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Bone homeostasis mainly depends on the equilibrium of osteoclasts and osteoblasts, overactivated osteoclasts play a pivotal role in the progression of osteoporosis. Here, we revealed that Pla2g7 (phospholipase A2 group VII) was positively correlated with bone resorption in clinic. By single-cell ...

2025-10-30 | MTBLS13141 | MetaboLights

Osteoporosis is a metabolic bone disorder characterized by aberrant osteoclast activation, leading 

to excessive bone resorption and microarchitectural deterioration. Although the interconnection 

between osteoclast differentiation and cellular energy metabolism has been inc...

2026-04-09 | MTBLS13394 | MetaboLights
Bone is the primary site of breast cancer metastasis and complications associated with bone metastases can lead to a significantly decreased quality of life in these patients. Thus, it is essential to gain a better understanding of the molecular mechanisms that underlie the emergence and growth of b...
ORGANISM(S): Homo sapiens 
AnxA1 inhibits pathological bone resorption
Bone remodeling is characterized by the sequential, local tethering of osteoclasts and osteoblasts, and is key to the maintenance of bone integrity. While bone matrix-mobilized growth factors, such as TGF-β, are proposed to regulate remodeling, no in vivo evidence exists that an osteoclast-produced...
ORGANISM(S): Mus musculus 
Bone is a dynamic organ in which bone formation mediated by osteoblasts balances against bone resorption mediated by osteoclasts to maintain bone homeostasis. With age, this balance gradually tilts toward bone resorption, leading to bone loss and osteoporosis. At the present study, the bone specimen...
ORGANISM(S): Homo sapiens (Human) 
2023-02-01 | PXD039538 | Pride
The reciprocal interaction between cancer cells and the tissue-specific stroma is critical for primary and metastatic tumor growth progression. Prostate cancer cells colonize preferentially bone (osteotropism), where they alter the physiological balance between osteoblast-mediated bone formation and...
ORGANISM(S): Mus musculus 
Tissue-specific VEGF-D overexpression induces lymphangiogenesis and heterotopic bone resorption
GIP acts on multiple signaling pathways to uncouple bone resorption and formation
The miR4261/PAMM axis in multiple myeloma promotes bone resorption
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