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Research report| Volume 117, ISSUE 1, P83-96, September 1995

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Kinetics of smooth muscle cell proliferation and intimal thickening in a pig carotid model of balloon injury

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      Abstract

      Restenosis as a result of neointimal smooth muscle cell accumulation is an important limitation to the effectiveness of balloon angioplasty as a treatment for end-stage atherosclerosis. Quantitative animal models allow the definition of pathophysiological mechanisms and the evaluation of new therapeutic strategies. In this study we quantified the time course of neointima formation by morphometry, and smooth muscle cell (SMC) proliferation by immunocytochemistry for proliferating cell nuclear antigen (PCNA), in the pig carotid artery 0-28 days following balloon injury. This led to two distinct kinds of injury observed also in clinical studies, namely medial dilatation or deep medial tearing with rupture of the internal elastic lamina. Dilatation injury alone led to medial enlargement and neointima formation by 7 days, which did not increase further up to 28 days. Medial enlargement was similar following rupture of the internal elastic lamina; however the sum of neointima formation plus the area of medial repair (‘neomedia’) increased progressively up to 21 days after balloon injury. Balloon injury increased the PCNA index of smooth muscle cells in the media underlying an intact internal elastic lamina maximally after 3 days. The PCNA index in the neointima and especially in the neomedia was greater and maximal after 7 days. Endothelial regrowth occurred by 21 days in the presence or absence of medial tears. Our results establish a quantitative pig model of balloon injury which will allow the assessment of new therapeutic strategies directed at two clinically relevant types of injury. Medial tearing is associated with an enhanced and localized proliferative response and may therefore be especially important in human restenosis.

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      References

        • Kaltenbach M
        • Kober G
        • Scherer D
        • Vallbracht C
        Recurrence rate after successful angioplasty.
        Eur Heart J. 1985; 6: 276
        • Nobuyoshi M
        • Kimura T
        • Nosaka H
        • Mioka S
        • Ueno K
        • Yokoi H
        • Hamasaki N
        • Horiochi H
        • Ohishi H
        Restenosis after successful percutaneous transluminal coronary angioplasty: Serial angiographic follow up of 229 patients.
        J Am Coll Cardiol. 1988; 12: 616
        • Popma JJ
        • Califf R
        • Topol EJ
        Clinical trials of restenosis after coronary angioplasty.
        Circulation. 1991; 84: 1426
        • King SB
        Role of new technology in balloon angioplasty.
        Circulation. 1991; 84: 2574
        • Uchida Y
        • Hasegawa K
        • Kawamura K
        • Shibuya I
        Angioscopic observation of the coronary luminal changes induced by percutaneous transluminal coronary angioplasty.
        Am Heart J. 1989; 117: 769
        • Kohchi K
        • Takebayashi S
        • Block PC
        • Hiroki T
        Arterial changes after percutaneous coronary angioplasty: results at autopsy.
        J Am Coll Cardiol. 1987; 10: 592
        • Johnson DE
        • Hinohara T
        • Selmon MR
        • Braden LJ
        • Simpson JB
        Primary peripheral arterial stenoses and restenosis excised by transluminal atherectomy: a histopathologic study.
        J Am Coll Cardiol. 1990; 15: 419
        • Clowes AW
        • Clowes MM
        • Reidy MA
        Kinetics of cellular proliferation after arterial injury. III. Endothelial and smooth muscle growth in chronically denuded vessels.
        Lab Invest. 1986; 54: 295
        • Clowes AW
        • Reidy MA
        • Clowes MM
        Mechanisms of stenosis after arterial injury.
        Lab Invest. 1983; 49: 208
        • Ross R
        • Raines EW
        • Bowen-Pope DF
        The biology of platelet-derived growth factor.
        Cell. 1986; 46: 155
        • Ferns GAA
        • Raines EW
        • Sprugel KH
        • Motani AS
        • Reidy MA
        • Ross R
        Inhibition of neointimal smooth muscle cell accumulation after angioplasty by an antibody to PDGF.
        Science. 1991; 253: 1132
        • Libby P
        • Warner SJC
        • Salomon RN
        • Birinye LK
        Production of platelet-derived growth factor-like mitogen by smooth muscle cells from human atheroma.
        N Engl J Med. 1988; 318: 1493
        • Jonasson L
        • Holm J
        • Skalli O
        • Bondjers G
        • Hansson GK
        Regional accumulation of T cells, macrophages and smooth muscle cells in the human atherosclerotic plaque.
        Arteriosclerosis. 1986; 6: 131
        • French JE
        • Jennings MA
        • Florey HW
        Morphological studies on atherosclerosis in swine.
        Ann NY Acad Sci. 1965; 127: 780
        • Leach CM
        • Thorburn GD
        A comparative study of collagen-induced thromboxane release from platelets of different species: implications for human atherosclerosis models.
        Prostaglandins. 1982; 24: 47
        • Fuster V
        • Fass DN
        • Kaye MP
        • Josa M
        • Zinsmeister A
        • Bowie EJW
        Arteriosclerosis in normal and von Wille-brand pigs: Long-term prospective study and aortic transplantation study.
        Circ Res. 1982; 51: 587
        • Steele PM
        • Chesebro JH
        • Stanson AW
        • Holmes Jr, JR
        • Dewanjee MK
        • Badimon L
        • Fuster V
        Balloon angioplasty: Natural history of the pathophysiological response to injury in a pig model.
        Circ Res. 1985; 57: 105
        • Karas SP
        • Gravanis MB
        • Santoian EC
        • Robinson KA
        • Anderberg KA
        • King III, SB
        Coronary intimal proliferation after balloon injury and stenting in swine: An animal model of restenosis.
        J Am Coll Cardiol. 1992; 20: 467
        • Bonan R
        • Paiement P
        • Scortichini D
        • Cloutier M-J
        • Leung TK
        Coronary restenosis: Evaluation of a restenosis injury index in a swine model.
        Am Heart J. 1993; 126: 1334
        • Schwartz RS
        • Murphy JG
        • Edwards WD
        • Camrud A
        • Vlietstra RE
        • Holmes DR
        Restenosis after balloon angioplasty: a practical proliferative model in porcine coronary arteries.
        Circulation. 1990; 82: 2190
        • Schwartz RS
        • Huber KC
        • Murphy JG
        • Edwards WD
        • Camrud AR
        • Vlietstra RE
        • Holmes DR
        Restenosis and the proportional neointimal response to coronary artery injury: results in a porcine model.
        J Am Coll Cardiol. 1992; 19: 267
        • Soyombo AA
        • Angelini GD
        • Bryan AJ
        • Jasani B
        • Newby AC
        Intimal proliferation in an organ culture of human saphenous vein.
        Am J Pathol. 1990; 137: 1401
        • Roussel F
        • Dalion J
        Lectins as markers of endothelial cells: comparative study between human and animal cells.
        Lab Anim. 1988; 22: 135
        • Bravo R
        • Frank R
        • Blundell PA
        • Macdonald-Bravo H
        Cyclin (PCNA) is the auxiliary protein of DNA polymerase S.
        Nature. 1987; 326: 515
        • Galand P
        • Degraef C
        Cyclin/PCNA immunostaining as an alternative to tritiated thymidine pulse labelling for marking S-phase cells in paraffin sections from animal and human tissue.
        Cell Tissue Kinet. 1989; 22: 383
        • Spielmann H
        • Jacob-Muller U
        • Schultz P
        Simple assay of 0.1–1.0 pmol of ATP, ADP and AMP in single somatic cells using purified luciferin luciferase.
        Anal Biochem. 1981; 113: 172
        • Bradford MM
        A rapid and sensitive method for the quantification of microgram quantities of protein utilizing the principle of protein-dye binding.
        Anal Biochem. 1976; 72: 248
        • Clowes AW
        • Schwartz SM
        Significance of quiescent smooth muscle cell migration in the injured rat carotid artery.
        Circ Res. 1976; 56: 139
        • Reidy MA
        Proliferation of smooth muscle cells at sites distant from vascular injury.
        Arteriosclerosis. 1989; 73: 792
        • Lindner V
        • Fingerle J
        • Reidy MA
        Mouse model of arterial injury.
        Circ Res. 1993; 73: 792
        • Hanke H
        • Oberhoff M
        • Hanke S
        • Hassenstein S
        • Kamenz J
        • Schmid KM
        • Betz E
        • Karsch KR
        Inhibition of cellular proliferation after experimental balloon angioplasty by low molecular weight heparin.
        Circulation. 1992; 85: 1548
        • Rodgers GP
        • Minor ST
        • Robinson K
        • Cromeens D
        • Woolbert SC
        • Stephens LC
        • Guyton JR
        • Wright K
        • Roubin GS
        • Raizner AE
        Adjuvant therapy for intracoronary stents: investigation in atherosclerotic swine.
        Circulation. 1990; 82: 560
        • Waller BF
        • Pinkerton CA
        • Orr CM
        • Slack JD
        • Van Tassel J
        • Peters T
        Morphological observations late (30 days) after clinically successful coronary balloon angioplasty.
        Circulation (Suppl 1). 1991; 83: 28
        • Nobuyoshi M
        • Kimura T
        • Ohishi H
        • Horiuchi H
        • Nosaka H
        • Hamasaki N
        • Yokoi H
        • Kim K
        Restenosis after percutaneous transluminal angioplasty: Pathologic observations in 20 patients.
        J Am Coll Cardiol. 1991; 17: 433
        • Haudenschild CC
        • Schwartz SM
        Endothelial regeneration: Restitution of endothelial continuity.
        Lab Invest. 1979; 41: 407
        • Reidy MA
        • Silver M
        Endothelial regeneration. VII. Lack of intimal proliferation after defined injury in the rat aorta.
        Am J Pathol. 1985; 118: 173
        • Heras M
        • Chesebro JH
        • Webster MWI
        • Mruk JS
        • Grill DE
        • Penny WJ
        • Bowie EJW
        • Badimon L
        • Fuster V
        Hirudin heparin and placebo during deep arterial injury in the pig: The in vivo role of thrombin in platelet-mediated thrombosis.
        Circulation. 1990; 82: 1476
        • Groves PH
        • Lewis MJ
        • Cheadle HA
        • Penny WJ
        SIN-1 reduces platelet adhesion and platelet-thrombus formation in a porcine model of balloon angioplasty.
        Circulation. 1993; 87: 590
        • Penn MS
        • Saidel GM
        • Chisolm GM
        Relative significance of endothelium and internal elastic lamina in regulating the entry of macromolecules into arteries in vivo.
        Circ Res. 1994; 74: 74
        • Fingerle J
        • Kraft T
        The induction of smooth muscle cell proliferation in vitro using an organ culture system.
        Int Angiol. 1987; 6: 65
        • Sims FH
        Discontinuities in the internal elastic lamina: A comparison of coronary and internal mammary arteries.
        Artery. 1985; 13: 127
        • Sims FH
        • Gavin JB
        The early development of intimal thickening of human coronary arteries.
        Coron Art Dis. 1990; 1: 205