Laboratory of Obstetrics and Experimental Gynaecology, KU Leuven, Herestraat 49 box 611, B-3000 Leuven, Belgium.
Laboratory of Obstetrics and Experimental Gynaecology, KU Leuven, Herestraat 49 box 611, B-3000 Leuven, Belgium Laboratory of Ion Channel Research and TRP Research Platform Leuven (TRPLe), KU Leuven, Herestraat 49 box 802, B-3000 Leuven, Belgium.
Hum Reprod. 2015 Jun;30(6):1421-36. doi: 10.1093/humrep/dev068. Epub 2015 Mar 27.
Are members of the transient receptor potential (TRP) channel superfamily functionally expressed in the human endometrial stroma?
The Ca(2+)-permeable ion channels TRPV2, TRPV4, TRPC6 and TRPM7 are functionally expressed in primary endometrial stromal cells.
Intercellular communication between epithelial and stromal endometrial cells is required to initiate decidualization, a prerequisite for successful implantation. TRP channels are possible candidates as signal transducers involved in cell-cell communication, but no fingerprint is available of the functional distribution of TRP channels in the human endometrium during the luteal phase of the menstrual cycle.
STUDY DESIGN, SIZE, DURATION: Endometrial biopsy samples (previously frozen) from patients of reproductive age with regular menstrual cycles, who were undergoing diagnostic laparoscopic surgery for pain and/or infertility, were analysed. Samples were obtained from the menstrual (Days 1-5, n = 3), follicular (Days 6-14, n = 6), early luteal (Days 15-20, n = 5) and late luteal (Days 21-28, n = 5) phases. In addition, a total of 13 patient samples taken during the luteal phase were used to set up primary cell cultures for further experiments.
PARTICIPANTS/MATERIALS, SETTING, METHODS: Quantitative real-time PCR (qRT-PCR), immunocytochemistry, Fura2-based Ca(2+)-microfluorimetry and whole-cell patch clamp experiments were performed to study the functional expression pattern of TRP channels. Specific pharmacological agents, such as Δ(9)-tetrahydrocannabinol, GSK1016790A and 1-oleoyl-2-acetyl-glycerol, were used to functionally assess the expression of TRPV2, TRPV4 and TRPC6, respectively.
Expression of TRPV2, TRPV4, TRPC1, TRPC4, TRPC6, TRPM4 and TRPM7 was detected at the mRNA level in endometrial biopsies (n = 19) and in primary endometrial stromal cell cultures obtained from patients during the luteal phase (n = 5) of the menstrual cycle. Messenger RNA levels of TRPV2, TRPC4 and TRPC6 were significantly increased (P < 0.01) in the late luteal phase compared with the early luteal phase. Immunocytochemistry experiments showed a positive staining for TRPV2, TRPV4, TRPC6 and TRPM7 in the plasma membrane and in the cytoplasm of primary endometrial stromal cells. Ca(2+)-microfluorimetry revealed significant increases (P < 0.001) in intracellular Ca(2+) levels when stromal cells were incubated with specific activators of TRPV2, TRPV4 and TRPC6. Further functional characterization was performed using whole-cell patch clamp experiments. Taken together, these data provide evidence for the functional activity of TRPV2, TRPV4, TRPC6 and TRPM7 channels in primary stromal cell cultures.
LIMITATIONS, REASONS FOR CAUTION: Although mRNA levels are detected for TRPV6, TRPC1, TRPC4 and TRPM4, the limited supply of specific antibodies and lack of selective pharmacological agents restricted any additional analysis of these ion channels.
Embryo implantation is a dynamic developmental process that integrates many signalling molecules into a precisely orchestrated programme. Our findings identified certain members of the TRP superfamily as candidate sensors in the epithelial-stromal crosstalk. These results are very helpful to unravel the signalling cascade required for successful embryo implantation. In addition, this knowledge could lead to new strategies to correct implantation failure and facilitate the development of novel non-hormonal contraceptives.
STUDY FUNDING/ COMPETING INTERESTS: This work was supported by grants from the Research Foundation-Flanders (G.0856.13N to J.V.), the Research Council of the KU Leuven (OT/13/113 to J.V. and T.D. and PF-TRPLe to T.V.) and by the Planckaert-De Waele fund (to J.V.). K.D.C. and K.H. are funded by the FWO Belgium. None of the authors have a conflict of interest.
瞬时受体电位 (TRP) 通道超家族的成员是否在人子宫内膜基质中具有功能性表达?
在原代子宫内膜基质细胞中,钙通透性离子通道 TRPV2、TRPV4、TRPC6 和 TRPM7 具有功能性表达。
上皮细胞和子宫内膜基质细胞之间的细胞间通讯对于启动蜕膜化是必需的,蜕膜化是成功植入的前提。TRP 通道可能是参与细胞间通讯的信号转导的候选者,但在月经周期黄体期,人子宫内膜中 TRP 通道的功能分布尚无指纹图谱。
研究设计、规模、持续时间:分析了来自生殖年龄、月经周期正常的患者的子宫内膜活检样本(以前冷冻),这些患者因疼痛和/或不孕接受诊断性腹腔镜手术。样本取自月经期(第 1-5 天,n=3)、卵泡期(第 6-14 天,n=6)、早期黄体期(第 15-20 天,n=5)和晚期黄体期(第 21-28 天,n=5)。此外,还使用总共 13 名黄体期患者的样本建立了用于进一步实验的原代细胞培养物。
参与者/材料、设置、方法:使用定量实时 PCR(qRT-PCR)、免疫细胞化学、Fura2 基础钙微荧光计和全细胞膜片钳实验研究 TRP 通道的功能表达模式。使用特定的药理学试剂,如Δ(9)-四氢大麻酚、GSK1016790A 和 1-油酰基-2-乙酰甘油,分别用于功能性评估 TRPV2、TRPV4 和 TRPC6 的表达。
在子宫内膜活检(n=19)和从黄体期患者获得的原代子宫内膜基质细胞培养物(n=5)中检测到 TRPV2、TRPV4、TRPC1、TRPC4、TRPC6、TRPM4 和 TRPM7 的 mRNA 水平。与早期黄体期相比,晚期黄体期 TRPV2、TRPC4 和 TRPC6 的 mRNA 水平显著增加(P<0.01)。免疫细胞化学实验显示 TRPV2、TRPV4、TRPC6 和 TRPM7 在原代子宫内膜基质细胞的质膜和细胞质中呈阳性染色。钙微荧光计显示,当用 TRPV2、TRPV4 和 TRPC6 的特异性激活剂孵育基质细胞时,细胞内 Ca2+水平显著增加(P<0.001)。使用全细胞膜片钳实验进行了进一步的功能特征分析。总之,这些数据为 TRPV2、TRPV4、TRPC6 和 TRPM7 通道在原代基质细胞培养物中的功能活性提供了证据。
限制因素、谨慎的原因:尽管检测到 TRPV6、TRPC1、TRPC4 和 TRPM4 的 mRNA 水平,但由于缺乏特异性抗体和缺乏选择性药理学试剂,限制了对这些离子通道的任何进一步分析。
胚胎植入是一个动态的发育过程,它将许多信号分子整合到一个精确协调的程序中。我们的发现将瞬时受体电位超家族的某些成员确定为上皮-基质细胞通讯的候选传感器。这些结果对于揭示成功胚胎植入所需的信号级联非常有帮助。此外,这些知识可以为纠正植入失败和促进新型非激素避孕药的开发提供新的策略。
研究资金/利益冲突:这项工作得到了研究基金会-佛兰德(G.0856.13N 给 J.V.)、鲁汶大学研究理事会(OT/13/113 给 J.V. 和 T.D. 和 PF-TRPLe 给 T.V.)和 Planckaert-De Waele 基金(给 J.V.)的支持。K.D.C. 和 K.H. 得到了 FWO 比利时的资助。作者均无利益冲突。