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人类脑血管畸形中的血管平滑肌细胞分化

Vascular smooth muscle cell differentiation in human cerebral vascular malformations.

作者信息

Uranishi R, Baev N I, Kim J H, Awad I A

机构信息

Department of Neurosurgery, Yale University School of Medicine, New Haven, Connecticut, USA.

出版信息

Neurosurgery. 2001 Sep;49(3):671-9; discussion 679-80. doi: 10.1097/00006123-200109000-00027.

Abstract

OBJECTIVE

The pathogenesis of central nervous system vascular malformations likely involves the abnormal assembly, differentiation of vascular smooth muscle cells (VSMC), or both in association with dysmorphic vessel wall. We hypothesize that intracranial arteriovenous malformations (AVMs) and cerebral cavernous malformations (CCMs) exhibit distinct patterns of expression of molecular markers of differentiation and maturity of VSMCs. We further speculate that the unique VSMC phenotype in the different lesions is not necessarily maintained in cell culture.

METHODS

Paraffin-embedded sections of five AVMs, CCMs, and control brain tissues were stained immunohistochemically with antibodies to alpha-smooth muscle actin (alpha-SMA), myosin heavy chain, and smoothelin, a novel marker for contractile VSMC phenotype. Large (> or =100 microm) and small (<100 microm) vessels were counted and assessed for immunoexpression of each protein, then categorized according to expression of one or more of these markers. Cultured nonendothelial cells isolated from four other excised AVM and CCM lesions were assessed for immunoexpression of the same antibodies.

RESULTS

Alpha-SMA was universally expressed in all vessels in AVMs and in control brains. It was expressed in the subendothelial layer of 97% of large caverns and 85% of small caverns and in scattered intercavernous connective tissue fibrocytes in CCMs. Myosin heavy chain was expressed in the majority of brain and AVM vessels, except for normal veins, and in the subendothelial layer of more than half of the caverns in CCMs. Smoothelin expression was less prevalent in large vessels in AVMs than in control brains and was not found in any caverns in CCMs (large vessels in control brains, 40.9%; AVMs, 21.9%; CCMs, 0%; P < 0.0001). Cultured AVM and CCM nonendothelial cells expressed alpha-SMA, but myosin heavy chain was expressed weakly in cells from only one CCM. Smoothelin was negative in all cells.

CONCLUSION

We describe vessels with various stages of VSMC differentiation in AVMs and CCMs. The subendothelial layer of CCMs commonly expresses alpha-SMA and less commonly expresses myosin heavy chain. Expression of smoothelin was less prevalent in large AVM vessels than in normal brain, which may reflect the loss of contractile property associated with hemodynamic stress. It is difficult to evaluate VSMC differentiation in culture because of phenotypic change.

摘要

目的

中枢神经系统血管畸形的发病机制可能涉及血管平滑肌细胞(VSMC)异常组装、分化或两者兼有,并伴有血管壁畸形。我们假设颅内动静脉畸形(AVM)和脑海绵状畸形(CCM)表现出VSMC分化和成熟分子标志物的不同表达模式。我们进一步推测,不同病变中独特的VSMC表型在细胞培养中不一定能维持。

方法

对5例AVM、CCM及对照脑组织的石蜡包埋切片用抗α-平滑肌肌动蛋白(α-SMA)、肌球蛋白重链和smoothelin(收缩性VSMC表型的一种新型标志物)的抗体进行免疫组织化学染色。对大血管(≥100微米)和小血管(<100微米)进行计数,并评估每种蛋白的免疫表达,然后根据这些标志物中一种或多种的表达进行分类。对从另外4例切除的AVM和CCM病变中分离的培养非内皮细胞进行相同抗体的免疫表达评估。

结果

α-SMA在AVM和对照脑的所有血管中均普遍表达。它在97%的大海绵状血管和85%的小海绵状血管的内皮下层以及CCM中散在的海绵状结缔组织纤维细胞中表达。肌球蛋白重链在大多数脑和AVM血管中表达,但正常静脉除外,在CCM中一半以上的海绵状血管内皮下层表达。Smoothelin在AVM大血管中的表达不如对照脑普遍,在CCM的任何海绵状血管中均未发现(对照脑大血管中为40.9%;AVM中为21. nine%;CCM中为0%;P<0.0001)。培养的AVM和CCM非内皮细胞表达α-SMA,但肌球蛋白重链仅在来自一个CCM的细胞中弱表达。Smoothelin在所有细胞中均为阴性。

结论

我们描述了AVM和CCM中具有不同VSMC分化阶段的血管。CCM的内皮下层通常表达α-SMA,较少表达肌球蛋白重链。Smoothelin在AVM大血管中的表达不如正常脑普遍,这可能反映了与血流动力学应激相关的收缩特性丧失。由于表型改变,在培养中难以评估VSMC分化。

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