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评估参与[^Tc]二巯丁二酸尿分泌的药物转运体。 [^Tc]:Tc 是锝的元素符号,其后面的方括号内的内容为该元素的一种放射性同位素。

Assessment of drug transporters involved in the urinary secretion of [Tc]dimercaptosuccinic acid.

机构信息

School of Health Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kanazawa, Japan.

School of Health Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kanazawa, Japan.

出版信息

Nucl Med Biol. 2021 Mar-Apr;94-95:92-97. doi: 10.1016/j.nucmedbio.2021.01.004. Epub 2021 Feb 5.

Abstract

INTRODUCTION

We clarified the renal uptake and urinary secretion mechanism of [Tc]dimercaptosuccinic acid ([Tc]DMSA) via drug transporters in renal proximal tubules.

METHODS

[Tc]DMSA was added to human embryonic kidney 293 cells expressing human multidrug and toxin extrusion (MATE)1 and MATE2-K, carnitine/organic cation transporter (OCTN)1 and OCTN2, and organic cation transporter (OCT)2; to Flp293 cells expressing human organic anion transporter (OAT)1 and OAT3; and to vesicles expressing P-glycoprotein (P-gp), multidrug resistance associated protein (MRP)2, MRP4, or breast cancer resistance protein with and without probenecid (OAT inhibitor for both OATs and MRPs). Time activity curves of [Tc]DMSA with and without probenecid were established using LLC-PK cells. Biodistribution and single photon emission computed tomography (SPECT) imaging in mice were conducted using [Tc]DMSA with and without probenecid.

RESULTS

[Tc]DMSA uptake was significantly higher in Flp293/OAT3 than in mock cells. Uptake via OAT3 was inhibited by probenecid. [Tc]DMSA uptake into vesicles that highly expressed MRP2 was significantly higher in adenosine triphosphate (ATP) than in adenosine monophosphate (AMP), and probenecid decreased uptake to similar levels as that in AMP. In the time activity curves for [Tc]DMSA in LLC-PK cells, probenecid loading inhibited accumulation from the basolateral side into LLC-PK cells, whereas accumulation from the apical side into cells gradually increased. Transport of [Tc]DMSA from both sides was low. Biodistribution and SPECT imaging studies showed that [Tc]DMSA with probenecid loading resulted in significantly higher accumulation in blood, heart, liver, and bladder after [Tc]DMSA injection compared with control mice. Probenecid induced significantly lower accumulation in the kidney after [Tc]DMSA injection.

CONCLUSIONS

[Tc]DMSA accumulates in renal proximal tubular epithelial cells from blood via OAT3 on the basolateral side, and then a small volume of [Tc]DMSA will be excreted in urine via MRP2. ADVANCES IN KNOWLEDGE: [Tc]DMSA accumulates via OAT3 in renal proximal tubular epithelial cells and is slightly excreted from the cells via MRP2. IMPLICATIONS FOR PATIENT CARE: [Tc]DMSA may be useful for measuring renal transport function with OAT3 in patients.

摘要

简介

我们通过肾近端小管中的药物转运体阐明了[Tc]二巯丁二酸([Tc]DMSA)的肾摄取和尿分泌机制。

方法

将[Tc]DMSA 添加到表达人多药和毒素外排(MATE)1 和 MATE2-K、肉碱/有机阳离子转运体(OCTN)1 和 OCTN2 以及有机阳离子转运体(OCT)2 的人胚肾 293 细胞;到表达人有机阴离子转运体(OAT)1 和 OAT3 的 Flp293 细胞;并添加到表达 P-糖蛋白(P-gp)、多药耐药相关蛋白(MRP)2、MRP4 或乳腺癌耐药蛋白的囊泡中,并用丙磺舒(OAT 和 MRP 的 OAT 抑制剂)处理。使用 LLC-PK 细胞建立了有和没有丙磺舒的[Tc]DMSA 的时间活性曲线。使用有和没有丙磺舒的[Tc]DMSA 在小鼠中进行生物分布和单光子发射计算机断层扫描(SPECT)成像。

结果

[Tc]DMSA 在 Flp293/OAT3 中的摄取明显高于 mock 细胞。OAT3 摄取被丙磺舒抑制。[Tc]DMSA 摄取到高表达 MRP2 的囊泡中,在三磷酸腺苷(ATP)中的摄取明显高于一磷酸腺苷(AMP),而丙磺舒将摄取量降低到与 AMP 相似的水平。在 LLC-PK 细胞中[Tc]DMSA 的时间活性曲线中,丙磺舒加载抑制了[Tc]DMSA 从基底外侧侧面向 LLC-PK 细胞的积累,而从顶端侧向细胞的积累逐渐增加。来自两侧的[Tc]DMSA 的转运量很低。生物分布和 SPECT 成像研究表明,与对照小鼠相比,[Tc]DMSA 注射后,携带丙磺舒的[Tc]DMSA 加载导致血液、心脏、肝脏和膀胱中的积累明显增加。[Tc]DMSA 注射后,丙磺舒诱导肾脏中的积累显著降低。

结论

[Tc]DMSA 通过基底外侧侧的 OAT3 从血液中积聚在肾近端管状上皮细胞中,然后一小部分[Tc]DMSA 将通过 MRP2 从细胞中排泄到尿液中。

知识的进步

[Tc]DMSA 通过肾近端小管上皮细胞中的 OAT3 积聚,然后通过 MRP2 从细胞中少量排泄。

对患者护理的影响

[Tc]DMSA 可能对评估患者的 OAT3 肾转运功能有用。

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