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Effect of High Glucose and Low Intensity Pulsed Ultrasound on Osteoblasts

机译:高葡萄糖和低强度脉冲超声对成骨细胞的影响

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Diabetes mellitus is a general metabolic disease commonly leading patients to skeletal disorders such as osteoporosis and bone fracture. Previous studies had shown that appropriate stimulation with low intensity pulsed ultrasound (LIPUS) may accelerate the proliferation and differentiation of osteoblasts for promoting fracture healing. In vitro experiments were carried out on the mouse osteoblastic cells which were cultured in the medium with either a normal glucose concentration of 5mM or high glucose concentration of 33mM. A 1 MHz LIPUS of a 100 mW/cm~(2) SATA intensity arranged from 20percent duty cycle of a 1 kHz pulse repetition frequency was applied to daily stimulate osteoblasts for ten minutes. The responses of obsteoblasts with insonification were assessed by cell proliferation and gene expression from measurements of reverse transcriptase-ploymerase chain reaction (RT-PCR), osteoprotegerin (OPG), alkaline phosphatase (ALP), and osteocalcin (OCN) mRNA expression. Experiments were grouped into A: cells cultured in normal medium; B: cells cultured in normal medium and insonified with LIPUS; C: cells cultured in high glucose medium; D: cells cultured in high glucose medium and insonified with LIPUS. Results obtained from groups B, C, and D all showed that the corresponding growth of osteoblasts tended to increase compared to that of cells from the control group A. Specifically, the highest proliferation was found associated with osteoblasts of group D. The RT-PCR results revealed that mRNA levels of OPG corresponding to experimental groups of B, C, and D were respectively to be 1.29, 1.38, 1.62-fold more than that of control group; mRNA levels of ALP were respectively to be 1.18, 1.17, 1.38-fold more than that of control group and mRNA levels of OCN were respectively to be 1.41, 0.73, 1.22-fold more than that of control group. OCN mRNA expression was increased for those osteoblasts insonified with LIPUS from groups B and D, and that tended to be decreased for cells cultured in high glucose from group C. In conclusion, LIPUS exposure was found to be able to increase cell viability and mRNA expression of osteoblasts. Even culture under a high glucose medium, the proliferation and gene expression of osteoblasts could still be promoted by the insonification of LIPUS. These results indicated that the LIPUS may have the ability to decrease the inhibitory effect of osteoblasts associated with high glucose level and to facilitate other cell functions.
机译:糖尿病是一般代谢疾病,通常是患者对骨质疏松症和骨折的骨骼疾病。以前的研究表明,用低强度脉冲超声(LIPU)的适当刺激可以加速成骨细胞的增殖和分化来促进骨折愈合。在体外实验上在小鼠骨细胞上进行,在培养基中培养的小鼠骨细胞细胞,其正常葡萄糖浓度为5mm或高葡萄糖浓度为33mm。从20毫米/厘米〜(2)SATA强度的1 MHz唇脉,从20 kHz脉冲重复频率的20平方占空比排列成每日刺激成骨细胞10分钟。通过细胞增殖和基因表达评估具有胰念化的有突出物的响应,从逆转录酶 - 频率酶链反应(RT-PCR),骨蛋白酶(OPG),碱性磷酸酶(ALP)和骨钙素(OCN)mRNA表达中,评估来自逆转录酶 - 频率酶链反应(RT-PCR),骨髓蛋白酶(OPT)(OCN)mRNA表达。将实验分为:在正常培养基中培养的细胞; B:在正常培养基中培养的细胞并用脂肪溶解; C:在高葡萄糖培养基中培养的细胞; D:在高葡萄糖培养基中培养的细胞并用脂肪溶解。从基团B,C和D获得的结果表明,与来自对照组A的细胞相比,成骨细胞的相应生长趋于增加。具体地,发现最高的增殖与D组的成骨细胞相关.RT-PCR结果表明,对应于B,C和D的实验组的OPG的MRNA水平分别为1.29,1.38,1.62倍,比对照组的更多; ALP的mRNA水平分别为1.18,1.17,1.17,1.38倍,比对照组的mRNA水平分别为1.41,0.73,1.22倍,比对照组的更多。对于从基团B和D的脂肪溶解的那些成骨细胞的骨细胞增加了OCN mRNA表达,并且在C组中以高葡萄糖培养的细胞趋于降低。总之,发现脂肪暴露能够增加细胞活力和mRNA表达成骨细胞。甚至在高葡萄糖培养基下的培养,胃肠细胞的增殖和基因表达仍然可以通过脂肪的突出来促进。这些结果表明,脂肪可能具有降低与高葡萄糖水平相关的成骨细胞的抑制作用的能力,并促进其他细胞功能。

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