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The optimal dose of the Low-level laser therapy in the treatment of type 1 Diabetes Mellitus

机译:低水平激光疗法在治疗1型糖尿病中的最佳剂量

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Background : Type 1 DM (T1DM) is caused by an autoimmune destruction of pancreatic ? cells. We proposed a novel stimulation using a low-level laser therapy (LLLT) through acupuncture points to stimuli the stem cells to be adult pancreatic ? cells. This study aimed to identify an optimal dose of low-level laser therapy (LLLT) for treatment of type 1 diabetes mellitus (T1DM). Methods : An experimental study was performed with a pretest-posttest control groups design. The intervention was tested in rats (Rattus novergicus, Wistar strain). The rats were made diabetic by injection of streptozotocin (STZ). Rats were treated with different doses of LLLT in 4 groups. The tested laser doses were 0.2 joules (group L1), 0.3 joules (group L2), 0.4 joules (group L3), and 0.5 joules (group L4). The therapy was performed by perpendicularly attaching laser probe to the animal body, at the acupuncture point pishu (BL-20) on respective sides. Results : Rats in the L2 group were performing better compared to others. The highest decrease of blood glucose level was found in group L2. Two rats in the L2 group achieved normal blood glucose level upon laser therapy. The dose of laser therapy in the L2 group of 0.3 joules was found to be the optimum dose. Conclusion : Clinical and statistical analyses indicated that 0.3 joule was the optimal dose for LLLT in our animal model. Further investigation of LLLT in human is warranted and validation of the identified dose in future studies should be pursued.
机译:背景:1型糖尿病(T1DM)是由胰腺自身免疫破坏引起的。细胞。我们提出了一种新的刺激方法:通过针刺点使用低水平激光疗法(LLLT)将干细胞刺激为成年胰腺?细胞。这项研究旨在确定治疗1型糖尿病(T1DM)的最佳低剂量激光疗法(LLLT)剂量。方法:采用前测-后测对照组设计进行实验研究。在大鼠(Rattus novergicus,Wistar菌株)中测试了干预措施。通过注射链脲佐菌素(STZ)使大鼠成为糖尿病。在4组中用不同剂量的LLLT治疗大鼠。测试的激光剂量为0.2焦耳(L1组),0.3焦耳(L2组),0.4焦耳(L3组)和0.5焦耳(L4组)。该疗法是通过在两侧的穴位pishu(BL-20)上将激光探针垂直连接到动物身上来进行的。结果:L2组的大鼠表现优于其他组。 L2组的血糖水平下降最高。 L2组的两只大鼠在激光治疗后达到了正常的血糖水平。 L2组0.3焦耳的激光治疗剂量被认为是最佳剂量。结论:临床和统计分析表明,在我们的动物模型中0.3焦耳是LLLT的最佳剂量。有必要对人体内LLLT进行进一步研究,并应在以后的研究中对确定的剂量进行验证。

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