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Live-cell fluorescence imaging: assessment of thioflavin T uptake in human epidermal carcinoma cells

机译:活细胞荧光成像:评估人表皮癌细胞中硫黄素T的吸收

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摘要

Thioflavin T (ThT), a positively charged heterocyclic small molecule, is a widely used fluorescent marker of amyloid pathophysiology to confirm the cause of death in post mortem brain tissue of Alzheimer's disease (AD) patients. Literature precedents indicate that current positron emission tomography (PET) agents, such as 11C-PIB and 18F-flutemetamol, share significant structural similarity with ThT, a lipophilic dye which does not traverse the blood–brain barrier (BBB) to enable the detection of Aβ plaques in vivo. While vital for maintaining normal physiology and healthy brain function, the BBB comprises brain endothelial cells sealed via paracellular protein complexes, bound by an extracellular matrix forming tight junctions thus controlling the delivery of molecules into the brain. The human P-glycoprotein (Pgp/ABCB1, 170 kD plasma membrane protein), belonging to the ABC family of efflux transporter proteins, also lines the luminal surface of brain endothelial cells thus poised to secrete its recognized substrates into the blood. Herein, we postulate that thioflavin T (ThT), due to its physico-chemical attributes, such as moderate lipophilicity and protonated nitrogen, could very well be recognized as a transport substrate of Pgp (P-glycoprotein, ABCB1) thus restricting its permeation into the brain. To evaluate whether or not ThT is indeed recognized by Pgp as its transport substrate thus limiting its BBB permeability, herein, we evaluate cellular accumulation profiles of ThT and PiB (a similar structural uncharged mimetic) in human epidermal carcinoma KB-3-1 (Pgp–) and MDR KB-8-5 (Pgp+) cells, using live-cell fluorescence imaging. While ThT penetrates KB-3-1 cells, it gets excluded from KB-8-5 cells, and also indicates -induced uptake in Pgp-expressing cells. Furthermore, the cellular uptake profiles of PiB are not impacted by the expression of Pgp under identical conditions. These data show that uptake profiles of ThT have been modified by the expression of Pgp in these cells, and are inversely proportional to the expression of the transporter protein located on the plasma membrane of these cells. Combined data demonstrate that ThT is efficiently recognized by Pgp as its transport substrate.
机译:硫黄素T(ThT)是一种带正电荷的杂环小分子,是淀粉样蛋白病理生理学中广泛使用的荧光标记,可用于确定阿尔茨海默氏病(AD)患者验尸后脑组织的死亡原因。文献先例表明,当前的正电子发射断层扫描(PET)试剂,例如 11 C-PIB和 18 F-氟替莫尔,与亲脂性染料ThT具有明显的结构相似性。不能穿过血脑屏障(BBB)以便能够在体内检测Aβ斑块。虽然BBB对于维持正常的生理和健康的大脑功能至关重要,但BBB包括通过内皮细胞蛋白复合物密封的大脑内皮细胞,该细胞由细胞外基质结合形成紧密连接,从而控制分子向大脑的输送。属于外排转运蛋白ABC家族的人P糖蛋白(Pgp / ABCB1,170 kD质膜蛋白)也衬砌着大脑内皮细胞的腔表面,因此准备将其公认的底物分泌到血液中。在这里,我们假设硫黄素T(ThT)由于其理化特性,例如中等的亲脂性和质子化的氮,很可能被认为是Pgp(P-糖蛋白,ABCB1)的运输底物,从而限制了它的渗透。大脑。为了评估ThT是否确实被Pgp识别为其转运底物从而限制其BBB通透性,在本文中,我们评估了人类表皮癌KB-3-1(Pgp)中ThT和PiB(类似结构的不带电模拟物)的细胞蓄积特征–)和MDR KB-8-5(Pgp +)细胞,使用活细胞荧光成像。尽管ThT穿透KB-3-1细胞,但它却被排除在KB-8-5细胞之外,并且还表明诱导的Pgp表达细胞摄取。此外,在相同条件下,PiB的细胞吸收曲线不受Pgp表达的影响。这些数据表明,ThT的吸收特性已被这些细胞中Pgp的表达所修饰,并且与位于这些细胞质膜上的转运蛋白的表达成反比。组合数据表明ThT被Pgp有效地识别为其转运底物。

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