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Site-specific gene expression profiling as a novel strategy for unravelling keloid disease pathobiology

机译:位点特异性基因表达谱分析作为解开瘢痕疙瘩疾病病理学的新策略

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摘要

Keloid disease (KD) is a fibroproliferative cutaneous tumour characterised by heterogeneity, excess collagen deposition and aggressive local invasion. Lack of a validated animal model and resistance to a multitude of current therapies has resulted in unsatisfactory clinical outcomes of KD management. In order to address KD from a new perspective, we applied for the first time a site-specific in situ microdissection and gene expression profiling approach, through combined laser capture microdissection and transcriptomic array. The aim here was to analyse the utility of this approach compared with established methods of investigation, including whole tissue biopsy and monolayer cell culture techniques. This study was designed to approach KD from a hypothesis-free and compartment-specific angle, using state-of-the-art microdissection and gene expression profiling technology. We sought to characterise expression differences between specific keloid lesional sites and elucidate potential contributions of significantly dysregulated genes to mechanisms underlying keloid pathobiology, thus informing future explorative research into KD. Here, we highlight the advantages of our in situ microdissection strategy in generating expression data with improved sensitivity and accuracy over traditional methods. This methodological approach supports an active role for the epidermis in the pathogenesis of KD through identification of genes and upstream regulators implicated in epithelial-mesenchymal transition, inflammation and immune modulation. We describe dermal expression patterns crucial to collagen deposition that are associated with TGFβ-mediated signalling, which have not previously been examined in KD. Additionally, this study supports the previously proposed presence of a cancer-like stem cell population in KD and explores the possible contribution of gene dysregulation to the resistance of KD to conventional therapy. Through this innovative in situ microdissection gene profiling approach, we provide better-defined gene signatures of distinct KD regions, thereby addressing KD heterogeneity, facilitating differential diagnosis with other cutaneous fibroses via transcriptional fingerprinting, and highlighting key areas for future KD research.
机译:瘢痕loid病(KD)是一种纤维增生性皮肤肿瘤,其特征是异质性,胶原蛋白过多沉积和侵略性局部浸润。缺乏经过验证的动物模型和对多种当前疗法的耐药性已导致KD管理的临床效果不理想。为了从新的角度解决KD,我们首次通过结合激光捕获显微切割和转录组学的方法,首次应用了特定于位点的原位显微切割和基因表达谱分析方法。此处的目的是与已建立的调查方法(包括整个组织活检和单层细胞培养技术)相比,分析此方法的实用性。这项研究旨在使用最新的显微解剖技术和基因表达谱分析技术,从无假设和特定于隔室的角度研究KD。我们试图表征特定瘢痕loid病变部位之间的表达差异,并阐明显着失调的基因对瘢痕path病理生物学机制的潜在贡献,从而为将来对KD的探索性研究提供了信息。在这里,我们重点介绍了原位显微切割策略在生成表达数据方面的优势,该方法比传统方法具有更高的灵敏度和准确性。这种方法学方法通过鉴定涉及上皮-间质转化,炎症和免疫调节的基因和上游调节剂,支持表皮在KD发病机理中的积极作用。我们描述了与TGFβ介导的信号传导相关的对胶原蛋白沉积至关重要的皮肤表达模式,此前尚未在KD中对其进行过检查。此外,这项研究支持了先前提出的KD中癌症样干细胞群体的存在,并探讨了基因失调对KD对常规疗法的抵抗的可能贡献。通过这种创新的原位显微解剖基因谱分析方法,我们可以为不同的KD区提供更好定义的基因特征,从而解决KD异质性,通过转录指纹分析促进与其他皮肤纤维瘤的鉴别诊断,并突出显示未来KD研究的关键领域。

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