Biomechanical Phenotyping Reveals Unique Mechanobiological Signatures of Early‐Onset Colorectal Cancer

结直肠癌 间质细胞 医学 癌症研究 机械转化 病理 细胞外基质 免疫染色 肿瘤微环境 生物 基质 癌症 组织重塑 疾病 体外 纤维化 结缔组织增生 癌相关成纤维细胞
作者
Nicole C. Huning,Munir H. Buhaya,Victor Nguyen,Afeefah Khazi‐Syed,Haider Ali,Adil R. Khan,Angela Fan,Robert C. Fisher,Zhikai Chi,Indu Raman,Guangchun Chen,Chengsong Zhu,Mengxi Yu,Andrew R. Jamieson,Sara Roccabianca,Victor D. Varner,Cheryl Lewis,Emina H. Huang,Jacopo Ferruzzi
出处
期刊:Advanced Science [Wiley]
卷期号:13 (6): e14693-e14693 被引量:1
标识
DOI:10.1002/advs.202514693
摘要

While both incidence and mortality of sporadic average-onset colorectal cancer (AO CRC, above 50 years of age) are in constant decline, sporadic early-onset colorectal cancer (EO CRC, under 50 years of age) is rising rapidly. Yet, the causes behind this rise remain poorly understood. Epidemiological studies indicate that lifestyle and environmental exposures may result in chronic inflammation, which is known to trigger tissue fibrosis. This study tests the hypothesis that fibrotic remodeling and biomechanical stiffening of colorectal tissues represent measurable hallmarks and potential drivers of EO CRC. Using primary human tissues, this work shows that EO CRC is associated with changes in collagen microstructure, increased stiffness, and elevated viscosity of primary tumors. Spatial transcriptional profiling and immunostaining reveal pro-fibrotic signatures in stromal cells, alongside enhanced Yes-associated protein (YAP) mechanotransduction and proliferation in epithelial cells of EO CRC tissues. Mechanistically, increasing matrix stiffness in vitro promotes proliferation of epithelial cells in 2D and 3D colorectal cancer models. Together, these findings establish EO CRC as a disease marked by early and widespread biomechanical remodeling, suggesting that a fibrotic and stiffened tissue microenvironment may orchestrate EO CRC tumor initiation.
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