Bone marrow AT1 augments neointima formation by promoting mobilization of smooth muscle progenitors via platelet-derived SDF-1{alpha}.
نویسندگان
چکیده
OBJECTIVE Bone marrow (BM)-derived endothelial progenitor cells (EPCs) and vascular smooth muscle progenitor cells (VPCs) contribute to neointima formation, whereas the angiotensin II (Ang II) type 1 receptor (AT(1))-mediated action on BM-derived progenitors remains undefined. METHODS AND RESULTS A wire-induced vascular injury was performed in the femoral artery of BM-chimeric mice whose BM was repopulated with AT(1)-deficient (BM-Agtr1(-/-)) or wild-type (BM-Agtr1(+/+)) cells. Neointima formation was profoundly reduced by 38% in BM-Agtr1(-/-) mice. Although the number of circulating EPCs (Sca-1(+)Flk-1(+)) and extent of reendothelialization did not differ between the 2 groups, the numbers of both circulating VPCs (c-Kit(-)Sca-1(+)Lin(-)) and tissue VPCs (Sca-1(+)CD31(-)) incorporated into neointima were markedly decreased in BM-Agtr1(-/-) mice. The accumulation of aggregated platelets and their content of stromal cell-derived factor-1alpha (SDF-1alpha) were significantly reduced in BM-Agtr1(-/-) mice, accompanied by a decrease in the serum level of SDF-1alpha. Thrombin-induced platelets aggregation was dose-dependently inhibited (45% at 0.1 IU/mL, P<0.05) in Agtr1(-/-) platelets compared with Agtr1(+/+) platelets, accompanied by the reduced expression and release of SDF-1alpha. CONCLUSIONS The BM-AT(1) receptor promotes neointima formation by regulating the mobilization and homing of BM-derived VPCs in a platelet-derived SDF-1alpha-dependent manner without affecting EPC-mediated reendothelialization.
منابع مشابه
Bone Marrow AT1 Augments Neointima Formation by Promoting Mobilization of Smooth Muscle Progenitors via Platelet-Derived SDF-1
The accumulation of aggregated platelets and their content of stromal cell–derived factor-1 (SDF-1 ) were significantly reduced in BM-Agtr1 / mice, accompanied by a decrease in the serum level of SDF-1 . Thrombininduced platelets aggregation was dose-dependently inhibited (45% at 0.1 IU/mL, P 0.05) in Agtr1 / platelets compared with Agtr1 / platelets, accompanied by the reduced expression and r...
متن کاملCellular Biology FSP-1 Silencing in Bone Marrow Cells Suppresses Neointima Formation in Vein Graft
Rationale: Fibroblast-specific protein 1 (FSP-1) plays multiple roles in promoting cell proliferation and motility. Increased FSP-1 expression in smooth muscle cells (SMCs) has been associated with their enhanced proliferation. Objective: To study how FSP-1 contributes to neointima formation of vein grafts. Methods: Arteriovenous grafts were created in wild-type or FSP-1–GFP mice (green fluores...
متن کاملOriginal Research FSP-1 Silencing in Bone Marrow Cells Suppresses Neointima Formation in Vein Graft
Rationale: Fibroblast-specific protein 1 (FSP-1) plays multiple roles in promoting cell proliferation and motility. Increased FSP-1 expression in smooth muscle cells (SMCs) has been associated with their enhanced proliferation. Objective: To study how FSP-1 contributes to neointima formation of vein grafts. Methods: Arteriovenous grafts were created in wild-type or FSP-1–GFP mice (green fluores...
متن کاملFSP-1 silencing in bone marrow cells suppresses neointima formation in vein graft.
RATIONALE Fibroblast-specific protein 1 (FSP-1) plays multiple roles in promoting cell proliferation and motility. Increased FSP-1 expression in smooth muscle cells (SMCs) has been associated with their enhanced proliferation. OBJECTIVE To study how FSP-1 contributes to neointima formation of vein grafts. METHODS Arteriovenous grafts were created in wild-type or FSP-1-GFP mice (green fluore...
متن کاملSDF-1α induction in mature smooth muscle cells by inactivation of PTEN is a critical mediator of exacerbated injury-induced neointima formation.
OBJECTIVE PTEN inactivation selectively in smooth muscle cells (SMC) initiates multiple downstream events driving neointima formation, including SMC cytokine/chemokine production, in particular stromal cell-derived factor-1α (SDF-1α). We investigated the effects of SDF-1α on resident SMC and bone marrow-derived cells and in mediating neointima formation. METHODS AND RESULTS Inducible, SMC-spe...
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عنوان ژورنال:
- Arteriosclerosis, thrombosis, and vascular biology
دوره 30 1 شماره
صفحات -
تاریخ انتشار 2010