Deng Meimei, Ding Hao, Zhou Yuru, Qi Guangying, Gan Jinfeng
Guangxi Key Laboratory of Tumor Immunology and Microenvironmental Regulation, Guilin Medical University, Guilin, Guangxi 541199, P.R. China.
Guangxi Health Commission Key Laboratory of Tumor Immunology and Receptor-Targeted Drug Basic Research, Guilin Medical University, Guilin, Guangxi 541199, P.R. China.
Oncol Lett. 2025 Mar 6;29(5):221. doi: 10.3892/ol.2025.14967. eCollection 2025 May.
The majority of cancer-related deaths result from tumor metastasis, with bone metastasis occurring in almost all types of malignant tumors. Understanding the mechanism by which tumors metastasize to bone is critical for the identification of novel therapeutic targets. A large amount of research has been carried out using animal models, and these models have been crucial in advancing the fundamental understanding of cancer. However, current models are limited; although they can mimic specific stages of the metastatic process, they are not able to replicate the entire process from tumorigenesis to bone metastasis. The present review describes the molecular changes that occur in the intraosseous microenvironment of bone metastases, including osteolytic and osteoblastic types, and summarizes advancements in animal models of bone metastasis.
大多数癌症相关死亡是由肿瘤转移导致的,几乎所有类型的恶性肿瘤都会发生骨转移。了解肿瘤转移至骨的机制对于确定新的治疗靶点至关重要。已经使用动物模型开展了大量研究,这些模型对于深化对癌症的基本认识起到了关键作用。然而,目前的模型存在局限性;尽管它们可以模拟转移过程的特定阶段,但无法复制从肿瘤发生到骨转移的整个过程。本综述描述了骨转移在骨内微环境中发生的分子变化,包括溶骨性和成骨性类型,并总结了骨转移动物模型的进展。