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生长猪全身振动和饮食钙磷对骨骼的反应。

Skeletal response to whole body vibration and dietary calcium and phosphorus in growing pigs.

机构信息

Texas A&M University, College Station, TX.

Kansas State University, Manhattan, KS.

出版信息

J Anim Sci. 2019 Jul 30;97(8):3369-3378. doi: 10.1093/jas/skz189.

Abstract

The quality and strength of the skeleton is regulated by mechanical loading and adequate mineral intake of calcium (Ca) and phosphorus (P). Whole body vibration (WBV) has been shown to elicit adaptive responses in the skeleton, such as increased bone mass and strength. This experiment was designed to determine the effects of WBV and dietary Ca and P on bone microarchitecture and turnover. A total of 26 growing pigs were utilized in a 60-d experiment. Pigs were randomly assigned within group to a 2 × 2 factorial design with dietary Ca and P concentration (low and adequate) as well as WBV. The adequate diet was formulated to meet all nutritional needs according to the NRC recommendations for growing pigs. Low Ca, P diets had 0.16% lower Ca and 0.13% lower P than the adequate diet. Pigs receiving WBV were vibrated 30 min/d, 3 d/wk at a magnitude of 1 to 2 mm and a frequency of 50 Hz. On days 0, 30, and 60, digital radiographs were taken to determine bone mineral content by radiographic bone aluminum equivalency (RBAE) and serum was collected to measure biochemical markers of bone formation (osteocalcin, OC) and bone resorption (carboxy-terminal collagen crosslinks, CTX-I). At day 60, pigs were euthanized and the left third metacarpal bone was excised for detailed analysis by microcomputed tomography (microCT) to measure trabecular microarchitecture and cortical bone geometry. Maximum RBAE values for the medial or lateral cortices were not affected (P > 0.05) by WBV. Pigs fed adequate Ca and P tended (P = 0.10) to have increased RBAE max values for the medial and lateral cortices. WBV pigs had significantly decreased serum CTX-1 concentrations (P = 0.044), whereas animals fed a low Ca and P diet had increased (P < 0.05) OC concentrations. In bone, WBV pigs showed a significantly lower trabecular number (P = 0.002) and increased trabecular separation (P = 0.003), whereas cortical bone parameters were not significantly altered by WBV or diet (P > 0.05). In summary, this study confirmed the normal physiological responses of the skeleton to a low Ca, P diet. Interestingly, although the WBV protocol utilized in this study did not elicit any significant osteogenic response, decreases in CTX-1 in response to WBV may have been an early local adaptive bone response. We interpret these data to suggest that the frequency and amplitude of WBV was likely sufficient to elicit a bone remodeling response, but the duration of the study may not have captured the full extent of an entire bone remodeling cycle.

摘要

骨骼的质量和强度受机械负荷和钙(Ca)和磷(P)的充足矿物质摄入调节。全身振动(WBV)已被证明可引起骨骼的适应性反应,例如骨量和强度增加。本实验旨在确定 WBV 和饮食 Ca 和 P 对骨微观结构和周转率的影响。总共使用了 26 头生长猪进行了 60 天的实验。猪在组内随机分配到饮食 Ca 和 P 浓度(低和充足)以及 WBV 的 2×2 析因设计中。充足的饮食是根据 NRC 对生长猪的建议配制的,以满足所有营养需求。低钙、低磷饮食的钙和磷含量分别比充足饮食低 0.16%和 0.13%。接受 WBV 的猪每天振动 30 分钟,每周 3 天,幅度为 1 至 2 毫米,频率为 50 Hz。在第 0、30 和 60 天,拍摄数字射线照片以通过放射状骨铝当量(RBAE)确定骨矿物质含量,并收集血清以测量骨形成的生化标志物(骨钙素,OC)和骨吸收(羧基末端胶原交联,CTX-I)。在第 60 天,将猪安乐死,并切除左侧第三掌骨进行详细的微计算机断层扫描(microCT)分析,以测量小梁微观结构和皮质骨几何形状。内侧或外侧皮质的最大 RBAE 值不受 WBV(P>0.05)的影响。饲喂充足 Ca 和 P 的猪倾向于(P=0.10)增加内侧和外侧皮质的最大 RBAE 值。WBV 猪的血清 CTX-1 浓度显着降低(P=0.044),而低钙和低磷饮食的动物 OC 浓度增加(P<0.05)。在骨骼中,WBV 猪的小梁数量显着减少(P=0.002),小梁分离增加(P=0.003),而皮质骨参数不受 WBV 或饮食的显着影响(P>0.05)。总之,本研究证实了骨骼对低钙、低磷饮食的正常生理反应。有趣的是,尽管本研究中使用的 WBV 方案没有引起任何明显的成骨反应,但 WBV 引起的 CTX-1 减少可能是早期局部适应性骨反应。我们解释这些数据表明,WBV 的频率和幅度可能足以引起骨重塑反应,但研究的持续时间可能没有捕捉到整个骨重塑周期的全部范围。

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