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Advancements in conventional and supercritical CO2 extraction of Moringa oleifera bioactives for cosmetic applications: A review
The Journal of Supercritical Fluids ( IF 3.4 ) Pub Date : 2024-08-22 , DOI: 10.1016/j.supflu.2024.106388 Júlia C. Kessler , Isabel M. Martins , Yaidelin A. Manrique , Alírio E. Rodrigues , Maria Filomena Barreiro , Madalena M. Dias
The Journal of Supercritical Fluids ( IF 3.4 ) Pub Date : 2024-08-22 , DOI: 10.1016/j.supflu.2024.106388 Júlia C. Kessler , Isabel M. Martins , Yaidelin A. Manrique , Alírio E. Rodrigues , Maria Filomena Barreiro , Madalena M. Dias
L. extracts (Mo) have attracted attention as a sustainable and effective alternative to synthetic ingredients for cosmetic formulations. The unique and diverse phytochemical profile of the Mo tree enhances the quality and appeal of commercial products, as evidenced by numerous studies and patents. Supercritical carbon dioxide extraction (SFE-CO) is particularly advantageous for this purpose, offering enhanced thermostability and selectivity of extracted compounds compared to conventional methods. This review examines the safety and efficacy of Mo seed, leaf, and root extracts as cosmetic ingredients, focusing on their bioavailability and performance by considering the thermodynamics and operational benefits of SFE-CO. The collected data highlights the method’s efficiency in terms of the total extraction yield and the recovery of target compounds from Mo, providing insights from optimisation studies and linking the solvation power of supercritical CO with the significant non-polar and low-polar compounds present in Mo extracts.
中文翻译:
用于化妆品应用的辣木生物活性物质的常规和超临界 CO2 萃取的进展:综述
L.提取物(Mo)作为化妆品配方合成成分的可持续且有效的替代品而引起了人们的关注。大量研究和专利证明,钼树独特且多样化的植物化学特征提高了商业产品的质量和吸引力。超临界二氧化碳萃取 (SFE-CO) 对于此目的特别有利,与传统方法相比,可提高萃取化合物的热稳定性和选择性。本综述研究了钼种子、叶和根提取物作为化妆品成分的安全性和功效,通过考虑 SFE-CO 的热力学和操作优势,重点关注其生物利用度和性能。收集的数据突出了该方法在总萃取率和从 Mo 中回收目标化合物方面的效率,提供了优化研究的见解,并将超临界 CO 的溶剂化能力与 Mo 中存在的重要非极性和低极性化合物联系起来提取物。
更新日期:2024-08-22
中文翻译:
用于化妆品应用的辣木生物活性物质的常规和超临界 CO2 萃取的进展:综述
L.提取物(Mo)作为化妆品配方合成成分的可持续且有效的替代品而引起了人们的关注。大量研究和专利证明,钼树独特且多样化的植物化学特征提高了商业产品的质量和吸引力。超临界二氧化碳萃取 (SFE-CO) 对于此目的特别有利,与传统方法相比,可提高萃取化合物的热稳定性和选择性。本综述研究了钼种子、叶和根提取物作为化妆品成分的安全性和功效,通过考虑 SFE-CO 的热力学和操作优势,重点关注其生物利用度和性能。收集的数据突出了该方法在总萃取率和从 Mo 中回收目标化合物方面的效率,提供了优化研究的见解,并将超临界 CO 的溶剂化能力与 Mo 中存在的重要非极性和低极性化合物联系起来提取物。