Platelet and Osteoclast β3Integrins Are Critical for Bone Metastasis

Mice with a targeted deletion of β3integrin were used to examine the process by which tumor cells metastasize and destroy bone. Injection of B16 melanoma cells into the left cardiac ventricle resulted in osteolytic bone metastasis in 74% of β3 +/+mice by 14 days. In contrast, only 4% of β3 -/-mice d...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2003-11, Vol.100 (24), p.14205-14210
Hauptverfasser: Bakewell, Suzanne J., Nestor, Patrick, Prasad, Srinivasa, Tomasson, Michael H., Dowland, Nikki, Mehrotra, Mukund, Scarborough, Robert, Kanter, James, Abe, Keith, Phillips, David, Weilbaecher, Katherine N.
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Sprache:eng
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Zusammenfassung:Mice with a targeted deletion of β3integrin were used to examine the process by which tumor cells metastasize and destroy bone. Injection of B16 melanoma cells into the left cardiac ventricle resulted in osteolytic bone metastasis in 74% of β3 +/+mice by 14 days. In contrast, only 4% of β3 -/-mice developed bone lesions. Direct intratibial inoculation of tumor resulted in marrow replacement by tumor in β3 -/-mice, but no associated trabecular bone resorption as seen in β3 +/+mice. Bone marrow transplantation studies showed that susceptibility to bone metastasis was conferred by a bone marrow-derived cell. To dissect the roles of osteoclast and platelet β3integrins in this model of bone metastasis, osteoclast-defective src-/-mice were used. Src-null mice were protected from tumor-associated bone destruction but were not protected from tumor cell metastasis to bone. In contrast, a highly specific platelet aggregation inhibitor of activated αIIbβ3prevented B16 metastases. These data demonstrate a critical role for platelet αIIbβ3in tumor entry into bone and suggest a mechanism by which antiplatelet therapy may be beneficial in preventing the metastasis of solid tumors.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.2234372100