Programa de Maestría en Ciencias de la Nutrición Humana, Facultad de Ciencias Naturales, Universidad Autónoma de Querétaro, Av. de las Ciencias S/N, Juriquilla C.P. 76230, Querétaro, Mexico.
Laboratorio de Química Medicinal, Facultad de Química, Universidad Autónoma de Querétaro, Cerro de las Campanas S/N, Querétaro C.P. 76010, Mexico.
Nutrients. 2020 Oct 23;12(11):3250. doi: 10.3390/nu12113250.
Childhood and adolescence are crucial stages of life for bone health. Therefore, an adequate calcium intake and a healthy life style constitute the main strategies to prevent the risk of osteoporosis-related fractures during adulthood. It has been demonstrated that inclusion of indigestible carbohydrates in foods can help improve calcium absorption in growing stages. The objective of this study was to evaluate the effect of supplementation of soluble and insoluble fibers extracted from cladodes on calcium bioavailability. Male Wistar rats 4-week old were fed diets added with soluble and insoluble fibers extracted from cladodes at early and late maturity stages, as the only source of calcium. The mineral content, bone mineral density (BMD), physical, microstructural, and biomechanical properties of rat femurs were determined. The bones of rats fed with diets containing a soluble fiber extracted from at early and late maturity stages exhibited better bone properties (resistance to fracture, microarchitecture, and calcium content) than control rats and rats fed with an insoluble fiber from cladodes at both maturity stages. As expected, based on these results, the BMD values were higher in adolescent and pubertal rats fed with a diet containing the soluble fiber. These results demonstrate that the soluble fiber from cladodes is indeed a valuable source of bioavailable calcium, which contributes to improve physical, densitometric, biomechanical, and microstructural properties of bone in growing rats.
儿童期和青春期是骨骼健康的关键阶段。因此,摄入足够的钙和健康的生活方式是预防成年后骨质疏松性骨折风险的主要策略。已经证明,在食物中添加不可消化的碳水化合物可以帮助促进生长阶段的钙吸收。本研究的目的是评估从 龙舌兰中提取的可溶性和不溶性纤维对钙生物利用度的影响。4 周龄雄性 Wistar 大鼠用仅含龙舌兰中提取的可溶性和不溶性纤维作为钙源的饲料喂养。测定了大鼠股骨的矿物质含量、骨矿物质密度(BMD)、物理、微观结构和生物力学性能。与对照组大鼠和在两个成熟阶段均用龙舌兰不溶性纤维喂养的大鼠相比,用早期和晚期成熟阶段的 龙舌兰可溶性纤维喂养的大鼠的骨骼具有更好的骨骼特性(抗骨折能力、微观结构和钙含量)。根据这些结果,预计青春期和青春期大鼠食用含有 龙舌兰可溶性纤维的饮食时 BMD 值会更高。这些结果表明, 龙舌兰的可溶性纤维确实是一种有价值的可利用钙源,可改善生长中大鼠的物理、密度计、生物力学和微观结构特性。