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PSIII-37 Effects of supplemented trace mineral amino acid chelates in working Labrador Retrievers

机译:PSIII-37补充痕量矿物氨基酸螯合物在工作拉布拉多术中的效果

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摘要

Trace mineral amino acid chelates (TMAAC) maintain integrity prior to absorption without binding to or interacting with other minerals or chelating compounds. TMAACs are essential as prosthetic groups for activating important enzymes like superoxide dismutase (SOD), which is needed to rid the body of free radicals and reactive oxygen species. A 19-day trial utilizing 20 Labrador Retrievers (10m/10f) was set up to determine the effects of TMAAC tabs on performance, recovery, and exercise induced inflammatory response. Dogs were sorted into two treatment groups: the TMAAC group received three oral tablets per day and the CON group received none. Body weights were recorded weekly and feed consumption was recorded daily. All dogs participated in an 8.05 km endurance run on Day 18, inducing exercise stress. Blood draws for serum biomarker analyses and gait analyses were performed at baseline (prior to treatment), 1-hour post-run, and 24-hours post-run. A pressure sensing computerized mat (CIR Systems, Inc) was used to evaluate lameness based on temporal spatial gait parameters. Dogs were walked on the mat at each time point to obtain three valid walks for analysis. TMAAC male dogs had similar amounts of SOD at baseline (P = 0.63) but increased 0.38 ng/ml SOD from baseline to Post-1h, while CON males had a 0.46ng/ml significant decrease in SOD (P = 0.002). Positive antioxidant trends favored TMAAC dogs across biomarkers assayed (P = 0.06). Gait lameness scores (GLS) indicated TMAAC males had unbalanced gait at baseline but recovered their normal gait after being on the treatment (P = 0.02). Stride length evaluation found that after treatment, this characteristic remained constant for TMAAC dogs but became uneven Post-24h for CON dogs (P = 0.04). Data collected from this trial indicate some significant exercise recovery improvement in working Labrador Retrievers supplemented with trace mineral amino acid chelates.
机译:痕量矿物氨基酸螯合物(TMAAC)在吸收之前保持完整性,而不与其他矿物或螯合化合物相互结合或相互作用。 TMAAC是一种用于激活超氧化物歧化酶(SOD)等重要酶的假体基团是必不可少的,这是为了摆脱自由基和反应性氧物质所需的重要酶。建立了19天试验,采用20个拉布拉多检索(10M / 10F),以确定TMAAC标签对性能,恢复和运动诱导炎症反应的影响。狗分为两种治疗组:TMAAC组每天接受了三种口服片,并无收到了None。每周记录体重,每天记录饲料消耗。所有狗都参加了8.05公里的8.05公里的速度,在第18天运行,诱导运动压力。血清生物标志物分析和步态分析在基线(治疗前),每次1小时后进行血液绘制和步态分析,并在运行后24小时。压力传感电脑垫(CIR Systems,Inc)用于评估基于时间空间步态参数的跛足。每次点都在垫子上散步,以获得三个有效的散步进行分析。 TMAAC雄性犬在基线上具有相似的SOD量(P = 0.63),但从基线增加0.38ng / ml SOD至1小时,而CON均为0.46ng / ml的SOD的显着降低(p = 0.002)。阳性抗氧化趋势在测定的生物标志物中青睐TMAAC犬(P = 0.06)。步态跛足评分(GLS)表明TMAAC雄性在基线的步态不平衡,但在治疗后恢复正常的步态(P = 0.02)。步幅长度评价发现,在治疗后,这种特征对于TMAAC犬保持恒定,但持续的狗狗持续24小时(P = 0.04)。从该试验中收集的数据表明了补充痕量矿物氨基酸螯合物的工作拉布拉多术中的一些显着的运动恢复改进。

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