肥胖与癌症:一项转化科学综述
Obesity and Cancer: A Translational Science Review.
超重和肥胖与更高的癌症发病率相关,在美国每年占新发癌症诊断的 10%。减重可能通过减轻肥胖的不良影响来降低癌症风险,但可能需要减重超过 10% 才能降低癌症风险。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Computational pathology identifies immune-mediated collagen disruption to predict clinical outcomes in gynecologic malignancies.
Computational pathology identifies immune-mediated collagen disruption to predict clinical outcomes in gynecologic malignancies.
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CollaTIL 揭示了妇科癌症 TME 中免疫浸润与胶原结构之间的关系。将 CollaTIL 与基因组分析相结合,为妇科肿瘤学中未来的治疗策略和增强的预后评估提供了有前景的机会。我们免疫系统中的细胞在改变癌症内胶原蛋白结构方面的作用尚未完全了解,特别是在影响女性的癌症中,如卵巢癌、宫颈癌和子宫癌。在这里,我们开发了一种名为 CollaTIL 的基于计算机的方法,以探索免疫细胞如何影响这些肿瘤中的胶原并影响其生长。我们发现,免疫细胞存在越多,肿瘤中的胶原组织越少。相反,当免疫细胞较少时,胶原往往更有结构。此外,CollaTIL 识别出可预测这些癌症患者结局的模式。
免疫细胞在肿瘤微环境(TME)中胶原降解的作用尚不清楚。已知免疫细胞,特别是TIL(肿瘤浸润淋巴细胞)(TILs),能够改变细胞外基质,从而影响癌症进展和患者生存。然而,关于免疫调节对TME内胶原结构影响的定量评估仍然有限。
我们介绍了CollaTIL,一种计算病理学方法,用于定量描述妇科癌症(包括高级别浆液性卵巢癌(HGSOC)、宫颈鳞状细胞癌(CSCC)和子宫内膜癌)TME内免疫-胶原蛋白关系。CollaTIL旨在研究TME内免疫调节对胶原架构的影响,以揭示免疫系统与肿瘤进展之间的相互作用。
我们观察到,免疫浸润增加与混乱的胶原结构和高熵相关,而免疫稀疏的TME则表现出有序的胶原和低熵。重要的是,与CollaTIL相关的、可对疾病风险进行分层的特征,在CSCC中与对应TCA循环的基因特征相关,在HGSOC中与氨基酸代谢和巨噬细胞相关。
The role of immune cells in collagen degradation within the tumor microenvironment (TME) is unclear. Immune cells, particularly tumor-infiltrating lymphocytes (TILs), are known to alter the extracellular matrix, affecting cancer progression and patient survival. However, the quantitative evaluation of the immune modulatory impact on collagen architecture within the TME remains limited.
We introduce CollaTIL, a computational pathology method that quantitatively characterizes the immune-collagen relationship within the TME of gynecologic cancers, including high-grade serous ovarian (HGSOC), cervical squamous cell carcinoma (CSCC), and endometrial carcinomas. CollaTIL aims to investigate immune modulatory impact on collagen architecture within the TME, aiming to uncover the interplay between the immune system and tumor progression.
We observe that an increased immune infiltrate is associated with chaotic collagen architecture and higher entropy, while immune sparse TME exhibits ordered collagen and lower entropy. Importantly, CollaTIL-associated features that stratify disease risk are linked with gene signatures corresponding to TCA-Cycle in CSCC, and amino acid metabolism, and macrophages in HGSOC.
CollaTIL uncovers a relationship between immune infiltration and collagen structure in the TME of gynecologic cancers. Integrating CollaTIL with genomic analysis offers promising opportunities for future therapeutic strategies and enhanced prognostic assessments in gynecologic oncology. The role of cells that are part of our immune system in altering the structure of the protein collagen within cancers is not fully understood, particularly within cancers that affect women such as ovarian, cervical and uterine cancers. Here, we developed a computer-based method called CollaTIL to explore how immune cells influence collagen in these tumors and affect their growth. We found that a higher presence of immune cells leads to less organized collagen in the tumor. Conversely, when there are fewer immune cells, the collagen tends to be more structured. Additionally, CollaTIL identifies patterns that predict patient outcomes in these cancers. These findings not only enhance our understanding of tumor biology but also may be useful in helping clinicians to predict which patients are at risk of their disease progressing.
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