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Effect of different doses of creatine on the bone in thirty days of supplementation in mice: FT-Raman study

机译:FT-拉曼研究:不同剂量肌酸在小鼠补充30天后对骨骼的影响

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In this study, Raman spectroscopy was employed in order to provide information about the effects of different doses of creatine on bone tissue composition of phosphate apatite (960 cm~(-1)), carbonate apatite (1170 cm~(-1)) representing the mineral content and collagen matrix (amide I, 1665 cm~(-1)). The animals (27 Balb-C male) were divided into three groups (n=9 per group): control (CON), supplemented with 0.5 g/kg (Cre-0.5) and with 2.0 g/kg (Cre-2.0) creatine. The experiment was carried out for thirty days. After this time, the right femur of each animal was harvested. The specimens were assessment by FT-Raman spectroscopy and in a total of 81 spectra were acquired in the medial diaphysis of the femur. The Raman data strongly suggest that only the creatine supplementation of 0.5 g/kg effective to the bone constitution. Furthermore, the present results demonstrate that creatine ingestion provokes decrease in the relative presence of carbonate in the chemical constitution of bones. The decrease in the carbonate content can be associated to a significantly bone resistance altered to several mammalians. The analysis evidenced that the mineral concentrations in the Raman spectroscopy could be a feasible method for non-invasive or minimally invasive assessment of bone tissue composition. Probably this high sensitivity can be employed to determine spectral profiles, such as wavelength of maximum absorption and maximum intensity of absorption of each wavelength, of several bone diseases.
机译:在这项研究中,拉曼光谱法用于提供有关不同剂量肌酸对代表磷灰石(960 cm〜(-1)),碳酸盐磷灰石(1170 cm〜(-1)的骨组织组成的影响的信息。矿物质含量和胶原基质(酰胺I,1665 cm〜(-1))。将动物(27头Balb-C雄性)分为三组(每组n = 9):对照组(CON),补充0.5 g / kg(Cre-0.5)和2.0 g / kg(Cre-2.0)肌酸。实验进行了三十天。此后,收获每只动物的右股骨。通过FT-拉曼光谱对标本进行评估,并且在股骨内侧骨干中获得了总共81个光谱。拉曼数据强烈表明,仅补充0.5 g / kg的肌酸对骨骼构成有效。此外,目前的结果表明,在骨骼的化学组成中,碳酸根的相对存在会引起肌酸的摄入减少。碳酸盐含量的减少可能与几只哺乳动物发生明显的骨抵抗有关。分析表明,拉曼光谱中的矿物质浓度可能是对骨组织组成进行无创或微创评估的可行方法。这种高灵敏度可能可以用来确定几种骨病的光谱图,例如最大吸收波长和每个波长的最大吸收强度。

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