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The biochemical effects of physiologic amounts of dietary boron in animal nutrition models.

机译:饮食中硼的生理量对动物营养模型的生化作用。

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摘要

This review summarizes evidence that supports working hypotheses for the roles of boron in animal model systems. It is well established that vascular plants, diatoms, and some species of marine algal flagellates have acquired an absolute requirement for boron, although the primary role of boron in plants remains unknown. Recent research findings suggest that physiologic amounts of supplemental dietary boron (PSB) affect a wide range of metabolic parameters in the chick and rat model systems. Much of the current interest in boron animal nutrition began with the initial finding that PSB stimulates growth in cholecalciferol (vitamin D3)-deficient chicks, but does not markedly affect growth in chicks receiving adequate vitamin D3 nutriture. The finding suggests that boron affects some aspect of vitamin D3 metabolism or is synergistic with vitamin D3 in influencing growth. Vitamin D3 regulates energy substrate utilization, and current research findings indicate that dietary boron modifies that regulatory function. The concentration of circulating glucose, the most thoroughly investigated metabolite to date, responds to PSB, especially during concomitant vitamin D3 deficiency. In chicks, PSB substantially alleviated or corrected vitamin D3 deficiency-induced elevations in plasma glucose concentrations. The influence of vitamin D3 on cartilage and bone mineralization is mediated in part through its role as a regulator of energy substrate utilization; calcification is an energy-intensive process. There is considerable evidence that dietary boron alleviates perturbations in mineral metabolism that are characteristic of vitamin D3 deficiency. In rachitic chicks, PSB alleviated distortion of the marrow sprouts of the proximal tibial epiphysial plate, a distortion characteristic of vitamin D3 deficiency.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:这篇综述总结了支持硼在动物模型系统中作用的有效假设的证据。众所周知,维管植物,硅藻和一些海洋藻类鞭毛虫已经获得了对硼的绝对需求,尽管硼在植物中的主要作用仍然未知。最近的研究结果表明,补充膳食硼(PSB)的生理量会影响雏鸡和大鼠模型系统中的各种代谢参数。当前对硼​​动物营养的大部分兴趣始于最初的发现,即PSB刺激胆钙化固醇(维生素D3)缺乏型雏鸡的生长,但并未显着影响接受足够维生素D3营养的雏鸡的生长。这一发现表明硼会影响维生素D3代谢的某些方面,或者在影响生长方面与维生素D3协同作用。维生素D3调节能量底物的利用,目前的研究结果表明,饮食硼会调节该调节功能。循环葡萄糖的浓度是迄今研究最彻底的代谢产物,对PSB有反应,尤其是在维生素D3缺乏的同时。在雏鸡中,PSB基本上缓解或纠正了维生素D3缺乏症引起的血浆葡萄糖浓度升高。维生素D3对软骨和骨骼矿化的影响部分是通过其作为能量底物利用的调节剂来进行的。钙化是一个耗能的过程。有大量证据表明,膳食硼减轻了维生素D3缺乏症特征性的矿物质代谢紊乱。 PSB减轻了狂犬病小鸡胫骨近端骨epi板骨髓芽的变形,这是维生素D3缺乏症的一种变形特征(摘要截断为250个字)

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