血管和心脏代谢水平上的有益作用而闻名,但体外实验得出的令人鼓舞的结果往往无法在体内实验中得到证实;此外,临床试验结果也不一致。它们有限的生物利用度至少在一定程度上是造成这些差异的原因。因此,人们为提高其生物利用度做出了许多努力。流体动力空化方法已成功应用于水果工业副产品的提取,显示出高工艺产率,并能提供稳定的植物复合物,即所谓的整合果胶,其富含大量生物活性化合物且具有高水溶性。通过离体缺血/再灌注实验方案评估了葡萄柚整合果胶的心脏保护作用。还进行了进一步的药理学表征,以评估线粒体钾通道的参与情况。葡萄柚整合果胶中柚皮苷占黄酮类化合物的98%,显示出抗缺血心脏保护活性,优于纯柚皮素(柚皮苷的生物活性苷元)。在离体心脏线粒体上,该提取物证实柚皮素/柚皮苷参与了线粒体钾通道的激活。基于流体动力空化的提取方法为水果废弃物的利用提供了一个宝贵的机会,最终产品含有高水平的黄酮类化合物,并提高了生物可及性,从而提升了其营养保健价值和经济价值。