首页> 美国卫生研究院文献>Journal of the Endocrine Society >Taking Advantage of the TGFB1 Biology in Differentiated Thyroid Cancer to Stimulate Sodium Iodide Symporter (NIS)-Mediated Iodide Uptake in Engineered Mesenchymal Stem Cells
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Taking Advantage of the TGFB1 Biology in Differentiated Thyroid Cancer to Stimulate Sodium Iodide Symporter (NIS)-Mediated Iodide Uptake in Engineered Mesenchymal Stem Cells

机译:利用分化的甲状腺癌中的TGFB1生物学来刺激碘化钠交响者(NIS)介导的碘化碘化物的碘化碘化物干细胞

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摘要

The sodium iodide symporter (NIS) mediates the active transport of iodide into thyroid follicular cells, providing the basis for the use of radioiodide for diagnostic imaging and therapy of differentiated thyroid cancer and also non-thyroidal tumors after tumor-selective NIS gene transfer. Based on their excellent tumor-homing capacity, mesenchymal stem cells (MSCs) can be employed as tumor-selective NIS gene delivery vehicles. Transgenic expression of NIS in genetically engineered MSCs allows noninvasive imaging of functional NIS expression as well as therapeutic application of 131I. The use of promoters activated by tumor micromilieu-derived signals to drive NIS expression enhances selectivity and effectiveness, while limiting potential off-target effects. In this study we aimed to exploit the central role of transforming growth factor B1 (TGFB1) in tumor milieu-associated signaling using a TGFB1-inducible synthetic SMAD-responsive promoter to selectively drive NIS-transgene expression in engineered MSCs (SMAD-NIS-MSC) in the context of differentiated thyroid cancer based on the critical role of TGFB1 in the pathogenesis of radioiodine refractory differentiated thyroid cancer. To evaluate the TGFB1 expression in thyroid cancer cell lines, the TGFB1 concentration in conditioned medium (CM) from an array of established human papillary thyroid cancer (PTC) cell lines (BCPAP and K1) was measured by ELISA. BCPAP-CM showed a higher concentration of TGFB1, while a lower concentration was measured in K1-CM. Stimulation of SMAD-NIS-MSCs with PTC-CM showed a significant increase of NIS-mediated radioiodide-125 uptake in these MSCs in vitro. In addition, iodide uptake in SMAD-NIS-MSCs was significantly stimulated by co-culture with thyroid cancer cells. Cell migration assay was performed to validate the effect of PTC-CM in MSC recruitment. MSCs subjected to a gradient between tumor CM and serum free medium showed a directed chemotaxis towards CM with increased forward migration index (FMI) and center of mass (CoM). In a next step, based on the in vitro studies, SMAD-NIS-MSCs will be systemically applied via the tail vein to mice harboring subcutaneous PTC tumors and tumoral iodide uptake will be monitored by 123I-scintigraphy. Taken together, these data indicate the feasibility of commandeering TGF-β/SMAD signaling in the TGFB1-rich tumor environments of radioiodine refractory differentiated thyroid carcinomas to re-establish functional NIS expression using engineered mesenchymal stem cells as therapy vehicles.
机译:碘化钠交响者(NIS)介导碘化物的活性转运进入甲状腺滤泡细胞,为肿瘤选择性NIS基因转移后使用放射性碘化碘化碘化碘化碘化碘化碘化碘化碘化碘化术和治疗的基础,以及在肿瘤选择性NIS基因转移后的非甲状腺肿瘤。基于它们出色的肿瘤归巢能力,间充质干细胞(MSCs)可用作肿瘤选择性NIS基因递送载体。基因工程化MSC中NIS的转基因表达允许功能性NIS表达的非侵入性成像以及131I的治疗施加。使用肿瘤微灯衍生信号激活的启动子以驱动NIS表达,增强选择性和有效性,同时限制潜在的偏离目标效果。在这项研究中,我们旨在利用使用TGFB1诱导的合成响应响应剂在工程化MSCs中选择性地推动NIS-Transcene表达(Smad-NIS-MSC的肿瘤Milieu相关信号传导中转化生长因子B1(TGFB1)在肿瘤Milieu相关信号传导中转化生长因子B1(TGFB1)的核心作用(SMAD-NIS-MSC [基于TGFB1在放射性碘难治性分化的甲状腺癌的发病机制中,在分化的甲状腺癌的上下文中。为了评估甲状腺癌细胞系中的TGFB1表达,通过ELISA测量来自已建立的人乳头状甲状腺癌(PTC)细胞系(BCPAP和K1)的条件培养基(CM)中的TGFB1浓度。 BCPAP-CM显示出较高浓度的TGFB1,而在K1-cm中测量较低浓度。用PTC-CM刺激Smad-NIS-MSCs在体外显示出在这些MSC中的NIS介导的NIS介导的放射性碘-125摄取。此外,通过与甲状腺癌细胞共培养显着刺激Smad-NIS-MSC中的碘化物摄取。进行细胞迁移测定以验证PTC-CM在MSC募集中的作用。在肿瘤Cm和血清自由培养基之间进行梯度的MSC显示指向CM的指向趋化性,其前向迁移指数(FMI)和质量中心(COM)。在下一步中,基于体外研究,Smad-NIS-MSCs将通过尾静脉全身施加到窝囊皮下PTC肿瘤的小鼠,并通过123i闪烁的肿瘤碘化物摄取。总之,这些数据表明,使用工程化间充质干细胞作为治疗车辆重新建立功能NIS表达,表明,在放射性碘难治性分化的甲状腺癌中的TGF-β/ Smad信号传导中的可行性。

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