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首页> 外文期刊>Frontiers in Marine Science >Effects of Diet on the Biochemical Properties of Limulus Amebocyte Lysate From Horseshoe Crabs in an Aquaculture Setting
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Effects of Diet on the Biochemical Properties of Limulus Amebocyte Lysate From Horseshoe Crabs in an Aquaculture Setting

机译:饮食对水产养殖环境中马蹄蟹素生物化学特性的影响

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The Limulus amebocyte lysate (LAL) isolated from cells in the horseshoe crab (HSC) hemolymph is a critical resource for global biomedical and pharmaceutical quality control and sterility testing. Given the necessity of and limitations associated with wild capture, a conservational approach to LAL harvesting would benefit the medical community that relies on the raw material while helping ensure species viability. We posited that aquaculture and year-round collection represented a sustainable alternative for the production of LAL from a finite HSC cohort, thereby averting the impact of current practices on wild populations. Given the specter of captivity diseases linked to diet, such as panhypoproteinemia, this work, at the outset, focused on optimizing a feed formulation to ensure animal vitality. In turn, each preparation required evaluation with respect to effects on LAL as well as vital HSC health markers so as to meet or exceed industry requirements and establish a new supply chain paradigm. In this controlled husbandry study, we conducted three 8-week feeding trials and demonstrated a ~7-fold LAL reactivity range among the HSC feed groups. Relative protein abundance patterns of HSC amebocyte clotting factors (i.e. Factor C, Factor B, and proclotting enzyme) were influenced by diet in particular, and the up-regulation of specific LAL factors correlated with enhanced activity. These results also cite the discovery that coagulation Factor C, the LPS-sensitive serine protease proenzyme, may be a phosphoprotein.
机译:从马蹄铁蟹(HSC)血淋巴中分离的细胞氧琥珀细胞裂解物(LAL)是全球生物医学和药物质量控制和无菌测试的关键资源。鉴于与野生捕获相关的必要性和限制,LAL收获的保护方法会使医学界有益于原料的同时有助于确保物种可行性。我们假设水产养殖和全年收集代表了从有限HSC队列生产LAL的可持续替代方案,从而避免了当前实践对野生种群的影响。鉴于与饮食相关的囚禁疾病的斑点,例如胰蛋白酶蛋白血症,这项工作开始,专注于优化饲料配方以确保动物活力。反过来,每种准备需要对LAL的影响以及重要的HSC健康标记进行评估,以满足或超过行业要求并建立新的供应链范例。在这项受控饲养研究中,我们进行了三次8周的饲养试验,并在HSC进料组中显示了〜7倍的LAL反应性范围。特别是HSC氨基细胞凝血凝血因子(即因子C,因子B和胰腺)的相对蛋白质丰富模式,特别是饮食的影响,以及特定LAL因子的上调与增强活性相关。这些结果还引用了发现,凝血因子C,LPS敏感性丝氨酸蛋白酶酶,可以是磷蛋白。

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