Mechanisms of osteolytic bone metastases in breast carcinoma
Механизмы остеолитических метастазов в кости при раке молочной железы
2003-01-23
SCID: 54.1/2x8vvwva
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bisphosphonatesbone microenvironmentbreast carcinomaosteolytic bone metastasesparathyroid hormone-related protein
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Abstract (AI)
Osteolytic and osteoblastic metastases are often the cause of considerable morbidity in patients with advanced prostate and breast carcinoma. Breast carcinoma metastasis to bone occurs because bone provides a favorable site for aggressive behavior of metastatic cancer cells. A vicious cycle arises between cancer cells and the bone microenvironment, which is mediated by the production of growth factors such as transforming growth factor beta and insulin growth factor from bone and parathyroid hormone-related protein (PTHrP) produced by tumor cells. Osteolysis and tumor cell accumulation can be interrupted by inhibiting any of these limbs of the vicious cycle. For example, bisphosphonates (e.g., pamidronate, ibandronate, risedronate, clodronate, and zoledronate) inhibit both bone lesions and tumor cell burden in bone in experimental models of breast carcinomametastasis. Neutralizing antibodies to PTHrP, which inhibit PTHrP effects on osteoclastic bone resorption, also reduce osteolytic bone lesions and tumor burden in bone. Other pharmacologic approaches to inhibit PTHrP produced by breast carcinoma cells in the bone microenvironment also produce similar beneficial effects. Identification of the molecular mechanisms responsible for osteolytic metastases is crucial in designing effective therapy for this devastating complication.
Key Findings
1
A reciprocal vicious cycle links tumor cells and bone, involving bone-derived transforming growth factor beta and insulin-like growth factor and tumor-derived PTHrP.
2
Bisphosphonates, including pamidronate, ibandronate, risedronate, clodronate, and zoledronate, inhibit bone lesions and tumor burden in experimental breast cancer metastasis models.
3
Breast carcinoma metastasizes preferentially to bone because the bone microenvironment supports aggressive behavior of metastatic tumor cells.
4
Disrupting any component of this tumor–bone signaling cycle can reduce osteolysis and metastatic tumor accumulation in bone.
5
Neutralizing PTHrP or pharmacologically reducing its production decreases osteoclastic bone resorption, osteolytic lesions, and tumor burden in bone.
Research Object
osteolytic bone metastases of breast carcinoma and their bone microenvironment
Research Subject
the tumor–bone vicious cycle and molecular mechanisms driving osteolysis, tumor accumulation, and therapeutic interruption of breast carcinoma metastases in bone
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2003-01-23
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