Bone metastasis: mechanisms, therapies, and biomarkers
Метастазы в кости: механизмы, терапии и биомаркеры
2020-12-24
SCID: 54.1/8tjscmxz
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bone metastasisbone turnover biomarkersbone-targeted therapiescirculating tumor cellsosteoclasts and osteoblasts
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Abstract (AI)
Skeletal metastases are frequent complications of many cancers, causing bone complications (fractures, bone pain, disability) that negatively affect the patient's quality of life. Here, we first discuss the burden of skeletal complications in cancer bone metastasis. We then describe the pathophysiology of bone metastasis. Bone metastasis is a multistage process: long before the development of clinically detectable metastases, circulating tumor cells settle and enter a dormant state in normal vascular and endosteal niches present in the bone marrow, which provide immediate attachment and shelter, and only become active years later as they proliferate and alter the functions of bone-resorbing (osteoclasts) and bone-forming (osteoblasts) cells, promoting skeletal destruction. The molecular mechanisms involved in mediating each of these steps are described, and we also explain how tumor cells interact with a myriad of interconnected cell populations in the bone marrow, including a rich vascular network, immune cells, adipocytes, and nerves. We discuss metabolic programs that tumor cells could engage with to specifically grow in bone. We also describe the progress and future directions of existing bone-targeted agents and report emerging therapies that have arisen from recent advances in our understanding of the pathophysiology of bone metastases. Finally, we discuss the value of bone turnover biomarkers in detection and monitoring of progression and therapeutic effects in patients with bone metastasis.
Key Findings
1
Bone metastasis is a multistage process where circulating tumor cells colonize bone marrow niches, enter dormancy, and can reactivate years later to proliferate.
2
Bone-targeted agents and emerging therapies are being developed based on mechanistic insights, and bone turnover biomarkers have value for detection, monitoring progression, and assessing therapeutic effects.
3
Reactivated tumor cells disrupt osteoclast and osteoblast functions, promoting skeletal destruction through altered bone resorption and formation.
4
Skeletal metastases are common across many cancers and cause fractures, bone pain, disability, and reduced quality of life.
5
Tumor cells interact with multiple bone marrow cell populations—vascular networks, immune cells, adipocytes, and nerves—that influence metastatic progression and growth.
Research Object
Cancer bone metastasis (skeletal metastases)
Research Subject
Mechanisms, therapies, and biomarkers of bone metastasis, including pathophysiology of tumor cell dormancy and reactivation in bone marrow niches, interactions with osteoclasts/osteoblasts and marrow cell populations, metabolic programs enabling bone colonization, bone-targeted and emerging therapies, and bone turnover biomarkers for detection and monitoring
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2020-12-24
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