首页> 外文期刊>Trends in Ecology & Evolution >Intravenous laser wavelength radiation effect on LCAT, PON1, catalase, and FRAP in diabetic rats
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Intravenous laser wavelength radiation effect on LCAT, PON1, catalase, and FRAP in diabetic rats

机译:糖尿病大鼠静脉内激光波长辐射辐射效应,糖尿病大鼠患者

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The main purpose of this study is to evaluate the effect of intravenous irradiation of different low-level laser wavelengths on the activity of lecithin-cholesterol acyltransferase (LCAT), paraoxonase (PON1), catalase, and ferric reducing ability of plasma (FRAP) in diabetic rats. First, diabetes was induced in rats using streptozotocin (STZ). Enzymes' activity was measured in the blood samples and compared before and after intravenous laser blood irradiation. We used four continuous-wave lasers-IR (lambda = 808 nm), Red (lambda = 638 nm), Green (lambda = 532 nm), and Blue (lambda = 450 nm)-to compare the wavelength's effect on different enzymes' activity. Laser power was fixed at 0.01 mW and laser energy was changed by 2-, 4-, 6-, and 8-min time of radiations. The enzymes' activity of blood samples was measured 2, 6, and 24 h after radiation. The results show an increase in the activity of different enzymes when compare with diabetic non-radiated samples. More importantly, with a constant laser energy, the enzymes' activity increased with decreasing laser wavelength. It is important to note that with a constant laser energy, as the wavelength decreases, the photon energy increases and the number of photons decrease, while the enzyme's activity elevation increases. As a result, we can conclude that in intravenous low-level laser therapy, photon energy is more important than the number of photons even if their product, energy, is kept constant.
机译:本研究的主要目的是评估静脉内照射不同低水平激光波长对卵磷脂 - 胆固醇酰基转移酶(LCAT),副氧基酶(PON1),过氧化氢酶和血浆(FRAP)的转储能力的影响糖尿病大鼠。首先,使用链脲佐菌素(STZ)在大鼠中诱导糖尿病。在血液样品中测量酶活性,并在静脉激光血液照射之前和之后进行比较。我们使用了四个连续波激光器-RIR(Lambda = 808nm),红色(Lambda = 638nm),绿色(Lambda = 532nm)和蓝色(Lambda = 450nm) - 比较波长对不同酶的影响'活动。激光功率固定在0.01 mW,激光能量由2-,4-,6-和8分钟的辐射改变。辐射后2,6和24小时测量血液样品的酶活性。结果表明,当与糖尿病非辐射样品相比,不同酶的活性增加。更重要的是,通过恒定的激光能量,酶活性随着激光波长的降低而增加。重要的是要注意,由于波长减小,光子能量增加并且光子的数量减小,而酶的活性高度增加。结果,我们可以得出结论,在静脉内的低水平激光治疗中,光子能量也比光子的数量更重要,即使它们的产品,能量保持恒定。

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