3-D vascularized breast cancer model to study the role of osteoblast in formation of a pre-metastatic niche

下调和上调 乳腺癌 癌症研究 旁分泌信号 转移 三阴性乳腺癌 医学 成骨细胞 癌症 骨转移 生物 病理
作者
Rahul Rimal,Prachi Bharat Desai,Andrea Bonnin Marquez,Karina Sieg,Yvonne Marquardt,Smriti Singh
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:11 (1)
标识
DOI:10.1038/s41598-021-01513-x
摘要

Abstract Breast cancer cells (BCCs) preferentially metastasize to bone. It is known that BCCs remotely primes the distant bone site prior to metastasis. However, the reciprocal influence of bone cells on the primary tumor is relatively overlooked. Here, to study the bone-tumor paracrine influence, a tri-cellular 3-D vascularized breast cancer tissue (VBCTs) model is engineered which comprised MDA-MB231, a triple-negative breast cancer cells (TNBC), fibroblasts, and endothelial cells. This is indirectly co-cultured with osteoblasts (OBs), thereby constituting a complex quad-cellular tumor progression model. VBCTs alone and in conjunction with OBs led to abnormal vasculature and reduced vessel density but enhanced VEGF production. A total of 1476 significantly upregulated and 775 downregulated genes are identified in the VBCTs exposed to OBs. HSP90N, CYCS, RPS27A, and EGFR are recognized as upregulated hub-genes. Kaplan Meier plot shows HSP90N to have a significant outcome in TNBC patient survivability. Furthermore, compared to cancer tissues without vessels, gene analysis recognized 1278 significantly upregulated and 566 downregulated genes in VBCTs. DKK1, CXCL13, C3 protein and BMP4 are identified to be downregulated hub genes in VBCTs. Together, a multi-cellular breast cancer model and culture protocols are established to study pre-metastatic events in the presence of OBs.

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