工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Delineating spatial cell-cell interactions in the solid tumour microenvironment through the lens of highly multiplexed imaging.
Delineating spatial cell-cell interactions in the solid tumour microenvironment through the lens of highly multiplexed imaging.
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已知实体瘤的生长和转移受到肿瘤微环境(TME)的促进,TME由高度多样化的细胞类型组成,这些细胞之间广泛相互作用和交流。其中许多相互作用涉及TME内的免疫细胞群体,称为肿瘤免疫微环境(TIME)。这些非细胞自主相互作用对细胞行为产生重大影响,并促进免疫细胞和基质细胞重编程为多种促肿瘤表型。对其中一些相互作用的研究,例如诱导CD8+ T细胞耗竭的PD-1/PD-L1轴,已带来了突破性治疗进展。
然而,许多常见的TME分析要么未保留评估细胞间相互作用所需的空间数据,要么仅检测少数(<10)标志物,限制了细胞表型分析的能力。最近开发的数字病理学技术,连同复杂的生物图像分析程序,现在能够对临床标本TME内多种免疫和基质细胞标志物进行高分辨率、高度多重分析。在本文中,我们综述TME中促进肿瘤的非细胞自主相互作用及其对肿瘤行为的影响。
我们还调查了常用的图像分析程序和高度多重空间成像技术,并讨论其相对优势和局限性。TME的空间组织在患者之间差异巨大,因此在未来研究中利用这些技术进一步表征非细胞自主相互作用如何影响肿瘤行为,可能有助于癌症治疗的个体化。
The growth and metastasis of solid tumours is known to be facilitated by the tumour microenvironment (TME), which is composed of a highly diverse collection of cell types that interact and communicate with one another extensively. Many of these interactions involve the immune cell population within the TME, referred to as the tumour immune microenvironment (TIME). These non-cell autonomous interactions exert substantial influence over cell behaviour and contribute to the reprogramming of immune and stromal cells into numerous pro-tumourigenic phenotypes. The study of some of these interactions, such as the PD-1/PD-L1 axis that induces CD8 + T cell exhaustion, has led to the development of breakthrough therapeutic advances.
Yet many common analyses of the TME either do not retain the spatial data necessary to assess cell-cell interactions, or interrogate few (<10) markers, limiting the capacity for cell phenotyping.
Recently developed digital pathology technologies, together with sophisticated bioimage analysis programs, now enable the high-resolution, highly-multiplexed analysis of diverse immune and stromal cell markers within the TME of clinical specimens. In this article, we review the tumour-promoting non-cell autonomous interactions in the TME and their impact on tumour behaviour.
We additionally survey commonly used image analysis programs and highly-multiplexed spatial imaging technologies, and we discuss their relative advantages and limitations. The spatial organization of the TME varies enormously between patients, and so leveraging these technologies in future studies to further characterize how non-cell autonomous interactions impact tumour behaviour may inform the personalization of cancer treatment. .
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