植物源生物活性化合物塑造鱼类黏膜免疫。

Phytogenic Bioactive Compounds Shape Fish Mucosal Immunity.

机构信息

Aquaculture Program, Institut de Recerca i Tecnologia Agroalimentàries (IRTA) Centre de Sant Carles de la Ràpita (IRTA-SCR), Sant Carles de la Ràpita, Spain.

PhD Program in Aquaculture, Universitat Autònoma de Barcelona, Bellaterra, Spain.

出版信息

Front Immunol. 2021 Jun 18;12:695973. doi: 10.3389/fimmu.2021.695973. eCollection 2021.

Abstract

Aquaculture growth will unavoidably involve the implementation of innovative and sustainable production strategies, being functional feeds among the most promising ones. A wide spectrum of phytogenics, particularly those containing terpenes and organosulfur compounds, are increasingly studied in aquafeeds, due to their growth promoting, antimicrobial, immunostimulant, antioxidant, anti-inflammatory and sedative properties. This trend relies on the importance of the mucosal barrier in the fish defense. Establishing the phytogenics' mode of action in mucosal tissues is of importance for further use and safe administration. Although the impact of phytogenics upon fish mucosal immunity has been extensively approached, most of the studies fail in addressing the mechanisms underlying their pharmacological effects. Unstandardized testing as an extended practice also questions the reproducibility and safety of such studies, limiting the use of phytogenics at commercial scale. The information presented herein provides insight on the fish mucosal immune responses to phytogenics, suggesting their mode of action, and ultimately encouraging the practice of reliable and reproducible research for novel feed additives for aquafeeds. For proper screening, characterization and optimization of their mode of action, we encourage the evaluation of purified compounds using systems before moving forward to trials. The formulation of additives with combinations of compounds previously characterized is recommended to avoid bacterial resistance. To improve the delivery of phytogenics and overcome limitations associated to compounds volatility and susceptibility to degradation, the use of encapsulation is advisable. Besides, newer approaches and dedicated methodologies are needed to elucidate the phytogenics pharmacokinetics and mode of action in depth.

摘要

水产养殖的增长将不可避免地涉及到创新和可持续生产策略的实施,功能性饲料是最有前途的策略之一。由于其具有促进生长、抗菌、免疫刺激、抗氧化、抗炎和镇静作用,越来越多的植物提取物,特别是含有萜类化合物和有机硫化合物的植物提取物,被应用于水产饲料中。这种趋势依赖于粘膜屏障在鱼类防御中的重要性。研究植物提取物在粘膜组织中的作用机制对于进一步应用和安全管理至关重要。尽管植物提取物对鱼类粘膜免疫的影响已经得到了广泛的研究,但大多数研究都未能解决其药理作用的机制。非标准化的测试方法也使这些研究的重现性和安全性受到质疑,限制了植物提取物在商业规模上的应用。本文提供了关于鱼类粘膜免疫对植物提取物反应的信息,提出了其作用模式,最终鼓励对新型水产饲料添加剂进行可靠和可重复的研究实践。为了正确筛选、表征和优化其作用模式,我们鼓励在进行临床试验之前,使用 系统评估纯化化合物。建议将以前经过表征的化合物组合成添加剂,以避免细菌耐药性。为了提高植物提取物的传递效率并克服与化合物挥发性和易降解性相关的限制,使用包封技术是可取的。此外,还需要新的方法和专门的方法来深入阐明植物提取物的药代动力学和作用模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bf4/8252966/ab4ee2580fec/fimmu-12-695973-g001.jpg

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