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In-silico insights on the prognostic potential of immune cell infiltration patterns in the breast lobular epithelium.

机译:乳腺小叶上皮中免疫细胞浸润模式的预后潜力的计算机内洞察。

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摘要

Scattered inflammatory cells are commonly observed in mammary gland tissue, most likely in response to normal cell turnover by proliferation and apoptosis, or as part of immunosurveillance. In contrast, lymphocytic lobulitis (LLO) is a recurrent inflammation pattern, characterized by lymphoid cells infiltrating lobular structures, that has been associated with increased familial breast cancer risk and immune responses to clinically manifest cancer. The mechanisms and pathogenic implications related to the inflammatory microenvironment in breast tissue are still poorly understood. Currently, the definition of inflammation is mainly descriptive, not allowing a clear distinction of LLO from physiological immunological responses and its role in oncogenesis remains unclear. To gain insights into the prognostic potential of inflammation, we developed an agent-based model of immune and epithelial cell interactions in breast lobular epithelium. Physiological parameters were calibrated from breast tissue samples of women who underwent reduction mammoplasty due to orthopedic or cosmetic reasons. The model allowed to investigate the impact of menstrual cycle length and hormone status on inflammatory responses to cell turnover in the breast tissue. Our findings suggested that the immunological context, defined by the immune cell density, functional orientation and spatial distribution, contains prognostic information previously not captured by conventional diagnostic approaches.
机译:乳腺组织中通常观察到散发的炎性细胞,最有可能是通过增殖和凋亡或作为免疫监视的一部分对正常细胞更新做出反应。相反,淋巴细胞性小叶炎(LLO)是一种复发性炎症,特征是淋巴样细胞浸润到小叶结构,与家族性乳腺癌风险增加和对临床表现的癌症的免疫反应有关。与乳腺组织炎性微环境有关的机制和致病意义仍然知之甚少。目前,炎症的定义主要是描述性的,不能将LLO与生理学免疫反应区分开来,其在肿瘤发生中的作用仍不清楚。为了深入了解炎症的预后潜力,我们开发了一种基于药剂的乳腺小叶上皮细胞免疫和上皮细胞相互作用模型。从由于整形或美容原因而进行了减少乳房成形术的妇女的乳房组织样本中校准生理参数。该模型允许研究月经周期长度和激素状态对乳腺组织中细胞更新的炎症反应的影响。我们的研究结果表明,由免疫细胞密度,功能方向和空间分布所定义的免疫学背景包含了以前未被常规诊断方法捕获的预后信息。

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