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Characterization of Aeroallergen of Texas Panhandle using Scanning and Fluorescence Microscopy

机译:使用扫描和荧光显微镜表征德州Panhandle的空气过敏原

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Aeroallergens cause serious allergic and asthmatic reactions. Characterizing the aeroallergen provides information regarding the onset, duration, and severity of the pollen season that clinicians use to guide allergen selection for skin testing and treatment. Fluorescence Microscopy has useful approaches to understand the structure and function of the microscopic objects. Prepared slides from the pollen were observed under an Olympus BX40 microscope equipped with FITC and TRITC fluorescent filters, a mercury lamp source, an Olympus DP-70 digital camera connected to the computer with Image Pro 6.0 software. Aeroallergens were viewed, recorded and analyzed with DP Manager using the Image Pro 6.0 software. Photographs were taken at bright field, the fluorescein-isothiocyanate (FITC) filter, and the tetramethylrhodamine (TRITC) filter settings at 40X. A high pressure mercury lamp or UV source was used to excite the storage molecules or proteins which exhibited autofluorescence. The FITC filter reveals the green fluorescent proteins (GFP and EGFP), and the TRITC filter for red fluorescent proteins (DsRed). SEM proved to be useful for observing ultra-structural details like pores, colpi, sulci and ornamentations on the pollen surface. Samples were examined with an SEM (TM-1000) after gold coating and Critical Point Drying. Pollen grains were measured using the TM-1000 imaging software that revealed the specific information on the size of colpi or sulci and the distance between the micro-structures. This information can be used for classification and circumscription in Angiosperm taxonomy. Data were correlated clinical studies established at Allergy A.R.T.S. Clinical Research Laboratory.
机译:空气过敏原会引起严重的过敏和哮喘反应。表征空气过敏原可提供有关花粉季节的发作,持续时间和严重程度的信息,临床医生可利用这些信息指导选择过敏原进行皮肤测试和治疗。荧光显微术具有有用的方法来理解显微物体的结构和功能。在配备FITC和TRITC荧光滤光片的Olympus BX40显微镜,汞灯源,通过Image Pro 6.0软件连接到计算机的Olympus DP-70数码相机下,观察到了由花粉制成的载玻片。使用Image Pro 6.0软件通过DP Manager查看,记录和分析了气敏性过敏原。在明场,荧光素-异硫氰酸酯(FITC)滤光片和四甲基罗丹明(TRITC)滤光片设置为40倍下拍摄照片。使用高压汞灯或紫外线源激发表现出自发荧光的存储分子或蛋白质。 FITC滤镜显示绿色荧光蛋白(GFP和EGFP),而TRITC滤镜显示红色荧光蛋白(DsRed)。扫描电镜被证明可用于观察花粉表面的超微结构细节,例如毛孔,胶原,沟纹和装饰物。镀金和临界点干燥后,用SEM(TM-1000)检查样品。使用TM-1000成像软件测量了花粉粒,该软件揭示了关于胶体或沟的尺寸以及微结构之间的距离的特定信息。该信息可用于被子植物分类中的分类和限制。数据与在Allergy A.R.T.S.临床研究实验室。

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