6
Views
0
CrossRef citations to date
0
Altmetric
Articles

Arteriolar Remodeling Following Ischemic Injury Extends from Capillary to Large Arteriole in the Microcirculation

, , &
Pages 389-404 | Received 01 Aug 2007, Accepted 26 Sep 2007, Published online: 10 Jul 2009

REFERENCES

  • Arras M, Ito W D, Scholz D, Winkler B, Schaper J, Schaper W. Monocyte activation in angiogenesis and collateral growth in the rabbit hindlimb. J Clin Invest 1998; 101(1)40–50
  • Bailey J K, Kindig C A, Behnke B J, Musch T I, Schmid-Schöenbein G W, Poole D C. Spinotrapezius muscle microcirculatory function: effects of surgical exteriorization. Am J Physiol Heart Circ Physiol 2000; 279(6)H3131–H3137
  • Bearden S E, Segal S S. Neurovascular alignment in adult mouse skeletal muscles. Microcirculation 2005; 12(2)161–167
  • Bergmann C E, Hoefer I E, Meder B, Roth H, van Royen N, Breit S M, Jost M M, Aharinejad S, Hartmann S, Buschmann I R. Arteriogenesis depends on circulating monocytes and macrophage accumulation and is severely depressed in op/op mice. J Leukoc Biol 2006; 80(1)59–65
  • Brown M D, Kent J, Kelsall C J, Milkiewicz M, Hudlicka O. Remodeling in the microcirculation of rat skeletal muscle during chronic ischemia. Microcirculation 2003; 10(2)179–191
  • Couffinhal T, Silver M, Kearney M, Sullivan A, Witzenbichler B, Magner M, Annex B, Peters K, Isner J M. Impaired collateral vessel development associated with reduced expression of vascular endothelial growth factor in ApoE-/- mice. Circulation 1999; 99(24)3188–3198
  • Duvall C L, Taylor W R, Weiss D, Guldberg R E. Quantitative microcomputed tomography analysis of collateral vessel development after ischemic injury. Am J Physiol Heart Circ Physiol 2004; 287(1)H302–H310
  • Egami K, Murohara T, Aoki M, Matsuishi T. Ischemia-induced angiogenesis: role of inflammatory response mediated by P-selectin. J Leukoc Biol 2006; 79(5)971–976
  • Engelson E T, Schmid-Schöenbein G W, Zweifach B W. The microvasculature in skeletal muscle. II. Arteriolar network anatomy in normotensive and spontaneously hypertensive rats. Microvasc Res 1986; 31(3)356–374
  • Harris A G, Skalak T C. Effects of leukocyte capillary plugging in skeletal muscle ischemia-reperfusion injury. Am J Physiol 1996; 271(6 Pt 2)H2653–H2660
  • Heil M, Eitenmuller I, Schmitz-Rixen T, Schaper W. Arteriogenesis versus angiogenesis: similarities and differences. J Cell Mol Med 2006; 10(1)45–55
  • Heil M, Ziegelhoeffer T, Wagner S, Fernandez B, Helisch A, Martin S, Tribulova S, Kuziel W A, Bachmann G, Schaper W. Collateral artery growth (arteriogenesis) after experimental arterial occlusion is impaired in mice lacking CC-chemokine receptor-2. Circ Res 2004; 94(5)671–677
  • Hershey J C, Baskin E P, Glass J D, Hartman H A, Gilberto D B, Rogers I T, Cook J J. Revascularization in the rabbit hindlimb: dissociation between capillary sprouting and arteriogenesis. Cardiovasc Res 2001; 49(3)618–625
  • Hoefer I E, Grundmann S, van Royen N, Voskuil M, Schirmer S H, Ulusans S, Bode C, Buschmann I R, Piek J J. Leukocyte subpopulations and arteriogenesis: specific role of monocytes, lymphocytes and granulocytes. Atherosclerosis 2005; 181(2)285–293
  • Hoefer I E, van Royen N, Rectenwald J E, Deindl E, Hua J, Jost M, Grundmann S, Voskuil M, Ozaki C K, Piek J J, Buschmann I R. Arteriogenesis proceeds via ICAM-1/Mac-1- mediated mechanisms. Circ Res 2004; 94(9)1179–1185
  • Hutchins G M, Miner M M, Bulkley B H. Tortuosity as an index of the age and diameter increase of coronary collateral vessels in patients after acute myocardial infarction. Am J Cardiol 1978; 41(2)210–215
  • Jackson Z S, Dajnowiec D, Gotlieb A I, Langille B L. Partial off-loading of longitudinal tension induces arterial tortuosity. Arterioscler Thromb Vasc Biol 2005; 25(5)957–962
  • Kadambi A, Skalak T C. Role of leukocytes and tissue-derived oxidants in short-term skeletal muscle ischemia-reperfusion injury. Am J Physiol Heart Circ Physiol 2000; 278(2)H435–H443
  • Kindig C A, Poole D C. A comparison of the microcirculation in the rat spinotrapezius and diaphragm muscles. Microvasc Res 1998; 55(3)249–259
  • Kinnaird T, Stabile E, Burnett M S, Shou M, Lee C W, Barr S, Fuchs S, Epstein S E. Local delivery of marrow-derived stromal cells augments collateral perfusion through paracrine mechanisms. Circulation 2004; 109(12)1543–1549
  • Lash J M, Bohlen H G. Functional adaptations of rat skeletal muscle arterioles to aerobic exercise training. J Appl Physiol 1992; 72(6)2052–2062
  • Leong-Poi H, Christiansen J, Heppner P, Lewis C W, Klibanov A L, Kaul S, Lindner J R. Assessment of endogenous and therapeutic arteriogenesis by contrast ultrasound molecular imaging of integrin expression. Circulation 2005; 111(24)3248–3254
  • Miranville A, Heeschen C, Sengenes C, Curat C A, Busse R, Bouloumie A. Improvement of postnatal neovascularization by human adipose tissue-derived stem cells. Circulation 2004; 110(3)349–355
  • Mori H, Tanaka E, Hyodo K, Uddin Mohammed M, Sekka T, Ito K, Shinozaki Y, Tanaka A, Nakazawa H, Abe S, Handa S, Kubota M, Tanioka K, Umetani K, Ando M. Synchrotron microangiography reveals configurational changes and to-and-fro flow in intramyocardial vessels. Am J Physiol 1999; 276(2 Pt 2)H429–H437
  • O'Neill TJt, Wamhoff B R, Owens G K, Skalak T C. Mobilization of bone marrow-derived cells enhances the angiogenic response to hypoxia without transdifferentiation into endothelial cells. Circ Res 2005; 97(10)1027–1035
  • Peirce S M, Skalak T C. Microvascular remodeling: a complex continuum spanning angiogenesis to arteriogenesis. Microcirculation 2003; 10(1)99–111
  • Price R J, Skalak T C. A circumferential stress-growth rule predicts arcade arteriole formation in a network model. Microcirculation 1995; 2(1)41–51
  • Price R J, Skyba D M, Kaul S, Skalak T C. Delivery of colloidal particles and red blood cells to tissue through microvessel ruptures created by targeted microbubble destruction with ultrasound. Circulation 1998; 98(13)1264–1267
  • Pries A R, Secomb T W. Control of blood vessel structure: insights from theoretical models. Am J Physiol Heart Circ Physiol 2005; 288(3)H1010–H1015
  • Pries A R, Secomb T W, Gessner T, Sperandio M B, Gross J F, Gaehtgens P. Resistance to blood flow in microvessels in vivo. Circ Res 1994; 75(5)904–915
  • Rehman J, Traktuev D, Li J, Merfeld-Clauss S, Temm-Grove C J, Bovenkerk J E, Pell C L, Johnstone B H, Considine R V, March K L. Secretion of angiogenic and antiapoptotic factors by human adipose stromal cells. Circulation 2004; 109(10)1292–1298
  • Schiekofer S, Galasso G, Sato K, Kraus B J, Walsh K. Impaired revascularization in a mouse model of type 2 diabetes is associated with dysregulation of a complex angiogenic-regulatory network. Arterioscler Thromb Vasc Biol 2005; 25(8)1603–1609
  • Scholz D, Cai W J, Schaper W. Arteriogenesis, a new concept of vascular adaptation in occlusive disease. Angiogenesis 2001; 4(4)247–257
  • Scholz D, Ito W, Fleming I, Deindl E, Sauer A, Wiesnet M, Busse R, Schaper J, Schaper W. Ultrastructure and molecular histology of rabbit hind-limb collateral artery growth (arteriogenesis). Virchows Arch 2000; 436(3)257–270
  • Silvestre J S, Mallat Z, Duriez M, Tamarat R, Bureau M F, Scherman D, Duverger N, Branellec D, Tedgui A, Levy B I. Antiangiogenic effect of interleukin-10 in ischemia-induced angiogenesis in mice hindlimb. Circ Res 2000; 87(6)448–452
  • Skalak T C, Schmid-Schöenbein G W. The microvasculature in skeletal muscle. IV. A model of the capillary network. Microvasc Res 1986; 32(3)333–347
  • Song J, Qi M, Kaul S, Price R J. Stimulation of arteriogenesis in skeletal muscle by microbubble destruction with ultrasound. Circulation 2002; 106(12)1550–1555
  • Stabile E, Kinnaird T, la Sala A, Hanson S K, Watkins C, Campia U, Shou M, Zbinden S, Fuchs S, Kornfeld H, Epstein S E, Burnett M S. CD8+ T lymphocytes regulate the arteriogenic response to ischemia by infiltrating the site of collateral vessel development and recruiting CD4+ mononuclear cells through the expression of interleukin-16. Circulation 2006; 113(1)118–124
  • Suzuki H, Poole D C, Zweifach B W, Schmid-Schöenbein G W. Temporal correlation between maximum tetanic force and cell death in postischemic rat skeletal muscle. J Clin Invest 1995; 96(6)2892–2897
  • Takeshita S, Isshiki T, Ochiai M, Eto K, Mori H, Tanaka E, Umetani K, Sato T. Endothelium-dependent relaxation of collateral microvessels after intramuscular gene transfer of vascular endothelial growth factor in a rat model of hindlimb ischemia. Circulation 1998; 98(13)1261–1263
  • Tanaka A, Mori H, Tanaka E, Mohammed M U, Tanaka Y, Sekka T, Ito K, Shinozaki Y, Hyodo K, Ando M, Umetani K, Tanioka K, Kubota M, Abe S, Handa S, Nakazawa H. Branching patterns of intramural coronary vessels determined by microangiography using synchrotron radiation. Am J Physiol 1999; 276(6 Pt 2)H2262–H2267
  • Tang G, Charo D N, Wang R, Charo I F, Messina L. CCR2-/- knockout mice revascularize normally in response to severe hindlimb ischemia. J Vasc Surg 2004; 40(4)786–795
  • Van Gieson E J, Murfee W L, Skalak T C, Price R J. Enhanced smooth muscle cell coverage of microvessels exposed to increased hemodynamic stresses in vivo. Circ Res 2003; 92(8)929–936

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.