Department of Biomolecular Sciences, University of Urbino Carlo Bo, Via Saffi 2, 61029 Urbino, Italy.
Department of Agricultural, Food, Environmental and Animal Sciences, University of Udine, 33100 Udine, Italy.
Molecules. 2021 Aug 12;26(16):4889. doi: 10.3390/molecules26164889.
L. has been used for a long time to obtain food, fiber, and as a medicinal and psychoactive plant. Today, the nutraceutical potential of is being increasingly reappraised; however, roots remain poorly studied, despite citations in the scientific literature. In this direction, we identified and quantified the presence of valuable bioactives (namely, β-sitosterol, stigmasterol, campesterol, friedelin, and epi-friedelanol) in the root extracts of a finding which might pave the way to the exploitation of the therapeutic potential of all parts of the plant. To facilitate root harvesting and processing, aeroponic (AP) and aeroponic-elicited cultures (AEP) were established and compared to soil-cultivated plants (SP). Interestingly, considerably increased plant growth-particularly of the roots-and a significant increase (up to 20-fold in the case of β-sitosterol) in the total content of the aforementioned roots' bioactive molecules were observed in AP and AEP. In conclusion, aeroponics, an easy, standardized, contaminant-free cultivation technique, facilitates the harvesting/processing of roots along with a greater production of their secondary bioactive metabolites, which could be utilized in the formulation of health-promoting and health-care products.
长期以来,人们一直将大麻用于获取食物、纤维,并将其作为药用和致幻植物。如今,大麻的营养保健品潜力正日益受到重新评估;然而,尽管大麻根在科学文献中被多次引用,但对其的研究仍然很少。在这方面,我们在大麻根提取物中鉴定和定量了有价值的生物活性物质(即β-谷甾醇、豆甾醇、菜油甾醇、补骨脂素和表补骨脂醇),这一发现可能为开发大麻植物所有部分的治疗潜力铺平道路。为了方便根的收获和加工,建立了气培(AP)和气培诱导培养(AEP)并与土壤培养的植物(SP)进行了比较。有趣的是,在 AP 和 AEP 中观察到植物生长,特别是根的生长显著增加(β-谷甾醇的含量增加了 20 倍),并且上述根的生物活性分子的总含量显著增加。总之,气培是一种简单、标准化、无污染的栽培技术,便于收获/加工根,并能更大程度地产生次生生物活性代谢物,可用于开发促进健康和保健产品。