Hissen Karina L, He Wenliang, Wu Guoyao, Criscitiello Michael F
Comparative Immunogenetics Laboratory, Department of Veterinary Pathobiology, Texas A&M University, College Station, TX, United States.
Amino Acids Laboratory, Department of Animal Science, Texas A&M University, College Station, TX, United States.
Front Immunol. 2025 Apr 10;16:1575644. doi: 10.3389/fimmu.2025.1575644. eCollection 2025.
L-Glutamate is a conditionally essential amino acid, meaning it can become essential under specific conditions, like stress or disease. It is an abundant intracellular amino acid crucial in immune responses. Supplementation of feed with key amino acids, such as glutamate, can optimize growth and have other health benefits for production animals. Most research on dietary amino acid supplementation has focused on mammalian models, thus this research turned to hybrid striped bass, a teleost fish of growing importance to the aquaculture industry. The study investigated the effects of dietary supplementation with 0% or 5% glutamate in hybrid striped bass on intestinal mucosal immunity.
The basal purified diet contained crystalline amino acids, including 3% L-glutamate. After an 8-week period of dietary supplementation with 5% glutamate followed by lipopolysaccharide stimulation, the intestinal mucosa was analyzed at the cellular and molecular levels to compare with the head kidney to assess potential changes in immune reactivity.
One week after lipopolysaccharide stimulation, glutamate supplementation enhanced ( < 0.05) the whole-body growth of fish without lipopolysaccharide challenge, total respiratory burst (the sum of O and HO production) in head kidney leukocytes, the net production of HO in intestinal mucosal leukocytes, and upregulation of expression of mRNAs for IL-1β, TNF-α, and IgT in the gut mucosa.
Dietary supplementation with 5% L-glutamate may modulate intestinal mucosal immunity and improve growth in HSB to enhance disease resistance. Further research is needed to clarify the mechanism and cost-effective application.
L-谷氨酸是一种条件必需氨基酸,这意味着它在特定条件下(如应激或疾病)会变得必需。它是细胞内丰富的氨基酸,在免疫反应中至关重要。在饲料中添加关键氨基酸(如谷氨酸)可以优化生长,并对养殖动物有其他健康益处。大多数关于膳食氨基酸补充的研究都集中在哺乳动物模型上,因此本研究转向杂交条纹鲈,这是一种对水产养殖业越来越重要的硬骨鱼。该研究调查了在杂交条纹鲈饲料中添加0%或5%谷氨酸对肠道黏膜免疫的影响。
基础纯化日粮含有结晶氨基酸,包括3%的L-谷氨酸。在添加5%谷氨酸的日粮喂养8周后,再进行脂多糖刺激,然后在细胞和分子水平上分析肠道黏膜,与头肾进行比较,以评估免疫反应性的潜在变化。
脂多糖刺激一周后,添加谷氨酸提高了(<0.05)未受到脂多糖攻击的鱼的全身生长、头肾白细胞的总呼吸爆发(O和HO产生的总和)、肠道黏膜白细胞中HO的净产生,以及肠道黏膜中IL-1β、TNF-α和IgT的mRNA表达上调。
在杂交条纹鲈日粮中添加5%的L-谷氨酸可能会调节肠道黏膜免疫并改善其生长,以增强抗病能力。需要进一步研究来阐明其机制和成本效益应用。