Department of Anatomy, Histology and Embryology, Semmelweis University, Tűzoltó u. 58., Budapest, 1094, Hungary.
Inflamm Res. 2016 Oct;65(10):827-36. doi: 10.1007/s00011-016-0967-5. Epub 2016 Jun 30.
During peritonitis, mesothelial cells assume macrophage characteristics, expressing macrophage markers, indicating that they might differentiate into macrophage-like cells.
Twenty-five male rats were used for in vivo experiments. For in vitro experiments, a primary mesentery culture model was developed. The mesothelial cell to macrophage-like cell transition was followed by studying ED1 expression.
In vitro primary mesenteric culture was treated with granulocyte-macrophage colony-stimulating factor (GM-CSF, 1 ng/ml). Blocking internalization of receptor-ligand complex, Dynasore (80 µM) was used. Acute peritonitis was induced by Freund's adjuvant's (1 ml) intraperitoneal injection.
Immunohistochemistry: GM-CSF in vitro treatment resulted in a prominent ED1 expression in transformed mesothelial cells. Blocking the internalization, ED1 expression could not be detected. GM-CSF receptor (both α and β) was expressed in mesothelial cells in vitro (even if the GM-CSF was not present) and in vivo. Inflammation resulted in an increasing GM-CSF and GM-CSF-receptor level in the lysate of mesothelial cells.
Mesothelial cells can differentiate into macrophage-like cells, and GM-CSF, produced by the mesothelial cells, has probably an autocrine regulatory role in this transition. Our results provide new data about the plasticity of mesothelial cell and support the idea that during inflammation macrophages can derive from non-hematopoietic sources as well.
在腹膜炎期间,间皮细胞呈现巨噬细胞特征,表达巨噬细胞标志物,表明它们可能分化为巨噬细胞样细胞。
25 只雄性大鼠用于体内实验。对于体外实验,开发了原发性肠系膜培养模型。通过研究 ED1 表达来跟踪间皮细胞向巨噬细胞样细胞的转变。
体外原代肠系膜培养物用粒细胞-巨噬细胞集落刺激因子(GM-CSF,1ng/ml)处理。用 Dynasore(80µM)阻断受体-配体复合物的内化。用弗氏佐剂(1ml)腹腔内注射诱导急性腹膜炎。
免疫组织化学:体外 GM-CSF 处理导致转化的间皮细胞中 ED1 表达明显。阻断内化,无法检测到 ED1 表达。GM-CSF 受体(α和β)在体外(即使不存在 GM-CSF)和体内均表达于间皮细胞。炎症导致间皮细胞裂解物中 GM-CSF 和 GM-CSF 受体水平升高。
间皮细胞可以分化为巨噬细胞样细胞,由间皮细胞产生的 GM-CSF 可能在这种转化中具有自分泌调节作用。我们的结果提供了关于间皮细胞可塑性的新数据,并支持在炎症期间巨噬细胞可以源自非造血来源的观点。