1)Risau W. Mechanisms of angiogenesis. Nature. 1997; 386: 671-4
|
|
|
2)Carmeliet P. Mechanisms of angiogenesis and arteriogenesis. Nat Med. 2000; 6: 389-95
|
|
|
3)Seiler C. The human coronary collateral circulation. Eur J Clin Invest. 2010; 40: 465-76
|
|
|
4)Schaper W. Collateral circulation: past and present. Basic Res Cardiol. 2009; 104: 5-21
|
|
|
5)Wustmann K, Zbinden S, Windecker S, et al. Is there functional collateral flow during vascular occlusion in angiographically normal coronary arteries? Circulation. 2003; 107: 2213-20
|
|
|
6)Zbinden R, Zbinden S, Meier P, et al. Coronary collateral flow in response to endurance exercise training. Eur J Cardiovasc Prev Rehabil. 2007; 14: 250-7
|
|
|
7)Zbinden R, Zbinden S, Windecker S, et al. Direct demonstration of coronary collateral growth by physical endurance exercise in a healthy marathon runner. Heart. 2004; 90: 1350-1
|
|
|
8)Deindl E, Buschmann I, Hoefer IE, et al. Role of ischemia and of hypoxia-inducible genes in arteriogenesis after femoral artery occlusion in the rabbit. Circ Res. 2001; 89: 779-86
|
|
|
9)Eitenmüller I, Volger O, Kluge A, et al. The range of adaptation by collateral vessels after femoral artery occlusion. Circ Res. 2006; 99: 656-62
|
|
|
10)Schirmer SH, van Nooijen FC, Piek JJ, et al. Stimulation of collateral artery growth: travelling further down the road to clinical application. Heart. 2009; 95: 191-7
|
|
|
11)Schaper J, König R, Franz D, et al. The endothelial surface of growing coronary collateral arteries. Intimal margination and diapedesis of monocytes. A combined SEM and TEM study. Virchows Arch A Pathol Anat Histol. 1976; 370: 193-205
|
|
|
12)Scholz D, Ito W, Fleming I, et al. Ultrastructure and molecular histology of rabbit hind-limb collateral artery growth (arteriogenesis). Virchows Arch. 2000; 436: 257-70
|
|
|
13)Ziegelhoeffer T, Fernandez B, Kostin S, et al. Bone marrow-derived cells do not incorporate into the adult growing vasculature. Circ Res. 2004; 94: 230-8
|
|
|
14)Heil M, Ziegelhoeffer T, Pipp F, et al. Blood monocyte concentration is critical for enhancement of collateral artery growth. Am J Physiol Heart Circ Physiol. 2002; 283: H2411-19
|
|
|
15)Arras M, Ito WD, Scholz D, et al. Monocyte activation in angiogenesis and collateral growth in the rabbit hindlimb. J Clin Invest. 1998; 101: 40-50
|
|
|
16)Capoccia BJ, Gregory AD, Link DC. Recruitment of the inflammatory subset of monocytes to sites of ischemia induces angiogenesis in a monocyte chemoattractant protein-1-dependent fashion. J Leukoc Biol. 2008; 84: 760-8
|
|
|
17)Khmelewski E, Becker A, Meinertz T, et al. Tissue resident cells play a dominant role in arteriogenesis and concomitant macrophage accumulation. Circ Res. 2004; 95: e56-64
|
|
|
18)Mantovani A, Biswas SK, Galdiero MR, et al. Macrophage plasticity and polarization in tissue repair and remodelling. J Pathol. 2013; 229: 176-85
|
|
|
19)Sica A, Mantovani A. Macrophage plasticity and polarization: in vivo veritas. J Clin Invest. 2012; 122: 787-95
|
|
|
20)Geissmann F, Manz MG, Jung S, et al. Development of monocytes, macrophages, and dendritic cells. Science. 2010; 327: 656-61
|
|
|
21)Nahrendorf M, Swirski FK. Monocyte and macrophage heterogeneity in the heart. Circ Res. 2013; 112: 1624-33
|
|
|
22)Takeda Y, Costa S, Delamarre E, et al. Macrophage skewing by Phd2 haplodeficiency prevents ischaemia by inducing arteriogenesis. Nature. 2011; 479: 122-6
|
|
|
23)Hamm A, Veschini L, Takeda Y, et al. PHD2 regulates arteriogenic macrophages through TIE2 signalling. EMBO Mol Med. 2013; 5: 843-57
|
|
|
24)Troidl C, Jung G, Troidl K, et al. The temporal and spatial distribution of macrophage subpopulations during arteriogenesis. Curr Vasc Pharmacol. 2013; 11: 5-12
|
|
|
25)Seiler C, Pohl T, Wustmann K, et al. Promotion of collateral growth by granulocyte-macrophage colony-stimulating factor in patients with coronary artery disease: a randomized, double-blind, placebo-controlled study. Circulation. 2001; 104: 2012-7
|
|
|
26)van Royen N, Schirmer SH, Atasever B, et al. START Trial: a pilot study on STimulation of ARTeriogenesis using subcutaneous application of granulocyte-macrophage colony-stimulating factor as a new treatment for peripheral vascular disease. Circulation. 2005; 112: 1040-6
|
|
|