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p27(kip1)基因敲除增强了对后肢缺血的侧支循环形成。

p27(kip1) Knockout enhances collateralization in response to hindlimb ischemia.

作者信息

Ankri-Eliahoo Galit, Weitz Kevin, Cox Timothy C, Tang Gale L

机构信息

Division of Vascular Surgery, University of Washington, Seattle, Wash.

Department of Pediatrics, University of Washington, and Center for Developmental Biology and Regenerative Medicine, Seattle Children's Research Institute, Seattle, Wash.

出版信息

J Vasc Surg. 2016 May;63(5):1351-9. doi: 10.1016/j.jvs.2014.12.047. Epub 2015 Feb 18.

Abstract

OBJECTIVE

The natural response to arterial occlusive disease is enlargement of collaterals; however, the molecular factors that control collateralization are not well understood. The gene p27(Kip1) (p27) affects human response to arterial injury. Previous studies have shown that overexpression of p27 inhibits vascular endothelial and vascular smooth muscle cell (VSMC) proliferation and angiogenesis. To test the hypothesis that knockout of p27 would improve collateralization in reaction to ischemia, we performed in vivo and in vitro experiments using p27 knockout (p27(-/-)) and wild-type (wt) mice.

METHODS

Hindlimb ischemia was induced by left femoral artery ligation in p27(-/-) and wt (C57BL/6) female mice. The mice underwent weekly laser Doppler perfusion imaging of the footpads until sacrifice on postoperative day 28 followed by microcomputed tomography scanning of both hindlimbs. VSMCs were isolated from p27(-/-) and wt mice and used in migration and gel contraction assays in the absence and presence of the nonspecific matrix metalloproteinase (MMP) inhibitor BB94. MMP-2 and MMP-9 messenger RNA (mRNA) expression was measured by quantitative reverse transcription-polymerase chain reaction in p27(-/-) and wt VSMCs.

RESULTS

p27(-/-) mice reperfused more effectively than wt mice by laser Doppler starting from day 7 (ischemic/nonischemic ratio, 0.33 ± 0.02 vs 0.25 ± 0.02; P < .05) and continuing through day 28 (0.45 ± 0.04 vs 0.31 ± 0.04; P < .05). The gracilis collateral diameter was similar for the nonischemic hindlimbs of the p27(-/-) and wt mice, and this collateral pathway increased similarly after ischemia as assessed by microcomputed tomography. However, the p27(-/-) mice significantly enlarged a novel collateral pathway that bridged directly between the femoral artery proximal to the ligation site and the saphenous or popliteal artery distal to the ligation site more than wt mice (158 ± 18.3 vs 82 ± 22 μm; P < .001). p27(-/-) VSMCs migrated more (79% ± 5% vs 56% ± 6%; P < .05) and caused more gel contraction (18% ± 5% of the initial area vs 43% ± 4%; P < .05) than wt cells. Migration and collagen contraction were abolished in p27(-/-) and wt cells by MMP inhibition. p27(-/-) cells expressed significantly more MMP-2 mRNA than wt cells did.

CONCLUSIONS

Knockout of p27 enhances arterial collateralization in response to hindlimb ischemia through enlargement of a new collateral pathway. In vitro, knockout of p27 increases collagen gel contraction in addition to stimulating VSMC migration. We speculate that p27 may affect collateralization through its role in regulating MMP-2 expression.

摘要

目的

动脉闭塞性疾病的自然反应是侧支循环的扩大;然而,控制侧支循环形成的分子因素尚未完全明确。基因p27(Kip1)(p27)影响人体对动脉损伤的反应。既往研究表明,p27过表达会抑制血管内皮细胞和平滑肌细胞(VSMC)增殖及血管生成。为验证p27基因敲除可改善缺血反应中侧支循环形成的假说,我们使用p27基因敲除(p27(-/-))和野生型(wt)小鼠进行了体内和体外实验。

方法

通过结扎p27(-/-)和野生型(C57BL/6)雌性小鼠的左股动脉诱导后肢缺血。每周对小鼠的足垫进行激光多普勒灌注成像,直至术后第28天处死,随后对双后肢进行微型计算机断层扫描。从p27(-/-)和野生型小鼠中分离VSMC,并在有无非特异性基质金属蛋白酶(MMP)抑制剂BB94的情况下用于迁移和凝胶收缩试验。通过定量逆转录-聚合酶链反应检测p27(-/-)和野生型VSMC中MMP-2和MMP-9信使核糖核酸(mRNA)的表达。

结果

从第7天开始,p27(-/-)小鼠通过激光多普勒检测的再灌注效果比野生型小鼠更有效(缺血/非缺血比值,0.33±0.02对0.25±0.02;P<.05),并持续至第28天(0.45±0.04对0.31±0.04;P<.05)。p27(-/-)和野生型小鼠非缺血后肢的股薄肌侧支直径相似,通过微型计算机断层扫描评估,缺血后侧支循环途径的增加也相似。然而,p27(-/-)小鼠比野生型小鼠更显著地扩大了一条新的侧支循环途径,该途径直接连接结扎部位近端的股动脉与结扎部位远端的隐动脉或腘动脉(158±18.3对82±22μm;P<.001)。与野生型细胞相比,p27(-/-)VSMC迁移更多(79%±5%对56%±6%;P<.05),导致更多的凝胶收缩(初始面积的18%±5%对43%±4%;P<.05)。MMP抑制可消除p27(-/-)和野生型细胞的迁移和胶原收缩。p27(-/-)细胞表达的MMP-2 mRNA明显多于野生型细胞。

结论

p27基因敲除通过扩大新的侧支循环途径增强了对后肢缺血的动脉侧支循环形成。在体外,p27基因敲除除了刺激VSMC迁移外,还增加了胶原凝胶收缩。我们推测p27可能通过其在调节MMP-2表达中的作用影响侧支循环形成。

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