| Literature DB >> 21317296 |
Matthew B Kahn1, Nadira Y Yuldasheva, Richard M Cubbon, Jessica Smith, Sheikh T Rashid, Hema Viswambharan, Helen Imrie, Afroze Abbas, Adil Rajwani, Amir Aziz, Vivek Baliga, Piruthivi Sukumar, Matthew Gage, Mark T Kearney, Stephen B Wheatcroft.
Abstract
OBJECTIVE: Circulating angiogenic progenitor cells (APCs) participate in endothelial repair after arterial injury. Type 2 diabetes is associated with fewer circulating APCs, APC dysfunction, and impaired endothelial repair. We set out to determine whether insulin resistance adversely affects APCs and endothelial regeneration. RESEARCH DESIGN AND METHODS: We quantified APCs and assessed APC mobilization and function in mice hemizygous for knockout of the insulin receptor (IRKO) and wild-type (WT) littermate controls. Endothelial regeneration after femoral artery wire injury was also quantified after APC transfusion.Entities:
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Year: 2011 PMID: 21317296 PMCID: PMC3064103 DOI: 10.2337/db10-1080
Source DB: PubMed Journal: Diabetes ISSN: 0012-1797 Impact factor: 9.461
FIG. 1.Enumeration of APCs in blood using flow cytometry. A: Numbers of Sca-1/Flk-1+ cells at baseline (P < 0.05; n = 9 per group). B: Mobilization of Sca-1/Flk-1+ cells in response to VEGF administration (P < 0.05; n = 5 mice per group). Data are presented as mean and SEM.
FIG. 2.Enumeration of APCs derived from blood, spleen, and BM by cell culture. A: Fluorescence microscopy revealing the spindle-shaped APCs (phase contrast image), lectin-bound (green), DiI-ac-LDL uptake (red), and dual-stained APCs (yellow; magnification ×100). B: Numbers of peripheral blood-, spleen- and BM-derived cultured APCs from uninjured mice are expressed as the percentage of cells derived from WT mice (P < 0.05; n = 6 mice per group). Data are presented as mean and SEM. (A high-quality digital representation of this figure is available in the online issue.)
FIG. 3.Expression and activity of eNOS. A: eNOS and Ser-1177 phospho eNOS expression was confirmed in BM of WT animals but was undetectable in BM of IRKO mice (n = 3 mice per group). B: Insulin-stimulated eNOS activity was measured in aortic rings from IRKO and WT mice (n = 6 mice per group). Data are presented as mean and SEM.
FIG. 4.APC functional assays. A: Adhesion capacity of APCs cultured from IRKO and WT mice expressed as number of cells adhering to fibronectin-coated plates (n = 4 mice per group). B: Endothelial tube formation in response to conditioned medium from WT and IRKO APCs (P < 0.05; n = 4 mice per group). Data are presented as mean and SEM.
FIG. 5.Endothelial regeneration after wire injury of the femoral artery. A: Representative in situ Evans blue staining in an uninjured vessel and vessels at 3, 5, and 14 days after vascular injury (blue staining indicates denuded endothelium) in IRKO and WT mice (magnification ×20). B: Time-dependent endothelial regeneration is shown after vascular injury (n = 5 mice per group). *P < 0.05. Data are presented as mean and SEM. (A high-quality digital representation of this figure is available in the online issue.)
FIG. 6.Effects of cell transfusion on endothelial regeneration. A: En face microscopy demonstrates the presence of DiI-labeled MNCs at the injury site 5 days after wire injury with no detectable cells in the uninjured vessel (magnification ×100). B: Corresponding nuclear staining of the endothelium with DAPI revealing native endothelial cells and DiI-labeled transfused MNCs (magnification ×400). C: Effects of transfusion of spleen-derived MNCs or BM-derived c-kit(CD117)+ cells from WT or IRKO mice are shown on endothelial regeneration 5 days after wire injury (n = 4 mice per group). Data are presented as mean and SEM. (A high-quality digital representation of this figure is available in the online issue.)
FIG. 7.Aortic ring angiogenesis assay. A: Representative image demonstrates sprouting microvessels from an aortic ring cultured in Matrigel (magnification ×40). B: Quantification of microvessels sprouting from aortic rings from IRKO and WT mice (n = 4 mice per group). Data are presented as mean and SEM. (A high-quality digital representation of this figure is available in the online issue.)