Morikawa Shunichi, Baluk Peter, Kaidoh Toshiyuki, Haskell Amy, Jain Rakesh K, McDonald Donald M
Department of Anatomy and Cardiovascular Research Institute and Comprehensive Cancer Center, University of California, San Francisco, California 94143-0130, USA.
Am J Pathol. 2002 Mar;160(3):985-1000. doi: 10.1016/S0002-9440(10)64920-6.
Endothelial cells of tumor vessels have well-documented alterations, but it is less clear whether pericytes on these vessels are abnormal or even absent. Here we report that alpha-smooth muscle actin (alpha-SMA) and desmin-immunoreactive pericytes were present on >97% of blood vessels viewed by confocal microscopy in 100-microm-thick sections of three different spontaneous or implanted tumors in mice. However, the cells had multiple abnormalities. Unlike pericytes on capillaries in normal pancreatic islets, which had desmin but not alpha-SMA immunoreactivity, pericytes on capillary-size vessels in insulinomas in RIP-Tag2 transgenic mice expressed both desmin and alpha-SMA. Furthermore, pericytes in RIP-Tag2 tumors, as well as those in MCa-IV breast carcinomas and Lewis lung carcinomas, had an abnormally loose association with endothelial cells and extended cytoplasmic processes deep into the tumor tissue. alpha-SMA-positive pericytes also covered 73% of endothelial sprouts in RIP-Tag2 tumors and 92% of sprouts in the other tumors. Indeed, pericyte sleeves were significantly longer than the CD31-immunoreactive endothelial cell sprouts themselves in all three types of tumors. All three tumors also contained alpha-SMA-positive myofibroblasts that resembled pericytes but were not associated with blood vessels. We conclude that pericytes are present on most tumor vessels but have multiple abnormalities, including altered expression of marker proteins. In contrast to some previous studies, the almost ubiquitous presence of pericytes on tumor vessels found in the present study may be attributed to our use of both desmin and alpha-SMA as markers and 100-microm-thick tissue sections. The association of pericytes with endothelial sprouts raises the possibility of an involvement in sprout growth or retraction in tumors.
肿瘤血管的内皮细胞存在诸多已被充分证实的改变,但这些血管上的周细胞是否异常甚至缺失尚不清楚。在此我们报告,在小鼠三种不同的自发或植入性肿瘤的100微米厚切片中,通过共聚焦显微镜观察,>97%的血管上存在α-平滑肌肌动蛋白(α-SMA)和结蛋白免疫反应性周细胞。然而,这些细胞存在多种异常。与正常胰岛毛细血管上仅表达结蛋白而不表达α-SMA免疫反应性的周细胞不同,RIP-Tag2转基因小鼠胰岛素瘤中毛细血管大小血管上的周细胞同时表达结蛋白和α-SMA。此外,RIP-Tag2肿瘤中的周细胞,以及MCa-IV乳腺癌和Lewis肺癌中的周细胞,与内皮细胞的结合异常松散,其细胞质突起深入肿瘤组织内部。α-SMA阳性周细胞还覆盖了RIP-Tag2肿瘤中73%的内皮芽和其他肿瘤中92%的内皮芽。事实上,在所有三种类型的肿瘤中,周细胞套都明显长于CD31免疫反应性内皮细胞芽本身。所有三种肿瘤还含有类似于周细胞但与血管无关的α-SMA阳性肌成纤维细胞。我们得出结论,周细胞存在于大多数肿瘤血管上,但存在多种异常,包括标记蛋白表达的改变。与之前的一些研究不同,本研究中发现周细胞在肿瘤血管上几乎普遍存在,这可能归因于我们使用结蛋白和α-SMA作为标记以及100微米厚的组织切片。周细胞与内皮芽的关联增加了其参与肿瘤芽生长或退缩的可能性。