Research Centre, Centre Hospitalier de l'Université de Montréal (CRCHUM), Montréal, Québec, Canada Department of Medicine, Université de Montréal, Montreal, Quebec, Canada.
J Endocrinol. 2014 Jan 30;220(3):277-89. doi: 10.1530/JOE-13-0305. Print 2014 Mar.
The functional oxytocin (OT) system is expressed in the human and rodent hearts. OT stimulates differentiation of cardiac stem cells into contracting cardiomyocytes (CM). In this study, we investigated OT receptors (OTR) expressed in the cells of cardiac side population (SP) and the abilities of these cells to differentiate into CM in response to the treatment with OT-Gly-Lys-Arg (OT-GKR), a dominant and biologically active form of OT, in the fetal rodent heart. Immunocytochemistry of whole rat embryo at mid gestation (E11) revealed parallel staining in the heart of OTR and the ATP-binding cassette sub-family G member 2 (brcp1) antigen the marker of the SP phenotype. Using flow cytometry, the SP cells were selected from the newborn CM stained with Höechst 33342: 5.32%±0.06% of SP and 15.2%±1.10 of main population expressed OTR on the cell surface. The OTR was detected in CD29 (6.6%) and then in CD31 (4.7%) but less frequently in CD45 (0.7%) positive SP cell subpopulations. Specifically, the phenotype of SP CD31- cell, but not SP CD31+ cells, proliferates in the presence of OT-GKR and develops large cell aggregates. Then, OT-GKR treatment induced the apparition of beating cell colonies after 11 days (10±2.78%), which increased until day 16 (52±1.21%). The cells in contractile colonies expressed the markers of a CM phenotype, such as troponin, cardiac myosin light chain-2, and actinin. Finally, SP cells stimulated by OT-GKR induced endothelial phenotype. These results suggest that the C-terminally extended OT molecule stimulates cardiac differentiation of SP CD31- cells and is involved in heart growth.
功能性催产素(OT)系统在人和啮齿动物心脏中表达。OT 刺激心脏干细胞分化为收缩型心肌细胞(CM)。在这项研究中,我们研究了心脏侧群(SP)细胞中表达的 OT 受体(OTR),以及这些细胞在接受 OT-Gly-Lys-Arg(OT-GKR)治疗时分化为 CM 的能力,OT-GKR 是 OT 的一种优势和生物活性形式,在胎鼠心脏中。对妊娠中期(E11)的整个大鼠胚胎进行免疫细胞化学染色显示,OTR 与 ATP 结合盒亚家族 G 成员 2(brcp1)抗原(SP 表型的标志物)在心脏中呈平行染色。使用流式细胞术,从用 Hoechst 33342 染色的新生 CM 中选择 SP 细胞:SP 中 5.32%±0.06%和主群体中 15.2%±1.10 表达细胞表面 OTR。OTR 检测到在 CD29(6.6%),然后在 CD31(4.7%),但在 CD45(0.7%)阳性 SP 细胞亚群中较少。具体而言,只有 SP CD31-细胞,而不是 SP CD31+细胞,在 OT-GKR 的存在下增殖,并形成大的细胞聚集物。然后,OT-GKR 处理后 11 天(10±2.78%)出现搏动细胞集落,直到第 16 天(52±1.21%)增加。收缩性集落中的细胞表达 CM 表型标志物,如肌钙蛋白、心肌肌球蛋白轻链-2 和肌动蛋白。最后,OT-GKR 刺激的 SP 细胞诱导内皮表型。这些结果表明,C 端延伸的 OT 分子刺激 SP CD31-细胞的心脏分化,并参与心脏生长。