School of Animal, Rural and Environmental Sciences, Nottingham Trent University, Brackenhurst Campus, Nottingham, NG25 0QF, UK.
Interdisciplinary Biomedical Research Centre, School of Science and Technology, Nottingham Trent University, Clifton Lane, Nottingham, NG11 8NS, UK.
Sci Rep. 2018 Nov 19;8(1):17022. doi: 10.1038/s41598-018-35292-9.
In this study, we assessed uptake and potential efficacy of a novel, pH neutral form of silicon supplement in vitro and using broiler chickens as a model species. In vitro bioavailability of this supplement was significantly higher than other commercial supplements tested, all of which claim available silica content. To confirm bioavailability of the new supplement in vivo, a broiler chick feeding trial reported blood uptake that was significantly higher than a Bamboo-derived silicon supplement. We assessed dose response of the novel supplement in a further study with increased dose related levels of silicon being detected in the blood and tibia. We found tibia and foot ash residue as a percentage of dry mass was higher with inclusion of the novel supplement in the diet, particularly in young birds and that this was followed by significant increase in tibia breaking strength. This novel supplement may therefore have applications in the improvement of bone integrity, with implications for the reduction of lameness in broilers. These results indicate the novel silica supplement is readily absorbed in chicks, and transported in the blood supply to sites such as the skeleton due to it being present in a non-condensed, monomeric form. There is potential for wider application of this silica supplement in other species where bone breakages are a problem, including high performance sport.
在这项研究中,我们评估了一种新型、中性 pH 值的硅补充剂在体外和肉鸡模型中的吸收情况和潜在功效。与所有声称含有可用二氧化硅含量的商业补充剂相比,这种补充剂的体外生物利用度明显更高。为了确认新型补充剂在体内的生物利用度,一项肉鸡喂养试验报告称,其血液吸收率明显高于源自竹子的硅补充剂。我们在进一步的研究中评估了新型补充剂的剂量反应,结果显示,随着血液和胫骨中硅含量的增加,新型补充剂的剂量相关水平也随之增加。我们发现,新型补充剂的加入使胫骨和足部灰分残留量占干物质的百分比增加,尤其是在幼鸟中,并且胫骨断裂强度显著增加。因此,这种新型补充剂可能在改善骨骼完整性方面具有应用前景,这可能会减少肉鸡的跛行。这些结果表明,新型二氧化硅补充剂很容易被雏鸡吸收,并通过血液供应运输到骨骼等部位,因为它以非缩合、单体形式存在。这种硅补充剂在其他骨骼易断裂的物种中具有更广泛的应用潜力,包括高性能运动。