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Profiling of Adrenocorticotropic Hormone and Arginine Vasopressin in Human Pituitary Gland and Tumor Thin Tissue Sections using Droplet-Based Liquid Microjunction Surface Sampling-HPLC-ESI-MS/MS

机译:使用基于液滴的液体微结表面采样-HPLC-ESI-MS / MS对人垂体和肿瘤薄组织中促肾上腺皮质激素和精氨酸加压素进行分析

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摘要

Described here are the results from the profiling of the proteins arginine vasopressin (AVP) and adrenocorticotropic hormone (ACTH) from normal human pituitary gland and pituitary adenoma tissue sections using a fully automated droplet-based liquid microjunction surface sampling-HPLC-ESI-MS/MS system for spatially resolved sampling, HPLC separation, and mass spectral detection.Excellent correlation was found between the protein distribution data obtained with this droplet-based liquid microjunction surface sampling-HPLC-ESI-MS/MS system and those data obtained with matrix assisted laser desorption ionization (MALDI) chemical imaging analyses of serial sections of the same tissue. The protein distributions correlated with the visible anatomic pattern of the pituitary gland. AVP was most abundant in the posterior pituitary gland region (neurohypophysis) and ATCH was dominant in the anterior pituitary gland region (adenohypophysis).The relative amounts of AVP and ACTH sampled from a series of ACTH secreting and non-secreting pituitary adenomas correlated with histopathological evaluation. ACTH was readily detected at significantly higher levels in regions of ACTH secreting adenomas and in normal anterior adenohypophysis compared to non-secreting adenoma and neurohypophysis. AVP was mostly detected in normal neurohypophysis as anticipated.This work demonstrates that a fully automated droplet-based liquid microjunction surface sampling system coupled to HPLC-ESI-MS/MS can be readily used for spatially resolved sampling, separation, detection, and semi-quantitation of physiologically-relevant peptide and protein hormones, such as AVP and ACTH, directly from human tissue. In addition, the relative simplicity, rapidity and specificity of the current methodology support the potential of this basic technology with further advancement for assisting surgical decision-making.
机译:此处描述的是使用全自动基于液滴的液体微结表面采样-HPLC-ESI-MS /从正常人垂体和垂体腺瘤组织切片中分析精氨酸加压素(AVP)和促肾上腺皮质激素(ACTH)的结果用于空间分辨采样,HPLC分离和质谱检测的MS系统。使用该基于液滴的液体微结表面采样-HPLC-ESI-MS / MS系统获得的蛋白质分布数据与通过基质辅助获得的蛋白质分布数据之间存在极好的相关性激光解吸电离(MALDI)化学成像分析同一组织的连续切片。蛋白质分布与垂体的可见解剖结构相关。垂体后叶区域(神经垂体)中AVP最丰富,垂体前叶区域(腺垂体)中ATCH占主导地位。评价。与非分泌性腺瘤和神经垂体相比,ACTH在分泌腺瘤的区域和正常腺垂体中的含量明显较高。正如预期的那样,AVP主要在正常的神经垂体中检测到。这项工作表明,结合了HPLC-ESI-MS / MS的基于液滴的全自动液体微结表面采样系统可以轻松用于空间分辨的采样,分离,检测和半定量分析。直接从人体组织中定量分析与生理相关的肽和蛋白质激素,例如AVP和ACTH。此外,当前方法的相对简单性,快速性和特异性支持了这一基本技术的潜力,并在辅助手术决策方面取得了进一步的进步。

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