Translational Centre for Regenerative Medicine Leipzig, Germany.
Front Pharmacol. 2013 Apr 17;4:42. doi: 10.3389/fphar.2013.00042. eCollection 2013.
Recently, we demonstrated the beneficial effects of engineered heart tissues for the treatment of dilated cardiomyopathy in rats. For further development of this technique we started to produce engineered tissue (ET) from mesenchymal stem cells. Interestingly, we observed a malignant tumor invading the heart with an inverse relationship between proliferation markers and connexin expression.
Commercial CD54(+)/CD90(+)/CD34(-)/CD45(-) bone marrow derived mesenchymal rat stem cells (cBM-MSC), characterized were used for production of mesenchymal stem-cell-ET (MSC-ET) by suspending them in a collagen I, matrigel-mixture and cultivating for 14 days with electrical stimulation. Three MSC-ET were implanted around the beating heart of adult rats for days. Another three MSC-ET were produced from freshly isolated rat bone marrow derived stem cells (sBM-MSC).
Three weeks after implantation of the MSC-ETs the hearts were surgically excised. While in 5/6 cases the ET was clearly distinguishable and was found as a ring containing mostly connective tissue around the heart, in 1/6 the heart was completely surrounded by a huge, undifferentiated, pleomorphic tumor originating from the cMSC-ET (cBM-MSC), classified as a high grade malignant sarcoma. Quantitatively we found a clear inverse relationship between cardiac connexin expression (Cx43, Cx40, or Cx45) and increased Ki-67 expression (Cx43: p < 0.0001, Cx45: p < 0.03, Cx40: p < 0.014). At the tumor-heart border there were significantly more Ki-67 positive cells (p = 0.001), and only 2% Cx45 and Ki-67-expressing cells, while the other connexins were nearly completely absent (p < 0.0001). Conclusion and Hypothesis: These observations strongly suggest the hypothesis, that invasive tumor growth is accompanied by reduction in connexins. This implicates that gap junction communication between tumor and normal tissue is reduced or absent, which could mean that growth and differentiation signals can not be exchanged.
最近,我们证明了工程化心脏组织在治疗大鼠扩张型心肌病方面的有益作用。为了进一步发展这项技术,我们开始从间充质干细胞中产生工程化组织(ET)。有趣的是,我们观察到一个恶性肿瘤侵入心脏,增殖标志物和连接蛋白表达呈负相关。
使用商业 CD54(+)/CD90(+)/CD34(-)/CD45(-) 骨髓来源的间充质大鼠干细胞(cBM-MSC),通过悬浮在胶原 I、matrigel 混合物中,并在 14 天内进行电刺激培养,用于生产间充质干细胞-ET(MSC-ET)。将三个 MSC-ET 植入成年大鼠跳动的心脏周围数天。另外三个 MSC-ET 是由新鲜分离的大鼠骨髓来源的干细胞(sBM-MSC)产生的。
MSC-ET 植入三周后,心脏被手术切除。在 6 例中有 5 例 ET 明显可区分,并发现为环绕心脏的主要为结缔组织的环,而在 1 例中,心脏完全被起源于 cMSC-ET(cBM-MSC)的巨大、未分化、多形性肿瘤包围,归类为高级别恶性肉瘤。定量分析发现,心脏连接蛋白表达(Cx43、Cx40 或 Cx45)与 Ki-67 表达增加之间存在明显的负相关(Cx43:p<0.0001,Cx45:p<0.03,Cx40:p<0.014)。在肿瘤-心脏边界处,Ki-67 阳性细胞明显增多(p=0.001),而 Cx45 和 Ki-67 表达细胞仅占 2%,而其他连接蛋白几乎完全不存在(p<0.0001)。结论和假设:这些观察结果强烈表明,侵袭性肿瘤生长伴随着连接蛋白的减少。这表明肿瘤与正常组织之间的缝隙连接通讯减少或不存在,这可能意味着生长和分化信号无法交换。