海洋环境中有前景的生物活性化合物及其对各种疾病的潜在影响。

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Akash Karthikeyan, Abey Joseph, Baiju G Nair
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引用次数: 56

摘要

背景:海洋环境承载了各种各样的物种,它们已经进化到生活在恶劣和具有挑战性的条件下。海洋生物是关注的焦点,因为它们有能力生产生物技术上有用的化合物。由于它们对温度、pH值、盐和污染物的耐受性,它们是新的和可持续的工业过程中有前途的生物催化剂,代表了几种生物技术应用的机会。受海洋环境的广泛性和丰富性的鼓舞,海洋生物在开发新的治疗效益方面的作用正朝着耕地的方向发展。目前人们对从自然资源中提取的生物活性化合物非常感兴趣,特别是那些能有效作用于各种疾病的分子靶点的化合物。研究的重点是细菌和真菌,从沉积物、海水、鱼类、藻类和大多数海洋无脊椎动物,如海绵、软体动物、被囊动物、腔肠动物和甲壳类动物中分离出来。除了海绵、藻类或珊瑚等海洋大型生物外,海洋细菌和真菌已被证明可以产生具有特定和复杂化学结构的新型次级代谢物(SMs),这可能是生产新药或铅的关键。众所周知,海洋环境是具有许多有益健康影响的化学结构的丰富来源。目前,对海藻的生物活性和神经保护作用的研究已经有了深入的了解,包括抗氧化、抗神经炎症、抑制胆碱酯酶活性和抑制神经元死亡。结论:海洋生物活性化合物在多种疾病的治疗中具有重要的应用价值。海洋天然产物(MNPs)具有多种具有药理意义的生物活性,包括抗生素、抗病毒、神经退行性、抗癌或抗炎特性。目前的审查重点是重要的海洋生物活性化合物的重要性及其在不同疾病中的作用,并强调它们可能对人类的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Promising bioactive compounds from the marine environment and their potential effects on various diseases.

Promising bioactive compounds from the marine environment and their potential effects on various diseases.

Promising bioactive compounds from the marine environment and their potential effects on various diseases.

Promising bioactive compounds from the marine environment and their potential effects on various diseases.

Background: The marine environment hosts a wide variety of species that have evolved to live in harsh and challenging conditions. Marine organisms are the focus of interest due to their capacity to produce biotechnologically useful compounds. They are promising biocatalysts for new and sustainable industrial processes because of their resistance to temperature, pH, salt, and contaminants, representing an opportunity for several biotechnological applications. Encouraged by the extensive and richness of the marine environment, marine organisms' role in developing new therapeutic benefits is heading as an arable field. There is currently much interest in biologically active compounds derived from natural resources, especially compounds that can efficiently act on molecular targets, which are involved in various diseases. Studies are focused on bacteria and fungi, isolated from sediments, seawater, fish, algae, and most marine invertebrates such as sponges, mollusks, tunicates, coelenterates, and crustaceans. In addition to marine macro-organisms, such as sponges, algae, or corals, marine bacteria and fungi have been shown to produce novel secondary metabolites (SMs) with specific and intricate chemical structures that may hold the key to the production of novel drugs or leads. The marine environment is known as a rich source of chemical structures with numerous beneficial health effects. Presently, several lines of studies have provided insight into biological activities and neuroprotective effects of marine algae, including antioxidant, anti-neuroinflammatory, cholinesterase inhibitory activity, and neuronal death inhibition.

Conclusion: The application of marine-derived bioactive compounds has gained importance because of their therapeutic uses in several diseases. Marine natural products (MNPs) display various pharmaceutically significant bioactivities, including antibiotic, antiviral, neurodegenerative, anticancer, or anti-inflammatory properties. The present review focuses on the importance of critical marine bioactive compounds and their role in different diseases and highlights their possible contribution to humanity.

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