Blood-tumor barrier in focus - investigation of glioblastoma-induced effects on the blood-brain barrier.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-10-01 Epub Date: 2024-08-28 DOI:10.1007/s11060-024-04760-w
Sanjana Mathew-Schmitt, Matthias Peindl, Philipp Neundorf, Gudrun Dandekar, Marco Metzger, Vera Nickl, Antje Appelt-Menzel
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Abstract

Purpose: Glioblastoma (GBM) is the most prevalent, malignant, primary brain tumor in adults, characterized by limited treatment options, frequent relapse, and short survival after diagnosis. Until now, none of the existing therapy and treatment approaches have proven to be an effective cure. The availability of predictive human blood-tumor barrier (BTB) test systems that can mimic in-vivo pathophysiology of GBM would be of great interest in preclinical research. Here, we present the establishment of a new BTB in-vitro test system combining GBM spheroids and BBB models derived from human induced pluripotent stem cells (hiPSCs).

Methods: We co-cultured hiPSC-derived brain capillary endothelial-like cells (iBCECs) with GBM spheroids derived from U87-MG and U373-MG cell lines in a cell culture insert-based format. Spheroids were monitored over 168 hours (h) of culture, characterized for GBM-specific marker expression and treated with standard chemotherapeutics to distinguish inhibitory effects between 2D mono-culture and 3D spheroids. GBM-induced changes on iBCECs barrier integrity were verified via measurement of transendothelial electrical resistance (TEER), immunocytochemical staining of tight junction (TJ) proteins claudin-5 and occludin as well as the glucose transporter-1 (Glut-1). GBM-induced secretion of vascular endothelial growth factor (VEGF) was additionally quantified.

Results: Our hypothesis was validated by reduced expression of TJ proteins, occludin and claudin-5 together with significant barrier breakdown in iBCECs after only 24 h of co-culture, demonstrated by reduction in TEER from 1313 ± 265 Ω*cm2 to 712 ± 299 Ω*cm2 (iBCECs + U87-MG) and 762 ± 316 Ω*cm2 (iBCECs + U373-MG). Furthermore, 3D spheroids show more resistance to standard GBM chemotherapeutics in-vitro compared to 2D cultures.

Conclusions: We demonstrate the establishment of a simplified, robust in-vitro BTB test system, with potential application in preclinical therapeutic screening and in studying GBM-induced pathological changes at the BBB.

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聚焦血脑屏障--研究胶质母细胞瘤对血脑屏障的影响。
目的:胶质母细胞瘤(GBM)是成人中最常见的恶性原发性脑肿瘤,其特点是治疗方案有限、经常复发、确诊后存活期短。到目前为止,现有的疗法和治疗方法还没有一种被证明是有效的治愈方法。能够模拟 GBM 体内病理生理学的预测性人体血液-肿瘤屏障(BTB)测试系统的出现将对临床前研究产生重大意义。在此,我们介绍了一种新的血肿瘤屏障体外测试系统的建立,该系统结合了 GBM 球形细胞和来自人类诱导多能干细胞(hiPSCs)的血肿瘤屏障模型:方法:我们以细胞培养插入物的形式,将hiPSC衍生的脑毛细血管内皮样细胞(iBCECs)与U87-MG和U373-MG细胞系衍生的GBM球形体进行联合培养。在 168 小时的培养过程中对球形细胞进行监测,鉴定 GBM 特异性标记物的表达,并用标准化疗药物进行处理,以区分二维单培养和三维球形细胞之间的抑制作用。通过测量跨内皮电阻(TEER)、免疫细胞化学染色紧密连接(TJ)蛋白 claudin-5 和 occludin 以及葡萄糖转运体-1(Glut-1),验证了 GBM 诱导的 iBCECs 屏障完整性变化。此外,还对 GBM 诱导的血管内皮生长因子(VEGF)分泌进行了量化:共培养 24 小时后,TJ 蛋白、occludin 和 claudin-5 的表达减少,同时 iBCECs 的屏障被明显破坏,这验证了我们的假设,具体表现为 TEER 从 1313 ± 265 Ω*cm2 降至 712 ± 299 Ω*cm2 (iBCECs + U87-MG)和 762 ± 316 Ω*cm2 (iBCECs + U373-MG)。此外,与二维培养物相比,三维球形体在体外对标准的 GBM 化疗药物表现出更强的抵抗力:我们展示了一种简化、稳健的体外 BTB 测试系统的建立,该系统有望应用于临床前治疗筛选和研究 GBM 诱导的 BBB 病理变化。
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4.30%
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567
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