Laboratorio RAMSES, IRCCS Istituto Ortopedico Rizzoli, Via di Barbiano 1/10, 40136 Bologna, Italy.
Research Centre for Cereal and Industrial Crops (CREA-CI), CREA Consiglio per la Ricerca in Agricoltura e l'Analisi dell'Economia Agraria, Via di Corticella 133, 40128 Bologna, Italy.
Nutrients. 2024 Oct 12;16(20):3457. doi: 10.3390/nu16203457.
: Crude extracts from the genus have recently emerged as promising phytochemicals for preventing bone loss. While the most documented evidence suggests that their general biological activity is due to glucosinolates' (GLSs') hydrolysis products, the direct activity of GLSs is beginning to be uncovered. However, the contribution of GLSs to the bone-sparing activity of crude extracts has seldom been addressed. Here, we aimed to gain insights into this gap by studying in the same in vitro model of human osteogenesis the effect of two seed extracts ( and ) obtained from defatted seed meals, comparing them to the isolated GLSs most represented in their composition, glucoerucin (GER) and glucotropaeolin (GTL), for and , respectively. : Osteogenic differentiation of human mesenchymal stromal cells (hMSCs) was assessed by alizarin red staining assay and real-time PCR, respectively, evaluating mineral apposition and mRNA expression of specific osteogenic genes. : Both extracts and GLSs increased the osteogenic differentiation, indicating that the stimulating effect of extracts can be at least partially attributed to GLSs. Moreover, these data extend previous evidence of the effect of unhydrolyzed glucoraphanin (GRA) on osteogenesis to other types of GLSs: GER and GTL. Notably, extract and GTL induced higher osteogenic stimulation than extract and GER, respectively. : Overall, this study expands the knowledge on the possible application of -derived bioactive molecules as natural alternatives for the prevention and treatment of bone-loss pathologies.
: 最近,从 属植物的粗提取物作为预防骨质流失的有前途的植物化学物质而崭露头角。虽然最有记录的证据表明,它们的一般生物活性是由于硫代葡萄糖苷(GLS)的水解产物,但 GLS 的直接活性开始被揭示。然而,GLS 对粗提取物的保骨活性的贡献很少被提及。在这里,我们旨在通过在相同的体外人成骨模型中研究两种 种子提取物( 和 )的作用来填补这一空白,这两种提取物是从脱脂种子粉中获得的,将它们与在其组成中最具代表性的分离 GLS 进行比较,分别为 和 。 : 用人骨髓间充质基质细胞(hMSCs)的茜素红染色试验和实时 PCR 分别评估成骨分化,评估矿化和特定成骨基因的 mRNA 表达。 : 两种 提取物和 GLS 都增加了成骨分化,表明 提取物的刺激作用至少部分归因于 GLS。此外,这些数据将未水解的萝卜硫素(GRA)对成骨作用的先前证据扩展到其他类型的 GLS:GER 和 GTL。值得注意的是, 提取物和 GTL 分别比 提取物和 GER 诱导更高的成骨刺激。 : 总的来说,这项研究扩展了关于 -衍生的生物活性分子作为预防和治疗骨质流失病理的天然替代品的应用的知识。