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膳食精氨酸硅酸盐肌醇复合物可改善鹌鹑的骨矿化。

Dietary arginine silicate inositol complex improves bone mineralization in quail.

作者信息

Sahin K, Onderci M, Sahin N, Balci T A, Gursu M F, Juturu V, Kucuk O

机构信息

Department of Animal Nutrition, Faculty of Veterinary Science, Firat University, 23119 Elazig, Turkey.

出版信息

Poult Sci. 2006 Mar;85(3):486-92. doi: 10.1093/ps/85.3.486.

Abstract

Skeletal abnormalities, low bone mass, bone deformities, and bone fractures increase the risk of osteoporosis and osteoarthritis, which are of concern from both a public standpoint and a cost-of-care burden standpoint. Arginine silicate inositol complex (ASI; Arg = 49.47%, silicone = 8.2%, inositol = 25%) is a novel, bioavailable source of Si and Arg and one that offers potential benefits for vascular and bone health. Skeletal abnormalities and architectural deterioration of bone tissue are common under hot climate conditions in the poultry industry. In this study, we evaluated the effects of ASI supplementation on performance and bone mineral density (BMD) in Japanese quail (Coturnix coturnix japonica) exposed to the high ambient temperature of 34 degrees C. The birds (n = 180; 10 d old) were randomly assigned to 6 treatment groups consisting of 10 replicates of 3 birds. Birds were kept in wire cages in a temperature-controlled room at either 22 degrees C (thermoneutral; TN) or 34 degrees C (heat stress; HS) for 8 h/d (0900 to 1700 h until the end of study) and were fed a basal (control) diet or the basal diet supplemented with either 500 or 1,000 mg of ASI/kg of diet. Heat exposure decreased performance and bone mineralization when the basal diet was fed (P = 0.001). The ASI supplement had no effect on feed intake, BW, feed efficiency, and carcass traits (P > 0.05) in quails reared under TN or HS conditions. The BMD was significantly improved by ASI supplementation in both TN and HS groups [0.72 (TN) vs. 0.60 (HS); P < or = 0.05]. Serum osteocalcin, dehydroepiandrosterone concentrations, and alkaline phosphatase activity increased, whereas tumor necrosis factor-alpha and Creactive protein concentrations decreased, as dietary ASI supplementation increased in quail reared under HS. This improvement was linear with increased doses of supplement (P = 0.001). In the ASI group, the amount of Ca, P, Mg, and Mn in the excreta decreased (P < or = 0.05), and the concentrations of these minerals in tibia ash increased in quail reared under HS conditions (P < or = 0.05). In conclusion, ASI supplementation to the basal diet significantly improved bone mineralization in quail and did not impact feed consumption, BW gain, or feed efficiency.

摘要

骨骼异常、低骨量、骨畸形和骨折会增加骨质疏松症和骨关节炎的风险,这从公共角度和护理成本负担角度来看都令人担忧。精氨酸硅酸肌醇复合物(ASI;精氨酸 = 49.47%,硅 = 8.2%,肌醇 = 25%)是一种新型的、生物可利用的硅和精氨酸来源,对血管和骨骼健康具有潜在益处。在禽类养殖行业的炎热气候条件下,骨骼异常和骨组织结构恶化很常见。在本研究中,我们评估了补充ASI对暴露于34摄氏度高环境温度下的日本鹌鹑(Coturnix coturnix japonica)的生产性能和骨矿物质密度(BMD)的影响。这些鸟(n = 180;10日龄)被随机分配到6个处理组,每组3只鸟,共10个重复。将鸟饲养在温度控制室内的铁丝笼中,温度保持在22摄氏度(热中性;TN)或34摄氏度(热应激;HS),每天8小时(0900至1700小时,直至研究结束),并喂食基础(对照)日粮或添加了500或1000毫克ASI/千克日粮的基础日粮。当喂食基础日粮时,热暴露会降低生产性能和骨矿化(P = 0.001)。在TN或HS条件下饲养的鹌鹑中,补充ASI对采食量、体重、饲料效率和胴体性状没有影响(P > 0.05)。在TN组和HS组中,补充ASI均显著提高了BMD [0.72(TN)对0.60(HS);P ≤ 0.05]。在HS条件下饲养的鹌鹑中,随着日粮中ASI补充量的增加,血清骨钙素、脱氢表雄酮浓度和碱性磷酸酶活性增加,而肿瘤坏死因子-α和C反应蛋白浓度降低。这种改善与补充剂剂量的增加呈线性关系(P = 0.001)。在ASI组中,HS条件下饲养的鹌鹑排泄物中的钙、磷、镁和锰含量降低(P ≤ 0.05),胫骨骨灰中这些矿物质的浓度增加(P ≤ 0.05)。总之,在基础日粮中补充ASI可显著改善鹌鹑的骨矿化,且不影响采食量、体重增加或饲料效率。

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