控制动脉粥样硬化斑块形成中的血管生成开关:治疗干预的可能目标。

Mark Slevin, Jerzy Krupinski, Lina Badimon
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引用次数: 57

摘要

斑块血管生成可能在动脉粥样硬化的发展中起重要作用。血管血管新生和内侧浸润为内膜的发育和扩张提供营养,因此可以防止细胞死亡,并有助于斑块的生长和早期病变的稳定。然而,在更晚期的斑块中,炎症细胞浸润和伴随的大量促血管生成细胞因子的产生可能是诱导不受控制的内膜微血管增殖的原因,导致不成熟和脆弱的新血管的产生,类似于肿瘤发展中所见的情况。这些可能会导致不稳定的出血破裂环境的发展。越来越多的证据表明,内膜新生血管的表达与斑块发展的阶段、斑块破裂的风险以及随后出现的症状性疾病、缺血性神经事件和心肌/脑梗死的时间直接相关。尽管如此,关于新血管表达与斑块血栓形成之间的因果关系存在相互矛盾的证据,一些体内实验模型表明相反,迄今为止,很少有血管生成的直接介质被确定并与体内斑块不稳定相关。近年来,越来越多的血管生成治疗靶点被提出,以促进调节新生血管及其在癌症和黄斑变性等疾病中的后果。为了考虑潜在的单一或联合抗血管生成疗法,需要全面了解内皮血管增殖的启动机制,它们延伸到内膜区域,以及骨髓来源干细胞分化后新血管的可能重新合成。在这篇综述中,我们将探讨血管生成在复杂斑块发展中的重要性,描述其启动和维持的分子机制的现有知识,并讨论未来可能的抗血管生成疗法来控制斑块稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Controlling the angiogenic switch in developing atherosclerotic plaques: possible targets for therapeutic intervention.

Controlling the angiogenic switch in developing atherosclerotic plaques: possible targets for therapeutic intervention.

Controlling the angiogenic switch in developing atherosclerotic plaques: possible targets for therapeutic intervention.

Plaque angiogenesis may have an important role in the development of atherosclerosis. Vasa vasorum angiogenesis and medial infiltration provides nutrients to the developing and expanding intima and therefore, may prevent cellular death and contribute to plaque growth and stabilization in early lesions. However in more advanced plaques, inflammatory cell infiltration, and concomitant production of numerous pro-angiogenic cytokines may be responsible for induction of uncontrolled neointimal microvessel proliferation resulting in production of immature and fragile neovessels similar to that seen in tumour development. These could contribute to development of an unstable haemorrhagic rupture-prone environment. Increasing evidence has suggested that the expression of intimal neovessels is directly related to the stage of plaque development, the risk of plaque rupture, and subsequently, the presence of symptomatic disease, the timing of ischemic neurological events and myocardial/cerebral infarction. Despite this, there is conflicting evidence regarding the causal relationship between neovessel expression and plaque thrombosis with some in vivo experimental models suggesting the contrary and as yet, few direct mediators of angiogenesis have been identified and associated with plaque instability in vivo.In recent years, an increasing number of angiogenic therapeutic targets have been proposed in order to facilitate modulation of neovascularization and its consequences in diseases such as cancer and macular degeneration. A complete knowledge of the mechanisms responsible for initiation of adventitial vessel proliferation, their extension into the intimal regions and possible de-novo synthesis of neovessels following differentiation of bone-marrow-derived stem cells is required in order to contemplate potential single or combinational anti-angiogenic therapies. In this review, we will examine the importance of angiogenesis in complicated plaque development, describe the current knowledge of molecular mechanisms of its initiation and maintenance, and discuss possible future anti-angiogenic therapies to control plaque stability.

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