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用于光疗研究的发光二极管阵列的开发与应用。

Development and application of LED arrays for use in phototherapy research.

作者信息

Hadis Mohammed A, Cooper Paul R, Milward Michael R, Gorecki Patricia C, Tarte Edward, Churm James, Palin William M

机构信息

School of Dentistry, College of Medical and Dental Sciences, Institute of Clinical Sciences, University of Birmingham, 5 Mill Pool Way, Edgbaston, Birmingham, B5 7EG, UK.

School of Electronic, Electrical and Computer Engineering, University of Birmingham, Birmingham, B15 2TT, UK.

出版信息

J Biophotonics. 2017 Nov;10(11):1514-1525. doi: 10.1002/jbio.201600273. Epub 2017 Feb 6.

Abstract

Lasers/LEDs demonstrate therapeutic effects for a range of biomedical applications. However, a consensus on effective light irradiation parameters and efficient and reliable measurement techniques remain limited. The objective here is to develop, characterise and demonstrate the application of LED arrays in order to progress and improve the effectiveness and accuracy of in vitro photobiomodulation studies. 96-well plate format LED arrays (400-850 nm) were developed and characterised to accurately assess irradiance delivery to cell cultures. Human dental pulp cells (DPCs) were irradiated (3.5-142 mW/cm : 15-120 s) and the biological responses were assessed using MTT assays. Array calibration was confirmed using a range of optical and analytical techniques. Multivariate analysis of variance revealed biological responses were dependent on wavelength, exposure time and the post-exposure assay time (P < 0.05). Increased MTT asbsorbance was measured 24 h post-irradiation for 30 s exposures of 3.5 mW/cm at 470, 527, 631, 655, 680, 777, 798 and 826 nm with distinct peaks at 631 nm and 798 nm (P < 0.05). Similar wavelengths were also effective at higher irradiances (48-142 mW/cm ). LED arrays and high throughput assays provide a robust and reliable platform to rapidly identify irradiation parameters which is both time- and cost-effective. These arrrays are applicable in photobiomodulation, photodynamic therapy and other photobiomedical research.

摘要

激光/发光二极管在一系列生物医学应用中显示出治疗效果。然而,关于有效的光照射参数以及高效可靠的测量技术的共识仍然有限。此处的目标是开发、表征并展示发光二极管阵列的应用,以推进和提高体外光生物调节研究的有效性和准确性。开发并表征了96孔板形式的发光二极管阵列(400 - 850纳米),以准确评估向细胞培养物传递的辐照度。对人牙髓细胞(DPCs)进行照射(3.5 - 142毫瓦/平方厘米:15 - 120秒),并使用MTT分析法评估生物学反应。使用一系列光学和分析技术确认了阵列校准。多变量方差分析显示生物学反应取决于波长、暴露时间和暴露后分析时间(P < 0.05)。在470、527、631、655、680、777、798和826纳米处,以3.5毫瓦/平方厘米的强度照射30秒后,在照射后24小时测量到MTT吸光度增加,在631纳米和798纳米处有明显峰值(P < 0.05)。类似的波长在更高辐照度(48 - 142毫瓦/平方厘米)下也有效。发光二极管阵列和高通量分析提供了一个强大且可靠的平台,可快速识别既节省时间又具成本效益的照射参数。这些阵列适用于光生物调节、光动力疗法和其他光生物医学研究。

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