Molecular Oncology and Preclinical Model of Tumor Progression, Centro di Riferimento Oncologico di Aviano (CRO) IRCCS, Aviano, Italy.
Int J Biol Markers. 2020 Feb;35(1_suppl):26-30. doi: 10.1177/1724600819896810.
In the personalized medicine era, the field of immunohistopathology is evolving to provide even more precise diagnostic information to efficiently apply targeting therapies. In this regard, MultiSpectral fluorescence Imaging (MSI) is a powerful and reliable technique that provides a detailed and remarkable analysis of multiple biomarkers within their histological context. In particular, the analysis of the immune infiltrate in conjunction with the expression of immune checkpoint molecules could explain why the efficacy of the promising treatments based on immune modulator monoclonal antibodies is still limited. We analyzed the advantages and the pitfalls of applying MSI technology to investigate the immune infiltrate in correlation with programmed death-ligand 1 expression in paraffin embedded ovarian cancer samples.
在个性化医学时代,免疫组织化学病理学领域正在发展,以提供更精确的诊断信息,从而有效地应用靶向治疗。在这方面,多光谱荧光成像(MSI)是一种强大而可靠的技术,可在组织学背景下对多个生物标志物进行详细而显著的分析。特别是,免疫浸润的分析与免疫检查点分子的表达相结合,可以解释为什么基于免疫调节剂单克隆抗体的有前途的治疗方法的疗效仍然有限。我们分析了应用 MSI 技术来研究石蜡包埋卵巢癌样本中程序性死亡配体 1 表达相关的免疫浸润的优势和缺陷。