Functional expression of transient receptor potential channels in human endometrial stromal cells during the luteal phase of the menstrual cycle
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The Ca2+-permeable ion channels TRPV2, TRPV4, TRPC6, and TRPM7 are functionally expressed in human endometrial stromal cells during the luteal phase.
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Abstract
STUDY QUESTION: Are members of the transient receptor potential (TRP) channel superfamily functionally expressed in the human endometrial stroma? SUMMARY ANSWER: The Ca(2+)-permeable ion channels TRPV2, TRPV4, TRPC6 and TRPM7 are functionally expressed in primary endometrial stromal cells. WHAT IS KNOWN ALREADY: 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. MAIN RESULTS AND THE ROLE OF CHANCE: 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. WIDER IMPLICATIONS OF THE FINDINGS: 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.
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References (65)
- Coexpression and estrogen‐mediated regulation of TRPV6 and PMCA1 in the human endometrium during the menstrual cycle via openalex
- Endocrine Regulation of Menstruation via openalex
- W1495409864 via openalex
- W1521758582 via openalex
- W1554059507 via openalex
- W1559892880 via openalex
- W1567917794 via openalex
- W1581034902 via openalex
- W1907521136 via openalex
- W1968742573 via openalex
- W1970629236 via openalex
- W1974058597 via openalex
- W1977575322 via openalex
- W1985068375 via openalex
- W1997808089 via openalex
- W2000018061 via openalex
- W2000570650 via openalex
- W2001426137 via openalex
- W2002822711 via openalex
- W2003403297 via openalex
- W2011557706 via openalex
- W2011872875 via openalex
- W2013180604 via openalex
- W2019848444 via openalex
- W2020366215 via openalex
- W2022645001 via openalex
- W2025596955 via openalex
- W2029265742 via openalex
- W2032178587 via openalex
- W2033620602 via openalex
- W2038642057 via openalex
- W2038901160 via openalex
- W2040501484 via openalex
- W2040664792 via openalex
- W2042622236 via openalex
- W2042968117 via openalex
- W2044296969 via openalex
- W2054535317 via openalex
- W2061601726 via openalex
- W2066400512 via openalex
- W2068754779 via openalex
- W2070056663 via openalex
- W2102204826 via openalex
- W2109801386 via openalex
- W2110657050 via openalex
- W2119071913 via openalex
- W2119939969 via openalex
- W2128164471 via openalex
- W2133329822 via openalex
- W2133946453 via openalex
- W2134182567 via openalex
- W2134966330 via openalex
- W2137290540 via openalex
- W2141260882 via openalex
- W2160335424 via openalex
- W2167122809 via openalex
- W2171339002 via openalex
- W2189295616 via openalex
- W2204640292 via openalex
- W2399567275 via openalex
- W4255195646 via openalex
- W6600300264 via openalex
- W7987303 via openalex
- W6644717893 via openalex
- W190667056 via openalex
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