School of Life Science and Food Engineering, Huaiyin Institute of Technology, Huaian 223003, China.
Tecnologico de Monterrey, School of Engineering and Sciences, Campus Monterrey, Ave. Eugenio Garza Sada 2501, Monterrey, N.L. CP 64849, Mexico.
Int J Biol Macromol. 2020 May 15;151:1-18. doi: 10.1016/j.ijbiomac.2020.02.037. Epub 2020 Feb 6.
Marine biome exhibits an immense essence of excellence and enriched with high-value bioactive compounds of therapeutic and biomedical value. During the past several years, an array of biologically active molecules has been extracted/isolated and purified from numerous sources of marine origin with the aid of distinct techniques and methodologies for newer applications. The growing demand for bioactive molecules with unique functionalities in various industrial divisions, such as therapeutic sectors and biomedical, has endorsed the necessity for highly suitable and standardized strategies to extract these bioactive components using a state-of-the-art and inexpensive measures. This is also because many in practice conventional extraction methodologies suffer from processing limitations and low-yield issues. Besides that, other major issues include (i) decrease efficacy, (ii) excessive energy cost, (iii) low yield, (iv) lower cost-effective ratio, (v) minimal selectivity, (vi) low activity, and (vii) stability, etc. In this context, there is an urgent need for new and robust extraction strategies. The synergies of modern extraction techniques with efficient and novel pretreatment approaches, such as the integration of enzymes, accompanied by conventional extraction processes, should be the utmost goal of current research and development studies. The typical effectivity of the extraction techniques mostly relies on these points, i.e., (i) know-how about the source nature and type, (ii) understanding the structural and compositional profile, (iii) influence of the processing factors, (iv) interplay between the extraction conditions and the end-product, (v) understanding the available functional entities, (vi) reaction chemistry of the extract bioactive compounds, and (vii) effective exploitation of the end-product in the marketplace. Marine biome, among numerous naturally occurring sources, has been appeared an immense essence of excellence to isolate an array of biologically active constituents with medicinal values and related point-of-care applications. Herein, we reviewed the salient information covering various therapeutic potential and biomedical perspectives. Following a brief introduction and marine pharmacognosy, an array of high-value biomolecules of marine origin are discussed with suitable examples. From the robust extraction strategies viewpoint, a part of the review focuses on three techniques, i.e., (1) enzyme-assisted extraction (EAE), (2) supercritical-fluid extraction (SFE), and (3) microwave-assisted extraction (MAE). Each technique is further enriched with processing and workflow environment. The later part of the review is mainly focused on the therapeutic and biomedical perspectives of under-reviewed bio-active compounds or biomolecules. The previous and latest research on the anticancer, skin curative, cardio-protective, immunomodulatory and UV-protectant potentialities of marine-derived biologically active entities have been summarized with suitable examples and related pathways illustrations. Finally, the work is wrapped-up with current research challenges, future aspects, and concluding remarks.
海洋生物群系展现出巨大的卓越本质,富含具有治疗和生物医学价值的高附加值生物活性化合物。在过去的几年中,已经利用各种不同的技术和方法从众多海洋来源中提取/分离和纯化了大量具有生物活性的分子,用于新的应用。由于在治疗领域和生物医学等各个工业领域对具有独特功能的生物活性分子的需求不断增长,因此需要采用高度合适和标准化的策略,利用最先进和廉价的措施提取这些生物活性成分。这也是因为许多传统的常规提取方法在处理限制和低产量方面存在问题。除此之外,其他主要问题包括(i) 降低功效,(ii) 过高的能源成本,(iii) 低产量,(iv) 低性价比,(v) 低选择性,(vi) 低活性和 (vii) 稳定性等。在这种情况下,迫切需要新的强大的提取策略。现代提取技术与高效新颖的预处理方法(如酶的整合)的协同作用,伴随着常规提取过程,应该是当前研究和发展研究的最终目标。这些点在很大程度上决定了提取技术的典型效果,即(i) 了解来源性质和类型的专业知识,(ii) 了解结构和组成概况,(iii) 处理因素的影响,(iv) 提取条件与最终产品之间的相互作用,(v) 了解可用的功能实体,(vi) 提取生物活性化合物的反应化学,以及 (vii) 在市场上有效利用最终产品。海洋生物群系在众多天然来源中,因其具有巨大的卓越本质,能够分离出具有药用价值和相关即时护理应用的多种生物活性成分。在这里,我们综述了涵盖各种治疗潜力和生物医学观点的相关信息。在简要介绍和海洋药物学之后,我们讨论了海洋来源的高价值生物分子的一系列实例。从强大的提取策略的角度来看,综述的一部分侧重于三种技术,即(i) 酶辅助提取 (EAE),(ii) 超临界流体提取 (SFE) 和 (iii) 微波辅助提取 (MAE)。每种技术都进一步丰富了处理和工作流程环境。综述的后半部分主要集中在审查较少的生物活性化合物或生物分子的治疗和生物医学观点上。以前和最新的关于海洋衍生生物活性实体的抗癌、皮肤修复、心脏保护、免疫调节和 UV 保护潜力的研究,都附有合适的例子和相关途径说明。最后,本文总结了当前的研究挑战、未来展望和结论。