首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Fluorescence spectroscopy of teeth and bones of rats to assess demineralization: In vitro, in vivo and ex vivo studies
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Fluorescence spectroscopy of teeth and bones of rats to assess demineralization: In vitro, in vivo and ex vivo studies

机译:大鼠牙齿和骨骼的荧光光谱法评估脱矿质:体外,体内和离体研究

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摘要

This study investigated the effects of demineralization on teeth and bones evaluated by fluorescence spectroscopy and micro energy-dispersive X-ray fluorescence spectrometry (mu-EDXRF) in rats. For in vitro study, 20 teeth of Wistar rats were removed and decalcified to evaluate fluorescence. For in vivo study, 10 female Wistar rats aged 6 months were randomized into 2 groups: Control Group (C): non-ovariectomized rats; Ovariectomy Group (OV): ovariectomized rats to induce osteoporosis. The fluorescence spectroscopy of the teeth was performed for long-term (until 180 days). For ex vivo study, the tooth and femur bone of the Wistar rats were removed at 180 days to perform fluorescence spectroscopy using excitation laser at 408 and 532 nm and mu-EDXRF for calcium (Ca) and phosphorus (P) analysis. There were no intergroup differences in fluorescence spectra with laser at 408 nm (p >= 0.05), but there were changes in the fluorescence spectra using laser at 532 nm which led to both the wavelength shift and changes in the band area (p < 0.05). The concentrations of P and Ca for the dentine and cortical bone, respectively, were significantly reduced in OV (p < 0.05). Demineralization leading to loss of tissue quality may be assessed by fluorescence spectroscopy using 532 nm laser. These findings corroborate those obtained by mu-EDXRF. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究调查了脱矿质对牙齿和骨骼的影响,通过荧光光谱和微能量色散X射线荧光光谱法(mu-EDXRF)对大鼠进行了评估。为了进行体外研究,将Wistar大鼠的20颗牙齿取出并脱钙以评估荧光。为了进行体内研究,将10只6个月大的Wistar雌性大鼠随机分为2组:对照组(C):未切除卵巢的大鼠;对照组(C)。卵巢切除术组(OV):去卵巢大鼠诱发骨质疏松症。牙齿的荧光光谱学进行了长期(直到180天)。对于离体研究,在180天时将Wistar大鼠的牙齿和股骨取下,以使用408和532 nm的激发激光和mu-EDXRF进行钙(Ca)和磷(P)分析的荧光光谱。 408 nm的激光的荧光光谱没有组间差异(p> = 0.05),但是532 nm的激光的荧光光谱有变化,导致波长移动和谱带面积的变化(p <0.05) )。牙本质和皮质骨的P和Ca浓度在OV中显着降低(p <0.05)。可以通过使用532 nm激光的荧光光谱法评估导致组织质量下降的脱矿质。这些发现证实了通过mu-EDXRF获得的结果。 (C)2016 Elsevier B.V.保留所有权利。

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