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用氨基酸络合物部分替代钙、锌、铁和铜的无机盐对笼养雄性雉鸡骨骼发育的影响

The Influence of the Partial Replacing of Inorganic Salts of Calcium, Zinc, Iron, and Copper with Amino Acid Complexes on Bone Development in Male Pheasants from Aviary Breeding.

作者信息

Flis Marian, Gugała Dariusz, Muszyński Siemowit, Dobrowolski Piotr, Kwiecień Małgorzata, Grela Eugeniusz R, Tomaszewska Ewa

机构信息

Department of Zoology and Animal Ecology, Faculty of Biology, Animal Sciences and Bioeconomy, University of Life Sciences in Lublin, Akademicka St. 13, 20-950 Lublin, Poland.

Department of Biophysics, Faculty of Production Engineering, University of Life Sciences in Lublin, Akademicka St. 13, 20-950 Lublin, Poland.

出版信息

Animals (Basel). 2019 May 13;9(5):237. doi: 10.3390/ani9050237.

Abstract

This study analyzed the effects of partial replacing of Ca, Fe, Zn, and Cu salts with glycine chelates on the measures of bones health in 16-week-old captive-reared male pheasants, allocated to one of the three experimental groups supplemented with Ca, Fe, Zn, and Cu in forms of inorganic salts (the control group) or groups receiving from the ninth week 25% and 50% of supplemented elements as glycine chelates. At the end of rearing birds receiving chelates were heavier ( < 0.001) and their tibia showed an increase of numerous mechanical parameters: yield and ultimate force ( = 0.028, < 0.001, respectively), stiffness ( = 0.007), Young modulus ( < 0.001), compared to the control animals. The bones of birds receiving chelates in 50% were also heavier ( < 0.001) and longer ( = 0.014), with thinner cortical bone in midshaft ( = 0.027) and thicker proximal trabeculae ( < 0.001) compared to the control. While both doses of chelates increased mineral density in midshaft ( = 0.040), bone content of Cu and Zn decreased ( = 0.025, < 0.001, respectively). The content of immature collagen in cancellous bone and articular cartilage increased in groups receiving chelates ( < 0.001, = 0.001, respectively). In conclusion, glycine chelates probably enhanced development of the skeletal system in male pheasants as bones were denser and more resistant to mechanical damage.

摘要

本研究分析了用甘氨酸螯合物部分替代钙、铁、锌和铜盐对16周龄圈养雄性雉鸡骨骼健康指标的影响。将这些雉鸡分配到三个实验组之一,其中一组补充无机盐形式的钙、铁、锌和铜(对照组),另外两组从第九周开始分别接受25%和50%以甘氨酸螯合物形式补充的元素。饲养结束时,接受螯合物的雉鸡体重更重(P<0.001),其胫骨的多项力学参数有所增加:屈服力和极限力(分别为P = 0.028,P<0.001)、刚度(P = 0.007)、杨氏模量(P<0.001),与对照动物相比。接受50%螯合物的雉鸡骨骼也更重(P<0.001)且更长(P = 0.014),与对照相比,骨干中部皮质骨更薄(P = 0.027),近端小梁更厚(P<0.001)。虽然两种剂量的螯合物都增加了骨干中部的矿物质密度(P = 0.040),但骨骼中铜和锌的含量下降(分别为P = 0.025,P<0.001)。接受螯合物的组中,松质骨和关节软骨中未成熟胶原蛋白的含量增加(分别为P<0.001,P = 0.001)。总之,甘氨酸螯合物可能促进了雄性雉鸡骨骼系统的发育,因为骨骼更致密且更能抵抗机械损伤。

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