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The effect of UV-Vis to near-infrared light on the biological response of human dental pulp cells

机译:UV-Vis对近红外光对人牙髓细胞生物学反应的影响

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摘要

Human dental pulp cells (DPCs) were isolated and cultured in phenol-red-free α-MEM/10%-FCS at 37℃ in 5% CO_2. DPCs at passages 2-4 were seeded (150μL; 25,000 cell/ml) in black 96-microwell plates with transparent bases. 24h post-seeding, cultures were irradiated using a bespoke LED array consisting of 60 LEDs (3.5mW/cm~2) of wavelengths from 400-900nm (10 wavelengths, n=6) for time intervals of up to 120s. Metabolic and mitochondrial activity was assessed via a modified MTT assay. Statistical differences were identified using multi-factorial analysis of variance and post-hoc Tukey tests (P=0.05). The biological responses were significantly dependent upon post-irradiation incubation period, wavelength and exposure time (P<0.05). At shorter wavelength irradiances (400nm), a reduction in mitochondrial activity was detected although not significant, whereas longer wavelength irradiances (at 633, 656, 781 and 799nm) significantly increased mitochondrial activity (P<0.05) in DPCs. At these wavelengths, mitochondrial activity was generally increased for exposures less than 90s with 30s exposures being most effective with 24h incubation. Increasing the post-irradiation incubation period increased the measured response and identified further significance (P<0.05). The biological responses of human DPCs were wavelength, exposure-time and incubation period dependent. The optimisation of irradiation parameters will be key to the successful application of LLLT in dentistry.
机译:分离人牙髓细胞(DPC),并在无酚红的α-MEM/ 10%-FCS中于37℃,5%CO_2中培养。将第2-4代的DPC接种(150μL; 25,000细胞/ ml)在带有透明碱的黑色96微孔板中。播种后24h,使用定制LED阵列照射培养物,该阵列由60个LED(3.5mW / cm〜2)组成,波长范围为400-900nm(10个波长,n = 6),间隔时间长达120s。代谢和线粒体活性通过改良的MTT分析进行评估。使用方差的多因素分析和事后Tukey检验来确定统计差异(P = 0.05)。生物学反应与辐照后的潜伏期,波长和暴露时间密切相关(P <0.05)。在较短的波长辐照下(400nm),虽然线粒体活性降低不明显,但被检测到,而较长的波长辐照(在633、656、781和799nm处)显着增加了DPC中的线粒体活性(P <0.05)。在这些波长下,少于90s的暴露通常会增加线粒体活性,其中30s的暴露在24h孵育中最有效。辐照后潜伏期的增加增加了所测得的反应并具有进一步的意义(P <0.05)。人类DPC的生物学反应取决于波长,暴露时间和潜伏期。辐照参数的优化将是LLLT在牙科领域成功应用的关键。

著录项

  • 来源
    《Mechanisms for low-light therapy X》|2015年|930906.1-930906.13|共13页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Biomaterials Unit, School of Dentistry, University of Birmingham, St Chads Queensway, Birmingham, B4 6NN, UK;

    Oral Biology, School of Dentistry, University of Birmingham, St Chads Queensway, Birmingham, B4 6NN, UK;

    Oral Biology, School of Dentistry, University of Birmingham, St Chads Queensway, Birmingham, B4 6NN, UK;

    Oral Surgery, School of Dentistry, University of Birmingham, St Chads Queensway, Birmingham, B4 6NN, UK;

    The School of Electronic, Electrical and Systems Engineering, University of Birmingham, Edgbaston, B15 2TT, UK;

    The School of Electronic, Electrical and Systems Engineering, University of Birmingham, Edgbaston, B15 2TT, UK;

    Biomaterials Unit, School of Dentistry, University of Birmingham, St Chads Queensway, Birmingham, B4 6NN, UK;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LLLT; photobiomodulation; MTT; dose; LED; wavelength;

    机译:LLLT;光生物调节MTT;剂量;发光二极管;波长;
  • 入库时间 2022-08-26 13:54:09

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