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Methods for Acute and Subacute Murine Hindlimb Ischemia
Published on: June 21, 2016
Suppressed hindlimb perfusion in Rac2-/- and Nox2-/- mice does not result from impaired collateral growth
Matthew R Distasi1, Jamie Case, Matthew A Ziegler
1Department of Cellular and Integrative Physiology, Indiana Univ. School of Medicine, 1001 W. 10th St., WD OPW 425 E, Indianapolis, IN 46202, USA.
Abstract:
While tissue perfusion and angiogenesis subsequent to acute femoral artery occlusion are suppressed in NADPH oxidase 2 (Nox2)-null (Nox2(-/-)) mice, studies have not established the role of Nox2 in collateral artery enlargement. Rac2 is a small GTPase that binds Nox2 and activates Nox2-based NAD(P)H oxidase but, unlike Nox2, is primarily restricted to bone marrow-derived cells. In this study, we used Rac2-null (Rac2(-/-)) and Nox2(-/-) mice with a novel method of identifying primary hindlimb collaterals to investigate the hypothesis that collateral growth requires these molecules. When initial experiments performed with femoral ligation demonstrated similar perfusion and collateral growth in Rac2(-/-) and wild-type C57BL/6J (BL6) mice, subsequent experiments were performed with a more severe ischemia model, femoral artery excision. After femoral excision, tissue perfusion was suppressed in Rac2(-/-) mice relative to BL6 mice. Histological assessment of ischemic injury including necrotic and regenerated muscle fibers and lipid and collagen deposition demonstrated greater injury in Rac2(-/-) mice. The diameters of primary collaterals identified during Microfil injection with intravital microscopy were enlarged to a similar extent in BL6 and Rac2(-/-) mice. Intimal cells in collateral cross sections were increased in number in both strains and were CD31 positive and CD45 negative. Circulating leukocytes and CD11b(+) cells were increased more in Rac2(-/-) than BL6 animals. Experiments performed in Nox2(-/-) mice to verify that the unexpected results related to collateral growth were not unique to Rac2(-/-) mice gave equivalent results. The data demonstrate that, subsequent to acute femoral artery excision, perfusion recovery is impaired in Rac2(-/-) and Nox2(-/-) mice but that collateral luminal expansion and intimal cell recruitment/proliferation are normal. These novel results indicate that collateral luminal expansion and intimal cell recruitment/proliferation are not mediated by Rac2 and Nox2.
Insights
Collateral artery growth in mice lacking NADPH oxidase 2 (Nox2) or Rac2 is normal, despite impaired tissue perfusion after femoral artery excision. These findings suggest Rac2 and Nox2 do not mediate collateral expansion or intimal cell proliferation.
Area of Science:
- Vascular Biology
- Molecular Medicine
- Immunology
Background:
- NADPH oxidase 2 (Nox2) deficiency impairs tissue perfusion and angiogenesis after femoral artery occlusion.
- The role of Nox2 and its activator Rac2 in collateral artery enlargement remains unclear.
- Rac2 is a GTPase activating Nox2, primarily found in bone marrow-derived cells.
Purpose of the Study:
- To investigate the role of Rac2 and Nox2 in collateral artery growth and function following hindlimb ischemia.
- To test the hypothesis that collateral expansion requires Rac2 and Nox2.
Main Methods:
- Utilized Rac2-null (Rac2(-/-)) and Nox2-null (Nox2(-/-)) mice.
- Employed a femoral artery excision model to induce severe hindlimb ischemia.
- Assessed tissue perfusion, histological injury, collateral artery diameters via Microfil injection and intravital microscopy, and circulating leukocytes.
Main Results:
- Perfusion recovery was suppressed in Rac2(-/-) and Nox2(-/-) mice compared to wild-type C57BL/6J (BL6) mice after femoral artery excision.
- Histological analysis revealed greater ischemic injury in Rac2(-/-) mice.
- Collateral artery luminal expansion and intimal cell recruitment/proliferation were comparable between knockout and wild-type mice.
- Circulating leukocytes and CD11b(+) cells were elevated in Rac2(-/-) mice.
Conclusions:
- Impaired perfusion recovery in Rac2(-/-) and Nox2(-/-) mice suggests these molecules are important for post-ischemic blood flow restoration.
- Collateral luminal expansion and intimal cell proliferation are independent of Rac2 and Nox2.
- These findings challenge the presumed role of Nox2 and Rac2 in collateral artery remodeling.

