首页> 美国卫生研究院文献>Frontiers in Pharmacology >TRPM8 Activation via 3-Iodothyronamine Blunts VEGF-Induced Transactivation of TRPV1 in Human Uveal Melanoma Cells
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TRPM8 Activation via 3-Iodothyronamine Blunts VEGF-Induced Transactivation of TRPV1 in Human Uveal Melanoma Cells

机译:通过3-碘甲状腺素胺激活TRPM8钝化人葡萄膜黑色素瘤细胞中VEGF诱导的TRPV1反式激活。

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摘要

In human uveal melanoma (UM), tumor enlargement is associated with increases in aqueous humor vascular endothelial growth factor-A (VEGF-A) content that induce neovascularization. 3-Iodothyronamine (3-T1AM), an endogenous thyroid hormone metabolite, activates TRP melastatin 8 (TRPM8), which blunts TRP vanilloid 1 (TRPV1) activation by capsaicin (CAP) in human corneal, conjunctival epithelial cells, and stromal cells. We compare here the effects of TRPM8 activation on VEGF-induced transactivation of TRPV1 in an UM cell line (92.1) with those in normal primary porcine melanocytes (PM) since TRPM8 is upregulated in melanoma. Fluorescence Ca2+-imaging and planar patch-clamping characterized functional channel activities. CAP (20 μM) induced Ca2+ transients and increased whole-cell currents in both the UM cell line and PM whereas TRPM8 agonists, 100 μM menthol and 20 μM icilin, blunted such responses in the UM cells. VEGF (10 ng/ml) elicited Ca2+ transients and augmented whole-cell currents, which were blocked by capsazepine (CPZ; 20 μM) but not by a highly selective TRPM8 blocker, AMTB (20 μM). The VEGF-induced current increases were not augmented by CAP. Both 3-T1AM (1 μM) and menthol (100 μM) increased the whole-cell currents, whereas 20 μM AMTB blocked them. 3-T1AM exposure suppressed both VEGF-induced Ca2+ transients and increases in underlying whole-cell currents. Taken together, functional TRPM8 upregulation in UM 92.1 cells suggests that TRPM8 is a potential drug target for suppressing VEGF induced increases in neovascularization and UM tumor growth since TRPM8 activation blocked VEGF transactivation of TRPV1.
机译:在人葡萄膜黑色素瘤(UM)中,肿瘤增大与房水血管内皮生长因子-A(VEGF-A)含量的增加相关,诱导新血管形成。 3-碘甲状腺素(3-T1AM)是一种内源性甲状腺激素代谢产物,可激活TRP褪黑素8(TRPM8),后者通过辣椒素(CAP)在人角膜,结膜上皮细胞和基质细胞中钝化TRP香草素1(TRPV1)的活性。我们在这里比较UM细胞系(92.1)中TRPM8激活对VEGF诱导的TRPV1反式激活的影响与正常原代猪黑素细胞(PM)中的影响,因为TRPM8在黑素瘤中上调。荧光Ca 2 + -成像和平面膜片钳位表征了功能通道的活性。 CAP(20μM)在UM细胞系和PM中诱导Ca 2 + 瞬变并增加全细胞电流,而TRPM8激动剂,100μM薄荷醇和20μMicilin抑制了UM细胞中的此类反应。 VEGF(10 ng / ml)引起Ca 2 + 瞬变并增加全细胞电流,这些电流被卡塞平(CPZ; 20μM)阻断,但未被高选择性TRPM8阻断剂AMTB(20μM)阻断)。 CAP不会增加VEGF诱导的电流增加。 3-T1AM(1μM)和薄荷醇(100μM)均增加了全细胞电流,而20μMAMTB阻止了它们。 3-T1AM暴露抑制了VEGF诱导的Ca 2 + 瞬变,并增加了潜在的全细胞电流。两者合计,在UM 92.1细胞中功能性TRPM8上调表明TRPM8是抑制VEGF诱导的新血管形成和UM肿瘤生长增加的潜在药物靶标,因为TRPM8激活阻止了TRPV1的VEGF反激活。

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