骨膳食补充剂对低钙饲喂大鼠骨性能的调节作用
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(1.江南大学食品学院 江苏无锡 214122;2.达能开放科研中心 上海 200135;3.江南大学 食品科学与资源挖掘全国重点实验室 江苏无锡 214122)

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Modulation of Bone Performance by Bone Dietary Supplements in Low-calcium-fed Rats
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(1.School of Food Science and Technology, Jiangnan University, Wuxi 214122, Jiangsu;2.Danone Open Science Research Center for Life-Transforming Nutrition, Shanghai 200135;3.State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi 214122, Jiangsu)

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    摘要:

    目的:探究一款由乳清蛋白、亮氨酸、柠檬酸钙和维生素D3组成的骨膳食补充剂对低钙饲喂大鼠骨性能的调节作用。40只SD雌性大鼠被随机分为正常组、低钙模型组、碳酸钙组、柠檬酸钙+VD3组和补充剂组。方法:连续灌胃90 d后,测定大鼠生长性能、股骨生物力学参数和股骨微观结构、钙代谢水平、骨形成和骨吸收标志物以及肌细胞因子虹膜素(Irisin)水平。RT-PCR测定ALP、OC及调控其表达水平的关键基因的mRNA表达水平。结果:与正常组相比,低钙组大鼠体质量和脏器指数无显著性变化(P > 0.05),骨密度和最大载荷极显著降低(P<0.01);同时伴随血清钙浓度显著下降(P<0.05),骨吸收作用增强和骨矿流失严重。与低钙组相比,灌胃不同钙制剂能够显著增加大鼠股骨密度、最大载荷(P<0.05,P<0.01)和血清中骨形成标志物(碱性磷酸酶和骨钙素)的含量;骨膳食补充剂不仅对股骨长度、股骨干重、最大挠度具有显著提高作用(P<0.05,P<0.01),而且在增强骨密度、恢复骨微观结构和骨形成产物含量的效果要优于柠檬酸钙+VD3和碳酸钙(P<0.01)。此外,骨膳食补充剂能有效提高缺钙大鼠腓肠肌质量、腿肌率及前肢拉力(P<0.05,P<0.01),增强肌肉对骨骼的生物力学作用。通过提高肌肉分泌Irisin激活Wnt信号通路,上调Runx2、ALP和OC表达水平,刺激成骨细胞增殖、分化,增强骨形成和矿化。结论:骨膳食补充剂可激活Wnt信号通路增加骨形成,抑制骨矿流失,并恢复骨微观结构,提高骨密度和骨强度,改善骨质疏松,这可能与其提高肌肉质量和Irisin分泌,增强肌肉对骨骼的生物力学作用有关。

    Abstract:

    Objective: To investigate the effects of the dietary bone supplement consisting of whey protein, leucine, calcium citrate and vitamin D3 on bone performance in low-calcium fed rats. Methods: 40 female SD rats were randomly divided into normal group, low-calcium model group, calcium carbonate group, calcium citrate + VD3 and supplement groups. After administration for 90 days, growth performance, femur biomechanical parameters and femur microstructure, calcium metabolism levels, bone formation and bone resorption markers, myocytic factor Irisin levels were detected. The relative mRNA expression of ALP, OC and key genes were detected by quantitative real-time polymenose chain reaction. Results: Compared with the normal group, the rats in low-calcium model group showed no significant changes in body weight and organ index (P>0.05),but a highly significant decrease in bone mineral density and maximum load (P<0.01). Compared with the low-calcium model group, the values of femoral bone density, maximum load (P<0.05, P<0.01) and the content of the bone formation markers (alkaline phosphatase and osteocalcin) in serum were significantly increased in the other three groups, the bone dietary supplements not only significantly increased femoral length, femoral dry weight, maximum deflection and femoral dry weight (P<0.05, P<0.01), but also was superior to calcium citrate+VD3 and calcium carbonate in enhancing bone density, restoring bone microstructure and bone formation markers content (P<0.01). In addition, the bone dietary supplements effectively improved gastrocnemius muscle mass, hamstring rate or forelimb tension in low-calcium fed rats (P<0.05, P<0.01) and enhanced muscle biomechanical effects on bone, which also activated Wnt signaling pathway by increasing muscle secretion of Irisin, up-regulated mRNA expression of Runx2, ALP and OC, stimulated osteoblast proliferation, differentiation and enhanced bone formation and mineralization. Conclusion: Bone dietary supplements increased bone formation by activating the Wnt signaling pathway, inhibited bone mineral loss, and restored bone microstructure, increased bone mineral density and bone strength, and improved osteoporosis. This may be related to it improved muscle mass and Irisin secretion, enhanced the biomechanical effect of muscle on bone.

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邵茹,赵显峰,毛江毅,唐雪,王旖,周鹏.骨膳食补充剂对低钙饲喂大鼠骨性能的调节作用[J].中国食品学报,2024,24(7):182-192

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  • 收稿日期:2023-07-12
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  • 在线发布日期: 2024-08-22
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